实施垃圾分类政策后垃圾管理系统对环境影响的变化:北京案例研究

IF 4.9 3区 环境科学与生态学 Q2 ENGINEERING, ENVIRONMENTAL
Tingting Liu, Peize Wang, Qian Zhang, Jing Cao, Yufeng Wu
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引用次数: 0

摘要

量化生活垃圾分类政策对生活垃圾管理系统(包括收集、运输和处理)的环境影响,是评估政策效果的基础。中国首都北京于 2020 年 5 月开始实施生活垃圾强制分类政策。在本研究中,我们采用生命周期评估方法,旨在评估北京市生活垃圾分类政策实施前后生活垃圾管理系统对环境的影响。在垃圾收集阶段实施该政策,通过清运和合并,最大限度地减少了垃圾桶的消耗量,从而减少了对环境的影响。在运输阶段,通过改变运输结构,实施该政策增加了单位垃圾对环境的影响。不过,由于更多的可回收材料在垃圾分类后被分离出来,因此总体影响有所减少。在处理阶段,实施该政策后对环境的影响有所减少,主要原因是废物成分的改变和处理总量的减少。全球升温潜能值(GWP)是造成环境影响的主要因素。垃圾分类后,收集、运输和处理阶段的全球升温潜能值分别降低了-19.96%、-24.36%和-38.08%,总的全球升温潜能值降低了-37.90%。不过,焚烧和生化处理可能会带来环境效益。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Changes in the environmental impacts of the waste management system after implementing the waste-sorting policy: A Beijing case study

Quantifying the environmental impacts of a household waste-sorting policy on the household waste management system, including collection, transportation, and treatment, is the basis for evaluating the policy's effectiveness. Beijing, the capital of China, began to implement the mandatory domestic waste-sorting policy in May 2020. In this study, we aimed to evaluate the environmental impacts of the household waste management system in Beijing before and after implementing the sorting policy using the life cycle assessment method. Implementing the policy at the waste collection stage reduced the environmental impacts by minimizing the number of garbage bins consumed through their removal and consolidation. At the transportation stage, implementing the policy increased the environmental impacts per unit of waste via transportation structure changes. However, the overall impact was reduced because more recyclable materials were separated after waste sorting. The environmental impacts were reduced after implementing the policy at the treatment stage mainly because of the change in waste composition and the decrease in the total volume of treatment. Global warming potential (GWP) was the main contributor to the environmental impacts. After waste sorting, the GWP of the collection, transportation, and treatment stages decreased by −19.96%, −24.36%, and −38.08%, respectively, resulting in a total GWP reduction of −37.90%. However, incineration and biochemical treatments may offer environmental benefits.

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来源期刊
Journal of Industrial Ecology
Journal of Industrial Ecology 环境科学-环境科学
CiteScore
11.60
自引率
8.50%
发文量
117
审稿时长
12-24 weeks
期刊介绍: The Journal of Industrial Ecology addresses a series of related topics: material and energy flows studies (''industrial metabolism'') technological change dematerialization and decarbonization life cycle planning, design and assessment design for the environment extended producer responsibility (''product stewardship'') eco-industrial parks (''industrial symbiosis'') product-oriented environmental policy eco-efficiency Journal of Industrial Ecology is open to and encourages submissions that are interdisciplinary in approach. In addition to more formal academic papers, the journal seeks to provide a forum for continuing exchange of information and opinions through contributions from scholars, environmental managers, policymakers, advocates and others involved in environmental science, management and policy.
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