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垃圾转化为能源:循环经济不可或缺的基石——一篇综述

Waste to energy, indispensable cornerstone for circular economy: A mini-review.

作者信息

Brunner Paul H, Morf Leo S

机构信息

TU Wien, Institute of Water Quality and Resource Management, Vienna, Austria.

Baudirektion Kanton Zürich, Amt für Abfall, Wasser, Energie und Luft, Zürich, Switzerland.

出版信息

Waste Manag Res. 2025 Jan;43(1):26-38. doi: 10.1177/0734242X241227376. Epub 2024 Jan 29.

DOI:10.1177/0734242X241227376
PMID:38282576
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC11690026/
Abstract

This mini-review aims at proving that waste-to-energy (WtE) is an essential cornerstone for circular economy (CE). Based on literature, the history of thermal waste treatment over the last 150 years is investigated, from open burning to WtE with resource recovery and final sink function. The results show that in the past incineration solved the issues it was designed for but often created new and sometimes even worse problems: The introduction of incineration in the 19th century improved urban sanitation, decreased waste volume and prolonged operational life of landfills. But it also polluted the environment, triggering an unprecedented scientific and engineering effort of all stakeholders. Today, WtE is one of the best investigated and optimized technologies in waste management. It enables the recovery of energy as heat and electric power and facilitates the 'cleaning' of cycles by the destruction of hazardous organic substances. Recent developments in resource recovery from WtE residues allow to recycle metals and, in the case of sewage sludge, even phosphorus by thermal recycling. Combined with carbon capture and storage technology, WtE stands for a quantifiable contribution to greenhouse gas reduction. Today, WtE is indispensable to reach the goals of CE, namely recycling of energy and materials, supplying safe final sinks for persistent organic substances and minimizing the need for sinks for hazardous inorganic substances.

摘要

本综述旨在证明垃圾能源化(WtE)是循环经济(CE)的重要基石。基于文献,研究了过去150年来热垃圾处理的历史,从露天焚烧到具有资源回收和最终处置功能的垃圾能源化。结果表明,过去焚烧解决了其设计时要解决的问题,但往往又产生了新的、有时甚至更严重的问题:19世纪引入焚烧改善了城市卫生状况,减少了垃圾量,延长了垃圾填埋场的使用寿命。但它也污染了环境,引发了所有利益相关者前所未有的科学和工程努力。如今,垃圾能源化是垃圾管理领域研究和优化程度最高的技术之一。它能够回收热能和电能形式的能量,并通过销毁有害有机物质促进循环“清洁”。从垃圾能源化残渣中回收资源的最新进展使得金属得以回收利用,对于污水污泥,甚至可以通过热回收实现磷的回收。与碳捕获和储存技术相结合,垃圾能源化对减少温室气体排放有可量化的贡献。如今,垃圾能源化对于实现循环经济的目标不可或缺,这些目标包括能源和材料的回收利用、为持久性有机物质提供安全的最终处置场所,以及尽量减少对有害无机物质处置场所的需求。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e255/11690026/1f7f05e3a21b/10.1177_0734242X241227376-fig2.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e255/11690026/c9532a7423b7/10.1177_0734242X241227376-fig1.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e255/11690026/1f7f05e3a21b/10.1177_0734242X241227376-fig2.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e255/11690026/c9532a7423b7/10.1177_0734242X241227376-fig1.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e255/11690026/1f7f05e3a21b/10.1177_0734242X241227376-fig2.jpg

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Waste to energy incineration technology: Recent development under climate change scenarios.
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