The global waste sector produces, on average, 2–5 % of global anthropogenic greenhouse gas (GHG) emissions. The amount of GHG emissions has grown steadily and is predicted to increase considerable in the forthcoming decades because of the increases in population and gross domestic product (GDP). However, the GHG mitigation opportunities for the sector are still fully not exploited, in particularly in developing countries. A series of initiatives were highly successful and showed that large reductions in emissions are possible. This study aims to propose a holistic quantification model, which can be used for estimation of waste generation and evaluation of the potential reduction of GHG emissions in waste sector for developing countries with a particular application to Vietnam. The two scenarios set for the study were business as usual (BaU) which waste management is assumed to follow past and current trends and CounterMeasure (CM) which alternative waste treatment and management are assessed. Total emissions in the BaU scenario are projected to increase from 29.47 MtCO2eq in 2010 to 85.60 MtCO2eq by 2030 and 176.32 MtCO2eq by 2050. The highest emissions are due to methane (CH4) released by disposal sites, accounting for about 60 % of the GHG emissions from waste in Vietnam in 2030. This emission is projected to increase significantly (67 % in 2050), unless more of the methane is captured and used for energy generation. The CM scenario gives emission reductions from 25.7 % (2020), 40.5 % (2030) to 56.6 % (2050) compared to the BaU scenario. The highest GHG reduction is achieved through recycling, followed by methane recovery to optimize the co-benefit for climate change mitigation.
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Department of Urban Planning Research, Daejeon Development InstituteDepartment of Urban Planning Research, Daejeon Development Institute
Sora Yi
Heewon Yang
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Department of Urban Planning Research, Daejeon Development InstituteDepartment of Urban Planning Research, Daejeon Development Institute
Heewon Yang
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Seung Hoon Lee
Kyoung-Jin An
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Faculty of Science & Technology, The Technological and Higher Education Institute of Hong Kong,New Territories, Hong Kong, ChinaDepartment of Urban Planning Research, Daejeon Development Institute
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Daejeon Dev Inst, Dept Urban Planning Res, Taejon, South KoreaDaejeon Dev Inst, Dept Urban Planning Res, Taejon, South Korea
Yi, Sora
Yang, Heewon
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Daejeon Dev Inst, Dept Urban Planning Res, Taejon, South KoreaDaejeon Dev Inst, Dept Urban Planning Res, Taejon, South Korea
Yang, Heewon
Lee, Seung Hoon
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Anyang Univ, Dept Environm Engn, Gyeonggi, South KoreaDaejeon Dev Inst, Dept Urban Planning Res, Taejon, South Korea
Lee, Seung Hoon
An, Kyoung-Jin
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Technol & Higher Educ Inst Hong Kong, Fac Sci & Technol, Hong Kong, Hong Kong, Peoples R ChinaDaejeon Dev Inst, Dept Urban Planning Res, Taejon, South Korea
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Department of Urban Planning Research, Daejeon Development InstituteDepartment of Urban Planning Research, Daejeon Development Institute
Sora Yi
Heewon Yang
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h-index: 0
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Department of Urban Planning Research, Daejeon Development InstituteDepartment of Urban Planning Research, Daejeon Development Institute
Heewon Yang
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Seung Hoon Lee
KyoungJin An
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Faculty of Science & Technology, The Technological and Higher Education Institute of Hong Kong,New Territories, Hong Kong,Department of Urban Planning Research, Daejeon Development Institute
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Arizona State Univ, Dept Civil Environm & Sustainable Engn, 660 S Coll Ave, Tempe, AZ 85281 USAArizona State Univ, Dept Civil Environm & Sustainable Engn, 660 S Coll Ave, Tempe, AZ 85281 USA
Lee, Seungtaek
Kim, Jonghoon
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Arizona State Univ, Dept Civil Environm & Sustainable Engn, 660 S Coll Ave, Tempe, AZ 85281 USAArizona State Univ, Dept Civil Environm & Sustainable Engn, 660 S Coll Ave, Tempe, AZ 85281 USA
Kim, Jonghoon
Chong, Wai K. O.
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Arizona State Univ, Dept Civil Environm & Sustainable Engn, 660 S Coll Ave, Tempe, AZ 85281 USAArizona State Univ, Dept Civil Environm & Sustainable Engn, 660 S Coll Ave, Tempe, AZ 85281 USA