9. references addison j., parkinson d. oikos...

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251 9. References ADDISON, J., PARKINSON, D. (1978) Influence of collembolan feeding activities on soil metabolism at a high arctic site. Oikos 30, 529 – 538 ADHIKARI, S., MITRA, A., GUPTA, S.K. AND BANERJEE, S.K. (1998) ‘Pollution metal contents of vegetables irrigated with sewage water’, Journal of Indian Society of Soil Science, Vol. 46, 153 - 155. ADRIANO, D.C. (2001) Trace Elements in Terrestrial Environments; Biochemistry, Bioavailability and Risks of Metals, Springer-Verlag, New York. AHN, H.K., RICHARD, T.L., AND CHOI, H.L. (2007). Mass and thermal balance during composting of poultry manure-wood shavings mixture at different aeration rates. Proc. Biochem., 42, 215-223. AIRA, M., MONROY, F., DOMÍNGUEZ, J. (2003) Effects of two species of earthworms (Allolobophora spp.) on soil systems: a micro faunal and biochemical analysis. Pedobiologia 47, 877 - 881 AIRA, M., MONROY, F., DOMI´NGUEZ, J. (2006) Eisenia fetida (Oligochaeta, Lumbricidae) activates fungal growth, triggering Cellulose decomposition during Vermicomposting. Microb. Ecol. 52, 738 - 746 AIRA, M., MONROY, F., DOMÍNGUEZ, J. (2007) Earthworms strongly modify microbial biomass and activity triggering enzymatic activities during vermicomposting independently of the application rates of pig slurry. Sci Total Environ 385, 252 - 261 ALAM, M.N., JAHAN, M.S, ALI, M.K., ISLAM, M.S., AND KHANDAKER.S.M.A.T. (2007) Effect of Vermicompost and NPKS Fertilizers on Growth, Yield and Yield Components of Red Amaranth. Australian Journal of Basic and Applied Sciences, 1(4), 706- 716 ALAMGIR, M., MCDONALD, C., ROEHI, K.E., AHSAN, A. (2005) Integrated management and safe disposal of MS Win least developed Asian countries—a feasibility study, Waste Safe. Khulna University of Engineering and Technology, Asia Pro Eco Programme of the European Commission. ALAUZET, N., ROUSSOS, S., GARREAU, H., VERT, M. (2001) Microflora Dynamics in Earthworms Casts in an Artificial Soil (Biosynthesol) Containing Lactic Acid Oligomers. Braz Arch BioTechnology 44, DOI: 10.1590/S1516-89132001000200001 ALBANELL, E, PLAIXATS, CARBRERO, T. (1988) Chemical changes during vermicomposting (Eisenia fetida) of sheep manure mixed with cotton industrial wastes. Biology and Fertility of Soils 6, 266 - 269 ALLOWAY, B.J., (1995) Soil Processes and the Behaviour of Heavy Metals, In: Heavy Metals in Soils, Alloway B.J. (Eds.), Blackie Academic and Professional, London. 11 - 37. AL-MOMANI, A.H. (1994) Solid waste management: sampling, analysis and assessment of household waste in the city of Amman. International Journal of Environmental Health Research 4, 208 - 222.

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Page 1: 9. References ADDISON J., PARKINSON D. Oikos 30shodhganga.inflibnet.ac.in/bitstream/10603/5290/15/... · Biology and Fertility of Soils 6, 266 - 269 ALLOWAY, B.J., (1995) Soil Processes

251

9. References

ADDISON, J., PARKINSON, D. (1978) Influence of collembolan feeding activities on soil

metabolism at a high arctic site. Oikos 30, 529 – 538

ADHIKARI, S., MITRA, A., GUPTA, S.K. AND BANERJEE, S.K. (1998) ‘Pollution metal contents of vegetables irrigated with sewage water’, Journal of Indian Society of Soil Science, Vol. 46, 153 - 155.

ADRIANO, D.C. (2001) Trace Elements in Terrestrial Environments; Biochemistry, Bioavailability

and Risks of Metals, Springer-Verlag, New York.

AHN, H.K., RICHARD, T.L., AND CHOI, H.L. (2007). Mass and thermal balance during

composting of poultry manure-wood shavings mixture at different aeration rates. Proc. Biochem.,

42, 215-223.

AIRA, M., MONROY, F., DOMÍNGUEZ, J. (2003) Effects of two species of earthworms

(Allolobophora spp.) on soil systems: a micro faunal and biochemical analysis. Pedobiologia 47, 877 -

881

AIRA, M., MONROY, F., DOMI´NGUEZ, J. (2006) Eisenia fetida (Oligochaeta, Lumbricidae)

activates fungal growth, triggering Cellulose decomposition during Vermicomposting. Microb. Ecol. 52,

738 - 746

AIRA, M., MONROY, F., DOMÍNGUEZ, J. (2007) Earthworms strongly modify microbial

biomass and activity triggering enzymatic activities during vermicomposting independently of the

application rates of pig slurry. Sci Total Environ 385, 252 - 261

ALAM, M.N., JAHAN, M.S, ALI, M.K., ISLAM, M.S., AND

KHANDAKER.S.M.A.T. (2007) Effect of Vermicompost and NPKS Fertilizers on Growth, Yield

and Yield Components of Red Amaranth. Australian Journal of Basic and Applied Sciences, 1(4), 706-

716

ALAMGIR, M., MCDONALD, C., ROEHI, K.E., AHSAN, A. (2005) Integrated

management and safe disposal of MS Win least developed Asian countries—a feasibility study, Waste

Safe. Khulna University of Engineering and Technology, Asia Pro Eco Programme of the European

Commission.

ALAUZET, N., ROUSSOS, S., GARREAU, H., VERT, M. (2001) Microflora Dynamics in

Earthworms Casts in an Artificial Soil (Biosynthesol) Containing Lactic Acid Oligomers. Braz Arch

BioTechnology 44, DOI: 10.1590/S1516-89132001000200001

ALBANELL, E, PLAIXATS, CARBRERO, T. (1988) Chemical changes during vermicomposting

(Eisenia fetida) of sheep manure mixed with cotton industrial wastes. Biology and Fertility of Soils 6,

266 - 269

ALLOWAY, B.J., (1995) Soil Processes and the Behaviour of Heavy Metals, In: Heavy Metals in Soils, Alloway B.J. (Eds.), Blackie Academic and Professional, London. 11 - 37.

AL-MOMANI, A.H. (1994) Solid waste management: sampling, analysis and assessment of

household waste in the city of Amman. International Journal of Environmental Health Research 4, 208 -

222.

Page 2: 9. References ADDISON J., PARKINSON D. Oikos 30shodhganga.inflibnet.ac.in/bitstream/10603/5290/15/... · Biology and Fertility of Soils 6, 266 - 269 ALLOWAY, B.J., (1995) Soil Processes

252

ALOK, A., TRIPATHI, A.K. AND SONI, P. (2008) ‘Vermicomposting: a better option for

organic solidwaste management’, Journal of Human Ecology, Vol. 24, 59 - 64.

AMSATH, A., MUTHUKUMARAVEL, K., AND SUKUMARAN M. (2008) Vermicomposting

of Vegetable Wastes Using Cow Dung . E-Journal of Chemistry, 5(4), 810-813.

ANANTHAKRISHNASAMY, S., MANIMEGALA, G., SAROJINI, S., GUNASEKARAN G. AND PARTHASARATHI, K. (2007) Growth and reproduction of earthworm, Eudrilus eugeniae in biogases: A sugar industrial waste, J. Appl. Zoo. Res., 18(2), 149 - 155.

ANANTHAKRISHNASAMY, S., SAROJINI S., GUNASEKARAN G. AND MANIMEGALA

G. (2009) Fly ash A Lignite Waste Management Through Vermicomposting by Indigenous Earthworms Lampito Mauritii; American-Eurasian J. Agric. & Environ. Sci., 5 (6): 720 – 724.

ANASTASI, A., VARESE, G.C., VOYRON, S., SCANNERINI, S., MARCHISIO, V.F. (2004) Characterization of fungal biodiversity in compost and vermicompost. Compost Sci Util, 12,

185–191.

ANASTASI, A., CRISTINA, G., AND VARESE,VALERIA FILIPELLO MARCHISIO. (2005) Isolation and identification of fungal communities in compost and vermicompost. Mycologia,

97(1), 33–44.

ANDERSEN, C., LAURSEN, J. (1982) Distribution of heavy metals in Lumbricus terrestris,

Aporrectodea longa and A. rosea measured by atomic absorption and X-ray fluorescence spectrometry.

Pedobiologia 24, 347 - 356.

ANDERSON, R.S., ASHE, J.S. (2000) Leaf litter beetles as surrogates for establishing priorities

for conservation of selected tropical montane cloud forests in Honduras, Central America (Coleoptera

Staphylinidae Curculionidae). Biodiversity and Conservation 9, 617 – 653.

ANONYMOUS, (2003) Nature’s Medicine Reader’s Digest Association Ltd., London, pp335.

ANSARI, A. A. (2008) Effect of Vermicompost on the Productivity of Potato (Solanum tuberosum),

Spinach (Spinacia oleracea) and Turnip (Brassica campestris). World Journal of Agricultural Sciences,

4 (3), 333-336.

ARANCON, N.Q., EDWARDS, C.A., BIERMAN, P., METZGER, J.D., LEE, S. AND

WELCH, C. (2003). Effects of vermicomposts on growth and marketable fruits of field-grown

tomatoes, peppers and strawberries. Pedobiologia, 47, 731–735.

ARANCON, N.Q., EDWARDS, C.I., BIERMAN, P., WELCH, C., AND METZGER, T.D., (2004) Influences of vermicomposts on field strawberries: 1. Effect on growth and yields.

Bioresource Technology 93, 145-153.

ARANCON, N.Q., EDWARDS C.A., BIERMAN, P., METZGER, J.D., LUCHT, C. (2005)

Effects of vermicomposts produced from cattle manure, food waste and paper waste on the growth and

yield of peppers in the field. Pedobiologia 49, 297 - 306

ARNOLD, R.E., LANGDON, C.J., HODSON, M.E., AND BLACK, S. (2003). Development

of a methodology to investigate the importance of chemical speciation on the bioavailability of

contaminants to Eisenia Andrei. Pedobiologia, 43, 633-639.

Page 3: 9. References ADDISON J., PARKINSON D. Oikos 30shodhganga.inflibnet.ac.in/bitstream/10603/5290/15/... · Biology and Fertility of Soils 6, 266 - 269 ALLOWAY, B.J., (1995) Soil Processes

253

ATIYEH, R.M., ARANCON, N. EDWARDS, C.A., AND METZGER, J.D. (2000) Influence

of earthworm-processed pig manure on the growth and yield of greenhouse tomatoes. Bioresource

Technology, 75, 175-180.

AUSMUS, B.S., WITKAMP, M. (1974) Litter and Soil Microbial Dynamics in a Deciduous Forest

Stand. East deciduous for biome rep. EDFB-IBP-73-10. Springfield, Va: NTIS, 183

AYERS, R.S. AND WESTCOTT, D.W. (1985) ‘Water quality for agriculture’, FAO Irrigation

and Drainage Paper, Vol. 29, No. 1, 1 - 120.

AZARMI, R., ZIVEH, P.S., AND SATARI, M.R., (2008) Effect of Vennicompost on Growth,

Yield and Nutrition Status of Tomato (Lycopersicum esculentum). Pakistan Journal of Biological

Sciences 11 (14), 1797-1802.

BACA, M.T., FORNASIER, F., AND NOBILI, M. (1992) Mineralization and humification

pathways in two composting processes applied to cotton wastes. Journal of Fermentation and

Bioengineering, 74, 179-184.

BALAMURUGAN, V., GOBI, M., VIJAYALAKSHMI, G. (1999) Comparative studies on

degradation of pres mud using cellulolytic fungi and exotic species of earthworms with a note on its gut

microflora. Asian Journal of Microbiology, Biotechnology and Environmental Sciences 1, 131 – 134.

BANSAL, S., KAPOOR, K.K. (2000) Vermicomposting of crop residues and cattle dung with

Eisenia foetida. Bioresource Technology 73, 95 – 98.

BANU R, J. LCKTAE YEOM. ESAKKIRAJ, NARESH KUMAR, YOUNG WOO LEE

AND S.VALLINAYAGAM, (2008).Biomanagement of sago-sludge using an earthworm Lampito

mauritii. J. Environ. Biol., 29(5), 753 - 757.

BARRERA, L. AND ANDRES, P. (2001) ‘Sewage sludge application on soils: effects on two

earthworms species’, Water, Air and Soil Pollution, Vol. 12, 319 - 332.

BARRETT, T. J. (1949). Harnessing the earthworm. Wedgewood Press, London, Boston,

Massachusetts.

BEATTIE, A.J., AND OLIVER, I. (1994) Taxonomic minimalism, Trends in Ecology &

Evolution 9, 488 – 490.

BEIGL, P., LEBERSORGER, S., SALHOFER, S. (2008) Modeling municipal solid waste

generation: A Review. Waste Management, 28,200 - 214.

BEYER, W.N., CROMARTIE, E.J., (1987). A survey of lead, copper, zinc, cadmium, chromium, arsenic, and selenium in earthworms and soil from diverse sites. Environmental Monitoring and Assessment 8, 27 e 36.

BHARANI, A., MAHIMARAJA, S., AUGUSTINE SELVASEELAN, D. (2006) Phytoavailability of heavy metals to ochra (Abelmoscus esculentum) as influenced by graded doses of sewage biosolids. Indian J Environ Sci, 10(1), 1 – 7.

BHATIA, S.C. (2007) Solid and hazardous waste. Delhi: Atlantic Publishers/Nice Printing Press

BHATTACHARYA, S.S. AND CHATTOPADHYAY G.N. (2004) Transformation of nitrogen during vermicomposting of fly ash. Waste Management and Research

Page 4: 9. References ADDISON J., PARKINSON D. Oikos 30shodhganga.inflibnet.ac.in/bitstream/10603/5290/15/... · Biology and Fertility of Soils 6, 266 - 269 ALLOWAY, B.J., (1995) Soil Processes

254

BHATTACHARRYA, T., JOY, S., JOY, V.C. (1982) Cryptostigmatid population of some

cultivated and uncultivated soils; Proc. Symp. Ecol. Anim. Popul. Zool. Surv. India 4, 75 – 90.

BIGDELI, M., AND SEILSEPOUR, M. (2008) Investigation of Metals Accumulation in Some

Vegetables Irrigated with Waste Water in Shahre Rey-Iran and Toxicological Implications; American-

Eurasian J. Agric. & Environ. Sci., 4 (1): 86-92.

BOLGER, D.T., SUAREZ, A.V., CROOKS, K.R., MORRISON, S.A., AND CASE, T.J. (2000) Arthropods in urban habitat fragments in southern California: areaage and edge effects.

Ecological Applications 10, 1230 – 1248.

BOLGER, T., CURRY, J.P. (1984) Influences of pig slurry on soil microarthropods in grassland.

Rev. Ecol. Biol. Sol. 21, 269 - 281.

BONGKYOON, K. (2004). Effect of vermicompost on growth of fall-cropping potato in volcanic ash

soil. Korean J. Crop. Sci., 49(4), 305-308.

BREWER, S.R., BARRET, G.W. (1995). Heavy metal concentrations in earthworms following

long-term nutrient enrichment. Bull. Environ. Contam. Toxicol. 54, 120 - 127.

BROWN, G.G. (1995). How do earthworms affect microfloral and faunal community diversity? Plant

and Soil 170: 209 – 231.

BROWN,G.G., DOUBE, B.M. (2004) Functional interactions between earthworms,

microorganisms, organic matter, and plants. In: Edwards CA (ed) Earthworm Ecology, edition 2, CRC

Press, Boca Raton, 213 - 224

BUCHANAN, R.E., AND GIBBONS, N.E. (1974) Bergey's manual of determinative bacteriology,

e. 8. The Williams & Wilkins Co., Baltimore

BUENROSTRO, O., BOCCO, G. (2003) Solid waste management in municipalities in Mexico:

goals and perspectives. Resources Conservation & Recycling, 39, 251 - 263.

BUGBEE, J.G. (2002) ‘Growth of ornamental plants in container media amended with bio-solids

compost’, Compost Science and Utilization, Vol. 10, 92 - 98.

BUNZL, K., TRAUTMANNSHEIMER, M., SCHRAMEL, P. AND REIFENHÄUSER, W. (2001) ‘Availability of arsenic, copper, lead, thallium, and zinc to various vegetables grown in slag-

contaminated soils’, Journal of Environmental Quality, Vol. 30, 934 - 939.

CABRERA, M.L., KISSEL, D.E., AND VIGIL, M.F. (2005). Nitrogen mineralization from

organic residues: Research opportunities. J. Environ. Qual., 34, 75-79.

CARPENÉ, E., ANDREANI, G., MONARI, M., CASTELLANI, G., AND ISANI, G. (2006).

Distribution of Cd, Zn, Cu and Fe among selected tissues of the earthworm (Allolobophora caliginosa)

and Eurasian woodcock (Scolopax rusticola). Sci. Total Environ. 363, 126 - 135.

Page 5: 9. References ADDISON J., PARKINSON D. Oikos 30shodhganga.inflibnet.ac.in/bitstream/10603/5290/15/... · Biology and Fertility of Soils 6, 266 - 269 ALLOWAY, B.J., (1995) Soil Processes

255

CHANAKYA, H.N., RAMACHANDRA, T.V., VIJAYACHAMUNDEESWAR, M. (2007)

Resource recovery potential from secondary components of segregated municipal solid wastes.

Environmental Monitoring and Assessment, 135, 119 - 127.

CHATTOPADHYAY, S., DUTTA, A., RAY, S. (2009). Municipal solid waste management in

Kolkata, India – A review. Waste Management, 29, 1449 - 1458.

CHENG, J., WONG, M.H. (2002). Effects of earthworms on Zn fractionation in soils. Biologically

Fertile. Soils, 36, 72 - 78.

CHIEMCHAISRI, C., JUANGA, J.P., VISVANATHAN, C. (2007) Municipal solid waste

management in Thailand and disposal emission inventory. Environmental Monitoring and Assessment,

135, 13 - 20.

CHITRA, V.S., AND JAYA, D.S., (2005) Phytoremediation of sewage by grass cultivation a

case study of Valiathura sewage form in Trivandrum district, Kerala. Asian J Microbio Biotechno

Environ Sci, 7(4), 693 – 698.

CHRISTENSEN, O. M., MACHER, J. G. (2004) Pesticide-induced surface migration by

lumbricid earthworms in grassland: life-stage and spacies differences. Ecotox. Environ. Safety, 57, 89 -

99.

CIURA, J., PONIEDZIALEK, M., SEKARA, A., AND JEDRSZEZYK, E. (2005) The

possibility of using crops as metal phytoremediants, Polish Journl of Environmental Studies, 14, 17-22.

CODEX ALIMENTARIUS COMMISSION (1984) Contaminants, Joint FAO/WHO Food Standards

Program’, Codex Alimentarius, Vol. 17, 1st edition.

COLE, L., DROMPH, K.M., BOAGLIO, V., BARDGETT, R.D. (2004) Effect of denity and

species richness of soil mesofauna on nutrient mineralization and plant growth. Bio-fertile Soils 39, 337

- 343

CONDER, J.M., SEALS, L.D., AND LANNO, R.P., (2002). Method for determining

toxicologically relevant cadmium residues in the earthworm Eisenia fetida. Chemosphere 49, 1 - 7.

COOPER, E.L. (1996). Earthworm immunity, in: Reinkevich, B., Muller, W.E.G. (Eds.),

Invertebrate immunology. Thomson Press, New York, 10 - 95.

COTTER-HOWELLS, J., CHARNOCK, J.M., WINTERS, C., KILLE, P., FRY, J.C., AND MORGAN, A.J. (2005). Metal compartmentation and speciation in a soil sentinel: the

earthworm, Dendrodrilus rubidus. Environmental Science and Technology 39, 7731-7740.

CPCB (1999) Status of solid waste generation, collection, treatment and disposal in metro

cities. Delhi: Central Pollution Control Board.

CPCB (2003) Publication. Manual for municipal solid waste. Delhi: Central Pollution Control Board.

CROMACK, K. JR., SOLLINS. P., TODD, R.L., CROSSLEY, D.A., FENDER, W.M. (1977) Soil microorganism-arthropod interactions: Fungi as major calcium and sodium sources. In:

Mattson WJ (Ed) The role of arthropods in forest ecosystems. Springer-Verlag, New York, 78 - 84

Page 6: 9. References ADDISON J., PARKINSON D. Oikos 30shodhganga.inflibnet.ac.in/bitstream/10603/5290/15/... · Biology and Fertility of Soils 6, 266 - 269 ALLOWAY, B.J., (1995) Soil Processes

256

CROSS, T., GOODFELLOW, M. (1973) Taxonomy and classification of the actinomycetal. In:

Sykes G, Skinner FA (eds) Actinomycetal: characteristics and practical importance, Academic Press,

Inc., New York, 11 - 112

CROSSLEY, D.A JR. (1977) Oribatid mites and nutrient cycling. In: Dindal DL (Ed) Biology of

Oribarid Mites. Syracuse, NY: State Univ. NY at Syracuse, Coll. Environ. Sci. For71– 86.

.

CROSSLEY, D.A. JR., BLOOD, E.R., HENDRIX, P.F., AND SEASTEDT, T.R., (1999).

Turnover of cobalt-60 by earthworms (Eisenia fetida) (Lumbricidae, Oligochaeta). Applied Soil

Ecology 2, 71 - 75.

CUI, Y., WANG Q. AND CHRISTIE P., (2004). Effect of elemental Sulphur on uptake of

Cadmium, Zinc and Sulphur by oilseed Rape growing in soil contaminated with Zinc and Cadmium.

Communications in Soil Science and Plant Analysis, (35): 2905 - 2916.

CURRY, J.P. (1994) Grassland Invertebrates. Ecology. In: Influence on Soil Fertility and Effects on

Plant Growth. Chapman and Hall, London, pp 437.

DARWIN, C. (1881). The formation of vegetable mould through the action of worms, with

observations on their habitats. Murray, London, pp326.

DARWIN, F., AND SEWARD, A.C. (1903) More letters of Charles Darwin. A record of his work

in series of hitherto unpublished letters, vol 2. John Murray, London, pp508.

DASH, M.C., AND SENAPATI, B.K. (1985) Vermitechnology potentiality of Indian Earthworms

for vermicomposting and vermifeed. In: Mishra HK, Kapur K (Eds) Proceedings of National Seminar

on Current Trends in Soil Biology, Haryana Agriculture University, Hissar, India, 61 - 69.

DASH, M.C., AND SENAPATI, B.K. (1986) Vermitechnology, an option for organic wastes

management in India. In: Dash MC, Senapati BK, Mishra PC (Eds) Verms and Vermicomposting,

Sambalpur University, Sambalpur, Orissa, India, 157 - 172.

DEOLALIKAR, A.V., MITRA, A., BHATTACHARJEE, S., AND CHAKRABORTY, S. (2005) Effect of vermicomposting process on metal content of paper mill solidwaste. J Environ Sci Eng

47, 81 – 84.

DEPTA, B., KOŚCIELNIAK, A., ROŻEN, A. (1999) Food selection as a mechanism of heavy

metal resistance in earthworms. Pedobiologia, 43, 608-614.

DEVLIEGHER, W., AND VERSTRAETE, W. (1997) The effect of Lumbricus terrestris on soil

in relation to plant growth: effects of nutrient-enrichment processes (NEP) and gut-associated processes

(GAP). Soil Biol Biochem., 29, 341–346.

DIA, J., BECQUER, T., ROUILLER, J.H., REVERSAT, G., BERNHARD-REVERSAT, F., NAHMANI, J., AND LAVELLE, P., (2004) Heavy metal accumulation by two earthworm

species and its relationship to total and DTPA extractable metals in soils. Soil Biol. Biochem. 36, 91 -

98.

DIAZ, L.F., SAVAGE, G.M., AND EGGERTH, L.L. (1993) Composting and recycling

municipal solid waste.USA: Cal Recovery, Inc.

Page 7: 9. References ADDISON J., PARKINSON D. Oikos 30shodhganga.inflibnet.ac.in/bitstream/10603/5290/15/... · Biology and Fertility of Soils 6, 266 - 269 ALLOWAY, B.J., (1995) Soil Processes

257

DOMINGUEZ, J.A., EDWARDS, C.A. AND SUBLER, S. (1997). A comparison of

vermicomposting and composting. Bio-cycle 38(4), 57 - 59.

DOMINGUEZ, J., EDWARDS, C.A., AND WEBSTER, M. (2000) Vermicomposting of sewage

sludge effect of bulking materials on growth and reproduction of the earthworm E. andri. Pedobiologia

44, 24 - 32.

DOMÍNGUEZ, J., PARMELEE, R.W., AND EDWARDS, C.A. (2003) Interactions between

Eisenia andrei (Oligochaeta) and nematode population during vermicomposting. Pedobiologia 47, 53 -

60.

DOMÍNGUEZ, J. (2004) ‘State of the art and new perspectives on vermicomposting research’, In:

Edwards, C.A. (ed.), Earthworm Ecology, 401–424, Boca Raton, FL, U.S.A : CRC Press.

DOS SANTOS J.S., MARIA LÚCIA PIRES, D.S., MELINA M.C., SABRINA NOVAES

D.S., AND ELISABETH DE OLIVEIRA. (2009) Evaluation of some metals in Brazilian coffees

cultivated during the process of conversion from conventional to organic agriculture. Food Chemistry

115, 1405–1410.

DOUBE, B.M., AND BROWN, G.G. (1998) Life in a complex community: functional interactions

between earthworms, organic matter, microorganisms, and plant growth. In: Edwards CA (ed)

Earthworm ecology, St. Lucie Press, Boca Raton, 179 - 211.

DUTTA, D. (2008) Pondy faces garbage problem. New Sunday Express, 9(43), pp6.

DUTTA, S., DAS, A.K. (2010) Analytical perspective on waste management for environmental

remediation TrAC Trends in Analytical Chemistry, 29(7), 636 – 644.

EASTMAN, B.R., KANE, P.N., EDWARDS, C.A., TRYTEK, L., GUNADI, B., STERMER, A.L., AND MOBLEY, J.R. (2001) The effectiveness of vermiculture in human

pathogen reduction for USEPA biosolids stabilization. Compost Sci Util, 9, 38 – 49.

EDWARDS, C.A., DENNIS, E.B., AND EMPSON, D.W. (1967) Pesticides and the soil fauna:

effects of aldrin and DDT in an arable field. Ann. Appl. Biol. 60, 11 – 22.

EDWARDS, C.A., AND BATER, J.E. (1992) The use of earthworm in environmental

management. Soil Biol Biochem, 24, 1683–1689.

EDWARDS, C.A., AND BOHLEN, P.J., (1996). Biology and Ecology of Earthworms, third ed.

Chapman and Hall, London.

EDWARDS, C.A., (1998). Breakdown of animal, vegetable and industrial organic waste by

earthworms, ‘Earthworms in waste and environmental management.’ edited by Edwards, C. A &

Neuhauser, E. F SPB Academic Publishing, Netherlands. ISBN 90-5103-017-7.

EDWARDS, C.A. (1998) The use of earthworms in the breakdown and management of organic

wastes. In: Edwards CA (Ed) Earthworm ecology. CRC press, Boco Roton, Florida, 327 – 354.

EDWARDS, C.A., DOMINGUEZ, J., AND NEUHAUSER, E.F. (1998) Growth and

reproduction of Perionyx excavatus (Perr.) (Megascolecidae) as factors in organic waste management.

Biology and Fertility of Soils 27, 155 – 161.

Page 8: 9. References ADDISON J., PARKINSON D. Oikos 30shodhganga.inflibnet.ac.in/bitstream/10603/5290/15/... · Biology and Fertility of Soils 6, 266 - 269 ALLOWAY, B.J., (1995) Soil Processes

258

EDWARDS, C.A. (2004) Earthworm Ecology (2nd Ed), CRC Press LLC, Boca Raton, Fl, USA, pp

448.

ELAIGWU, S.E., AJIBOLA, V.O. AND FOLARNMI, F.M. (2007). Earthworm (Eudrilus

Eugenia Kinberg) as bio indicator of the heavy metal pollution in two municipal dump sites of two

cities in Northern Nigeria. Research Journal of Environmental Sciences. 1 (5), 244-250.

ELKINS, N.Z., AND WHITFORD, W.G. (1982) The role of microarthropods and nematodes in

decomposition in semi-arid ecosystem. Oecologia 55, 303 – 310.

ELVIRA, C., SAMPEDRO, L., BENÍTEZ, E., AND NOGALES, R. (1998) Vermicomposting

of sludges from paper mill and dairy industries with Eisenia andrei: a pilot-scale study. Bioresource

Technology 63, 205 – 211.

EPELDE, L., JOSE, M.B., JAVIER, H.A., BARRUTIA, O. AND GARBISU, C. (2008)

‘Functional diversity asindicator of the recovery of soil health derived from Thlaspi caerulescens

growth and metalphytoextraction’, Applied Soil Ecology, Vol. 39, 299–310.

EPSTEIN, E. (1997) The Science of Composting. Technomic\ Publication, Lancaster, PA, ISBN 1-

56676-478-5.

EWERS, U. (1991) ‘Standards, guidelines and legislative regulations concerning metals and

compounds’, in Merian, E. (Ed.): Metals and their Compounds in the Environment: Occurrence,

Analysis and Biological Relevance, VCH, Weinheim, 458–468.

FABER, J.H., TEUBEN, A., BERG, M.P., AND DOELMAN, P. (1992) Microbial biomasss

and activity in pine litter in the presence of Tomocerus minor (Insecta Collembola). Biology and

Fertility of soils 12, 233 – 240.

FANG, M., AND WONG, J.W.C. (2000) Changes in thermophilic bacteria population and

diversity during composting of coal fly ash and sewage sludge. Water Air Soil Pollut 124, 333 – 343.

FAROOQ, M., ANWAR, F., AND RASHID, U. (2008) Appraisal of heavy metal contents in

different vegetables grown in the vicinity of an industrial area. Pakistan Journal of Botany Vol. 40 (5),

2099–2106.

FOLLET, R., DONAHUE, R., AND MURPHY, L. (1981) Soil and Soil Amendments. Prentice

Hall Inc., New Jersey.

FOSGATE, O.T. AND BABB, M.R. (1972) Biodegradation of animal waste by Lumbricus

terrestris. J. Dairy Sci., 55, 870-872.

FRACCHIA, L., DOHRMANN, A.B., MARTINOTTI, M.G., AND TEBBE, C.C. (2006)

Bacterial diversity in a finished compost and vermicompost: differences revealed by cultivation-

independent analyses of PCR-amplified 16S rRNA genes, Appl. Microbiol. Biotechnol. 71, 942–952.

FRIEND, G.R., AND WILLIAMS, M.R. (1996) Impact of fire on invertebrate communities in

mallee-heath shrublands of southwestern Australia. Pacific Conservation Biology 2, 244 – 267.

FRIES, G.F., (1982). Potential Polychlorinated Biphenyl Residues in Animal Products from

Application of Contaminated Sewage Sludge to Land. J. Environ. Qual. 11, 14 - 20.

Page 9: 9. References ADDISON J., PARKINSON D. Oikos 30shodhganga.inflibnet.ac.in/bitstream/10603/5290/15/... · Biology and Fertility of Soils 6, 266 - 269 ALLOWAY, B.J., (1995) Soil Processes

259

GAJALAKSHMI, S., RAMASAMY, E.V., AND ABBASI, S.A. (2005) Composting–

vermicomposting of leaf litters ensuing from the trees of mango (Mangifera indica). Bioresource

Technology 96, 1057 – 1061.

GARCIA, C., HERNANDEZ, T. AND COSTA, F. (1990) ‘The influence of composting and

maturation processeson the heavy-metal extractability from some organic wastes’, Biological Wastes,

Vol. 31, 291 - 301.

GARCIA-GOMEZ, A., BERNAL, M.P., AND ROIG, A. (2002) Growth of ornamental plants in

two composts prepared from agroindustrial wastes. Bioresource Technology 83, 81–87.

GARG, V.K., AND KAUSHIK, P. (2005) Vermistabilization of textile mill sludge spiked with

poultry droppings by epigeic earthworm Eisenia fetida. Bioresource Technology 96, 1063 – 1071.

GARG, P., GUPTA, A., AND SATYA, S. (2006) Vermicomposting of different types of waste

using Eisenia foetida: A comparative study. Bioresource Technology 97, 391 – 395.

GESTEL, K.V., MERGAERT, J., SWINGS, J., COOSEMANS, J., AND RYCKEBOER, J. (2003) Bioremediation of diesel oil contaminated soil by composting with biowaste. Environ Pollut

125, 361 - 368

GHAZIFARD, A., KASRA-KERMANSHAHI, R., AND FAR, Z.E. (2001) Identification of

thermophilic and mesophilic bacteria and fungi in Esfahan (Iran) municipal solid waste compost. Waste

Manage Res 19, 257 – 261.

GISH, C.H.D., AND CHRISTENSEN, R.E., (1973) Calcium, nickel, lead and zinc in earthworms

from roadside soil. Environ Sci. Technol. 7, 1060 - 1062.

GOSHIE, S.N. (2009) Comparative study of some Microfauna in Sugarcane‘Fadama’ And Savanna

Upland Soils. http://www.sciencepub.net/report Report/opinion 1(4), 90 – 93.

GRAFF, O., (1982) Vergleich der Regenswurmaten Eisenia foetida and Eudrilus eugeniae

Hinsichlich Ihrer Eignung zur Proteinwinnung aus Abfallstoffen. Pedobiologia 23, 277-282.

GRIFFERTY, A., BARRINGTON, S. (2000) Zinc uptake by young wheat plants under two

transpiration regimes, J. Environ. Qual., 29, 443-446.

GUOXUE, LI., ZHANG, F., SUN, Y., WONG, J.W.C., AND FANG, M. (2001)

Chemical evaluation of sewage composting as mature indicator for composting process. Water Air Soil

Sludge Pollut. 132, 333-345.

GUPTA, A.K. AND SINHA, S. (2007) ‘Phytoextraction capacity of the Chenopodium album L.

Grown on soil amended with tannery sludge’, Bioresource Technology, Vol. 98, 442–446.

GUPTA, K., TEWARI, A., SRIVASTAVA, R., MURTHY, R.C., AND S. CHANDRA, (2005) Water, Air, Soil Pollution, pp163, 302.

Page 10: 9. References ADDISON J., PARKINSON D. Oikos 30shodhganga.inflibnet.ac.in/bitstream/10603/5290/15/... · Biology and Fertility of Soils 6, 266 - 269 ALLOWAY, B.J., (1995) Soil Processes

260

GUPTA, R., AND GARG, V.K. (2007) Stabilization of primary sludge during vermicomposting. J

Hazard Mater. DOI: 10.1016/j.hazmat., 9, pp55.

GUPTA, R., AND GARG, V.K., (2009) Vermiremediation and nutrient recovery of non-recyclable

paper waste employing Eisenia fetida. J. Hazard. Matter. 162, 430 - 439.

GUPTA, R., MUTIYARA, P.K., RAWATA, N.K., SAINI, M.S., AND GARG, V.K. (2007) Development of a water hyacinth based vermireactor using an epigeic earthworm Eisenia

foetida. Bioresource Technology 98, 2605 – 2610.

GUPTA, S., NAYAK, S., SAHA, R.N. AND SATPATHY, S. (2008) ‘Assessment of heavy

metal accumulationin macrophyte, agricultural soil, and crop plants adjacent to discharge zone of

sponge ironfactory’, Environmental Geology, Vol. 55, 731–739.

GUTIÉRREZ-MICELI, F., SANTIAGO-BORAZ, J., MOLINA, J.A.M., NAFATE, C.C., ABDUL-ARCHILA, M., LLAVEN, M.A.O., RINCÓN-ROSALES, R., AND

DENDOOVEN, L., (2007). Vermicompost as a soil supplement to improve growth, yield and fruit

quality of tomato (Lycopersicum esculentum). Bioresource Technology, 98(15), 2781-2786.

HAND, P. (1988) Earthworm biotechnology. In: Greenshields R (ed) Resources and application of

biotechnology: the new wave. MacMillan Press Ltd, US

HAND, P., HAYES, W. A., SATCHELL, J.E., AND FRANKLAND, J.C. (1988). The

vermicomposting of cow slurry, ‘Earthworms in waste and environmental management.’ edited by

Edwards, C. A. & Neuhauser, E. F. SPB Academic Publishing, Netherlands. ISBN 90-5103-017-7.

HANLON, R.D.G., AND ANDERSON, J.M. (1979) The effects of Collembola grazing on

microbial activity in decomposingle af litter. Oecologia 32, 93 – 99.

HARDING, D.J.L., AND STUTTARD, R.A. (1974) Microarthropods. In: Dickinson CH, Pugh

GJF (Eds) Biology of plant litter decomposition. Academic Press, New York, 489 – 532.

HARTENSEIN, R., AND HARTENSTEIN, F. (1981). Physicochemical changes affected in

activated sludge by the earthworm Eisenia foetida. J. Environ. Qual. 10, 377 - 382.

HARUTA, S., NAKAYAMA, T., NAKUMURA, K., HEMMI, H., ISHII, M., IGARASHI, Y., AND NISHINO, T. (2005) Microbial diversity in biodegradation and reutilization processes of

garbage. J Biosci Bioeng 99, 1 – 11.

HASSEN, A., BELGUITH, K., JEDIDI, N., CHERIF, A., CHERIF, M., AND

BOUDABOUS, A. (2001) Microbial characterization during composting of municipal solid waste.

Bioresource Technology 80, 217 – 225.

HAYAWIN, Z. N., ABDUL KHALIL, H. P. S., JAWAID, M. HAKIMI IBRAHIM, M., AND ASTIMAR, A. A. (2010). Exploring chemical analysis of vermicompost of various oil palm

fibre wastes.Environmentalist , 30, 273 – 278.

Page 11: 9. References ADDISON J., PARKINSON D. Oikos 30shodhganga.inflibnet.ac.in/bitstream/10603/5290/15/... · Biology and Fertility of Soils 6, 266 - 269 ALLOWAY, B.J., (1995) Soil Processes

261

HAYNES, R.J., FRASER, P.M., PIERCY, J.E., AND TREGURTHA, R.J. (2003) Casts of

Aporrectodea caliginosa (Savigny) and Lumbricus rubellus (Hoffmeister) differ in microbial activity,

nutrient availability and aggregate stability. Pedobiologia 47: 882 – 887.

HEIKENS, A., PEIJNENBURG, W.J.G.M., AND HENDRIKS A.J. (2001). Bioaccumulation

of heavy metals in terrestrial invertebrates. Environ. Pollut. 113, 385 – 393.

HERRERA, F., CASTILLO, J.E., CHICA, A.F. AND BELLIDO, L.L. (2008) ‘Use of

municipal solid waste compost (MSWC) as a growing medium in the nursery production of tomato

plants’, Bioresource Technology, Vol. 99, 287 – 296.

HERRERO, E.M., LOPEZ-GONZALVEZ, A., RUIZ, M.A., LUCAS-GARCIA, J.A., AND BARBAS, C., (2003) Uptake and distribution of zinc, cadmium, lead and copper in Brassica

napus var. oleifera and Helianthus annuus grown in contaminated soils, International Journal of

Phytoremediation, 5, 153 - 167.

HILL, M.O. (1973) Diversity and Evenness: a Unifying Notation and its Consequences. Ecology 54,

427 - 432.

HOBBELEN, P.H.F., KOOLHASS, J.E. AND GESTEL, C.A.M. (2006). Effects of heavy

metals on the litter onsumption by the earthworm Lumbricus rubellus in field soils. Pedobiologia 50, 51

- 60.

HOLMSTRUP, M., SØRENSEN, J.G., OVERGAARD, J., BAYLEY, M., ANNE-METTE, B., SLOTSBO, S., FISKER, K.V., MARALDO, K., WAAGNER, D., LABOURIAU, R., AND ASMUND, G. (2010) Body metal concentrations and glycogen reserves in earthworms

(Dendrobaena octaedra) from contaminated and uncontaminated forest soil. Environmental pollution

in press.

HOPKIN, S.P., (1989). Ecophysiology of Metals in Terrestrial Invertebrates. Elsevier, London.

HSU, M.J., SELVARAJ, K., AND AGORAMOORTHY, G. (2006). Taiwan’s industrial heavy

metal pollution threatens terrestrial biota. Environ. Pollut. 143, 327 – 334.

HU, S., AND VAN BRUGGEN, A.H.C. (1997) Microbial dynamics associated with multiphasic

decomposition of 14C-labelled cellulose in soil. Microb Ecol 33, 134 – 143.

INESON, P., LEONARD, M.A., AND ANDERSON, J.M. (1982) Effect of collembolan grazing

upon nitrogen and cation leaching from decomposable single litter. Soil Biology and Biochemistry 14,

601 - 605.

INTAWONGSE, M., AND DEAN, J.R. (2006) ‘In-vitro testing for assessing oral bioaccessibility

of trace metals in soil and food samples’, Trends in Analytical Chemistry, Vol. 25, 876 – 886.

IRELAND, M.P., (1975). Metal content of Dendrobaena rubida (Oligochaeta) in a base metal mining

area. Oikos 26, 74 - 90.

IRELAND M. P. (1979) Metal accumulation by earthworms Lumbricus rubellus, Dendrobaena venta

and Eiseniella tetraedra living in heavy metal polluted sites. Environ. Pollut., 19, 201 - 206.

Page 12: 9. References ADDISON J., PARKINSON D. Oikos 30shodhganga.inflibnet.ac.in/bitstream/10603/5290/15/... · Biology and Fertility of Soils 6, 266 - 269 ALLOWAY, B.J., (1995) Soil Processes

262

IRELAND M. P. (1983), “Heavy Metals Uptake in Earthworms,” Earthworm Ecology, Chapman &

Hall, London.

IRELAND, M.P., AND RICHARDS, K.S. (1981) Metal content, after exposure to cadmium of

two species of earthworms of known differing calcium metabolic activity. Environmental Pollution, 26,

69-78.

ISMAIL, S.A., (1997). Vermicolgy ‘Biology of earthworms’ Orient Longman Limited, Chennai,

India. ISBN 81-250-10106.

ISMAIL, S.A. (1997) Vermicology: The Biology of Earthworms. Orient longman Press,

Hyderabad, pp 92.

ISMAIL, S.A., (2005) The Earthworm Book. Other India Press, apusa, Goa, pp101.

JACKSON, M., (1982) Soil chemical analysis. London: Constable

JADIA AND FULEKAR, M.H. (2008) Phytoremediation: the application of Vermicompost to

remove zinc, cadmium, copper, nickel And lead by sunflower plant /Environmental Engineering and

Management Journal 7 (5), 547-558.

JADIA, C.D., AND FULEKAR, M.H. (2008) Vermicomposting of vegetable waste: A

biophysicochemical process based on hydro-operating bioreactor. African J Biotechnol ISBN 7: 3723-

3730.

JAIN, K. AND SINGH, J. (2004). Moduling of fly ash induced genotoxity in vica faba by

vermicomposting. Ecotoxicology and Environ Safety. 59, 89-94.

JAJ, N. (2005) ‘Heavy metals and pathogens in leafy Vegetables’: M.Sc dissertation, Department of

Biotechnology and Environmental Sciences, Thapar Institute of Engineering and Technology, Patiala,

India, 1-49.

JAMALUDIN, A.A., AND NOOR ZALINA MAHMOOD. (2010) Effects of Vermicomposting

Duration to Macronutrient Elements and Heavy Metals Concentrations in Vermicompost. Sains

Malaysian, 39(5), 711–715.

JENG, A.S. (1991) ‘Weathering of some Norwegian alum shales. I. Laboratory simulations to study

acid generation and the release of sulphate and metal cations (Ca, Mg and K)’, Acta Agri.Scand. Sect. B.

Soil Plant Sci, Vol. 41, 13 - 35.

JIARG, X., MORGAN, J., AND DOYLE, M.P. (2003) Fate of Eschrihia Coli 0157: H 7 during

composting of bovine manure in a laboratory- scale bioreactor. J Food Prot 66, 25 – 30.

JORDAO, C.P., NASCENTES, C.C., CECON, P.R., FONTES, R.L.F., AND PEREIRA, J.L. (2006). Heavy metal availability in soil amended with composted urban solid wastes.

Environmental Monitoring and Assessment, 112, 309-326.

JORDÃO, C.P., FIALHO, L.L., NEVES, J.C., CECON, P.R., MENDONÇA. E.S., AND

FONTES, R.L., BIORESOUR TECHNOL. (2007) Nov; E-publication, April 2; Reduction of

heavy metal contents in liquid effluents by vermicomposts and the use of the metal-enriched

vermicomposts in lettuce cultivation, 98(15), 2800 - 2813.

Page 13: 9. References ADDISON J., PARKINSON D. Oikos 30shodhganga.inflibnet.ac.in/bitstream/10603/5290/15/... · Biology and Fertility of Soils 6, 266 - 269 ALLOWAY, B.J., (1995) Soil Processes

263

JULKA, J.M. (1986). Earthworms resources of India Proc. Nat. Sem. Org. waste utilization,

Vermicomp., part B: verms and Vermicomposting. Dash, R.C., Senapathi, B.K. and Mishra, P.C. (eds.)

1 - 7.

KABATA-PENDIAS, A., AND PENDIAS, H. (2001), Trace Elements in Soils And Plants, CRC

Press, London.

KAGI, J.H.R., AND KOJIMA, Y., (1987) Chemistry and biochemistry of metallothionein, in:

Kagi, J.H.R., Kojima, Y. (Eds.), Metallothionein II. Birkhauser Verlag, Basel, Switzerland, 25 – 61.

KALE, R.D. (1993) Vermiculture: scope for new biotechnology. In A.K. Ghosh (ed.) Earthworm

Resources & Vermiculture. Zoological Survey of India, Calcutta, 105-108.

KALE, R.D. (1995) Vermicomposting has a bright scope. Indian Silk 34, 6 – 9.

KALE, R.D. (1998) Earthworm Cinderella of Organic Farming. Prism Book Pvt Ltd, Bangalore,

India, pp88.

KALE R.D., BANO K. AND KRISHNAMOORTHY, R.V., (1982) Potential of Perionyx

excavatus for utilizing organic water. Pestology, 23, 419 - 425.

KAMITANI, T., AND KANEKO, N., (2007). Species-specific heavy metal accumulation patterns

of earthworms on a floodplain in Japan. Ecotoxicol. Environ. Saf. 66, 82 – 91.

KARTHIKEYAN, V., SATHYAMOORTHY, G.L., AND MURUGESAN, R., (2007)

Vermicomposting of Market Waste in Salem, Tamilnadu, India. Proceedings of the International

Conference on Sustainable Solid Waste Management, Chennai, India, 276 - 281.

KATZ, S.A., AND JENNIS, S.W., (1983) Regulatory compliance monitory by atomic absorption

spectrometry. Verlay Chemical International, Florida.

KAUSHIK P, AND GARG, V.K. (2003) Vermicomposting of mixed solid textile mill sludge and

cow dung with epigeic earthworm Eisenia fetida. Bioresource Technology, 90, 311–316.

KAUSHIK, P., YADAV, Y.K., DILBAGHI, N., AND GARG, K. (2007) Enrichment of

vermicomposts prepared from cow dung spiked solid textile mill sludge using nitrogen fixing and

phosphate solubilizing bacteria. Environmentalist. DOI 10.1007/s10669-007-9141-5.

KAUTZ, T., LO´PEZ-FANDO, C., AND ELLMER, F. (2006) Abundance and biodiversity of

soil microarthropods as influenced by different types of organic manure in a long-term field experiment

in Central Spain. Applied Soil Ecology 33, 278 – 285.

KAVIRAJ AND SHARMA, S. (2003) Municipal solid waste management through vermicomposting

employing exotic and local species of earthworms. Bioresource Technology, 90, 169-173.

KECK, B., (1981). Biologie et écologie de la taupe, Internal report Ecole Vétérinaire de Lyon 38,

France.

KEENER, H.M., DICK, W.A., AND HOITINK, H.A.J., (2001). Composting and beneficial

utilization of composted by-product materials, in: Power, J.F., Dick, W.A., (Eds.), Land Application of

Page 14: 9. References ADDISON J., PARKINSON D. Oikos 30shodhganga.inflibnet.ac.in/bitstream/10603/5290/15/... · Biology and Fertility of Soils 6, 266 - 269 ALLOWAY, B.J., (1995) Soil Processes

264

Agricultural, Industrial, and Municipal By-products. Soil Science Society of America, Madison, West

Indies, 315–341.

KIM, I.S., KANG, H.K., JOHNSON-GREEN, P., LI, E.J. (2003) Investigation of heavy

metal accumulation in Polygonum thunbergii for phytoextraction. Environ Pollut., 126, 235–243.

KITTURMATH, M.S., GIRADDI, R.S., AND BASAVARAJ, B. (2007) Nutrient Changes

during Earthworm, Eudrilus eugeniae (Kinberg) Mediated Vermicomposting of Agro-industrial Wastes.

Karnataka Journal of Agriculture Science 20, 653-654.

KLOK, C., VAN DER HOUT, A., AND BODT, J., (2006). Population growth and development

of the earthworm Lumbricus rubellus in a polluted field soil: possible consequences for the godwit

(Limosa limosa). Environ. Toxicol. Chem. 25, 213 – 219.

KOEHLER, H.H. (1997) Mesostigmata (Gamasina, Uropodina), efficient predators in

agroecosystems. Agric. Ecosyst. Environ. 62, 105 – 117.

KRAMER, U., CHARDONNENS, A.N. (2001), The use of transgenic plants in the bioremediation

of soils contaminated with trace elements, Appl. Microbiol Biotechnol., 55, 661 - 672.

KRUSE, E.A., AND BARRETT, G.W., (1985). Effects of municipal sludge and fertilizer on

heavy metal accumulation in earthworms. Environ. Pollut. (Series A) 38, 235 - 244.

KUMAR, S., BHATTACHARYYA, J.K., VAIDYA, A.N., CHAKRABARTI, T., DEVOTTA, S., AND AKOLKAR, A.B. (2009) Assessment of the status of municipal solid waste

management in metro cities, state capitals, class I cities, and class II towns in India: An Insight. Waste

Management, 29, 883–895.

LAPINSKI, S., BOROWIEC, F., POSPIECH, N., AND SOLTYK-STEFANSKA, M., (2002).

Heavy metals accumulation in the body of earthworm Eisenia fetida (Sav.) used in animal nutrition.

Ukrainian Academy of Agrarian Sciences, Anim. Biol. 4, 205 – 209.

LAPINSKI, S., AND ROSCISZEWSKA, M. (2008) The impact of cadmium and mercury

contamination on reproduction and body mass of earthworms Plant Soil Environment., 54(2) 61–65.

LARNEY, F.J., BLACKSHOW, R.E. (2003). Weed seed viability in compost Beef cattle feedlot

manure. J. Environ. Qual. 32: 1105-1113.

LASAT, M.M. (2002) Phytoextraction of toxic metals. J. Environ. Qual., 31, 109–120.

LAWTON, J.H., BIGNELL, D.E., BOLTON, B., BLOEMERS, G.F., EGGLETON, P., HAMMOND, P.M., HODDA, M., HOLT, R.D., LARSEN, T.B., MAWDSLEY, N.A., STORK, N.E., SRIVASTAVA, D.S., AND WATT, A.D. (1998) Biodiversity inventories,

indicator taxa and effects of habitat modification in tropical forest. Nature 391, 72 – 76.

LAZCANO,C., GÓMEZ-BRANDÓN, M., AND DOMÍNGUEZ, J. (2008) Comparison of the

effectiveness of composting and vermicomposting for the biological stabilization of cattle manure,

Chemosphere, 72, 1013–1019.

Page 15: 9. References ADDISON J., PARKINSON D. Oikos 30shodhganga.inflibnet.ac.in/bitstream/10603/5290/15/... · Biology and Fertility of Soils 6, 266 - 269 ALLOWAY, B.J., (1995) Soil Processes

265

LEE, K.E. (1985) Earthworms: Their Ecology and Relationships with Soils and Land Use, Academic

Press, London, pp411.

LEONARD, A.O. AND DOLFING, J. (2001) ‘Cadmium uptake by earthworms as related to the

availability inthe soil and the intestine’, Environ. Contam. Toxicol., Vol. 20, 1786 - 1791.

LI, K. E. (1985) Earthworms: Their Ecology and Relationships with Soils and Land Use, Academic

Press, New York, 1985, pp. 411.

LI, L., XU, Z., WU, J., AND TIAN, G., (2010) Bioaccumulation of heavy metals in the

earthworm Eisenia fetida in relation to bioavailable metal concentrations in pig manure. Bioresource

Technol. 101, 3430 - 3436.

LIN, H. C., AND CHIOU, C. K. (1990) Response of lettuce, mustard, rice and corn crops to

cadmium treatment. Proceeding of the 2nd workshop of Soil Pollution Prevention, 257-272.

LOCK, K., AND JANSSEN, C.R., (2001) Zinc and cadmium body burdens in terrestrial

oligochaetes: use and significance in environmental risk assessment. Environmental Toxicology and

Chemistry 20, 2067 – 2072.

LONE, M.I., HE Z.L., STOFFELLA, P.J., AND YANG. X. (2008) Phytoremediation of heavy

metal polluted soils and water: Progresses and perspectives, Journal of Zhejiang University Sci B., 9,

210-220.

LORIMOR, J., FULHAGE, C., ZHANG, R., FUNK, T., SHEFfiELD, R., SHEPPARD, C., AND NEWTON, G.L. (2001). Manure management strategies/ technologies, White paper on animal

agriculture and the environment for national center for manure and animal waste management. MWPS,

Ames, IA, pp52.

LUCAS, J. (1974) Our polluted food, 2nd edition, New York: Helsted press.

LUKKARI,T., TENO, S., VAISANEN, A., AND HAIMI, J.,(2006) Effect of earthworms on

decomposition and metal availability in contaminated soil: Microcosm studies of populations with

different exposure histories. Soil Biol. Biochem. 38, 359 – 370.

MA, W.C. (2004) Estimating heavy metal accumulation in Oligochaete earthworms: a meta-analysis

of field data. Bull Environ Contam Toxicol 72, 663 – 670.

MA, Y., DICKINSON, N.M., AND WONG, M.H., (2002) Toxicity of Pb/Zn mine tailings to

the earthworm Pheretima and the effects of burrowing on metal availability. Biol. Fert. Soils, 36, 79 -

86.

MABOETA, M. S., AND VAN RENSBURG, L. (2003). Vermicomposting of industrially

produced woodchips and sewage sludge utilizing Eisenia fetida. Ecotoxicology and Environment Safety,

56, 256–270.

MAGURRAN, A.E. (1988) Ecological diversity and its measurement, Chapman and Hall, pp179.

Page 16: 9. References ADDISON J., PARKINSON D. Oikos 30shodhganga.inflibnet.ac.in/bitstream/10603/5290/15/... · Biology and Fertility of Soils 6, 266 - 269 ALLOWAY, B.J., (1995) Soil Processes

266

MAITY, S., PADHY, P.K., CHAUDHURY, S. (2008) The role of earthworm Lampito mauritii

(Kinberg) in amending lead and zinc treated soil, Bioresource Technology, 99(15), 7291-7298.

MAJETI, V.A., AND CLARK, C.S. (1980). EPA Publication 600/1-80-025, Cincinnati.

MALLEY, C., NAIR, J., AND HO, G. (2006) Impact of heavy metals on enzymatic activity of

substrate and on composting worms Eisenia foetida. Bioresour Technol, 97, 1498 – 1502.

MANIMEGALA, G., SAROJINI, S., GUNASEKARAN, G., PRAKASH, M., PARTHASARATHI, K. AND ANANTHAKRISHNASAMY, S. (2008) Role of Leucaena glauca

leaf litter on the growth and reproduction of earthworms Eisenia fetida Savigny. CMU. J. Nat. Sci.,

7(2), 295 - 306.

MANNA, M.C., JHA, S., GHOSH, P.K., AND ACHARYA, C.L. (2003) Comparative

efficacy of three epigeic earthworms under different deciduous forest litters decomposition.

Bioresource Technology 88, 197 - 206.

MARSH, L., SUBLER, S., MISHRA, S., AND MARINI, M. (2005). Suitability of aquaculture

effluent solid mixed with cardboard as a feedstock for vermicomposting. Bioresource Technology, 96,

413–418.

MARTIN, M.H., AND COUGHTREY, P.J. (1982). Biological Monitoring of Heavy Metal

Pollution. Land and Air. Applied Science Publishers, London.

MATHUR, U.B., VERMA, L., JITENDRA, K., AND SRIVASTAVA, N. (2006) Effects of

Vermicomposting on Microbiological Flora of Infected Biomedical Waste. ISHWM Journal, 5(1), 28-

33.

MCBRAYER, J.F. (1977) Contributions of Cryptozoa to forest nutrient cycles. In: Mattson WJ (Ed)

The role of arthropods in forest ecosystems. Springer-Verlag, New York, 70 – 77.

MCGRATH, S.P., ZHAO, F. J. (2003) Phytoextraction of metals and metalloids from

contaminated soils. Curr Opin Biotechnology, 14, 1–6.

MEDINA, M. (1997) The effect of income on municipal solid waste generation rates for countries of

varying levels of economic development: a model. Journal of Resource Management and Technology,

24, 149–155.

MENTA, C., LEONI, A., BARDINI, M., GARDI, C., AND GATTI, F. (2008) Nematode and

Microarthropod Communities: Comparative Use of Soil Quality Bioindicators in Covered Dump and

Natural Soils. Environmental Bioindicators 3, 35 – 46.

MINOR, M.A., CIANCIOLO, J.M. (2007) Diversity of soil mites (Acari: Oribatida,

Mesostigmata) along a gradient of land use types in New York. Applied Soil Ecology 35, 140–153.

MITCHELL, A. (1997). Production of Eisenia fetida and Vermicompost from Feed-lot Cattle

Manure. Soil Biology & Biochemistry, 29, 763–766.

MOEF (2000) Municipal Solid Wastes (Management and Handling) Rules. New Delhi: Ministry of

Environment and Forests, Government of India.

Page 17: 9. References ADDISON J., PARKINSON D. Oikos 30shodhganga.inflibnet.ac.in/bitstream/10603/5290/15/... · Biology and Fertility of Soils 6, 266 - 269 ALLOWAY, B.J., (1995) Soil Processes

267

MOHAMED, A. E., RASHED, M. N., AND MOFTY, A. (2003) Assessment of essential and toxic

elements in some kinds of vegetables. Ecotoxicol. Environ. Safety, 55: 251-260.

MOHAN, S., AND GANDHIMATHI R. (2009) Removal of heavy metal ions from municipal solid

waste leachate using coal fly ash as an adsorbent, Journal of Hazardous Materials, 169(1-3) 351-359.

MOODY, S.A., BRIONES, M.J.I., PIERCE, T.G., AND DIGHTON, J. (1995) Selective

consumption of decomposing wheat straw by earthworms. Soil Biol Biochem 27, 1209 – 1213.

MOORE, J. C., WALTER, D.E., AND HUNT, H.W. (1988) Arthropod regulation of micro-

and mesobiota in below-ground detrital food Webs. Ann. Rev. Entomol. 33, 419-439.

MORGAN, J.E., AND MORGAN, A.J. (1988) Calciumelead interactions involving earthworms.

Part 1: The effect of exogenous calciumon lead accumulation by earthworms under field and laboratory

conditions. Environmental Pollution, 54, 41-53.

MORGAN, J.E. AND MORGAN, A.J. (1988) ‘Earthworms as biomonitors of Cadmium, Lead

and Zinc in metalliferous soils’, Environmental pollution, Vol. 54, 123 - 138.

MORGAN, J.E., MORGAN, A.J.. (1992). Heavy metal concentrations in the tissues, ingesta and

faeces of ecophysiologically different earthworm species. Soil Biol Biochem, 12, 1691–1697.

MORGAN, J.E., AND MORGAN, A.J. (1999) The accumulation of metals (Cd, Cu, Pb, Zn and

Ca) by two ecologically contrasting earthworm species (Lumbricus rubellus and Aporrectodea

caliginosa): implications for ecotoxicological testing. Appl. Soil Ecol. 13, 9 - 20.

MORGAN, A.J., MORGAN, J.E., TURNER, M., WINTERS, C., AND YARWOOD, A. (1993). Metal relationships in earthworms. In: Dallinger, R., Rainbow, P.S. (Eds). Ecotoxicology of

Metals in Invertebrates. SETAC Special Publications Series, Lewis Publishers, Boca Raton, 333 - 358.

MORGAN, A.J., AND MORRIS, B. (1982). The accumulation and intracellular compartmentation

of cadmium, lead, zinc, and calcium in two earthworm species (Dendrobaena rubida and Lumbricus

rubellus) living in a highly contaminated soil. Histochemistry 25, 269-285.

MORGAN, J.E., NOREY, C.G., MORGAN, A.J., AND KAY, J. (1989) A comparison of the

cadmium-binding proteins isolated from the posterior alimentary canal of the earthworms Dendrodrilus

rubidus and Lumbricus rubellus. Comp. Biochem Physiol C, 92, 15-21.

MORGAN, A.J., AND WINTERS, C. (1982). The elemental composition of the chlorago somes of

two earthworm species Lumbricus terrestris and Allolobophora longa determined by electron probe X-

ray microanalysis of freeze-dried cryosections. Histochemistry 73, 589-598.

MOUNTOURIS, A., VOUTSAS, E., AND TASSIOS, D. (2002). Bioconcentration of heavy

metals in aquatic environments: the importance of bioavailability. Mar. Pollut. Bull. 44, 1136 - 1141.

NAGAVALLEMMA, K.P., WANI, S.P., STEPHANE, L., PADMAJA, V.V., VINEELA, C., RAO, M.B., AND SAHRAWAT, K.L. (2006) Vermicomposting: Recycling wastes into

valuable organic fertilizer. SAT e-Journal | ejournal.icrisat.org 2, pp 20.

Page 18: 9. References ADDISON J., PARKINSON D. Oikos 30shodhganga.inflibnet.ac.in/bitstream/10603/5290/15/... · Biology and Fertility of Soils 6, 266 - 269 ALLOWAY, B.J., (1995) Soil Processes

268

NAHMANI, J., HODSON, M. E., AND BLACK, S. (2007) A review of studies performed to

assess metal uptake by earthworms, Environmental Pollution 145, 402-424.

NAKAMURA, Y. (1976) Decomposition of organic materials and soil fauna in pastures.

Disappearance of cow dung and succession of the associated soil-microarthropods. Pedobiologia 16,

243 – 257. NANDAKUMAR, P.B.A., DUSHENKOV, V., MOTTO, H., AND RASKIN, I. (1995),

Phytoextraction: The use of plants to remove heavy metals from soils, Environ. Sci. Technology, 29,

1232 - 1238.

NEERI REPORT (2005). Assessment of status of municipal solid waste management in metro

cities, state capitals, class I cities and class II towns.

NEHNEVAJOVA, E., HERZIG, R., FEDERER, G., ERISMANN, K.H., AND

SCHWITZGUEBEL J.P. (2005) Screening of sunflower cultivars for metal phytoextraction in a

contaminated field prior to mutagenesis, International Journal of Phytoremediation, 7, 337 - 349.

NESHINA, E. L., TITOV, I. N. AND ILJIN, E. A. (2002) The use of vermicompost for

bioconversion of municipal sewage sludge into biohumus and humus substances.Biogeography of soils.

International conference, 122–123.

NILANTHI, J.G., BANDARA, J., PATRICK, J., HETTIARATCHI, A., WIRASINGHE, S.C., AND PILAPIIYA, S. (2007) Relation of waste generation and composition to socio-economic

factors: A case study on Environmental Monitoring and Assessment, 135, 31–39.

NOBLE, R., AND COVENTRY, E. (2005) Suppression of soil-borne plant diseases with composts:

a review. Biocontrol Sci Technol, 15, 3–20.

NOGALES, R., CIFUENTES, C., AND BENITEZ, E. (2005). Vermicomposting of winery waste:

a laboratory study. Journal of Environmental Science and Health B, 40, 659–673.

NORTON, R.A. (1990) Acarina: Oribatida. In: Dindal DL (Ed) Soil Biology Guide. John Wiley and

Sons, Brisbane, 779 – 803.

NOWAK, B., PESSL,A., ASCHENBRENNER, P. , SZENTANNAI, P., MATTENBERGER, H., RECHBERGER, H., HERMANN, L., AND WINTER, F. (2010) Heavy metal removal

from municipal solid waste fly ash by chlorination and thermal treatment Journal of Hazardous

Materials, 179(1-3), 323-331.

NUMBERG, H.W. (1984) ‘The volumetric approach in trace metal chemistry of natural waters and atmosphere precipitation’, Analyst Chim.Acta., Vol. 164, 1-21.

ODUM, E.P. (1971) Ecological uses of vertebrate indicator species: a critique. Conservation Biology

2, 316 – 328.

OYELOLA, O. T., BABATUNDE, A. I., AND ODUNLADE, A. K. (2009) Phytoremediation

of Metals from Contaminated Soil using Lycopercium Esculentum (Tomato) Plant . Int. Jor. P. App.

Scs., 3(2):44-48.

Page 19: 9. References ADDISON J., PARKINSON D. Oikos 30shodhganga.inflibnet.ac.in/bitstream/10603/5290/15/... · Biology and Fertility of Soils 6, 266 - 269 ALLOWAY, B.J., (1995) Soil Processes

269

OZORES-HAMPTON, M., AND VAVRINA, C.S. (2002) Worm castings: An alternative to

sphagnum peat moss in organic tomato (Lycopersicon esculentum Mill.) transplant production. Proc

Intl Composting and Compost Sci Symposium, Columbus, Ohio: CD ROM.

PADMAVATHIAMMA, P.K., LIB, L.Y., AND KUMARIC, U.R. (2008) An experimental

study of vermi-biowaste composting for agricultural soil improvement. Bioresource Technology 99,

1672 – 1681.

PANIKKAR, A., AND RILEY, S. (2003) Biological treatment of blackwater and mixed solid waste:

An example of a treatment system, In: Proceedings of Orbit , Vol.2, Murdoch University, Perth,

Australia.

PAPAFOTIOU, M., PHSYHALOU, M., KARGAS, G., CHATZIPAVLIDIS, I., AND

CHRONOPOULOS, J. (2004) Olive-mill wastes compost as growing medium component for the

production of poinsettias. Scientia Horticulturae 102, 167 – 175.

PARÉ, T., DINEL, H., SCHNITZER, M., AND DUMONET, S. (1998) Transformation of

carbon and nitrogen during composting of animal manure. Biol. Fert. Soils 26, 173 – 178.

PARK, J.H., DANE, L., PANEERSELVAM, P., CHOPPALA, G., BOLAN, N., AND JAE-WOO, CHUNG. (2010) Role of organic amendments on enhanced bioremediation of heavy metal

(loid) contaminated soils, Journal of Hazardous Materials.

PARKER, L.W., SANTOS, P.F., PHILLIPS, J., AND WHIFFORD, W.G. (1984) Carbon

and nitrogen dynamics during the decomposition of litter and roots of a Chihuahuan desert annual. Ecol.

Monogr 54, 339 – 360.

PARKINSON, D. (1980) Aspects of microbial ecology of forest ecosystems. In: Waring RH (Ed)

Forest: Fresh, Perspectives from ecosystem analysis. State University, Corvallis, Oreg. 109 – 117.

PASHA, M., REDDY, M.V., AND AHMED, R., (2009) Influence of Kitchen-Waste

vermicompost, earthworm-casts and farmyard manure on some growth parameters and mineral

nutrients of straw of maize in glass house trials. In: Venkateshwarlu P, Suchetha PS, Leela B, Jayanthi

P, Kumari N (Eds.) Proceedings of the National Seminar, Biotechnology in Life Sciences –Current

Trends and Developments, Deepti Printers, Warangal (Andhra Pradesh), 52-59.

PATTNAIK, S., REDDY, M.V. AND SINGH, P. (2006) ‘ Concentration of cadmium, lead and

zinc and their leaching in municipal solid waste dumping sites at Bhubaneswar city (Orissa)’,

Proceedings of National Academy of Sciences, India, 76(B), 251-258.

PATTNAIK S, AND REDDY, M.V. (2009) Bioconversion of Municipal (Organic) Solid Waste

into Nutrient-rich Vermicompost by Earthworms (Eudrilus eugeniae, Eisenia fetida and Perionyx

excavatus). Dynamic Soil Dynamic Plant 3, 122 – 128.

PATTNAIK, S., AND REDDY, M. V., (2009). Assessment of Municipal Solid Waste management

in Puducherry (Pondicherry), India. Resource Conserving. Recycling. Available online 20 November

(In Press).

PATTNAIK, S., AND REDDY, M. V. (2010) Assessment of Municipal Solid Waste management

in Puducherry (Pondicherry), India. Resources, Conservation and Recycling 54, 512-520.

Page 20: 9. References ADDISON J., PARKINSON D. Oikos 30shodhganga.inflibnet.ac.in/bitstream/10603/5290/15/... · Biology and Fertility of Soils 6, 266 - 269 ALLOWAY, B.J., (1995) Soil Processes

270

PATTNAIK, S., AND REDDY, M.V. (2011) Microbial characterization of vermicompost and

compost of urban waste processed by three earthworm species – E. eugeniae,E.fetida and P. excavatus.

Pedobiologia, Under review.

PEDRO, M.S., HARUTA, S., NAKAMURA, K., HAZAKA, ISHJI, M.M., AND

IGARASHI, Y. (2003) Isolation and characterization of predominant microorganisms during

decomposition of waste materials in a field – scale composter. J Biosci Bioeng, 95, 368 – 373.

PEIJNENBURG,W.J.G.M., BAERSELMAN, R., DE GROOT, A.C., JAGER, T., POSTHUMA, L., AND VAN VEEN, R.P.M. (1999) Relating environmental availability to

bioavailability: soil-type-dependent metal accumulation in the oligochaete Eisenia andrei.

Ecotoxicology and Environmental Safety, 44, 294-310.

PERALTA, J.R., GARDEA-TORRESDEY, J.L., TIEMANN, K.J., GOMEZ, E., ARTEAGA, S., RASCONS, E., AND PARSONS, J.G. (2001), Uptake and effects of five heavy

metals on seed germination and growth in Alfalfa (Medicago sativa L.), Bull. Environ. Contam.

Toxicology, 66, 727 - 734.

PEREZ-MURCIA, M.D., MORAL, R., MORENO-CASELLES, J., PEREZ-ESPINOSA, A., AND PAREDES, C. (2006) Use of composted sewage sludge in growth media for broccoli.

Bioresource Technology 97, 123-130.

PERNER, H., SCHWARZ, D., AND GEORGE, E. (2006) Effect of mycorrhizal inoculation and

compost supply on growth and nutrient uptake of young leek plants growth on peat-based substrates.

Horticulutural Science 41, 628 – 632.

PETERSEN, H. (2002) General aspects of collembolan ecology at the turn of the millennium.

Pedobiologia 46, 246 – 260.

PETERSEN, H., AND LUXTON, M. (1982) A comparative analysis of soil fauna populations and

their role in decomposition process. Oikos 39, 288 – 389.

PIK, A.J., OLIVER, I., BEATTIE, A.J. (1999) Taxonomic sufficiency in ecological studies of

terrestrial invertebrates. Australian Journal of Ecology 24, 555 – 562.

PILON-SMITS, E. (2005) Phytoremediation, Annu. Rev. Plant. Biol., 56, 15 - 39, On line at:

http://www.arjournals.annualreviews.org.

PIZˇ, L.V., AND NOVAKOVA, A. (2003) Interactions between microfungi and Eisenia andrei

(Oligochaeta) during cattle manure vermicomposting. Pedobiologia, 47, 895 – 899.

POKARZHEVSKY, A.D. (1979) Effect ofsaprophages on mass dynamics of ash elements in

decomposing forest litter Dokl. Akad. Nauk SSSR Nov. Ser. 245, 265 – 268.

POKHREL, D., AND VIRARAGHAVAN, T. (2005) Municipal solid waste management in Nepal:

practices and challenges. Waste Management, 25 555–562.

PRAMANIK, P., GHOSH, G.K., GHOSAL, P.K., AND BANIK, P. (2007) Changes in

organic – C, N, P and K and enzyme activities in vermicompost of biodegradable organic wastes under

liming and microbial inoculants. Bioresource Technology 98, 2485 – 2494.

Page 21: 9. References ADDISON J., PARKINSON D. Oikos 30shodhganga.inflibnet.ac.in/bitstream/10603/5290/15/... · Biology and Fertility of Soils 6, 266 - 269 ALLOWAY, B.J., (1995) Soil Processes

271

RAINBOW, P.S. (2002) Trace metal concentrations in aquatic invertebrates: why and so what?

Environmental Pollution, 120, 497-507.

RAJKHOWA, D.J., GOGOI, A.K., KANDAL, R., AND RAJKHOWA, K.M. (2000) Effect

of vermicompost on Greengram nutrition. Journal of the Indian Society of Soil Science 48, 207-208.

RAVICHANDRAN, C., CHANDRASEKARAN, G. E. AND CHRISTY PRIYADHARSINI F. (2001) Indian J Environ Prot., 21, 538-542.

RAVINDRAN, B., DINESH, S. L., KENNEDY, L.J., AND G. SEKARAN (2008)

Vermicomposting of Solid Waste Generated from Leather Industries Using Epigeic Earthworm Eisenia

foetida Appl Biochem Biotechnol, DOI 10.1007/s12010-008-8222-3.

REDDY, K. S., AND SHANTARAM, M. V. (2005). Potential of earthworm in composting of

sugarcane byproducts. Asian Journal Microbiology and Biotechnology Environmental Science, 7, 483–

487.

REDDY, M.V. (1995) Soil organisms and litter decomposition in the Tropics. Oxford & IBH Publ.

Co. Ltd., New Delhi, Kolkotta, pp174.

REDDY, M.V. (2002) Vermicomposting - A latent technology to improve the productivity of small

farmers, In: Rural technology for Poverty Alleviation, (Ed.) P. Purushotham, National Institute of Rural

Development, Hyderabad, 46-55.

REDDY, M.V., AND OHKURA, K. (2004) Vermicomposting of rice straw and its effect on

sorghum growth. Tropical Ecology 45, 272-331.

REINECKE, A.J., VILJOEN, S.A., AND SAAYMAN, R.J. (1992) The suitability of Eudrilus

eugeniae, Perionyx excavatus and Eisenia fetida (Oligochaeta) for vermicomposting in southern Africa

in terms of their temperature requirements. Soil Biology and Biochemistry, 24, 1295 – 1307.

ROSCISZEWSKA, M., LAPINSKI, S., BOROWIEC, F., POPEK, W., AND DRAG, E. (2003) Relationship between the content of some heavy metals in substrate and their accumulation in

the bodies of Dendrobaena octaedra (Sav.). Chem. Agric. 4, 557–562.

RYCKEBOER, J., MERGAERT, J., VAES, K., KLAMMER, S., DE-CLERCQ, D., COOSEMANS, J., INSAM, H., AND SWINGS, J. (2003) A survey of bacteria and fungi

occurring during composting and self-heating processes. Ann Microbiol, 53, 349–410.

SAITO, M., WADA, H., AND TAKAY, Y. (1990) Development of a microbial community on

cellulose buried in waterlogged soil. Biol Fertil Soils, 9, 301 – 305.

SAMANTARAY, S.S., AND REDDY, M.V. (2009) Effects of kitchen- waste vermicompost on

chlorophyll content, leaf area index, biomass and other growth characteristics of fenugreek (Trigonella

foenum graceum Linn.) under field conditions. Proceedings of national Academic Science, India,

Section B, 79, 312 – 317.

SAMPLE, B.E., SUTER, G.W., BEAUCHAMP, J. J., AND EFROYMSON, R.A. (1999)

Environ. Toxicol. Chem., 18, pp2120.

Page 22: 9. References ADDISON J., PARKINSON D. Oikos 30shodhganga.inflibnet.ac.in/bitstream/10603/5290/15/... · Biology and Fertility of Soils 6, 266 - 269 ALLOWAY, B.J., (1995) Soil Processes

272

SANTOS, P.F., PHILLIPS, J., AND WHITFORD, W.G. (1981) The role of mites and

nematodes in early stages of buried litter decomposition in a desert. Ecology 62, 664 – 669.

SARKAR, S. (1990) Studies on microarthropod community in one indisturbed habitat of Tripura

(India) with special reference to oribatid mites. Rev. Ecol. Biol. Sol. 27, 307 – 329.

SAROJINI, S., ANANTHAKRISHNASAMY S., MANIMEGALA G., M. PRAKASH AND

G. GUNASEKARAN, (2009) Effect of lignite flyash on the growth and reproduction of earthworm

Eisenia fetida. E. J. Chem., 6(2), 511 - 517.

SCHEU, S. (1987) Microbial activity and nutrient dynamics in earthworm cast (Lumbricidae). Biol

Fertil Soils 5, 230 – 234.

SCHLOSS, P.D., HAY, A.G., WILSON, D.B., WALKER, L.P. (2003) Tracking temporal

changes of bacterial community fingerprints during the intitial stages of composting. Microbial

Ecology, 46, 1 – 9.

SCHMIDT, U. (2003) Enhancing Phytoextraction: The effects of chemical soil manipulation on

mobility, plant accumulation and leaching of heavy metals, J. Environ. Qual., 32, 1939 - 1954.

SEASTEDT, T.R. (1984) The role of Microarthropods in Decomposition and Mineralization

processes. Ann. Rev. Entomol. 29, 25 – 46.

SEASTEDT, T.R. (1995) Soil fauna and the biogeochemistry of tropical ecosystems In: Reddy MV

(Ed) Soil Organisms and Litter Decomposition in the Tropics. Westview Press, Boulder, Colorado. 183

– 202.

SEASTEDT, T.R., AND CROSSLEY, D.A. JR. (1980) Effects of microarthropods on the

seasonal dynamics of nutrients in forest litter. Soil Biology and Biochemistry, 12, 337 – 342.

SEASTEDT, T.R., CROSSLEY, D.A. JR. (1983) Nutrients in forest litter treated with

naphthalene and simulated throughfall: A field microcosm study. Soil Biology and Biochemistry, 15,159

– 165.

SEASTEDT, T.R., TATE, C.M. (1984) Decompositiorna tes and nutrient contents of arthroporde

mainisn forest litter. Ecology 62, 13 – 19.

SEN, B., AND CHANDRA, T.S. (2009) Do earthworms affect dynamics of functional response and

genetic structure of microbial community in a lab-scale composting system? Bioresour Technol 100,

804 – 811.

SEN, B., HAMELIN, J., BRU-ADAN, V., GODON, J.J., AND CHANDRA, T.S. (2008)

Structural divergence of bacterial communities from functionally similar laboratory-scale

vermicomposts assessed by PCR-CE-SSCP. J Appl Microbiol 105, 2123 – 2132.

SHAHMANSOURI, M.R., POURMOGHADAS, H., PARVARESH, A.R. AND ALIDADI, H. (2005) ‘Heavy metal bioaccumulation by Iranian and Australian earthworms (Eisenia fetida) in the

sewage sludge vermicomposting’, Iranian J. Env. Health Sci. Eng., Vol. 2, 28 - 32.

SHEKDAR (1999). Municipal solid waste management—the Indian perspective. Journal of Indian

Association for Environmental Management , 26, 100 – 108.

Page 23: 9. References ADDISON J., PARKINSON D. Oikos 30shodhganga.inflibnet.ac.in/bitstream/10603/5290/15/... · Biology and Fertility of Soils 6, 266 - 269 ALLOWAY, B.J., (1995) Soil Processes

273

SHEPPARD, S.C., EVENDEN, W.G., AND CORNWELL, T.C., (1997). Depuration and

uptake kinetics of I, Cs, Mn, Zn and Cd by the earthworm (Lumbricus terrestris) in radiotracer-spiked

litter. Environmental Toxicology, 16, 2106 – 2112.

SHORT, J.C.P., FREDERICKSON, J., AND MORRIS, R.M. (1999) Evaluation of traditional

windrow-composting and vermicomposting for the stabilization of waste paper sludge (WPS).

Pedobiologia 43, 735-743.

SHU, W.S., YE, Z.H., LAN, C.Y., ZHANG, Z.Q., AND WONG, M.H. (2002) Lead, zinc

and copper accumulation and tolerance in populations of Paspalum distichum and Cynodon dactylon.

Environ Pollution, 120, 445–453.

SINGH, A. AND SHARMA, S. (2003). Effect of microbial inocula on mixed solid waste

composting, vermicomposting and plant response. Compost Science & Utilization. 11, 190 - 199.

SINGLETON, D.R., HENDRIX, B.F., COLEMAN, D.C., AND WHITEMANN, W.B. (2003) Identification of uncultured bacteria tightly associated with the intestine of the earthworms

Lumricus rubellus. Soil Bio Biochem 35, 1547–1555.

SINHA, R.K., CHAUHAN, K., AND VALANI, D. (2010) Earthworms: Charles Darwin’s

‘Unheralded Soldiers of Mankind’: Protective & Productive for Man & Environment. Vinod Chandran,

Brijal Kiran Soni, Vishal Patel Journal of Environmental Protection, 1, 251 – 260.

SŁAWOMIR, W., MAŁGORZATA N. (2005) Biocomposite for organic waste

Degradation.Physicochemical Problems of Mineral Processing, 39, 249-256.

SMITH, R., (2009) A critical review of the bioavailability and impacts of heavy metals in municipal

solid waste composts compared to sewage sludge. Environ. Int. 35, 142 - 156.

SPINOSA, L., AND VESILIND, P.A. (2001). Sludge into Biosolids. Processing, Disposal and

Utilization. Alliance House. IWA Publishing, London, United Kingdom, pp394.

SPURGEON, D.J., AND HOPKIN, S.P., (1999). Comparisons of metal accumulation and

excretion kinetics in earthworms (Eisenia fetida) exposed to contaminated field and laboratory soils.

Applied Soil Ecology, 11, 227 – 243.

SOMASUNDARAM, J. (2003). Imbibing toxic/heavy metals through leafy vegetables. In: The

Hindu, Online edition of India's National Newspaper, 6th November.

SONG, J., ZHAO, F. J., LUO, Y. M., MCGRATH, S. P., ZHANG, H. (2004) Copper

uptake by Elsholtzia splendens and Silene vulgaris and assessment of copper phytoavailability in

contaminated soils. Environmental Pollution, 128, 307-315.

STORK, N.E. (1988) Insect diversity: facts, fiction and speculation. Biological Journal of the

Linnaean Society 35, 321 – 337.

SUTHAR, S., (2007) Vermicomposting potential of Perionyx sansibaricus (Perrier) in different waste

materials. Biores. Technol., 98, 1231 - 1237.

SUTHAR, S., (2008). Bioremidiation of aerobically treated distillery sludge mixed with cowdung by

using an epigeic earthworm Eisenia fetida. Environmental Science and Technology. 28, 76 - 84.

Page 24: 9. References ADDISON J., PARKINSON D. Oikos 30shodhganga.inflibnet.ac.in/bitstream/10603/5290/15/... · Biology and Fertility of Soils 6, 266 - 269 ALLOWAY, B.J., (1995) Soil Processes

274

SUTHAR, S. (2010) Pilot-scale vermireactors for sewage sludge stabilization and metal remediation

process: Comparison with small-scale vermireactors. Ecological Engineering, 36(5), Pages 703 – 712.

SUTHAR, S., AND SINGH S. (2008) Feasibility of vermicomposting in biostabilization of sludge

from a distillery industry. Science of the Total Environment, 394, 237 - 243.

SUTHAR S., AND SINGH, S. (2009). Bioconcentrations of metals (Fe, Cu, Zn, Pb) in earthworms

(Eisenia fetida) inoculated in municipal sewage sludge: Do earthworms pose a possible risk of

terrestrial food chain concentration?. Environ. Toxicol., 24, 25 - 32.

SUTHAR, S. (2010) Pilot-scale vermireactors for sewage sludge stabilization and metal remediation

process: Comparison with small-scale vermireactors Original Research Article

Ecological Engineering, Volume 36, Issue 5, 703 - 7 12.

TAJBAKHSH, J. M., ABDOLI, A., MOHAMMADI GOLTAPEH, E. ALAHDADI, I., AND

MALAKOUTI, E. M. J. (2008) Recycling of spent mushroom compost using earthworms Eisenia

foetida and Eisenia Andrei, Environmentalist DOI 10.1007/s10669-008-9172-6.

TANG, S., XI, L., ZHENG J., LI H., (2003), Response to elevated CO2 of Indian Mustard and

Sunflower growing on copper contaminated soil, Bull. Environ. Contam. Toxicology, 71, 988 - 997.

TCHOBANOGLOUS, G., THEISEN, H., SAMUEL, A.V. (1993) Integrated solid waste

management—engineering principles and management issues. McGraw Hill International Edition.

TERI (1998). Looking Back to Think Ahead: GREEN India 2047. In: Pachauri RK, Sridharan PV, editors. Growth with resource enhancement of environment and nature. New Delhi: Tata Energy Research Institute; pp346.

TESSIER, L., VAILLANCOURT, G., AND PAZDERNIC, I. (1994). Temperature effects on

cadmium and mercury kinetics in freshwater mollusks under laboratoty conditions. Archives of

Environmental Contamination and Toxicology, 26, 179–184.

TIAGO, I., TEIXEIRA, I., SILVA, S., CHUNG, P., VERÍSSIMO, A., MANAIA, C.M. (2004) Metabolic and genetic diversity of mesophilic and thermophilic bacteria isolated from

composted municipal sludge on poly-ɛ-caprolactones. Curr Microbiol, 49, 407–414.

TIUNOV, A., AND SCHEU, S. (2000) Microfungal communities in soil, litters and casts of

Lumbricus terrestris L. (Lumbricidae): a laboratory experiment. Appl Soil Ecol, 14, 17 – 26.

TLUSTOŠ, P., BALÍK, J., PAVLÍKOVÁ, D., AND SZÁKOVÁ, J. (1997) The uptake of

cadmium, zinc, arsenic and lead by crops. Rostl. Výr., 43, 487–494.

TOGNETTI, C., MAZZARINO, M.J., AND LAOS, F. (2007) Improving the quality of

municipal organic waste compost. Bioresource Technology 9, 1067-1076.

TOPPI, L.S. AND GABBRIELLI, R. (1999) ‘Response to cadmium in higher plants.review’, J.

Env.and Exp. Bot., 41, 105-130.

TOMATI, U., GRAPPELL, A., AND GALLI, E. (1987) The presence of growth regulators in

earthworm-worked wastes. In: Paglioi AMB, Omodeo P (eds) On Earthworms, Proceeding of

Page 25: 9. References ADDISON J., PARKINSON D. Oikos 30shodhganga.inflibnet.ac.in/bitstream/10603/5290/15/... · Biology and Fertility of Soils 6, 266 - 269 ALLOWAY, B.J., (1995) Soil Processes

275

International Symposium on Earthworms, Selected Symposium and Monograph. Unione Zoologica

Italiana, 2. Mucchi, Modena, 423 – 435.

TULLGREN, A. (1918) Ein sehr einfacher Ausleseapparat fu¨r terricole Tierfaunen. Z. Angew.

Entomol. 4, 149 – 150.

UDOVIC, M., PLAVC, Z., AND LESTAN, D. (2007). The effect of earthworms on the

fractionation, mobility and bioavailability of Pb, Zn and Cd before and after soil leaching with EDTA.

Chemosphere 70, 126 – 134.

URDANETA C., PARRA, L.M., MATUTE, S., GARABOTO, M.A., HAYDEN, B., AND

VÁZQUE C. (2008) Evaluation of vermicompost as bioadsorbent substrate of Pb, Ni, V and Cr for

waste waters remediation using Total Reflection X-ray Fluorescence Spectrochimica Acta Part B:

Atomic Spectroscopy, Volume 63, Issue 12, 1455 - 1460.

VAN DER DRIFT, J., AND JANSEN, E. (1977) Grazing of springtails on hyphal mats and its

influence on fungai growth and respiration. Ecol. Bull.(Stockholm,), 25, 203 – 209.

VAN GESTEL, C.A.M., DIRVEN VAN BREEMEN, E.M., AND BAERSELMAN, R. (1993) Accumulation and elimination of cadmium, chromium and zinc and effects on growth and

reproduction in Eisenia andrei (Oligochaeta, Annelida). Science of the Total Environment Supplement,

585-591.

VENKATESH, R.M., EEVERA, T. (2008) Mass reduction and recovery of nutrients through

vermicomposting of fly ash.Applied Ecology And Environmental Research, 6(1), 77-84.

VERMEULEN, F., VAN DEN BRINK, N.W., D'HAVÉ, H., MUBIANA, V.K., BLUST, R., BERVOETS, L., AND DE COEN, W. (2009). Habitat type-based bioaccumulation and risk

assessment of metal and as contamination in earthworms, beetles and woodlice. Environmental

Pollution. 157, 3098 - 3105.

VIDYA, R., AND CHANDRASEKARAN, N. (2010) Ecotoxicological studies on the

bioaccumulation of the heavy Metals in the vellore population,tamilnadu, india . Recent Research in

Science and Technology, 2(2), 60–65.

VIJVER, M.G., VINK, J.P.M., MIERMANS, C.J.H., AND VAN GESTEL, C.A.M. (2003) Oral sealing using glue: a new method to distinguish between intestinal and dermal uptake of

metals in earthworms. Soil Biology and Biochemistry 35, 125-132.

VISVANATHAN, C., TRÄNKLER, J., KURIAN, J., CHIEMCHAISRI, C., BASNAYAKE, B.F.A., GONGMING, Z. (2004) Municipal Solid Waste Management in Asia: Asian Regional

Research Program on Environmental Technology. AIT Publication, Thailand. ISBN: 974-417-258,

http://www.swlf.ait.ac.th/.

VIVAS, A., MORENO, B. GARCIA-RODRIGUA, S., AND BENITEZ., E. (2009)Assessing

the impact of composting and vermicomposting on bacterial community size and structure, and

microbial functional diversity of an olive-mill waste. Bioresource Technology, 100(3), 1319-1326.

VLIET, P., ZEE, S., MA, W.C. (2005) Heavy metal concentrations in soil and earthworms in a

flood plain grassland. 138, 505 – 516.

Page 26: 9. References ADDISON J., PARKINSON D. Oikos 30shodhganga.inflibnet.ac.in/bitstream/10603/5290/15/... · Biology and Fertility of Soils 6, 266 - 269 ALLOWAY, B.J., (1995) Soil Processes

276

VREEKEN-BUIJS, M.J., HASSINK, J., AND BRUSSAARD, L. (1998) Relationship of soil

microarthropod biomass with organic matter and pore size distribution in soils under different land use.

Soil Biology and Biochemistry 30, 97 – 106.

WALID, B.A., NOUREDDINE, G., ABDELBASSET, L., GIJS, D.L., MARC, V., NACEUR, J., AND TAHAR, G. (2009) Effects of 5-year application of municipal solid waste

compost on the distribution and mobility of heavy metals in a Tunisian calcareous soil, Agriculture,

Ecosystems & Environment, 130,(3-4), 156-163.

WALLWORK, J.A. (1970) Ecology of soil animals. McGraw-Hill, London, UK, pp 283.

WALLWORK, J. (1976) The distribution and diversity of soil fauna. San Francisco Academic Press,

New York, pp355.

WANG H, AND NIE, Y. (2001) Municipal solid waste characteristics and management in China.

Air and Waste Management Association, 51, 250 – 263.

WANG, Q., ZHOU, D., CANG, L., LI, L., AND ZHU, H. (2009). Indication of soil heavy

metal pollution with earthworms and soil microbial biomass carbon in the vicinity of an abandoned

copper mine in Eastern Nanjing, China. Eur. J. Soil Biol. 45, 229 - 234.

WARD, D.J., WILSON, R.E. (1973) Pesticide effects on decomposition and recycling of Avena

litter in a monoeulture ecosystem. Am. Midl. Nat. 90, 266 – 276.

WARMA, P.R., AND LOPEZ, M.J. (2002) The chemical properties of vermicompost derived

from different feed stocks. In: Proc Intl Composting and Compost Sci Symposium, Columbus, Ohio.

CD Rom

WEBB, D.P. (1977) Regulation of deciduous forest litter decomposition by soil arthropod faeces. In:

Mattson, W.J. (Ed) The role of arthropods in forest ecosystems. Springer, New York, 57 – 69.

WERTZ K.L. (1976). Economic factors influencing households’ reproduction of refuse. Journal Of

Environmental Economics and Management, 2, 263 – 272.

WERNER, S.M., RAFFA, K.F. (2000) Effects of forest management practices on the diversity of

ground-occurring beetles in mixed northern hardwood forests of the Great Lakes Region. Forest

Ecology and Management 139, 135 – 155.

WHO (WORLD HEALTH ORGANIZATION). (1996) ‘Health criteria other supporting

information’, In: Guidelines for Drinking water Quality, Geneva, 2(2), 331–388.

WIZEWARDENA, J.D.H., AND GUNARATNE, S.P., (2004) Heavy metal contents in

commonly used animal manure. Ann. Sri Lanka Dept Agr. 6, 245 - 253.

XIANG, L., CHAN, L.C., AND WONG, J.W.C. (2000). Removal of heavy metals from

anaerobically digested sewage sludge by isolated indigenous iron-oxidizing bacteria. Chemosphere 41,

283-287.

XIAO, Y., BAI, X., OUYANG, Z., ZHENG, H., XING, F. (2007). The composition, trend and

impact of urban solid waste in Beijing. Environmental Monitoring and Assessment, 135, 21 – 30.

Page 27: 9. References ADDISON J., PARKINSON D. Oikos 30shodhganga.inflibnet.ac.in/bitstream/10603/5290/15/... · Biology and Fertility of Soils 6, 266 - 269 ALLOWAY, B.J., (1995) Soil Processes

277

XIMENEZ, E.P., MADRID, A. Y., CAMARA C., CUADRADO C., BURBANO C., AND

MUZQUIZ M. (2001), Evaluation of Lupinus species to accumulate heavy metals from waste waters,

International Journal of Phytoremediation, 3, 369 - 379.

YADAV, A., AND GARG, V.K. (2009) Feasibility of nutrient recovery from industrial sludge by

vermicomposting technology Original Research Article Journal of Hazardous Materials, 168 (1), 262-

268.

YANG, X.E., PENG, H.Y., AND JIANG, L.Y. (2005), Phytoremediation of Copper from

contaminated soil by Elsholtzia splendens as affected by EDTA, citric acid, and compost, International

Journal of Phytoremediation, 7, 69-83.

YE, Z. H., BAKER, A. J. M., WONG, M. H., AND WILLIS, A. J. (2003) Copper

tolerance, uptake and accumulation by Phragmites australis. Chemosphere, 50, 795-800.

YOUSUF, T.B. (2005) Sustainability and replication of community-based composting — A case

study of Bangladesh. PhD Thesis, Loughborough University, UK;

YOUSUF, T.B., RAHMAN, M. (2007) Monitoring quantity and characteristics of municipal solid

waste in Dhaka City. Environmental Monitoring and Assessment, 135, 3 – 11.

ZIBILSKE, L.M. (1999) Composting of organic wastes. In: Sylvia DM, Fuhrmann JJ, Hartel PG,

Zuberer DA (eds) Principles and Applications of soil microbiology. Prentice Hall Publication, 482 –

497.

ZOOLOGICAL SURVEY OF INDIA, (1993). Earthworm Resources and Vermiculture, Z. S. I.,

Kolkata, pp128.