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循环废物管理系统在减少废物泄漏到水生环境中的关键作用。

The crucial role of circular waste management systems in cutting waste leakage into aquatic environments.

作者信息

Gómez-Sanabria Adriana, Lindl Florian

机构信息

Pollution Management Research Group. Energy, Climate and Environment Program, International Institute for Applied Systems Analysis, Laxenburg, Austria.

出版信息

Nat Commun. 2024 Jun 27;15(1):5443. doi: 10.1038/s41467-024-49555-9.

Abstract

Waste leakage has become a major global concern owing to the negative impacts on aquatic ecosystems and human health. We combine spatial analysis with the Shared Socioeconomic Pathways to project future waste leakage under current conditions and develop mitigation strategies up to 2040. Here we show that the majority (70%) of potential leakage of municipal solid waste into aquatic environments occurs in China, South Asia, Africa, and India. We show the need for the adoption of active mitigation strategies, in particular circular waste management systems, that could stop waste from entering the aquatic ecosystems in the first place. However, even in a scenario representing a sustainable world in which technical, social, and financial barriers are overcome and public awareness and participation to rapidly increase waste collection rates, reduce, reuse and recycling waste exist, it would be impossible to entirely eliminate waste leakage before 2030, failing to meet the waste-related Sustainable Development Goals.

摘要

由于对水生生态系统和人类健康产生负面影响,废物泄漏已成为全球主要关注的问题。我们将空间分析与共享社会经济路径相结合,以预测当前条件下未来的废物泄漏情况,并制定直至2040年的缓解策略。我们在此表明,城市固体废物进入水生环境的潜在泄漏大部分(70%)发生在中国、南亚、非洲和印度。我们表明需要采用积极的缓解策略,特别是循环废物管理系统,这可以首先阻止废物进入水生生态系统。然而,即使在一个代表可持续世界的情景中,即克服了技术、社会和资金障碍,公众意识和参与迅速提高废物收集率、减少、再利用和回收废物的情况下,在2030年前也不可能完全消除废物泄漏,无法实现与废物相关的可持续发展目标。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0b50/11211435/f7b43afed5c3/41467_2024_49555_Fig1_HTML.jpg

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