Global Journal of Science Frontier Research, H: Environment & Earth Science, Volume 22 Issue 1

14. BRAZIL. Ministry of Environment – MMA. Study on the potential of energy generation from waste (garbage, sewage), aiming to increase the use of biogas as an alternative source of renewable energy. São Paulo, 2010. 15. Jacarei City Hall. Municipal plan for integrated solid waste management (PMGIRS). Jacareí – SP, 2015. Available at < www.jacarei.sp.org.br> . Accessed in september 2019. 16. Barros, R. M. Treaty on solid waste: management, use and sustainability. Rio de Janeiro: Interciencia, 2013. 17. EPA. United States Environmental Protection Agency. Waste Reduction Model -WARM, version 12. 2012. Available at <https://www.epa.gov/ warm> Accessed in september 2020. 18. EPA. United States Environmental Protection Agency. LandfillGasEmissions Model - LandGEM, versão 3.02. 2005. Available at: <https://www.epa . gov/catc/clean-air-technology-center-products# software>. Accessed in september 2020. 19. Thompson, S.; Sawyer, J.; Bonam, R.; Valdivia, J. E. Building a better methane generation model: validating models with methane recovery rates from 35 Canadian landfills. Waste Management, v. 29, n. 7, p. 2085–2091, 2009. Available at: <www.elsevier. com/locate/wasman>. Accessed in september 2020. 20. IPCC. International Panel on Climates Change. Guidelines for national greenhouse gas inventories. Eggleston, H. S.; Buendia, L.; Miwa, K.; Ngara, T.; Tanabe, K. (eds). Japan: IGES, 2006. Available at: <unfccc.int>. Accessed in september 2019. 21. CEPEA. Center of advanced studies in applied economics. Study of the potential of renewable energy generation from “landfills” in metropolitan regions and large cities in Brazil. FEALQ Agreement - Ministry of the Environment, 2004. Available at: <http://www.cepea.esalq.usp.br/pdf/releaseaterro.p df>. Accessed in september 2019. 22. CARESANA, F. et al. Energy production from landfill biogas: An italian case. Biomass and Bioenergy, v. 35, n. 10, p. 4331–4339, out. 2011. 23. CETESB. Environmental company of the state of São Paulo. Biogas - Landfills. Computer program user manual. São Paulo - SP, 2006. 24. Santos et al. An energy, economic and environmental assessment of biogas energy use options from a landfill in Brazil. Electronic in management, education and environmental technology magazine, Feb. 2015. 25. Pamplona, E. O.; Montevechi, J. A. B. Economic engineering. Investment analysis. Itajuba: Fupai, 2011. 26. EPA. United States Environmental protection agency. Landfill methane outreach program. LFG energy project development handbook. US, 2020. Available at <https://www.epa.gov/lmop/landfill- gas-energy-project-development-handbook>. Accessed in september 2020. 27. BNDES. National Development Bank. BNDES Finem - Power generation. Available at: <https://www. bndes.gov.br/wps/portal/site/home/financiamento/p roduto/bndes-finem-energia>. Accessed in septem- ber 2020. 28. CEEE. Electric energy trading chamber. Average price of energy. Available at <https://www.ccee . org.br/preco_adm/precos/semanal/ >. Accessed in september 2020. 29. BACEN. Brazilian central bank. Dollar quotation. Available at: <http://www4.bcb.gov.br/pec/taxas/ port/ptaxnpesq.asp?id=txcotacao>. Accessed in september 2020. 30. Tolmasquim, Maurício Tiomno. Renewable energy sources in Brazil. Rio de Janeiro: Interciência, 2003. © 2022 Global Journals 1 Year 2022 64 Global Journal of Science Frontier Research Volume XXII Issue ersion I VI ( H ) Energetic Potential of the Biogas from Urban Solid Waste Generated in the Jacareí Municipal Landfill, Brazil

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