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危地马拉国内露天焚烧塑料垃圾产生的塑料垃圾及排放物

Plastic waste generation and emissions from the domestic open burning of plastic waste in Guatemala.

作者信息

Bardales Cruz Michelle, Saikawa Eri, Hengstermann Mayari, Ramirez Alexander, McCracken John P, Thompson Lisa M

机构信息

Department of Environmental Sciences, Emory University Atlanta GA USA

Gangarosa Department of Environmental Health, Emory University Atlanta GA USA.

出版信息

Environ Sci Atmos. 2022 Nov 12;3(1):156-167. doi: 10.1039/d2ea00082b. eCollection 2023 Jan 19.

Abstract

Domestic, or household-level, open burning of plastic waste is a source of air pollutants and greenhouse gases that are often neglected in emission inventories. Domestic open burning is a considerable concern in Guatemala due to the lack of access to waste collection services, particularly in rural areas. This paper offers the first attempt to estimate emissions from the domestic open burning of waste at the city and departmental levels in Guatemala. Data were collected from the Xalapán region of Jalapa, Guatemala and analyzed to determine the change in plastic waste generation over time as well as the socioeconomic factors that may affect the extent of plastic waste generation and burning. The annual per capita masses of plastic waste burned were used to estimate emissions from domestic open burning of plastic waste in the region of Xalapán, the cities of Jutiapa and Guatemala city, and all 22 departments in Guatemala. Our results show that rural areas burn more waste domestically, likely because of a lack of access to waste collection, and 30.4% of OC, 24.0% of BC, 23.6% of PM, and 2.4% of CO emissions in Guatemala may not be accounted for by excluding open plastic burning as a source.

摘要

在国内,即家庭层面,露天焚烧塑料垃圾是空气污染物和温室气体的一个来源,而这在排放清单中常常被忽视。由于缺乏垃圾收集服务,尤其是在农村地区,家庭露天焚烧在危地马拉是一个相当令人担忧的问题。本文首次尝试估算危地马拉城市和部门层面家庭露天焚烧垃圾的排放量。数据收集自危地马拉哈拉帕的哈拉潘地区,并进行了分析,以确定塑料垃圾产生量随时间的变化以及可能影响塑料垃圾产生和焚烧程度的社会经济因素。人均每年焚烧的塑料垃圾量被用于估算哈拉潘地区、朱蒂亚帕市和危地马拉市以及危地马拉所有22个部门家庭露天焚烧塑料垃圾的排放量。我们的结果表明,农村地区家庭焚烧的垃圾更多,这可能是因为缺乏垃圾收集服务,并且如果不将露天焚烧塑料作为一个排放源,危地马拉30.4%的有机碳、24.0%的黑碳、23.6%的颗粒物和2.4%的一氧化碳排放量可能无法得到统计。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aa41/9850929/49b15c054c77/d2ea00082b-f1.jpg

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