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Development of Community-Based Waste Recycling (garbage bank and 3R waste treatment facility) for Mitigating Greenhouse Gas Emissions in Padang City, INDONESIA

机译:开发基于社区的废物回收(垃圾箱和3R废物处理设施),用于减轻印度尼西亚巴东市温室气体排放量

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Observations and interviews on current municipal solid waste management (MSWM) in Padang City show the conventional operation of mixed collection, transportation and dumping to Air Dingin Landfill with limited recycling activities. Simulations result shows that practices of current local MSWM would release greenhouse gases (GHG) emissions of 123.54 Gg CO_2 eq in 2035 after 50 years operation of the landfill. This paper focuses on developing scenarios of community-based recycling system for mitigating greenhouse gas emissions in Padang City. Observations and interviews to MSWM facilities and stakeholders were carried out to understand current condition of the local MSWM. 3 scenarios of improved recycling system were proposed based on the real condition and achievement of the current MSWM practice. Current MSWM practice and 3 improvement scenarios were simulated for the next 20 years (2016 - 2035) to understand the impact to global warming. GHG inventories of waste treatment activities before landfill and at landfill site was carried out using life cycle assessment (LCA). Meanwhile, methane emission from solid waste decomposition at landfill cells was simulated using Intergovernmental Panel for Climate Change (IPCC) software. As a result, current MSWM practice shows recycling achievement of only 1.494% of the total waste generation in 2035. Scenario #3 suggests to increase the number of garbage bank, community waste treatment facility (TPS 3R), integrated waste treatment facility (TPST) and to install landfill gas recovery. This improvement results in the higher recycling achievement of 33.66% and lower GHG emissions of around 96.594 Gg CO_2eq compared to that of the current MSWM practice in 2035. While, the application of landfill gas recovery would further decrease the GHG emissions to 52.972 Gg CO_2eq. Scenario #3 may be applied for Padang City.
机译:对当前市政固体废物管理(MSWM)的观察和访谈Padang City展示了混合收集,运输和倾销的传统运作,与策划垃圾填埋场有限的回收活动。仿真结果表明,在垃圾填埋场50年后,当前本地MSWM的实践将在2035年经过50年运行后2035年释放123.54 Gg Co_2欧元的温室气体(GHG)排放。本文侧重于开发基于社区的回收系统的情景,以减轻巴东市的温室气体排放。对MSWM设施和利益相关者进行了观察和访谈,以了解当地MSWM的现状。基于实际情况和实现当前MSWM实践的实际情况和实现,提出了改进回收系统的3种情景。目前的MSWM实践和3种改进情景是在未来20年(2016年 - 2035)中的模拟,以了解对全球变暖的影响。使用生命周期评估(LCA)进行垃圾填埋场和垃圾填埋场网站前的废物处理活动的温室气体清单。同时,利用垃圾填埋电池在垃圾填埋电池中甲烷排放使用政府间气候变化(IPCC)软件来模拟垃圾填埋单元。结果,目前的MSWM实践显示​​了2035年的总废物总成的1.494%的回收成果。情景#3建议增加垃圾银行,社区废物处理设施(TPS 3R),综合废物处理设施(TPST)并安装垃圾填埋气回收。与2035年目前的MSWM实践相比,这种改善的循环回收率为33.66%,较低的温室气体排放量约为96.594 Gg Co_2EQ。虽然,垃圾填埋气体回收的应用将进一步降低GHG排放至52.972 Gg CO_2EQ。场景#3可用于巴东市。

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