Carbon Footprint of Food Waste Management: A Case …
51
13. EMATER-RIO - Empresa de Assistência Técnica e Extensão Rural do Estado do Rio de
Janeiro (2018a) Relatório de acompanhamento sistemático da produção agrícola. Retrieved
from: https://www.emater.rj.gov.br/areaTecnica/cult2018.pdf
14. EMATER-RIO - Empresa de Assistência Técnica e Extensão Rural do Estado do Rio de Janeiro
(2018b) Bovinocultura – Pecuária de Leite/Corte. Retrieved from: https://www.emater.rj.gov.
br/areaTecnica/Bovi2018.pdf
15. EPE Entreprises por l’Environnement Working Group (2020) Excel spreadsheet tool.
Available online: https://www.epe-asso.org/en/protocol-quantification-greenhouse-gases-emi
ssions-waste-management-activities-version-5-october-2013/. Access: 09/07/2020
16. EPE – Entreprises por l’Environnement Working Group (2013) Protocol for the quantification of greenhouse gas emissions from waste management activities. Version 5.0, October,
2013. https://ghgprotocol.org/sites/default/files/Waste%20Sector%20GHG%20Protocol_Vers
ion%205_October%202013_1_0.pdf
17. Fan YV, Klemeš JJ, Lee CT, Perry S (2018) Anaerobic digestion of municipal solid waste:
Energy and carbon emission footprint. J Environ Manage 223:888–897. https://doi.org/10.
1016/j.jenvman.2018.07.005
18. FAO - Food and Agriculture Organization of the United Nations (2020) Data of Brazilian food
production and GHG emissions from agriculture. Retrieved from: https://www.fao.org/faostat/
en/#data. Access: 09/07/2020
19. FAO - Food and Agriculture Organization of the United Nations (2014) Food wastage footprint:
Full-cost accounting – Final Report. Retrieved from: https://www.fao.org/3/a-i3991e.pdf
20. FAO - Food and Agriculture Organization of the United Nations (2013) Food wastage footprint:
Impacts on natural resources - Summary report. Retrieved from: https://www.fao.org/docrep/
018/i3347e/i3347e.pdf
21. Franca LS, Ribeiro GM, Filho RDO, Perim LR, Hoffmann ICS, Abramides CA (2019) Carbon
footprint of brazilian highway network. Chapter from S. S. Muthu (ed.), Carbon Footprints,
Environmental Footprints and Eco-design of Products and Processes, https://doi.org/https://
doi.org/10.1007/978-981-13-7912-3_4
22. Franca LS (2017) Implementação da Coleta Seletiva de Estabelecimentos Comerciais por meio de um Aplicativo de Roteamento de Veículos: um Estudo de
Caso no Rio de Janeiro. Master’s thesis, Universidade Federal do Rio de Janeiro
(UFRJ/COPPE). Retrieved from: https://www.pet.coppe.ufrj.br/images/documentos/dissertac
oes/2017/Disserta%C3%A7%C3%A3o_Lu%C3%ADza_Santana_Franca_final.pdf
23. IBGE – Instituto Brasileiro de Geografia e Estatística (2020) Statistical data of the city of Rio
de Janeiro. Retrieved from: https://cidades.ibge.gov.br/. Access: 09/07/2020
24. IPCC – Intergovernmental Panel on Climate Change (2006) Guidelines for National Greenhouse Gas Inventories. Excel spreadsheet of first order decay model (Tier 2) for estimating
methane emissions from solid waste disposal sites. Available online at: https://www.ipcc-nggip.
iges.or.jp/
25. IPEA – Instituto de Pesquisa Econômica Aplicada (2012) Plataforma IPEA de Pesquisa em
Rede Projeto Governança Metropolitana no Brasil. Oficina 1 - Arranjos Institucionais de Gestão
Metropolitana. Retrieved from: https://www.ipea.gov.br/redeipea/images/pdfs/governanca_m
etropolitana/projeto_governanca_oficina1_rj.pdf
26. Islam KMN (2017) Greenhouse gas footprint and the carbon flow associated with different solid
waste management strategy for urban metabolism in Bangladesh. Sci Total Environ 580:755–
769. https://doi.org/10.1016/j.scitotenv.2016.12.022
27. Itoiz ES, Gasol CM, Farreny R, Rieradevall J, Gabarrell X (2013) CO2ZW: Carbon footprint tool for municipal solid waste management for policy options in Europe. Inventory
of Mediterranean Countries. Energy Policy 56:623–632. https://doi.org/10.1016/j.enpol.2013.
01.027
28. Malakahmad A, Abualqumboz MS, Kutty SRM, Abunama TJ (2017) Assessment of carbon
footprint emissions and environmental concernsof solid waste treatment and disposal techniques; case study of Malaysia. Waste Manage 70:282–292. https://doi.org/10.1016/j.wasman.
2017.08.044
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