172
J. Jayaprakash and H. Jagadeesan
and proper usage of personal protection equipment (PPE) and (c) value of immunization against viral hepatitis and tetanus.
References
Andi, F., Ravindran, B., & Choi, H. L. (2018). The effect of co-additives (Biochar and FGD Gypsum)
on ammonia volatilization during the composting of livestock waste. Sustainability, 10(3), 795.
https://doi.org/10.3390/su10030795.
Anna, D., Taylor, D., Fahy, F., Meade, H., & O’Callaghan-Platt, A. (2006). Environmental attitudes
and behaviour: Values, actions and waste management. Final Report of Environmental RTDI
Programme 2000–2006. Environment Protection Act, Ireland.
Barloa, P. E., Lapie, L. P., & de la Cruz, C. P. P. (2016). Knowledge, attitudes, and practices on
solid waste management among undergraduate students in a Philippine State University. Journal
of Environment and Earth Science 6(6), 146–153.
EPA, US. (2000). Biosolids technology fact sheet: In-vessel composting of biosolids. United States,
Environmental Protection Agency; Office of Water; Washington, D.C. http://purl.access.gpo.gov/
GPO/LPS50760.
Epstein, E. (1996). The science of composting. CRC Press.
Giovanni, G., Businelli, D., & Giusquiani, P. L. (1996). Trace metals uptake and distribution in
corn plants grown on a 6-year urban waste compost amended soil. Agriculture, Ecosystems &
Environment, 58, 199–206.
Giusti, L. (2009). A review of waste management practices and their impact on human health. Waste
Management 29(8), 2227–2239. https://doi.org/10.1016/j.wasman.2009.03.028.
Gray, M. (2002). Waste management and public health: The state of the evidence. Project Report.
South West Public Health Observatory. http://eprints.uwe.ac.uk/3504.
Makan, A., Assobhei, O., & Mountadar, M. (2013). Effect of initial moisture content on the invessel composting under air pressure of organic fraction of municipal solid waste in Morocco.
Iranian Journal of Environmental Health Sciences & Engineering 10(1), 1–9. https://doi.org/10.
1186/1735-2746-10-3.
Mridula, S., & Sinha, R. K. (2016). Swachh Bharat. In Swachh Bharat (p. 88). Prabhat Books.
Pilar, T., Almendros, G., Gonzalez-Vila, F. J., Lankes, U., & Ludemann, H.-D. (2004). Analysis
of carbon and nitrogen forms in soil fractions after the addition of 15 N-compost by 13 C and
15 N nuclear magnetic resonance. Journal of Agricultural and Food Chemistry, 52, 5412–5417.
https://doi.org/10.1021/jf0496604.
Rand, T., Haukohl, J., & Marxen, U. (2000). Municipal solid waste incineration: Requirements for
a successful project. World Bank Technical Paper No. WTP (Vol. 462, pp. 103). Washington,
D.C.
Sangamithirai, K. M., Jayapriya, J., Hema, J., & Ravi, M. (2015). Evaluation of in-vessel cocomposting of yard waste and development of kinetic models for co-composting. International
Journal of Recycling of Organic Waste in Agriculture, 4(3), 157–165. https://doi.org/10.1007/
s40093-015-0095-1.
Woods End Research Laboratory. (2005). Interpreting waste and compost tests. Journal of the Woods
End Research Laboratory, 2(1), 6.
J. Jayaprakash and H. Jagadeesan
and proper usage of personal protection equipment (PPE) and (c) value of immunization against viral hepatitis and tetanus.
References
Andi, F., Ravindran, B., & Choi, H. L. (2018). The effect of co-additives (Biochar and FGD Gypsum)
on ammonia volatilization during the composting of livestock waste. Sustainability, 10(3), 795.
https://doi.org/10.3390/su10030795.
Anna, D., Taylor, D., Fahy, F., Meade, H., & O’Callaghan-Platt, A. (2006). Environmental attitudes
and behaviour: Values, actions and waste management. Final Report of Environmental RTDI
Programme 2000–2006. Environment Protection Act, Ireland.
Barloa, P. E., Lapie, L. P., & de la Cruz, C. P. P. (2016). Knowledge, attitudes, and practices on
solid waste management among undergraduate students in a Philippine State University. Journal
of Environment and Earth Science 6(6), 146–153.
EPA, US. (2000). Biosolids technology fact sheet: In-vessel composting of biosolids. United States,
Environmental Protection Agency; Office of Water; Washington, D.C. http://purl.access.gpo.gov/
GPO/LPS50760.
Epstein, E. (1996). The science of composting. CRC Press.
Giovanni, G., Businelli, D., & Giusquiani, P. L. (1996). Trace metals uptake and distribution in
corn plants grown on a 6-year urban waste compost amended soil. Agriculture, Ecosystems &
Environment, 58, 199–206.
Giusti, L. (2009). A review of waste management practices and their impact on human health. Waste
Management 29(8), 2227–2239. https://doi.org/10.1016/j.wasman.2009.03.028.
Gray, M. (2002). Waste management and public health: The state of the evidence. Project Report.
South West Public Health Observatory. http://eprints.uwe.ac.uk/3504.
Makan, A., Assobhei, O., & Mountadar, M. (2013). Effect of initial moisture content on the invessel composting under air pressure of organic fraction of municipal solid waste in Morocco.
Iranian Journal of Environmental Health Sciences & Engineering 10(1), 1–9. https://doi.org/10.
1186/1735-2746-10-3.
Mridula, S., & Sinha, R. K. (2016). Swachh Bharat. In Swachh Bharat (p. 88). Prabhat Books.
Pilar, T., Almendros, G., Gonzalez-Vila, F. J., Lankes, U., & Ludemann, H.-D. (2004). Analysis
of carbon and nitrogen forms in soil fractions after the addition of 15 N-compost by 13 C and
15 N nuclear magnetic resonance. Journal of Agricultural and Food Chemistry, 52, 5412–5417.
https://doi.org/10.1021/jf0496604.
Rand, T., Haukohl, J., & Marxen, U. (2000). Municipal solid waste incineration: Requirements for
a successful project. World Bank Technical Paper No. WTP (Vol. 462, pp. 103). Washington,
D.C.
Sangamithirai, K. M., Jayapriya, J., Hema, J., & Ravi, M. (2015). Evaluation of in-vessel cocomposting of yard waste and development of kinetic models for co-composting. International
Journal of Recycling of Organic Waste in Agriculture, 4(3), 157–165. https://doi.org/10.1007/
s40093-015-0095-1.
Woods End Research Laboratory. (2005). Interpreting waste and compost tests. Journal of the Woods
End Research Laboratory, 2(1), 6.
