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Page 1: Catalytic Converter PPT
Page 2: Catalytic Converter PPT
Page 3: Catalytic Converter PPT
Page 4: Catalytic Converter PPT

Brief History of Brief History of the Catalytic the Catalytic Converter.Converter.The catalytic converter was first invented by The catalytic converter was first invented by

Eugene Houdry in the 1950’s. in the 1950’s.

Tetra-ethyl lead present in gasoline Tetra-ethyl lead present in gasoline "poisoned" the converter by forming a coating "poisoned" the converter by forming a coating on the catalyst's surface, effectively disabling on the catalyst's surface, effectively disabling it.it.

The catalytic converter was further developed The catalytic converter was further developed by by John J. Mooney John J. Mooney and and Carl D. Keith Carl D. Keith at the at the Engelhard Corporation, creating the first Engelhard Corporation, creating the first production of catalytic converter in 1973. production of catalytic converter in 1973.

Page 5: Catalytic Converter PPT

Uses of a Catalytic Uses of a Catalytic ConverterConverter

A catalytic converter is a device used to A catalytic converter is a device used to reduce the toxicity of emissions from an reduce the toxicity of emissions from an internal combustion engine.internal combustion engine.

Catalytic converters are most commonly used Catalytic converters are most commonly used in motor vehicle exhaust systems.in motor vehicle exhaust systems.

Catalytic converters are also used on Catalytic converters are also used on generator sets, forklifts, mining equipment, generator sets, forklifts, mining equipment, trucks, buses, trains, and other engine-trucks, buses, trains, and other engine-equipped machines. equipped machines.

A catalytic converter provides an environment A catalytic converter provides an environment for a chemical reaction wherein toxic for a chemical reaction wherein toxic combustion by-products are converted to less-combustion by-products are converted to less-toxic substances. toxic substances.

Page 6: Catalytic Converter PPT
Page 7: Catalytic Converter PPT

Metal-core converter

Ceramic-core converter

The core is often a The core is often a ceramic honeycomb in in modern catalytic converters, but stainless modern catalytic converters, but stainless steel foil honeycombs are used, too.steel foil honeycombs are used, too.

The honey-comb surface The honey-comb surface increases the the amount of amount of surface area available to support available to support the catalyst, and therefore is often called a the catalyst, and therefore is often called a "catalyst support". "catalyst support".

A A wash coat is used to make converters is used to make converters more efficient, often as a mixture of silica more efficient, often as a mixture of silica and alumina.and alumina.

The wash coat, when added to the core, The wash coat, when added to the core, forms a rough, irregular surface, which has a forms a rough, irregular surface, which has a far greater surface area than the flat core far greater surface area than the flat core surfaces do, which then gives the converter surfaces do, which then gives the converter core a larger surface area, and therefore core a larger surface area, and therefore more places for active precious metal sites. more places for active precious metal sites.

Page 8: Catalytic Converter PPT

The catalyst is added to the washcoat The catalyst is added to the washcoat (in suspension) before being applied to (in suspension) before being applied to the core.the core.

Platinum is the most active catalyst and Platinum is the most active catalyst and is widely used.is widely used.

Palladium and rhodium are two other Palladium and rhodium are two other precious metals used. precious metals used.

Platinum and rhodium are used as a Platinum and rhodium are used as a reduction catalyst .reduction catalyst .

Platinum and palladium are used as an Platinum and palladium are used as an oxidization catalyst.oxidization catalyst.

Cerium, iron, manganese and nickel are Cerium, iron, manganese and nickel are also used.also used.

Page 9: Catalytic Converter PPT
Page 10: Catalytic Converter PPT

Two Way Catalytic Two Way Catalytic ConverterConverter

A two-way catalytic converter has two A two-way catalytic converter has two simultaneous tasks. simultaneous tasks.

Oxidation of carbon monoxide to carbon Oxidation of carbon monoxide to carbon dioxide: 2CO + Odioxide: 2CO + O22 → 2CO → 2CO22

Oxidation of unburnt hydrocarbons Oxidation of unburnt hydrocarbons (unburnt and partially-burnt fuel) to (unburnt and partially-burnt fuel) to carbon dioxide and water: Ccarbon dioxide and water: CxxHH(2x+2)(2x+2) + + [(3x+1)/2] O[(3x+1)/2] O22 → xCO → xCO22 + (x+1) H + (x+1) H22O (a O (a combustion reaction)combustion reaction)

Unable to control NOUnable to control NOxx gases. gases.

Page 11: Catalytic Converter PPT

Three Way Three Way Catalytic Catalytic ConverterConverter

Reduction of nitrogen oxides to nitrogen and oxygen: 2NOx → xO2 + N2

Oxidation of carbon monoxide to carbon dioxide: 2CO + O2 → 2CO2

Oxidation of unburnt hydrocarbons (HC) to carbon dioxide and water: CxH(2x+2) + [(3x+1)/2]O2

→ xCO2 + (x+1)H2O

Unwanted reactions can occur in the three-way catalyst, such as the formation of odiferous hydrogen sulfide and ammonia.

Page 12: Catalytic Converter PPT

Equations For Reactions In The CATALYTIC

CONVERTER

Equations For Reactions In The CATALYTIC

CONVERTERCO + NO CO2 + N2

C8H18 + NO CO2 + N2 + H2O

Page 13: Catalytic Converter PPT

Limits and Measurement methods for emissions of

Pollutants from Motorcycles under

running mode

Limits (g/km) Stage 1 Stage 2

2 Wheels 3 Wheels

2-T 4-T 2-T 4-T 2 Wheels 3 Wheels

CO 8 13 12 19.5 5.5 7 HC 4 3 6 4.5 1.2 1.5

NOx 0.1 0.3 0.15 0.45 0.3 0.4

Limits (g/km) Stage 1 Stage 2

2 Wheels 3 Wheels

2-T 4-T 2-T 4-T 2 Wheels 3 Wheels

CO 8 13 12 19.5 5.5 7 HC 4 3 6 4.5 1.2 1.5

NOx 0.1 0.3 0.15 0.45 0.3 0.4

Page 14: Catalytic Converter PPT

Damage to Damage to Catalytic Catalytic

ConvertersConvertersCatalyst poisoning occurs when the catalytic Catalyst poisoning occurs when the catalytic converter is exposed to exhaust containing converter is exposed to exhaust containing substances that coat the working surfaces, substances that coat the working surfaces, encapsulating the catalyst so that it cannot encapsulating the catalyst so that it cannot contact and treat the exhaust.contact and treat the exhaust.

The most notable contaminant is lead .The most notable contaminant is lead .

Any condition that causes abnormally high Any condition that causes abnormally high levels of unburned hydrocarbons — raw or levels of unburned hydrocarbons — raw or partially-burnt fuel — to reach the converter partially-burnt fuel — to reach the converter will tend to significantly elevate its will tend to significantly elevate its temperature, bringing the risk of a meltdown temperature, bringing the risk of a meltdown of the substrate and resultant catalytic of the substrate and resultant catalytic deactivation and severe exhaust restriction . deactivation and severe exhaust restriction .

Page 15: Catalytic Converter PPT

Negative Aspects Negative Aspects of Catalytic of Catalytic Converters.Converters.Some early converter designs created a Some early converter designs created a

great deal of restriction to the flow of great deal of restriction to the flow of exhaust, which negatively affected exhaust, which negatively affected vehicle performance, drivability, and vehicle performance, drivability, and fuel economy .fuel economy .

It had been stated that catalytic It had been stated that catalytic converters are known in a lot of cases converters are known in a lot of cases to have an excessively long warm-up to have an excessively long warm-up time period, in a great deal of cases time period, in a great deal of cases ranging up to thirty-minutes.ranging up to thirty-minutes.

Page 16: Catalytic Converter PPT

The Environmental The Environmental Impact of Catalytic Impact of Catalytic

ConvertersConvertersReduces fuel economy of cars resulting in a Reduces fuel economy of cars resulting in a greater use of fossil fuels.greater use of fossil fuels.

Although catalytic converters are effective at Although catalytic converters are effective at removing hydrocarbons and other harmful removing hydrocarbons and other harmful emissions, most of exhaust gas leaving the emissions, most of exhaust gas leaving the engine through a catalytic converter is carbon engine through a catalytic converter is carbon dioxide (COdioxide (CO22), which is responsible for the green ), which is responsible for the green house effect.house effect.

Catalytic converter production requires Catalytic converter production requires palladium and/or platinum; part of the world palladium and/or platinum; part of the world supply of these precious metals is produced near supply of these precious metals is produced near the Russian city of Norilsk, where the industry the Russian city of Norilsk, where the industry (among others) has caused Norilsk to be added (among others) has caused Norilsk to be added to Time Magazine's list of most polluted places.to Time Magazine's list of most polluted places.

It removes up to 90% of the harmful gases.

Page 17: Catalytic Converter PPT

ReferencesReferenceswww.wikipedia.org

www.howstuffworks.com

http://autorepair.about.com/od/glossary/ss/how-it_catalyti.htm

Page 18: Catalytic Converter PPT

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