环境卫生工程 ›› 2024, Vol. 32 ›› Issue (2): 85-92.doi: 10.19841/j.cnki.hjwsgc.2024.02.012

• 固体废物处理生命周期评价与碳足迹 • 上一篇    下一篇

成都市城市管理领域温室气体排放特征及减排策略

蒋 宇,谭瑶瑶,李 东,邓 放,陈 琼,郑晓倩   

  1. 1. 成都市城市管理科学研究院;2.中国科学院成都生物研究所;3. 成都育阳碳环境科技有限公司
  • 出版日期:2024-04-29 发布日期:2024-04-29

Characteristics of Greenhouse Gas Emissions and Emission Reduction Strategies in the Field of Urban Management in Chengdu

JIANG Yu,TAN Yaoyao,LI Dong,DENG Fang,CHEN Qiong,ZHENG Xiaoqian   

  1. 1. Chengdu Urban Management Science Research Institute;2. Chengdu Institute of Biology, Chinese Academy of Science;3. Chengdu Yuyang Carbon Environmental Technology Co. Ltd.
  • Online:2024-04-29 Published:2024-04-29

摘要: 城市管理涉及环境卫生管理、垃圾收运处置、城市照明管理等业务活动,是城市温室气体排放源之一。成都市城市管理领域2021年温室气体排放研究表明,垃圾收运处置是该领域最主要的温室气体排放源,贡献比例为95.81%,其次是城市照明管理和环境卫生管理,排放贡献比例分别为1.87%和1.82%。而未来情景分析显示成都市城市管理领域温室气体排放量随生活垃圾焚烧处置率的上升而快速下降,2025年达到最低,之后随着生活垃圾清运量的增长会呈现缓慢增加的趋势,2030年达峰时,垃圾收运处置的排放贡献比例为94.66%,城市照明管理和市政道桥管廊维护的排放贡献比例将上升至2.80%和1.20%,环境卫生管理排放贡献比例将下降至1.07%。最后,提出了双碳背景下城市管理部门开展碳减排工作的对策建议。

关键词: 城市管理, 温室气体, 碳排放, 碳达峰, 减排策略, 成都市

Abstract: Urban management, as one of the sources of urban greenhouse gas emissions, involves environmental sanitation management, solid waste collection, transportation and disposal and urban lighting management, etc. The 2021 greenhouse gas emissions study in the field of urban management in Chengdu indicated that solid waste collection, transportation and disposal was the most important source of greenhouse gas emissions, accounted for more than 95.81%. Followed by urban lighting management and environmental sanitation management, with emission contributions of 1.87% and 1.82%, respectively. Future scenario analysis demonstrated that the greenhouse gas emissions would decline rapidly with the increase of domestic waste incineration disposal rate, reached the lowest level in 2025. Then showed a slow increase trend with the growth of domestic waste collection and transportation scale. The emission contribution of solid waste collection, transportation and disposal was 94.66% when the peak was reached in 2030. At the same time, the emission contribution ratio of urban lighting management and municipal road, bridge and utility tunnel maintenance would rise to 2.80% and 1.20%, respectively. The contribution of environmental sanitation management emissions would fall to 1.07%. Finally, the countermeasures and suggestions for carbon emission reduction by urban management departments were proposed under the background of carbon peaking and carbon neutrality.

Key words: urban management, greenhouse gases, carbon emissions, carbon dioxide peaking, emission reduction strategy, Chengdu city

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[3] 朱远超, 赵子旼, 张劲松. 厨余垃圾和农林废弃物好氧堆肥协同处理碳排放核算——以某镇处理设施为例[J]. 环境卫生工程, 2024, 32(1): 111-115.
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[6] 孙雨清, 钱寅飞, 储思琴. 苏州市垃圾分类对焚烧过程碳排放的影响[J]. 环境卫生工程, 2023, 31(1): 104-111.
[7] 淦方茂, 吴莉鑫, 虞文波, 胡 广, 惠二青, 郭 帅. 村镇生活垃圾不同处置模式下温室气体排放潜力对比研究——以湖北埠河镇为例[J]. 环境卫生工程, 2023, 31(1): 112-118.
[8] 程世昆, 龙锦云, Barbara Evans, 战 哲, 李天昕, 陈 聪, Heinz-Peter Mang, 李子富. 不可忽视的无下水道卫生系统温室气体排放[J]. 环境卫生工程, 2022, 30(6): 112-112.
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