中国环境科学

北大核心,CA,JST,Pж(AJ),EI

国内刊号:11-2201/X

国际刊号:1000-6923

中国环境科学杂志2024年第11期:中国城市生活垃圾填埋CH4和VOCS等气体排放特征

发布日期:

作者:邓天乐, 马占云, 刘舒乐, 高庆先, 高文康, 李华圣, 谢立勇

单位:1. 沈阳农业大学农学院, 辽宁 沈阳 110866;2. 中国环境科学研究院, 环境基准与风险评估国家重点实验室, 北京 100012;3. 中国科学院大气物理研究所, 中国生态系统研究网络大气分中心, 北京 100029

关键词:填埋处理,CH4,VOCs,大气污染物,排放特征

基金:国家重点研发计划项目(2022YFE0135200);中挪关于畜禽养殖和废弃物管理领域甲烷排放的合作项目(2024-地方科研-0444)

To assess the emission status of primary gas emissions such as methane (CH4) and VOCs from municipal solid waste (MSW) landfills in China comprehensively and promote the understandings of the reduction potential of air and greenhouse gas emissions in waste sector, this study collected the fundamental information of waste treatment in 695 cities nationwide. Based on the emission factor method, it calculated the emissions of CH4, VOCs, and other typical air pollutants from urban landfills in China from 2002 to 2022. The results show that the MSW disposed in landfills in China has been decreasing after 2009. The decline rate was lowest in 2021 (1.39%), while highest in 2020 (12.45%). In 2022, the total emissions of CH4, NH3, VOCs, TSP, PM10, and PM2.5 from urban landfills in China were 4.09×106, 17.04, 4.75×104, 14.09, 6.66, and 1.00 ton respectively. In terms of spatial distribution, the regions with significant emissions of CH4 and volatile organic compounds (VOCs) from MSW landfills in China have experienced a southward migration. Since 2018, there has been a sustained reduction in the emissions of these air pollutants, with the rate of decline ranging from a minimum of 2.75% in 2018 to a maximum of 41.57% in 2022. Post-2020, emissions of CH4have followed a similar downward trajectory, with a minimum reduction of 4.53% observed in 2020 and a peak decrease of 13.56% in 2022. Over the past few years, there has been a notable decrease in the CH4 and VOCs emissions from landfills in China. This trend correlates with a reduction in the volume of waste being disposed in the landfills, where the rate of decline for air pollutants has exceeded that observed for CH4 emissions.

来源:2024年第11期

《中国环境科学》期刊编辑部

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