Quantification of greenhouse gas emissions from different municipal solid waste treatment methods - case study in Ha Noi, Vietnam

T. T. T. Pham
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Abstract

This study focuses on defining the greenhouse gas (GHG) emissions from treatment of municipal solid waste (MSW) in Ha Noi city. Firstly, the MSW samplings at Nam Son and Xuan Son landfills were collected to identify the components. Based on the statistical data on the amount and ratio of MSW collected, the volume of MSW treated by different technologies was estimated. Then, the GHG emissions were quantified by applying the Intergovernmental Panel on Climate Change (IPCC) 2006 model. The annual GHG released from MSW in Ha Noi in 2017 was 1.1 million tons of CO2e from landfilling, 16.3 thousand tons of CO2e from incineration, and 76,100 tons of CO2e from composting. The GHG emission level from landfills is the highest (327 kg of CO2e per ton of treated waste), followed by composting (189 kg of CO2e per ton), and incineration (115 kg of CO2e per ton). The GHG emissions from landfills comprised nearly 90% of GHG emissions from MSW disposal in Ha Noi. The results also revealed that if there are no measures to recover landfill gas for energy generation, the GHG generated from MSW treatment facilities will also contribute significantly to the greenhouse effect and climate change impact. These research results also supply the basis information for decision-makers to select the appropriate MSW treatment technologies for Ha Noi in the context of increasing population pressure and environmental pollution.
量化不同城市固体废物处理方法的温室气体排放量-以越南河内为例
本研究的重点是确定河内市城市固体废物(MSW)处理的温室气体(GHG)排放。首先,收集了南山和宣山堆填区的生活垃圾样本,以确定其成分。根据城市生活垃圾收集量和收集率的统计数据,对不同工艺处理的城市生活垃圾处理量进行了估算。然后,应用政府间气候变化专门委员会(IPCC) 2006模型对温室气体排放量进行了量化。2017年,河内城市生活垃圾每年排放的温室气体为:填埋110万吨二氧化碳当量、焚烧1.63万吨二氧化碳当量、堆肥7.61万吨二氧化碳当量。垃圾填埋场的温室气体排放水平最高(每吨处理过的废物产生327公斤二氧化碳当量),其次是堆肥(每吨189公斤二氧化碳当量)和焚烧(每吨115公斤二氧化碳当量)。堆填区排放的温室气体占河内市都市固体废物排放的近90%。结果还显示,如果不采取措施回收垃圾填埋气体发电,城市生活垃圾处理设施产生的温室气体也将对温室效应和气候变化产生重大影响。这些研究结果也为决策者在人口压力和环境污染加剧的背景下选择适合河内市的生活垃圾处理技术提供了依据信息。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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