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生命周期评估法在选择最佳城市固体废弃物管理系统中的应用。

The use of LCA in selecting the best MSW management system.

作者信息

De Feo Giovanni, Malvano Carmela

机构信息

Department of Civil Engineering, University of Salerno, via Ponte don Melillo 1, 84084 Fisciano, Italy.

出版信息

Waste Manag. 2009 Jun;29(6):1901-15. doi: 10.1016/j.wasman.2008.12.021. Epub 2009 Jan 24.

Abstract

This paper focuses on the study of eleven environmental impact categories produced by several municipal solid waste management systems (scenarios) operating on a provincial scale in Southern Italy. In particular, the analysis takes into account 12 management scenarios with 16 management phases for each one. The only difference among ten of the scenarios (separated kerbside collection of all recyclables, glass excepted, composting of putrescibles, RDF pressed bales production and incineration, final landfilling) is the percentage of separated collection varying in the range of 35-80%, while the other two scenarios, for 80% of separate collection, consider different alternatives in the disposal of treatment residues (dry residue sorting and final landfilling or direct disposal in landfill). The potential impacts induced on the environmental components were analysed using the life cycle assessment (LCA) procedure called "WISARD" (Waste Integrated System Assessment for Recovery and Disposal). Paper recycling was the phase with the greatest influence on avoided impacts, while the collection logistics of dry residue was the phase with the greatest influence on produced impacts. For six impact categories (renewable and total energy use, water, suspended solids and oxydable matters index, eutrophication and hazardous waste production), for high percentages of separate collection a management system based on recovery and recycling but without incineration would be preferable.

摘要

本文聚焦于意大利南部某省运行的多个城市固体废物管理系统(情景)所产生的11种环境影响类别研究。具体而言,该分析考虑了12种管理情景,每种情景有16个管理阶段。其中10种情景(所有可回收物的路边分类收集,不包括玻璃,易腐物堆肥,RDF压块生产及焚烧,最终填埋)的唯一区别在于分类收集的百分比在35%至80%之间变化,而另外两种情景,分类收集率为80%,在处理残渣处置方面(干残渣分选及最终填埋或直接填埋)考虑了不同的替代方案。使用名为“WISARD”(废物回收与处置综合系统评估)的生命周期评估(LCA)程序分析了对环境成分产生的潜在影响。纸张回收是对避免影响影响最大的阶段,而干残渣的收集物流是对产生影响影响最大的阶段。对于六个影响类别(可再生能源和总能源使用、水、悬浮物和可氧化物质指数、富营养化和危险废物产生),对于高比例的分类收集,基于回收和再循环但不包括焚烧的管理系统将更为可取。

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