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Technical Papers

Translating landfill methane generation parameters among first-order decay models

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Pages 1084-1097 | Received 04 Dec 2015, Accepted 21 Apr 2016, Published online: 22 Jun 2016

References

  • Amini, H.R., D.R. Reinhart, and K.R. Mackie. 2012. Determination of first-order landfill gas modeling parameters and uncertainties. Waste Manage. 32:305–316. doi: 10.1016/j.wasman.2011.09.021
  • Cho, H.S., H.S. Moon, and J.Y. Kim. 2012. Effect of quantity and composition of waste on the prediction of annual methane potential from landfills. Bioresour. Technol. 109:86–92. doi: 10.1016/j.biortech.2012.01.026
  • Clean Energy Regulator. 2014. Guideline: Solid Waste Calculator. Canberra, Australia. http://www.cleanenergyregulator.gov.au/NGER/Forms-and-resources/Calculators ( accessed July 8, 2015).
  • Commonwealth of Australia. 2014. National Greenhouse and Energy Reporting Regulations 2008 (Superseded) F2014C01069. Canberra, Australia. www.comlaw.gov.au/ ( accessed July 8, 2015).
  • De la Cruz, F.B., and M.A. Barlaz. 2010. Estimation of waste component-specific landfill decay rates using laboratory-scale decomposition data. Environ. Sci. Technol. 44:4722–4728. doi: 10.1021/es100240r
  • Eleazer, W.E., W.S. Odle, Y.-S. Wang, and M.A. Barlaz. 1997. Biodegradability of municipal solid waste components in laboratory-scale landfills. Environ. Sci. Technol. 31:911–917. doi: 10.1021/es9606788
  • Fei, X., D. Zekkos, and L. Raskin. 2015. Quantification of parameters influencing methane generation due to biodegradation of municipal solid waste in landfills and laboratory experiments. Waste Manage. doi: 10.1016/j.wasman.2015.10.015
  • Govindan, S.S., and P. Agamuthu. 2014. Quantification of landfill methane using modified Intergovernmental Panel on Climate Change’s Waste Model and error function analysis. Waste Manage. Res. 32:1005–1014. doi: 10.1177/0734242X14552551
  • Intergovernmental Panel on Climate Change. 2000. Waste. Good Practice Guidance and Uncertainty Management in National Greenhouse Gas Inventories. Geneva, Switzerland: Intergovernmental Panel on Climate Change.
  • Intergovernmental Panel on Climate Change. 2006. Solid waste disposal. In 2006 IPCC Guidelines for National Greenhouse Gas Inventories, Vol. 5, Waste, ed. R. Pipatti and P. Svardal, 1–40. Geneva, Switzerland: Intergovernmental Panel on Climate Change.
  • Irving, W., J. Woodbury, M. Gibbs, D. Pape, and V. Bakshi. 1999. Applying a correction factor to the IPCC default methodology for estimating national methane emissions from solid waste disposal sites. Waste Manage. Res. 17:459–464. doi: 10.1177/0734242X9901700609
  • Jensen, J.E.F., and R. Pipatti. 2000. Background Paper: CH4 emissions from solid waste disposal. In Good Practice Guidance and Uncertainty Management in National Greenhouse Gas Inventories, ed. J.E.F. Jensen and R. Pipatti, 419–439. Geneva, Switzerland: Intergovernmental Panel on Climate Change.
  • Jha, A.K., C. Sharma, N. Singh, R. Ramesh, R. Purvaja, and P.K. Gupta. 2008. Greenhouse gas emissions from municipal solid waste management in Indian mega-cities: A case study of Chennai landfill sites. Chemosphere 71:750–758. doi: 10.1016/j.chemosphere.2007.10.024
  • Jigar, E., A. Bairu, and A. Gesessew. 2014. Application of IPCC model for estimation of methane from municipal solid waste landfill. J. Environ. Sci. Water Resour. 3:52–58.
  • Karanjekar, R.V., A. Bhatt, S. Altouqui, N. Jangikhatoonabad, V. Durai, M.L. Sattler, M.D.S. Hossain, and V. Chen. 2015. Estimating methane emissions from landfills based on rainfall, ambient temperature, and waste composition: The CLEEN model. Waste Manage. doi: 10.1016/j.wasman.2015.07.03
  • Kim, H., and T.G. Townsend. 2012. Wet landfill decomposition rate determination using methane yield results for excavated waste samples. Waste Manage. 32:1427–1433. doi: 10.1016/j.wasman.2012.03.017
  • Machado, S.L., M.F. Carvalho, J.-P. Gourc, O.M. Vilar, and J.C.F. do Nascimento. 2009. Methane generation in tropical landfills: Simplified methods and field results. Waste Manage. 29:153–161. doi: 10.1016/j.wasman.2008.02.017
  • Manfredi, S., and T.H. Christensen. 2009. Environmental assessment of solid waste landfilling technologies by means of LCA-modeling. Waste Manage. 29:32–43. doi: 10.1016/j.wasman.2008.02.021
  • Mou, Z., C. Scheutz, and P. Kjeldsen. 2014. Evaluating the biochemical methane potential (BMP) of low-organic waste at Danish landfills. Waste Manage. 34:2251–2259. doi: 10.1016/j.wasman.2014.06.025
  • Mou, Z., C. Scheutz, and P. Kjeldsen. 2015. Evaluation and application of site-specific data to revise the first-order decay model for estimating landfill gas generation and emissions at Danish landfills. J. Air Waste Manage. Assoc. 65:686–698. doi: 10.1080/10962247.2015.1008653
  • Oonk, J., and A. Boom. 1995. Landfill Gas Formation, Recovery, and Emissions. Apeldoorn, The Netherlands. TNO Institute of Environmental and Energy Technology.
  • Pan, J., and N. Voulvoulis. 2007. The role of mechanical and biological treatment in reducing methane emissions from landfill disposal of municipal solid waste in the United Kingdom. J. Air Waste Manage. Assoc. 57:155–163. doi:10.1080/10473289.2007.10465317
  • Scharff, H., and J. Jacobs. 2006. Applying guidance for methane emission estimation for landfills. Waste Manage. 26:417–429. doi: 10.1016/j.wasman.2005.11.015
  • Sormunen, K., T. Laurila, and J. Rintala. 2013. Determination of waste decay rate for a large Finnish landfill by calibrating methane generation models on the basis of methane recovery and emissions. Waste Manage. Res. 31:979–985. doi: 10.1177/0734242X13490980
  • Stinson, J.A., and R.K. Ham. 1995. Effect of lignin on the anaerobic decomposition of cellulose as determined through the use of a biochemical methane potential method. Environ. Sci. Technol. 29:2305–2310. doi: 10.1021/es00009a023
  • Thompson, S., J. Sawyer, R. Bonam, and J.E. Valdivia. 2009. Building a better methane generation model: Validating models with methane recovery rates from 35 Canadian landfills. Waste Manage. 29:2085–2091. doi: 10.1016/j.wasman.2009.02.004
  • Tolaymat, T.M., R.B. Green, G.R. Hater, M.A. Barlaz, P. Black, D. Bronson, and J. Powell. 2010. Evaluation of landfill gas decay constant for municipal solid waste landfills operated as bioreactors. J. Air Waste Manage. Assoc. 60:91–97. doi: 10.3155/1047-3289.60.1.91
  • U.S. Environmental Protection Agency. 1991. Code of Federal Regulations. Title 40 Part 258—Criteria for Municipal Solid Waste Landfills. Washington, DC. www.ecfr.gov ( accessed July 8, 2015).
  • U.S. Environmental Protection Agency. 1996. Code of Federal Regulations. Title 40 Part 60 Subpart WWW—Standards of Performance for Municipal Solid Waste Landfills. Washington, DC. www.ecfr.gov ( accessed July 8, 2015).
  • U.S. Environmental Protection Agency. 1998. Municipal solid waste landfills. In Compilation of Air Pollutant Emission Factors, Volume I: Stationary Point and Area Sources (AP-42), 1–19. Research Triangle Park, NC: U.S. Environmental Protection Agency.

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