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    The Quality

    Company

    Worldwide

    Environmental

    Technology On A Global Scale

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    The Hans Huber AG, headquartersin Berching, Germany, is an active

    worldwide company within the field

    of water, wastewater and sludge

    treatment.

    The Huber headquarters in Berching

    with 400 employees develop and

    manufacture products, plan projects

    and work up system solutions formunicipalities and industries along

    with site specific tailored solutions for

    water quality improvement.

    Founded more than 130 years ago,

    Huber presently supports its customers

    in more than 50 countries through

    its own subsidiaries, offices or

    representatives who provide innovative

    technologies and comprehensive

    support and experience within the

    experience and expertise to suit the

    requirements in the fields of water and

    sludge treatment. This family owned

    company utilises at its headquarters

    its modern production facilities

    where a wide range of machines and

    plants for the international marketsare manufactured using the most

    advanced manufacturing technology

    coupled with highly qualified

    employees.

    As a quality conscious manufacturerHuber made the decision many

    years ago to process only stainless

    steel and has over all these years

    gathered an extensive knowledge in

    the manufacturing of stainless steel

    machines and plants for both the

    water and wastewater sector.

    As a result of the continuousimprovement of its products and new

    development of customer or market

    requirement-oriented machines and

    plants, Huber is now able to offer a

    full range of products for the complete

    water sector and worldwide market.

    This brochure provides a general

    overview of the Huber products and

    their potential applications.

    More detailed literature is of course

    available for each product and

    application on www.huber.de or will

    be mailed if requested. If you wish to

    discuss your requests in detail then

    competent HUBER specialists are

    available for advice and support.

    $$#The Quality Company Worldwide

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    $$#Fields of Activity

    Mechanical wastewater screening

    Screens with a large range of bar spacings for any flow rate and installation

    requirements . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 6

    Fine screening

    New and improved screens for new wastewater

    treatment concepts . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 14

    Screenings treatmentOptimal screenings treatment tailored to the

    specific site requirements . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 16

    Grit separation

    Well-proven and innovative plants for a wide range

    of applications . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 20

    Grit treatment

    Integrated treatment systems allowing for grit recycling

    reducing disposal costs . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 24

    Sewer system management and stormwater treatment

    Machines and system solutions for application in combined and

    separated sewer systems . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 28

    Sludge treatment

    Machines and systems for sludge screening, thickening, dewatering,

    drying available for any application . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 34

    Sedimentation

    Optimised inlet and outlet systems for sedimentation tanks . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 42

    Filtration

    Continuous sand filtration for advanced wastewater treatment . . . . . . . . . . . . . . . . . . . . . . . . 46

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    Membrane technology

    Innovative flat membranes either rotating or stationary

    membrane plates for new ways of biological wastewater treatment . . . . . . . . . . . . . . . . 48

    Decentralised wastewater and stormwater treatment

    Decentralised solutions using innovative technology,

    suitable for individual households, hotels, small residential estates . . . . . . . . . . . . . . . . . . . . . 52

    Reuse of wastewater and entrained nutrientsConcepts and products for water and nutrient recycling . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 54

    Drinking water treatment

    Complete solutions for drinking water recovery from

    surface water . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 58

    System solutions for industrial applications

    Individually developed treatment concepts using well-provenHUBER products . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 60

    Stainless steel products

    A variety of stainless steel products for drinking water treatment,

    storage, supply . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 68

    Global service

    Worldwide service for a prolonged product life . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 74

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    Screens for any application

    $$#Mechanical Wastewater Treatment

    Mechanical treatment is indispensable

    as the first process step of preliminary

    treatment for both municipal and

    industrial wastewater applications.

    Initially coarse material has to

    be removed in order to protect

    subsequent treatment stages against

    damage/pollution or to relieve them.The goal is usually to completely

    separate floating, settling and

    suspended material, dependent upon

    the bar spacing or perforation, and

    remove the material from the flow into

    a container.

    Based on the ROTAMATprinciple

    of screening washing transport

    dewatering within one unit a complete

    ROTAMATfamily was developed

    and then successfully launched

    within the worldwide wastewater

    treatment market. In recent years the

    STEP SCREENfamily and now the

    MAXfamily have been added to

    complement the range. The HUBER

    screening range therefore comprises ofa range of screen systems and enables

    us to offer the perfect solution for

    # any site specific installation

    conditions

    # any flow rate

    # any bar spacing

    Coarse screen

    Fine screen

    Perforated plate screen

    Mesh screen

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    $$#Mechanical Wastewater Treatment

    The development of finer

    screens opens up new fields of

    application

    The development of very fine screens

    for separation of finer particlesopens up new fields of application

    in wastewater treatment. For the

    recently introduced new type of

    membrane bioreactors within the

    market an improved performance is

    required to ensure reliable separation

    of hairs and fibrous material to allow

    the membrane process to function

    effectively.

    A further application for these units isriver and sea outfalls which frequently

    only have coarse mechanical screening

    installed but feel it will increasingly

    become more common and important

    to reduce the COD/BOD concentration

    of the wastewater discharged into the

    receiving water course. These new

    fine screens within a single process

    step can remove undegradable

    toilet and plastic particles along with

    organic material contained within

    the wastewater. By application of

    this new technology a high degree

    of environmental protection can

    therefore be achieved at a reasonable

    cost. For further improvement of the

    screens efficiency precipitants andcoagulants can be added which have

    the effect that dissolved and very fine

    particles contained in the wastewater

    are converted into separable particles

    to enable the filterable solids to be

    reduced by up to 95%, COD/BOD by

    65% and phosphorus by 60%. With

    many regions within the world with

    no wastewater treatment plants, orinsufficient wastewater treatment

    plants, fine screening can be a first and

    quick step in the right direction.

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    HUBER ClimbMaxScreen

    $$#Mechanical Wastewater Treatment

    # Sturdy construction,

    operationally reliable,

    minimum maintenance

    # Easy-to-retrofit into existing

    channels

    # Available as front or back

    cleaned screen# No submerged moving parts

    # Bar spacing:

    Front cleaned sceen > 6 mm

    Back cleaned screen > 15 mm

    ClimbMaxScreen a well-proven solution forlarge flows

    RakeMaxScreen sturdy construction,

    reliable operation

    HUBER RakeMaxScreen

    # High screenings discharge

    capacity

    # Low headloss

    # Low installation height above

    ground level particularlyrelevant for deep channels

    # Control-independent safety

    system

    # Bar spacing > 6 mm

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    $$#Mechanical Wastewater Treatment

    HUBER Belt Screen EscaMax

    # High separation efficiency

    due to its two-dimensional

    perforated screening elements

    # Compact design

    # Easy-to-retrofit into existing

    channels

    # Ideally suited for deepchannels with high water

    levels

    # Perforation > 2 mm

    HUBER Belt Screen EscaMax versatile inletscreen

    # Treatment of dry weather

    and average flow by the main

    screen

    # Activation of the bypass

    screen at a predetermined

    high flow level

    # Reduced settling processes

    due to optimised flow

    conditions

    # Specifically suited for sea and

    river outfall applications

    Combination of different screening systems

    for optimised treatment of large volumes ofwastewater

    Screening of large volumes of wastewater SGAM

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    ROTAMATFine Screen Ro 1

    $$#Mechanical Wastewater Treatment

    # Screenings removal, transport,

    washing, dewatering and

    compaction

    # With integrated screenings

    press

    # With integrated screenings

    washing system (IRGA)

    # Enforced cleaning by the

    action of a rotating rake

    # Bar spacing > 6 mm

    ROTAMATFine Screen Ro 1 for installation ina channel or container

    # Screenings removal, transport,

    washing, dewatering and

    compaction

    # With integrated screenings

    press

    # With integrated screenings

    washing system (IRGA)

    # Bar spacing:

    Wedge wire basket

    (0.5 6 mm)

    Perforated plate basket

    (2 6 mm) ROTAMATWedge Section Screen Ro 2

    Maximum possible screen basket diameter: 3 m

    ROTAMATWedge Section Screen Ro 2

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    $$#Mechanical Wastewater Treatment

    # Cost-efficient screenings

    removal and transport

    # High separation efficiency

    # Easy-to-retrofit into existing

    channels without the need to

    modify the channel

    # Optional pivotingarrangement for maintenance

    purposes

    # Slot width: 3 / 6 mm

    STEP SCREENFlexible SSF the original

    # For high discharge heights

    and deep channels

    # Space-saving installation with

    an installation angle of 75

    # For high throughputs

    # Optional pivoting

    arrangement for maintenance

    purposes

    # Slot width: 3 / 6 mm

    STEP SCREENVertical SSV the next step

    STEP SCREENFlexible SSF

    STEP SCREENVertical SSV

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    ROTAMATMicro Strainer Ro 9

    $$#Mechanical Wastewater Treatment

    # Screenings removal, transport,

    washing, dewatering and

    compaction

    # With integrated screenings

    press

    # With integrated screenings

    washing system (IRGA)# XL-version with an extended

    screen basket for a higher

    throughput

    # Economy version Ro 9Ec

    # Bar spacing 0.5 6 mm

    # Perforation 3 6 mm

    ROTAMATMicro Strainer Ro 9 the cost-efficient solution for small works

    # Screenings removal, transport,

    washing, dewatering and

    compaction

    # With integrated screenings

    press

    # Ideal for pump feed due to its

    compact design

    # Bar spacing 3 6 mm

    ROTAMATDrum Screen Ro 13

    ROTAMATDrum Screen Ro 13

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    $$#Mechanical Wastewater Treatment

    ROTAMATSludge Acceptance Plant Ro 3

    # Mechanical treatment of

    septic sludge with ROTAMAT

    Fine Screen Ro 1 or

    ROTAMATMicro Strainer

    Ro 9

    # With integrated screenings

    press

    # With integrated screenings

    washing system (IRGA)

    # Optional as a complete plant

    Ro 3.3 with integrated grit

    trapROTAMATSludge Acceptance Plant Ro 3 a worldwide well-proven solution

    ROTAMATScrew Conveyor Ro 8 / Ro 8t

    # Screw conveyors with

    customised design and

    manufacture

    # Available as a closed pipe

    conveyor (Ro 8) or screw

    trough conveyor (Ro 8t)

    ROTAMATScrew Conveyor Ro 8 / Ro 8t,

    applicable for any type of screenings transport

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    ROTAMATMembrane Screen RoMem

    $$#Mechanical Wastewater Treatment

    ROTAMATMembrane Screen size 1400 with1 mm mesh size

    # For a fine, specified separation

    size

    # For removal of hairs, fibres

    and fine suspended material

    # Reduction of COD/BODin river and sea outfall

    applications

    # Increased performance with

    precipitation and flocculation

    # Mesh size 0.2 1.0 mm

    # Perforation up to 6 mmROTAMATRotary Drum Screen RoMesh for

    0.2 to 1.0 mm mesh size

    ROTAMATRotary Drum Screen RoMesh

    # For removal of fibrous

    material and hairs

    # Increased operational stability

    of membrane bioreactors

    # Ideal for installation into

    existing channels

    # Screening, (washing ifrequired), compaction and

    transport of screenings in one

    unit

    # Mesh size 0.5 1.0 mm

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    $$#Mechanical Wastewater Treatment

    ROTAMATPipestrainer

    # Pressure filtration of small

    municipal and industrial

    wastewater flows of

    up to 5 l/s

    # Designed for installation into

    pressure lines

    #

    Small space requirements# No wash water required due

    to mechanical screen surface

    cleaning

    # Bar spacing from 0.2 to 1 mm,

    or 3.0 mm perforationROTAMATPipestrainer for wastewater flowsup to 5 l/s

    # Disc filter for micro screening

    of fine suspended material

    prior to discharge into the

    receiving water course

    # Ideal for screening of residues

    from secondary clarification

    tanks and for river and sea

    outfall applications

    # Low headloss

    # Reduced wastewater costs

    # Throughput capacity of up to

    1500 m3/h, mesh size 10 m

    or bigger

    RoDisc Micro Screen

    RoDisc Micro Screen

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    $$#Screenings Treatment

    Screenings are normally producedby screens in waste treatment

    plants (wastewater treatment

    plants, pumping stations, etc.) and

    predominantly consist of material

    similar to domestic waste, faeces,

    paper and mineral materials.

    The screenings volume produced is

    dependent upon the separation sizeof the screen, the sewer system and

    the preceding pumping stations. The

    water content of municipal screenings

    varies between 75% and 90%,

    depending upon the type of screen

    used whilst the organics contained

    within the screenings amount on

    average to approx. 90 % of the dry

    residue [DR]. Due to the very highwater content, the very heterogenous

    composition and unanesthetic

    appearance screenings must be

    pretreated prior to disposal. The best

    pretreatment systems are screenings

    wash presses that wash out faeces and

    suspended organic material through

    addition of wash water and mechanical

    energy.

    As a result, a BOD5load increase of

    up to 6 % at the inlet to the biological

    treatment stage can be expected. After

    washing, the screenings are compacted

    to achieve a significant reduction of

    the water content within the washed

    screenings and due to the washout of

    faeces screenings dewatering is oftensignificantly improved. Dependent

    upon the selected washing process

    and press type a weight and volumereduction of up to 80 % can be

    achieved.

    The weight reduction reduces the

    screenings disposal volume and has

    thus a direct impact on screenings

    disposal costs.

    Unwashed screenings

    Washed screenings

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    Integrated screenings washing system (IRGA)

    $$#Screenings Treatment

    # Suitable for integration into

    any type of ROTAMATscreen

    # Increased dewatering

    efficiency of the ROTAMAT

    screen to 40 % DR

    # Easy to retrofit

    # High efficiency

    Screenings Wash Press WAP

    # Screenings Wash Press for any

    application

    # Dewatering efficiency up to

    45 % DR

    # Throughput capacity upto 12 m3/h

    # Completely manufactured in

    stainless steel

    Screenings Wash Press WAP installed after a

    STEP SCREEN

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    Screenings Wash Press WAP/HP

    $$#Screenings Treatment

    # With automatically controlled

    conical high pressure unit

    # Dewatering performance up

    to 55 % DR

    # Robust construction

    # Minimised wear due to the

    use of wear-resistant materials

    The optimal pressure ensures continuously highDR contents

    Screenings Wash Press WAP/SL for high

    cleanliness of screenings

    # Within the wash zone the

    screenings are exposed to a

    very turbulent wash water

    flow.

    # High degree of cleaning of

    screenings

    # Also suitable for launder

    channel feed

    # Dewatering performance up

    to 50 % DR

    Screenings Wash Press WAP/SL

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    Screenings Wash Press WAP/SL/HP

    $$#Screenings Treatment

    # Screenings wash press with

    a very turbulent wash water

    flow and automatically

    controlled conical high

    pressure unit

    # Dewatering performance up

    to 60 % DR

    # Weight reduction up to 85 %

    # Increase of the thermal value

    of screenings

    # Hygienic, odour-free

    screenings

    # Proportional lime dosage

    # Safe handling

    # Dewatering performance upto 55 % DR

    Screenings disinfection

    Optimal cleanliness and dewatering ofscreenings in one unit

    1.

    screenings

    washing

    2.

    screenings

    dewatering with

    pressure

    3.screenings

    loosening

    4.

    lime dosing

    5.

    lime mixing

    6.

    screenings

    storage

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    $$#Grit Separation

    For the reason of operating reliabilityof wastewater treatment plants it is

    necessary to separate the grit trans-

    ported with the wastewater and other

    mineral materials (approx. 60 l / 1000

    m3 of wastewater) from the digestible

    organic material.

    Grit separation from wastewater can

    prevent operational problems, such asgrit sedimentation (in aeration tanks

    and digestors), increased wear of

    equipment (pumps or stirrers), blocka-

    ges (hoppers or pipelines) along with

    wear reduction of mechanical equip-

    ment (e.g. a centrifuge, etc.).

    The aim for the system is to separate

    as much as possible of the grit and

    inorganic material up to 0.20 mm grain

    diameter whilst at the same time sepa-

    rate the mineral and organic particles

    within the grit trap.

    The grit separating systems utilised

    today are divided into longitudinal

    grit traps, circular grit traps and vor-

    tex grit traps, dependent upon their

    design and process layout, and eachwill separate the grit either by gravity

    (longitudinal grit traps) or centrifugal

    force (circular and vortex grit traps). For

    longitudinal grit removal scrapers or

    screw conveyors are frequently utilised

    with solids removal in the subsequent

    course of the process by a pump, grit

    classifier or integrated grit classifying

    screw.

    Due to the significant organics contentwithin the classified grit longitudinal

    grit traps they are today additionally

    aerated to at least partly avoid the

    settling of organic material within

    the grit trap and will cause floating

    material (grease) to rise to the surface.

    According to Kalbskopf, aerated grit

    traps are generally laid out on the basis

    of the residence time of wastewater

    within the grit trap. However, even

    aerated grit traps are unable to ensure

    reliable separation of grit from orga-

    nics and this can only be achieved and

    guaranteed by well performing grit

    washing plants.

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    ROTAMATComplete Plant Ro 5

    $$#Grit Separation

    # 0.5 10 mm screening plant

    # Longitudinal grit trap for a

    separation efficiency of

    90 % / 0.20 mm

    # With aeration and grease trap

    # For flow rates up to 220 l/s

    # Longitudinal grit trap as an

    option

    # Cross flow lamella separator

    as an option

    Complete mechanical wastewater treatment inone unit

    ROTAMATComplete Plant Ro 5HD

    # Well-proven mechanical

    preliminary treatment

    components

    # High grit removal efficiency

    # With aeration and separategrit trap

    # Compact, space-saving unit

    # For flow rates up to 160 l/s

    ROTAMATComplete Plant Ro 5HD with

    Hydro Duct

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    # Cost-efficient screenings and

    grit removal with a compact,

    space-saving unit

    # For wastewater treatment

    plants up to 500 PE (or flow

    rates up to 5 l/s)

    # Completely enclosed, odour-

    free plant

    ROTAMATMini Complete Plant MiniCop

    $$#Grit Separation

    # Wastewater fine screening,

    screenings treatment, grit

    removal and grit classification

    in one unit

    # Compact, space-saving unit

    # Complete odour containment

    # Maximum throughput: 25 l/s

    Complete mechanical preliminary treatmentunit for small wastewater treatment plants

    COANDA Complete Plant Ro 5C

    ROTAMATMini Complete Plant MiniCop

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    $$#Grit Separation

    ROTAMATCircular Grit Trap HRSF

    # Available as a prefabricated

    tank or in concrete tank

    design

    # High separation efficiency

    through rotation/agitation of

    the wastewater

    #

    Small space requirement# Optional grease removal

    # For flow rates up to 140 l/s

    ROTAMATCircular Grit Trap HRSF in operation

    # Concrete Tank design

    # High separation efficiency

    through rotation/agitation of

    the wastewater

    # Small space requirement

    # For flow rates up to 3000 l/s

    System drawing of a ROTAMATCircular Grit

    Trap VORMAX

    ROTAMATCircular Grit Trap VORMAX

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    Grit and mineral material fromwastewater treatment plants or sewer

    and road cleaning is very variable

    and can either be more or less

    contaminated with organic particles

    or other foreign matter similar to

    domestic waste. Such contamination

    within the heterogeneous mixture

    results in a relatively low dry substance

    content [DR], ranging between 40 %

    and 70 %, and in a relatively high loss

    on ignition [GV] in the range of 10-80

    %. The purpose of a well performing

    grit treatment system is removal of

    grit up to 0.20 mm grain size and

    subsequent separation of the valuable

    recyclable grit and mineral fraction

    from the contamination material. Theend product of grit treatment should

    be regarded as a valuable product with

    a low loss on ignition (< 3 %) and a

    high DR (> 90 %). Grit treatment thus

    reduces both the disposal costs whilstproviding a secondary raw material as

    a by product which can be reused and

    recycled.

    As the composition of the polluted

    grit to be treated can be vary greatly,

    depending on its source of production,

    the decision on which is the best suited

    treatment system is the deciding factorat the concept planning of a treatment

    plant.

    Treatment of grit from

    wastewater treatment plants

    If the grit to be treated is material from

    the grit trap of a wastewater treatmentplant, the best worldwide proven

    solution is the HUBER Grit Washing

    Plant. The HUBER Grit Washing Plant

    ensures that the organics within the

    grit are washed out to such a degree

    that the treated grit has a loss on

    ignition of below 3 %, which allows

    low-cost grit disposal or direct reuse of

    the resultant grit.

    Many countries meanwhile also

    have legislation in place that defines

    the requirements for washed grit.

    In practice however, not only the

    effective separation of organic and

    mineral material is decisive, but also

    the retention of fine grit. The HUBER

    Grit Washing Plant takes this fact into

    account.

    $$#Grit Treatment

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    Treatment of grit from sewers

    and road refuse

    Grit from sewers or road pits or

    road refuse requires individuallydesigned grit treatment systems.

    Depending on the system capacity,

    input material composition, requested

    material output, etc., the treatment

    technology has to be tailored to meet

    these specific requirements such as

    the following main process steps:

    acceptance tank, foreign matter

    separation, wash drum for pre-classification, grit washing plant for

    separation of organic material.

    If the external supply and treatment

    of the wash water required for grit

    treatment cannot be provided, an

    additional wash water treatment

    unit can be offered as an option for

    recycling of the water necessary.

    On the basis of its wealth of worldwide

    experience in developing complete

    grit treatment systems, HUBER is able

    to provide a tailored concept for each

    individual grit treatment project.

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    COANDA Grit Classifier RoSF 3

    $$#Grit Treatment

    # High separation efficiency

    98 % / 0.20 mm

    # Reduced removal of organics

    due to automatic non

    powered aeration system

    # No bearing shells or guide

    bars# Completely manufactured in

    stainless steel

    COANDA Grit Classifier RoSF 3 installed afterthe grit trap channel

    # High separation efficiency

    95 % / 0.20 mm

    # Organic rate in washed grit

    < 3 % (loss on ignition)

    # Suitable for pre-classified gritfrom sewage treatment plants

    # Throughput up to 3 t/h

    # 1000 reference installations

    # Low disposal costs

    Innovative technology:

    COANDA Grit Washing Plants

    COANDA Grit Washing Plant RoSF 4

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    $$#Grit Treatment

    # Raw material dosing by means

    of a horizontal or vertical

    screw

    # Wear-free coarse material

    removal (10 mm dia.)

    # High mineral yield

    # High solids throughputcapacity

    Grit treatment system for contaminated grit

    # Reliable treatment system for

    small volumes of grit from

    sewer systems or wastewater

    treatment plants

    # Acceptance tank and drum

    filter are one unit

    # Cost-efficient solution

    # Maximum possible separation

    size: 35 mm

    Coarse material separation directly over the grit

    washing plant

    ROTAMATWash Drum RoSF 9

    ROTAMATDrum Separator RoSF 8 VT

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    $$#Sewer System Management and

    Stormwater Treatment

    Advanced combined and stormwater

    treatment in municipal combined

    sewers is a main issue with regard

    to sustainable environmental and

    water protection. The building of

    new wastewater treatment plants

    and the upgrading or refurbishingcontinuous wastewater discharges

    has significantly increased the quality

    of many watercourses. Despite all of

    these efforts however, there are still

    ecological problems caused by floating

    and coarse material discharged from

    the sewer system into the waters in a

    stormwater overflow discharge event

    in both a combined and separatedsewer system. For the purpose of

    specific environmental protection

    appropriate measures will have to

    be taken in future to minimise these

    problems.

    Combined water screening

    HUBER screening plants prevent

    the floating and/or coarse material

    passing from the sewer system into

    watercourses. The HUBER systems

    available differ in their type of

    screening elements (bar screen or

    perforated plate) and their installation

    position that can be on or behind the

    overflow sill. In order to achieve the

    maximum possible solids retention,

    each plant is individually tailored to

    optimally suit site specific hydraulic and

    constructional conditions. With its vast

    reference list HUBER has attained the

    experience and knowledge to handleany application and situation that may

    arise throughout the world.

    Cleaning of stormwater

    retention tanks

    To maintain the performance of

    stormwater storage basins, sewers

    or sewers with storage capacity and

    overflow, it is necessary to provide

    suitable cleaning systems in order for

    these facilities to, eliminate odours

    caused by biogas production and

    prevent biological activity of the mainly

    organic substances in the sediment of

    the sewer or tank bottom which could

    become an increasing health risk.The most efficient, reliable and cost-

    effective cleaning method available

    is sewer flushing. The HUBER Tipping

    Buckets SK with their mature design

    have over the years been well proven

    for their efficiency in the cleaning of

    storage tanks.

    Equipment and system solutions for application in combined andseparated sewer systems

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    Sewer flushing system

    An innovative sewer flushing system

    with patented gates has beendeveloped for sewers, and sewers

    with storage capacity and overflow.

    This system includes for the option

    for sewer network control and sewer

    storage capacity activation.

    Constant design retention level

    Another main product line available

    is the economical and intelligent

    HUBER system solutions for combined

    and stormwater treatment. Against

    the background that investment and

    operating costs need to be reduced, it

    is imperative to utilise unused storage

    potentials through maintenance of

    a constant design retention level

    in combination with a screen. In

    addition to the high economic benefit

    achieved by reduced investment

    costs for storage structures the

    environmental burden can significantly

    be minimised by using a screening

    plant whilst the operational behaviour

    of storage structures is also gaining

    in importance. Measuring devices

    are therefore required at overflow

    sills for accurate measurement of the

    screened combined water overflow.The combination of measuring

    equipment with a screening plant had

    been previously impossible but is now

    no longer a problem with the Huber

    system available which is a favourably

    priced and efficient solution for any

    application.

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    $$#Sewer System Management and

    Stormwater Treatment

    ROTAMATStorm Screen for stormwater discharges RoK 1

    # Automatically cleaned

    screens for storm-water tanks

    overflow and storm-water

    channels

    # High solids retention by

    means of two-dimensional

    screening

    # Low headloss

    # Problem-free retrofitting into

    existing structures

    # Standard perforation 6 mm

    ROTAMATStorm Screen RoK 1 installedbehind an overflow sill

    # Automatically cleaned screens

    for storm-water tanks with

    overflow and storm-water

    channels

    # Possibility to completely

    submerge the screen

    # Retention of all screenings on

    the foul water side

    # The perfect solution for

    discharges with limited

    upstream head requirements

    # Standard perforation 6 mm ROTAMATStorm Screen RoK 2 installed

    in front of an overflow sill

    ROTAMATStorm Screen for stormwater discharges RoK 2

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    HUBER High Performance Flow Screen HSW

    $$#Sewer System Management and

    Stormwater Treatment

    # Horizontal bar screen with the

    well-proven 4 mm bar spacing

    # Reliable retention of floating

    and coarse material

    # Automatically controlled

    screen surface cleaning

    through optimised cleaningtines

    # Integrated screening chamber

    with innovative automatic

    flushing gates

    Horizontal Flow Screen for screening on the sillof the structure

    # Compact vertical screening,

    lifting and compaction within

    a single unit

    # Prevention of potential

    blockages in headworks and

    pumping stations

    # Ideal for deep pump wells

    # Integrated bottom step to

    prevent sedimentation

    # Standard perforation 6 mm

    Optional outdoor installation with frost

    protection

    ROTAMATScreen for pumping stations RoK 4

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    $$#Sewer System Management and

    Stormwater Treatment

    # Low-cost, efficient tank

    cleaning system

    # Well-proven, reliable cleaning

    system

    # Prevention of putrefaction

    and odour nuisance

    # Powerful, long flushes due tothe optimised trough shape

    Reliable tank cleaning by means of the well-proven flushing system

    HUBER Tipping Buckets SK

    HUBER Sewer Flushing System for sewers and sewers with storage

    Cleaning of sewers and sewers with storage

    capacity and overflow

    capacity and overflow

    # Allows cleaning of very long

    sewers

    # Innovative gate sealing

    without frame and step of

    invert

    # Self-cleaning flap gate

    # Utilisation of unused storage

    capacity

    # Optional sewer network

    management

    # Applicable for any sewer

    profile

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    # Improved protection of

    receiving water courses due

    to the utilisation of sewer

    storage capacities with pre-

    screening

    # Reduced discharge volumes

    and frequency

    # Reduced building costs due

    to the utilisation of unused

    storage capacity

    # Prevention of back-flooding

    into the sewer networkHUBER screening plants with a combined

    storage element

    HUBER system solutions

    $$#Sewer System Management and

    Stormwater Treatment

    HUBER system solutions

    Discharge volume measurement with

    ROTAMAT

    Storm Screen RoK 2 and gaugingweir

    # Discharge volume

    measurement with pre-

    screening

    # Measurement of specified

    parameters of discharge

    events

    # Verification and monitoring of

    discharge volumes with regard

    to wastewater discharge fees

    # Co-ordination of information

    regarding servicing, operation

    and maintenance of overflow

    structures

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    $$#Sludge Treatment

    The main waste within a municipalwastewater treatment plant is the

    sewage sludge that is produced by

    mechanical, biological and chemical

    wastewater treatment. The sewage

    sludge volume produced is dependent

    upon the treatment systems utilised

    and on how many households are

    connected to the treatment plant.

    This figure will differ dependent uponthe country and even the difference

    between urban and rural areas.

    The amount of sludge produced

    further depends upon the composition

    of the wastewater to be treated and

    the applicable treatment systems and

    of course their performance.

    It can be assessed at approx. 20 45 kg DS per year, according to the

    individual country.

    There are several sludge properties that

    are significant for the sludge treatment

    costs. The water content plays an

    important role as it determines the

    sludge quality and thus the applicable

    transport facilities required and

    associated disposal costs along withthe dry residue which varies depending

    upon the type of sludge and the sludge

    treatment method applicable.

    The chemical composition of the

    sludge is also dependent upon the

    wastewater quality and treatment

    method. Of particular importance is

    the heavy metal content as this will be

    a limiting factor for land application ofsludge or recultivation.

    Recently it has been noted that thisparticular disposal route is not as safe

    as has been assumed for a long time

    as even when disposal to agricultural

    land takes place within the limits of

    legislation, accumulation of heavy

    metals in the soil can be observed.

    Additionally, sewage sludge contains

    various endocrine substances, the

    content of which differs and the

    spreading of sewage sludge onto

    agricultural land will lead to serious

    loading of the soil with endocrine

    substances.

    As the new legislation requires a

    maximum loss on ignition of 5%

    for residues, landfilling of untreated

    sewage sludge will no longer bepossible. If the dried sewage sludge

    is incinerated, then the produced

    energy can be utilised for drying, as

    the thermal value of the dried sludge is

    similar to that of brown coal.

    HUBER offers the complete program of

    sludge treatment equipment.

    Screening Thickening

    Dewatering Drying

    From One Source

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    $$#Sludge Treatment

    Sludge screening

    # Coarse material separator

    # Sludge screen

    Sludge thickening

    # Disc thickener

    # Gravity belt thickener

    #

    Screw thickener

    Sludge dewatering

    # Screw press

    # Belt filter press

    # Centrifuge

    Sludge drying

    # Solar dryer

    # Belt dryer

    Advanced sludge treatment Sludge reuse

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    $$#Sludge Treatment

    Sludge screening

    STRAINPRESS

    Sludgecleaner

    Continuous pressurised coarse

    material separation

    # No wash water needed

    # Suited for pressure fed

    pipelines# With a pneumatic pressure

    regulating cone

    # Completely manufactured in

    stainless steel

    # 3 5 mm perforationSTRAINPRESS- Continuous pressurised coarsematerial separation

    ROTAMATSludge

    Screening Plant Ro 3.1

    Sludge screening with fine screen

    # Low headloss

    # High separation efficiency

    # Robust construction

    # Optional outdoor installation

    # Large reference list

    # 6 mm bar spacing

    Outdoor installation of a ROTAMATSludge

    Screening Plant

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    $$#Sludge Treatment

    Sludge thickening

    ROTAMATDisc Thickener

    RoS 2S

    Mechanical sludge thickening

    for small to medium wastewater

    treatment plants

    # Totally enclosed design

    # High separation efficiency# Ease of operation

    # Robust stainless steel filter

    # Low wash water consumption

    # Variable output thickening

    settingROTAMATDisc Thickener RoS 2S theintelligent solution for smaller wastewatertreatment plants

    HUBER Drainbelt DB

    Mechanical sludge thickening for

    all wastewater treatment plants

    # Low polymer consumption

    # Hinged ploughs

    # Variable belt speed

    # Low energy consumption

    HUBER Drainbelt a worldwide well-proven

    thickener

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    Advanced sludge treatment

    $$#Sludge Treatment

    ROTAMATRotary Drum

    Screen RoS 2

    Mechanical sludge thickening for

    all wastewater treatment plants

    # Totally enclosed design to

    eliminate odour problems

    # Completely manufactured ofstainless steel

    # Low wash water consumption

    # Fully automatic operation

    # Low specific energy

    consumptionROTAMATRotary Drum Screen compactdesign, high throughput

    HUBER Sludge Squeezer HSS

    Two-stage sludge homogenisation

    # Minimised dry organic residue

    # Increased gas yield

    # Improved hydrolysis / capacity

    of sewage sludge processing

    # Increased process stability

    # Also suitable for bulking

    sludge and scum control

    Optimised sludge digestion

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    The HUBER Bogenpress can be combined with

    the Drainbelt for increased throughputs

    Sludge dewatering

    $$#Sludge Treatment

    ROTAMATCentrifuge RoD

    High-performance centrifuge for

    dewatering of all sludges

    # Long clarification zone due to

    its rotating feed pipe

    # Hydraulic drive, or optional

    ForwardDrive (high efficiency)# Polymer concrete base frame

    # High vibration absorption

    ROTAMATCentrifuge modern design,reduced maintenance

    HUBER Bogenpress BS

    Belt filter press

    # Encapsulated, odour-free

    plant

    # High cost efficiency (lowpolymer and energy

    consumption)

    # High dewatering efficiency

    (through an extended pre-

    dewatering zone)

    # Sizes available up to 3 m

    width

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    Sludge drying

    $$#Sludge Treatment

    KULTSolar Active Dryer

    SRT

    Drying instead of storing

    # Fully automatic season-

    independent drying with

    reliabe 90 % final DR

    # No vehicle loader required for

    feeding or removal

    # Utilises regenerative energy

    resources, such as heat from

    WWTP effluents, wood chip

    burners, exhaust heat from

    block heat and power plantsKULTSRT innovative drying with minimum

    space requirements

    ROTAMATScrew Press

    RoS 3 / RoS 3-Q

    Screw press for small to medium

    wastewater treatment plants

    # The end product is a dry

    sludge cake.

    # Low energy consumption# Simple operation

    # Compact, enclosed design

    # Optional mobile units

    ROTAMATScrew Press our response to newlegislation

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    KULTLow TemperatureDryer BT

    KULTMedium TemperatureDryer BT

    Belt dryer for large wastewatertreatment plants

    # Low specific energyconsumption

    # Full or optional partial drying# Optimal combination of

    available forms of energy(exhaust heat, heat pump,etc.)

    # Reliable DR results throughintelligent control

    # Numerous referenceinstallations

    # High economic efficiency

    The KULTBT dryer combines available formsof energy

    HUBER Sewage Sludge

    Reuse Concept HKV

    Decentralised sludge reuse

    concept for production of thermal

    and electrical energy

    # Independent sewage sludge

    disposal cost control

    # Reuse of other municipal

    waste (screenings,

    horticultural waste, etc.)

    # Reuse of heat and power (e.g.

    for sewage sludge drying)

    Sludge utilisation

    $$#Sludge Treatment

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    Equipment for preliminary and secondary sedimentation tanks

    $$#Sedimentation

    The inflow into the preliminary

    clarification tankconsists of a

    sludge/water mixture from the grit trap

    where the coarse sludge and mineral

    solids are separated by sedimentation.

    As the wastewater treatment plant

    effluent quality must meet the Waste

    Water Levy Act standards, as much as

    possible of the floating and settling

    material should be removed from

    the activated sludge / water mixture

    within the secondary clarification

    tank.Peak load operation is critical

    under storm conditions and when the

    sludge blanket and hydraulic load are

    increasing, there is a risk of sludgeoverflow. This most certainly must be

    prevented from occurring as the limit

    values will be significantly exceeded

    in most cases. The inlet conditions

    of a secondary sedimentation tank

    will be and are a determining factor

    for the internal tank conditions.

    An inappropriate inlet design

    may compound and cause several

    problems that can lead to high inlet

    concentrations of filterable material.

    A major problem is the high inflow

    energy within centrally fed tanks that

    leads to high internal flows and thus to

    a reduced separation efficiency of the

    entire tank. It is possible to significantly

    reduce the inflow energy by feeding

    the tank over the full circumference

    as with the HUBER Opti-Flow

    System.A further determining

    factor for optimal sedimentation tank

    operation will be the uniform clarified

    water discharge over the full tank

    circumference, which can be achieved

    with the HUBER Submerged Pipe.

    A channel is theoretically only able to

    meet these requirements as it implies

    that no installation inaccuracies occur,

    the water level remains unaffected

    by wind and no structure subsidence

    takes place. However the discharge of

    clarified water will have already been

    influenced even if only one of theseconditions are not met. This means

    that in a channel, in worst case, the

    clarified water will be discharged only

    on one side whilst no water at all is

    discharged on the opposite side. If this

    occurs, the flow in the circular tank

    will be impaired to such a degree that

    only approx. 50 % of the tank volumeis still being utilised for sedimentation,

    leading to hydraulic tank overload

    which will in turn result in a poor

    settling performance and sludge

    overflow.

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    The HUBER Scum Scraperconsists

    in a floating paddle mechanism that

    will guarantee enforced removal of any

    floating material from the tank surface.

    As the system is floating, it will be self-

    adjusting to suit varying water levels.

    The complete system can be retrofitted

    into new or existing circular tanks with

    scraper bridges, or into rectangular

    tanks.

    Clarified water discharge for

    SBR systems

    The SBR system is a variant of

    the activated-sludge process. The

    difference when compared to a

    conventional wastewater treatment

    plant is that the individual process

    steps take place in a chronological

    order rather than a cascade. This

    means that all of the steps required of

    a SBR system for biological wastewater

    treatment takes place one after

    the other within one tank and not

    separate reaction tanks (preliminary

    clarifier, preceding denitrification tank,

    aeration tank, secondary clarifier). A

    basic installation group is therefore

    the clarified water discharge that will

    discharge the clear water into the

    receiving watercourse both during and

    after the sedimentation process. The

    HUBER SBR Clarified Water Discharge

    KWA is a floating construction whichoptimally utilises sedimentation time.

    Premature sludge draw-off reliability is

    assured through weighted valves at all

    times during the SBR process.

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    # Regular discharge over the full

    tank circumference/width

    # Allows scum collection over

    outlet system level

    # No scum boards required

    # Minimised algae growth due

    to the submersion height

    HUBER Submerged Pipe for optimal dischargebelow the water surface

    # Submerged pipe with

    predefined hydraulic losses

    # Optimised baffle plate design

    for accurate direction of the

    wastewater mixture

    # Uniform, low-energy feed

    # Deposition is prevented by

    the graded submerged pipe

    design.

    Opti-Flow inlet system for circular settlement

    tanks with flows from outside to inside

    $$#Sedimentation

    HUBER Submerged Pipe

    HUBER Opti-Flow System

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    # Floating scum board

    # Automatically adjusts to

    varying water levels

    # Independently consistent

    # The adjustable rotary speed

    allows adjustment to suit

    varying scum volumes

    # Low investment costs due to

    its modular design

    Rotating HUBER Scum Scraper

    # Utilisation of sedimentation

    time for discharge of clarified

    water

    # Ingress of sludge into the

    clarified water discharge is

    prevented during all phases of

    the SBR cycle.

    # Maximum operational

    reliability and safety

    # Wear-resistant sealing and

    joints are not necessary.

    # Optional automated sludge

    blanket detection

    HUBER SBR Clarified Water Discharge installed

    in a circular tank

    $$#Sedimentation

    HUBER Scum Scraper SSR

    HUBER SBR Clarified Water Discharge KWA

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    $$#Filtration

    Sandfiltration

    The CONTIFLOWSandfilter is an

    upflow filter with a filter bed, which

    is being cleaned continuously making

    shutdowns for backwashing of the

    filter bed unnecessary. The feed is

    introduced at the top of the filter

    and flows downward through an

    opening between the feed pipe andairlift housing. The feed is introduced

    into the bed through a series of feed

    radials that are open at the bottom.

    As the influent flows upward through

    the moving sand bed, the solids are

    retained within the filter sand and

    filtrate exits via a weir at the top of the

    filter. Simultaneously, the sand bed,

    along with the accumulated solids, isdrawn downward into the airlift pipe,

    which is located within the centre of

    the filter. The typically used filter bed

    height for municipal applications will

    be 1 metre (2 metres for phosphorus

    removal / denitrification) and

    dependent upon the plant size, the

    filter tank will be of a steel or concrete

    basin design. As the sand falls through

    the washer, which consists of several

    concentric stages, a small amount of

    filtered water passes upward, washing

    away the dirt, while allowing the

    heavier, coarser sand to fall through

    to the bed. By the setting of the reject

    weir at a lower level than the filtrate

    weir, a steady stream of wash water isensured. The continuous reject water

    exits near the top of the filter to enable

    it to exit by gravity. Due to the increase

    in requirements of the effluent quality

    of wastewater treatment plants both

    for direct and indirect discharge the

    operators of municipal and industrial

    plants are forced to implement

    additional treatment steps to ensure

    the required effluent standardsare met. Sandfilters are a solution

    to achieving the desired effluent

    standards within various applications.

    Typical sandfilter applications

    # Tertiary filtration after secondaryclarifiers

    # Phosphorus elimination through

    precipitation filtration

    # Biological denitrification

    # Algae removal

    # Drinking water treatment

    # Process water treatment

    # Industrial wastewater

    # Treatment of exhaust gases from

    power plants

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    # HUBER CONTIFLOW

    Sandfilter for any flow rate

    within industrial or municipal

    applications

    # Reduction in operating and

    investment costs due to its

    continuous operation

    # No external backwashing

    system required

    CONTIFLOWSandfilter CFSF

    Benefits

    # Continuous sand bed cleaning

    # Grit washing with a partial

    filtrate flow

    # The filter serves as a reactorfor

    biological denitrification

    chemical phosphorus

    precipitation

    # Optional concrete tank design

    Filtration

    $$#Filtration

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    Membrane bioreactors with VRMand VUMtechnology

    $$#Membrane Technology

    Bacterial-free water at

    low cost

    The clarification process on municipal

    and industrial plants has been

    associated with large surface area

    requirements, big structures, odour

    containment and poor degradation

    and retention efficiency in case ofvarying loads. This results in a heavy

    environmental burden in the form

    of emissions and impairment of

    nature, high building costs and plant

    maintenance costs. The utilisation

    of VRMand VUMsystems allow

    for size reduction of the structures

    required by a factor of up to 70 % and

    will even increase the performance

    of wastewater treatment plants.

    Associated problems with scum or

    sludge overflow that occur with normal

    sedimentation systems are no longer

    an issue with filtration along with

    existing structures being able to be

    retrofitted and the associated capacity

    increased. Existing preliminary and

    secondary clarification tanks can be

    modified and further used as storageand stand-by tanks.

    Furthermore, the effluent quality of

    such plants complies with all present

    applicable standards and will allow

    direct reuse of the bacteria-free and

    germ-free effluent as service water

    (e.g. for irrigation).

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    Vacuum Upstream MembraneVUM The stationaryultrafiltration system

    The characteristic feature of the VUM

    technology is the VUMmodule

    installed within the bioreactor (aeration

    tank). The VUMmodule consists of

    several vertically arranged stationary

    membrane plates. Each of the

    membranes have the effect of very fine

    filters with 0.04 m pore size through

    which the wastewater is sucked and

    discharged.Air is introduced below the VUM

    module and streams upwards between

    the vertically installed plates. The

    resultant generated upflow removes

    any covering layers that are respectively

    produced by the filtration process and

    prevents the production of further

    covering layers. Membrane bioreactors

    with VUMtechnology allow cost-

    efficient high-performance wastewater

    treatment, and are also utilised within

    the HUBER MembraneClearBox

    systems for small wastewater

    treatment plants.

    VacuumRotationMembraneVRM The rotatingultrafiltration system

    The VRMsystem is presently the onlyavailable membrane system that doesnot use stationary membranes but

    utilise trapezoidal membrane platesinstalled around a stationary hollowshaft with a central cleaning system.

    The advantage of this design is itsvery efficient and flexible cleaning

    concept with only one individualmembrane segment being high-

    intensity cleaned at a time, whichconsequently demands only a

    minimum energy requirement. Thereduced space requirements achievedby the rotation-symmetrical installationof the membrane plates is unequalled

    by other plate systems. A furtheradvantage with the VRMsystem isthat a 3 mm screen is sufficient as a

    preliminary treatment stage.The VRMsystem combines the

    advantages of plate systems(preliminary clarification, no problemswith tressing, efficient membranecleaning) with the advantages of

    hollow fibre systems (with reducedspace requirements) and as suchprovides a solution that is ideally suited

    for a vast range of applications.

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    VRMBioreactor

    $$#Membrane Technology

    VRMPlant treating industrial wastewater

    # HUBER VRMBioreactor

    # Energy-efficient membrane

    cleaning by filter drum

    rotation

    # High-intensity cleaning of a

    single membrane segment at

    a time# Ultrafiltration membranes

    for retention of bacteria and

    germs

    # Reuse of the effluent as

    service water

    # Effluent reuse for irrigation of

    parks and gardens

    # Combined use of highly

    resistant membranes and high

    quality stainless steel

    # Easy and quick detection and

    replacement of individual

    defective modules

    # No regular chemical

    purification required

    # Bathing water standards are

    achieved

    VRMPlant installed in a tank

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    VUMMembrane Filtration

    $$#Membrane Technology

    # Stationary membrane plates

    # Resistance to entwining of

    materials

    # Modular design

    # Ultrafiltration membranes for

    a germ-free effluent

    # No chemical purification

    required

    # No backwashing required

    # Easy installation and operation

    # Reliable technology

    # Idea for small wastewater

    treatment plant applicationsof 4 to 150 PE

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    $$#Decentralised Wastewater Treatment

    Responsible, modern wastewatertreatment should be aimed at the pro-

    tection of waters and the environment.

    For this reason, domestic wastewater is

    collected in sewer systems and treated

    within a central wastewater treatment

    plant. Frequently, however, it can be

    ecologically and economically more

    sensible to treat the wastewater as

    close to its source as possible and wit-hout the need to build extensive and

    often expensive sewer systems. The

    wastewater problem is as we know

    a worldwide problem and solutions

    frequently need to be easy and quick

    to implement, affordable and adap-

    table to allow for tailored solutions to

    be offered. Decentralised wastewater

    treatment systems are therefore a

    requirement and necessity in mostcases. When Huber started with its

    new products for decentralised waste-

    water treatment, Huber focused on the

    innovative membrane technology and

    developed two different systems, the

    VRMand VUM. In both systems the

    membrane reliably retains all solids and

    bacteria along with virtually all germs

    as the diameter of the membrane ope-nings is 1,500 times smaller than the

    diameter of a human hair. This there-

    fore allows for the treated water to be

    reused with the filtrate meeting the EU

    standards for bathing water quality.

    For decentralised wastewater treat-

    ment in rural areas HUBER have

    developed the HUBER MembraneCle-

    arBox, which is a small wastewater

    treatment plant for up to 150 PE. The

    plant can be supplied as a retrofit or

    as an installation set that can easily be

    installed into both existing tanks or

    newly built multi-compartment septic

    tanks, or indeed any other technically

    suitable tank. The addition of the opti-

    onal Huber Teleservice minimises the

    requirement for operator attendance.

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    MembraneClearBox

    $$#Decentralised Wastewater Treatment

    # Retrofit kit for individual

    houses

    # Able to be installed into

    existing multi-compartment

    septic tanks

    # No associated building costs

    for sewer# Bacteria-free, germ-free

    effluent

    # Reuse of the treated

    wastewater for toilet flushing

    and irrigation purposes

    # Applicable in sensitive areas

    (e.g. karst)

    # HUBER BioMem- the

    complete wastewater

    treatment plant for flow rates

    up to 80 m3/d

    # Option available as a mobile

    unit due to the 20 design

    # Ideal for hotels, residential

    estates and smaller

    municipalities

    HUBER BioMem

    Installation exampleHotel project

    service water

    Irrigation

    Irrigation

    Discharge

    excess sludge, e.g.drying beds

    screeningsand grit

    Waste-water

    screeningsand grit

    HUBER BioMemComplete Plant

    Infiltra-tion

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    DeSa/R

    $$#Advanced Wastewater Treatment

    DeSa/R, the abbreviation for

    Decentralised Sanitation and Reuse,

    relates to the methods of decentralised

    wastewater treatment that provide

    for the reuse of wastewater treated in

    a technical processes and/or reuse of

    the nutrients contained within such

    wastewater. With the continuouspopulation growth, huge amounts

    of water required for the irrigation

    of agricultural land and finally the

    use of common fertiliser resources

    all demand a new way of thinking

    in terms of wastewater treatment.

    Exceptional circumstances required

    special solutions that have to be not

    only affordable but easy and quickto implement. After disinfection,

    mechanically treated nutrient-

    containing wastewater can for example

    be utilised for irrigation purposes

    without the need for any preceding

    separation. However, DeSa/R concepts

    frequently start right at the source, as

    already common place within waste

    management, with separate collection

    of the different wastewater flows

    produced in a household. Faeces from

    urine and greywater are separated and

    then collected separately (wastewater

    from wash basins, showers, bathtubs,

    washing machines, etc.) in order to

    provide for the optimal treatment and

    reuse of each individual material flow

    according to its specific characteristics.

    The purpose of such concepts is the

    reuse of water and nutrients to as high

    as possible degree without negative

    effects on the population and the

    environment.

    The future begins with

    ourselves ...

    To be able to assess the acceptance,

    applicability and benefit of such

    new concepts, Huber implemented

    within its own new office building

    special sanitary facilities for approx.

    200 employees with the systemseparating the yellow, brown and

    greywater flows. After intermediate

    storage the separated flows are each

    directed to specific treatment facilities

    where fertiliser, biogas, humus and

    service water are produced. Also

    available are solutions and products

    for the treatment of loaded rainwater

    to enable it to be suitable forgroundwater regeneration.

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    Timer

    Set

    CleanFilter

    Heatsetting

    Cotton

    Synthetics

    A cryli cs

    2 5 -3 54 0 -55 60-7 5

    8 5-1 0 0

    2 5 -3 5 40 -75 60-7 5

    "

    5 0 -8 0 7 0 -10 0 " "

    DRYINGSETTINGS

    1kg 2kg 3kg

    5kg

    Reverse

    Dryer

    yellow water

    faeces

    wash

    water

    yellow water

    1.5 l/day

    brown water

    0.5 l/day

    and40 l/day

    grey water

    100-150 l/day

    rain water

    grey waterfrom

    wash basins,dish washers,

    washingmachine, etc.

    precipitation,drying,adsorption

    mechanical treatmentbiological treatmenthygienisation

    mechanical treatmentbiological treatmenthygienisation

    filtration,adsorption

    fertiliser

    wash/servicewater

    irrigationwater

    ground water enrich-ment

    rain water

    irrigation

    energy

    humus

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    $$#Advanced Wastewater Treatment

    Energy and nutrients recovery from faeces

    Fertiliser production from urine

    # HUBER have developed

    an automated process for

    production of a high quality

    magnesium ammonium

    phosphate fertiliser.

    # HUBER have developed

    an innovative system that

    produces biogas whilst

    eliminating hazardous germs.

    # The fermentation residues

    can then be further treated to

    obtain compost.

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    # The HUBER membrane

    systems convert greywater

    into high quality service water.

    Greywater is value water

    $$#Advanced Wastewater Treatment

    Stormwater becomes groundwater

    HUBER Hydro Filt System with treatment

    chamber and partial drain concrete pipe

    # Adsorption of metallic matter

    by the HUBER Hydro Filt

    System

    # Retention and infiltration with

    minimal space requirements

    # Also applicable for built-up

    urban areas

    # No additional space

    requirement

    # Extremely cost-efficient and

    eco-friendly

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    $$#Drinking Water Treatment

    HUBERs commitment is not limitedto wastewater technology but also

    includes drinking water treatment.

    With its trademark SafeDrinkHuber

    focuses on the small to medium

    decentralised plants (up to 5000 m3/h)

    for surface water treatment or partial

    desalination in arid areas. The plants

    are designed and developed by HUBER

    from engineering to commissioning by

    means of conventional techniques such

    as membrane technology.

    For example within the scope of this

    activity HUBER delivered in 2002 two

    conventional plants into the Sudan.

    The two identical drinking water

    treatment plants were installed in

    the cities of Dongola and Eldebbafor which HUBER engineers had to

    consider specific local conditions that

    were reflected within the selected

    process technology.

    The project demanded the recovery of

    drinking water from the river Nile for

    70,000 people.

    The treated water had to meet theWHO standards and furthermore, a

    simple and reliable technology was an

    absolute prerequisite for this project

    due to the absence of technicians on

    site.

    The plant was designed for a nominal

    flow of 3500 m3/d and consisted of the

    following process steps:

    1. Coarse preliminary treatmentwithin the inlet channel;

    At the same time coagulant agents

    are added in order to allow colloids

    (such as humic or particulate

    material) to settle.

    2. The settleable material (flocks

    and solids) settle within the

    sedimentation tank. The sludgeproduced is removed by a belt

    scraper and deposited into a sludge

    lagoon.

    3. Solids that do not settle within the

    sedimentation tank are filtered in

    a continuous sandfilter. Owing to

    a fully automatic principle these

    fast filters can be operated withminimum maintenance. The wash

    water is then returned into the

    above mentioned sludge lagoon.

    4. The filtrate passes a chlorine

    gas disinfection stage where

    microorganisms and pathogenic

    germs are eliminated.

    5. The treated water is stored within astorage tank.

    6. The water is then pumped into

    an elevated reservoir in order to

    achieve the operating pressure

    necessary.

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    The plant has been additionally

    equipped with HUBER stainless steel

    products, such as manhole covers,

    pipelines, doors, railings.

    Benefits

    # Surface water treatment

    # Reliable operation due to a

    technologically simple system

    # Minimum maintenance

    requirements

    # WHO standards are met.

    # Solution for decentralised water

    supply

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    $$#Solutions for Industrial Wastewater

    There is no mountain too high for usto climb: We consider wastewater,

    process water and sludge generated

    by the various industrial sectors as

    opportunities for successful HUBER

    Technology installations. So what is

    industrial wastewater? It is any sort

    of wastewater that is produced in the

    course of industrial production and

    processing. Cooling water produced in

    the cooling towers of power plants is

    usually discharged into rivers without

    prior treatment (with the result of river

    water warming). Industrial wastewater

    frequently contains difficult to

    decompose organic substances, oils,

    grease, heavy metals, salts, toxins or

    caustic substances. Particularly highloads are contained in wastewater

    from the chemical, textile and food

    industries. The wastewater produced

    requires pre-treatment prior to being

    discharged into public wastewater

    treatment plants. If industrial

    wastewater is to be discharged directlyinto surface waters, multi-stage

    treatment of the water is required.

    It is therefore becoming increasingly

    important for us to be able to offer

    our customers complete solutions.

    Simply supplying chemical, physical

    and biological treatment equipment

    for wastewater and process water

    would not be sufficient if in the end

    the customer is left with an unresolved

    sludge issue.

    Hans Huber AG is one of only a

    handful of suppliers worldwide

    who are able to supply not only the

    equipment for wastewater and process

    water treatment but also sludge

    treatment technology including sludgedrying.

    Our customers will experience the

    professionalism when working with

    their assigned individual HUBER

    specialists, with each able to select

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    from a large variety of different

    treatment technologies choosing

    the most efficient and economic

    solution for each individual customer

    and application. This we feel is of

    great benefit to our customers when

    compared to working with a company

    only able to offer part of the solution.

    Industrial wastewater is different from

    municipal wastewater and individual

    industrial sectors need individual

    solutions. HUBER had always been

    aware of this fact and because of

    this established the special Industrial

    Business Unit.

    This young, dynamic team consistsof specialists responsible for different

    industrial sectors who have gathered

    their specific knowledge and

    experience over the years and will be

    competent partners for our customers.

    It is our pleasure to offer our

    experience to the market and would

    like the oportunity to prove to you how

    we can solve the challenges facing themarket.

    Whenever you need innovative,

    commercial and practicable solutions

    to solve your problem with industrial

    wastewater or sludge, HUBER will be

    your partner worldwide.

    # Problem identification

    # Conceptional design

    # Laboratory analysis

    # Pilot testing and evaluation

    # Engineering

    # Project management

    # Start up

    # Installation and service

    # Process optimisation

    # Technical support

    # Training

    # Trouble shooting

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    $$#Solutions for Industrial Wastewater

    Breweries / beverage

    industry

    # Breweries

    # Malthouses

    # Bore holes and wells

    # Fruit juice production

    Process solutions for

    # Screening

    # Biological sludge treatment

    # Filtration

    # Membrane bioreactor

    HUBER ROTAMATWedge Section ScreensRo 2 with 1 mm bar spacing for fine screeningInstallation example: Veltins, Germany

    Slaughterhouses / meat

    processing slaughtering

    and processing

    # Cattle, pigs, poultry

    # Ready-to-eat products

    Process solutions for

    # Fine screening > 1 mm

    # Coarse screening > 6 mm

    # Dissolved air flotation

    # Filtration

    # Paunch manure press

    # Cattle truck washing

    HUBER Dissolved Air Flotation Plant HDF with

    chemical treatment stage. A complete solutionincluding flotate sludge dewateringInstallation example: Hinwil, Switzerland

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    $$#Solutions for Industrial Wastewater

    Food industry

    # Confectionary industry

    # Delicatessen / salads

    # Bakery products

    Process solutions for

    # Screening

    # Dissolved air flotation

    # Sludge treatment

    # Filtration

    # Biological treatment with

    membranes

    Compact solution: 1 mm flotation plantInstallation example: Ibbenbren, Germany

    Fruit and vegetable

    processing

    # Fruit juice concentrate

    # Canning industry

    # Potato processing

    Process solutions for

    # Screening with grit trap

    # Biological sludge treatment

    # Filtration

    # Biological treatment withmembranes

    Grit settling tank after washing in a vegetable

    processing factory

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    $$#Solutions for Industrial Wastewater

    Fish industry

    # Fish meal production

    # Slaughterhouse and

    processing

    # Deep freezing and packing

    industries

    Process solutions for

    # Screening

    # Dissolved air flotation

    # Sludge treatmentWastewater from salmon processing

    Dairy industry

    # Dairies

    # Cheese dairies

    # Butter production

    # Joghurt production

    Process solutions for

    # Screening

    # Grit/grease trap

    # Dissolved air flotation

    # Flotate sludge treatment

    # Biological sludge treatment

    # Biological treatment with

    membranes

    Wastewater collection tank

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    $$#Solutions for Industrial Wastewater

    Grit treatment

    # Road sweepings

    # Grit from sewer systems

    # Grit from STW

    # Gully waste

    Process solutions for

    # Acceptance stations including

    dosing

    # Coarse material separation

    # Grit classification and washing

    # Complete wash water

    recyclingHUBER Grit Treatment System RoSF 5Installation example: Cridec, Switzerland

    Paper industry

    # Waste paper recycling

    # Pulp mills

    # Wastewater treatment plants

    # Fresh water conditioning

    Process solutions for

    # Coarse material / sedimentseparation

    # Grit separation

    # Sludge / coarse material /sediment treatment

    # Fibre recovery, process water

    treatment# Filtration of suspended

    material

    HUBER ROTAMAT Sludge Dewatering Plant

    RoS 3 size 3Installation example: PPM Obukov, Ukraine

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    $$#Solutions for Industrial Wastewater

    Reference installations inthe fields of

    # Biological waste treatment

    # Total mechanical-biologicalwaste treatment

    # Hazardous waste treatment

    Process solutions for

    # Liquid waste acceptance

    # Foreign matter and gritseparation in biological wastetreatment

    # Fermentation residuethickening and dewatering

    # Process water treatment

    # Wastewater treatment withmembrane bioreactor

    Solids separation with 3 Ro screensInstallation example:St. Miguel, leather industry, Spain

    Landfills

    # Residual waste

    # Hazardous waste

    # Construction waste

    Process solutions for

    # Landfill water treatment

    # Grit treatment

    # Sludge / sediment treatment

    # Sludge drying Infiltration water treatment with Dissolved Air

    Flotation Plant HDF 3Installation example: Geltemband, Germany

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    $$#Solutions for Industrial Wastewater

    Reference installations inthe fields of

    # Pharmaceutical industry

    # Fertiliser production

    # Refineries

    Process solutions for

    # Production sludge treatment# Cooling water treatment

    # Process water treatment

    # Foreign matter separationfrom liquid media

    # Sediment / sludge thickeningand dewatering

    HUBER ROTAMATCentrifuge RoD fortreatment of process wastewater

    Chemical and petrochemical industry

    Reference installations in

    the fields of

    # Gravel production

    # Prefabricated parts production

    # Concrete production

    Process solutions for

    # Grit separation

    # Process water recycling

    # Sludge thickening anddewatering

    # Coarse material separation

    # Screening up to 0.2 mm barspacing

    # Filtration

    HUBER ROTAMATCentrifuge RoD for

    treatment of process wastewaterInstallation example: prefabricated parts factoryMaba, Hungary

    Building industry and building material suppliers

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    $$#Stainless Steel Equipment

    HUBER stainless steel products areregarded as the best solution for water

    and wastewater treatment applications

    municipal and industrial. So, why

    not choose a material that satisfies the

    highest requirements.

    # Unrivalled asset life

    # Maximum corrosion protection

    through acid treatment within apickling bath

    # Standardised products provide ease

    of planning and associated cost

    advantages.

    # High level hygienic conditions

    provide safety for the population

    and the environment.

    It is our goal to offer the highest

    standard products to our customers

    and hence why we feel it necessary

    to utilise correspondingly modern

    technologies for their production.

    Production of the products is

    undertaken by well-trained, highly

    motivated employees working incombination with the most modern

    up to date machinery. To ensure

    continuously high quality for our

    customers, our company pursues

    the philosophy of a high vertical

    integration in production. As our

    company philosophy is to excel in the

    field of manufacture of products in

    stainless steel this has lead us to

    make the decision to standardiseon this material. It should be noted

    that the material requires very

    special equipment for its mechanical

    treatment as well as the expertise and

    know how on how to process the

    stainless steel properly. As potable

    water is our most important resource

    and should be available to all, HUBER

    considers it particularly important to

    offer innovative treatment techniques

    within this field.

    Drinking water must be free of

    pathogenic germs, potable and pure

    and these conditions can only be

    fulfilled where the entire process

    of water recovery, treatment and

    distribution complies with the most upto date standards. Since many plants

    do not now meet these standards

    and are therefore a risk to us and

    our environment, it is all the more

    important to identify and eliminate

    damage, deficiencies and weak points

    as early in the process as possible.

    HUBER have developed treatmentsystems particularly for the water

    supply sector which ensure that the

    resultant drinking water quality is

    hygienically perfect, for example the

    air filter plant. Due to the permanently

    varying water level in drinking water

    reservoirs air is continuously sucked

    in or blown out. In the course of this

    process oxygen, nitrogen and other

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    particles contained in the air will

    pass into the water chamber and the

    resultant organisms like germs, spores,

    pollen or fungi can lead to pollution of

    the drinking water. The air filter plant

    with integrated filters for fine particles

    and suspended matter within the cover

    will remove such organisms from the

    air within the water chamber.

    The HUBER product range includes

    of course additional products

    manufactured in stainless steel that will

    meet the most up to date standards

    for all fields as the material stainless

    steel allows for all possibilities to be

    catered for. Combined with its careful

    and professional pretreatment of

    the stainless steel products they will

    guarantee for an unsurpassed asset lifewith optimal equipment performance.

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    $$#Stainless Steel Equipment

    Manhole equipment

    Technical doors

    HUBER manhole cover

    HUBER entrance door for drinking water

    reservoirs

    # Round, square or rectangular

    stainless steel manhole covers

    # Easy to operate, maintenance-

    free

    # Safety rail systems for any

    application

    # Secure and safe access to our

    most important resource

    # Suitable for any application,

    submersible up to 12 m water

    depth

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    $$#Stainless Steel Equipment

    Pipe line pieces

    Wall entrances

    Perforated feed pipe

    Wall entrance flush with the formwork

    # High quality prefabrication

    within the factory

    # Even the most complicated

    fittings can be manufactured.

    # No deposits or bacterial build

    up due to the smooth and

    hard stainless steel surface

    # Sealing against liquids and

    vermin

    # Retrofitable into pre-tapped

    holes

    # Movable lengthwise

    # Option for direct flanging

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    $$#Stainless Steel Equipment

    Railings, enterings, crossings

    Equipment for sedimentation tanks

    Perfect stainless steel railing

    Optimal equipment for sedimentation tanks

    # Safety devices suitable for all

    applications

    # Tailored to suit any application

    # Maximum corrosion

    protection through pickling

    bath acid treatment

    # For damp rooms andaggressive media

    # For new and existing tanks

    # Corrosion-resistant and

    maintenance-free

    # High efficiency due to

    individually calculable inletand outlet systems

    # Installation and service

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    $$#Stainless Steel Equipment

    Hygiene in Drinking Water Storage Tanks

    Elevated reservoirs

    HUBER Air Filter Plant for clean drinking water

    Drinking water reservoir with HUBER

    equipment

    # Hygiene in drinking water

    supply and storage systems

    # Clean air = clean water

    # Separation of pathogens

    # Complete drinking water

    storage equipment

    # Vandal proof in accordance

    with international standards

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    $$#Global Service

    Global service

    For economy, operating

    reliability and maintenance of

    high performance equipment

    HUBER offers a full and comprehensive

    service for the complete HUBER range

    of equipment that ensures long-term

    high equipment performance

    at low operating costs which results inlow whole life costs.

    The HUBER customer-oriented

    service concept

    As part of the product-

    accompanying service packages

    a large number and variety of HUBER

    service and maintenance contracts areavailable to meet any budget and can

    be tailored to suit any requirement

    for the individual customer. The

    optional HUBER Teleservice System

    is also available to complement the

    normal service and maintenance

    contract. With the HUBER Teleservice

    System the plant itself is monitored

    daily by the Huber service engineers.In the case of any deviation in the

    relevant operational safety and normal

    operational wear data from the pre-set

    normal conditions the customer will

    be alerted immediately, thus ensuring

    optimal plant performance and

    operational reliability.

    The result:

    Teleservice ensures maximum operating

    reliability and equipment performance

    and helps prevent avoidable equipment

    failures and possible damage tothe machines. To obtain detailed

    information about the HUBER service

    packages available please contact the

    HUBER Service Centre.

    Service

    Commissioning

    Consultancy

    Hotline

    Spare Parts

    Repair

    Maintenance

    Optimisation

    Installation

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    $$#Global Service

    HUBER Teleservice

    Global service

    # Daily remote monitoring of

    operating and performance

    data by HUBER service

    engineers

    # For maximum operating

    reliability and equipment

    performance

    # Reduction in operating costs

    # Maintenance for optimum

    machine performance and

    operating safety

    # Spare parts

    # Repair

    # Maintenance

    # Consultancy

    # Installation and

    commissioning

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