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超临界水氧化及其他污水污泥处理方案的环境评估

Environmental assessment of supercritical water oxidation and other sewage sludge handling options.

作者信息

Svanström Magdalena, Fröling Morgan, Olofsson Mattias, Lundin Margareta

机构信息

Chemical Engineering and Environmental Science, Chalmers University of Technology, SE-412 96 Göteborg, Sweden.

出版信息

Waste Manag Res. 2005 Aug;23(4):356-66. doi: 10.1177/0734242X05054324.

Abstract

Sustainable development relies on the eco-efficient use of all flows in society; more value created out of each resource unit. Supercritical water oxidation (SCWO) can be used for treatment of wet organic waste. The technology has been under development for over 20 years but has not yet been fully commercialized. SCWO allows for complete oxidation of all organics in sewage sludge and almost complete recovery of the inherent energy, essentially without harmful emissions. In this paper, a life-cycle assessment (LCA) of sewage sludge SCWO (Aqua-Critox) is presented and the results are compared with LCA results for other sludge handling options: agricultural use, co-incineration with municipal solid waste, incineration with subsequent phosphorus extraction (Bio-Con) and sludge fractionation with phosphorus recovery (Cambi-KREPRO). For SCWO, beneficial utilization of the heat of reaction is of crucial importance for the outcome. The electricity consumed by pumping and the nitrous oxide produced are other important parameters. The best sludge handling option from an environmental point of view depends on what aspect is considered more important in the impact assessment. Regarding global warming, the energy recovery methods perform better than agricultural use.

摘要

可持续发展依赖于社会中所有物质流的生态高效利用;即从每个资源单元中创造更多价值。超临界水氧化(SCWO)可用于处理湿有机废物。这项技术已经开发了20多年,但尚未完全商业化。超临界水氧化能够使污水污泥中的所有有机物完全氧化,并几乎完全回收其内在能量,基本不会产生有害排放物。本文介绍了污水污泥超临界水氧化(Aqua-Critox)的生命周期评估(LCA),并将结果与其他污泥处理方案的生命周期评估结果进行了比较:农业利用、与城市固体废物共焚烧、焚烧并随后进行磷提取(Bio-Con)以及污泥分馏并回收磷(Cambi-KREPRO)。对于超临界水氧化而言,对反应热的有益利用对结果至关重要。泵送所消耗的电力以及产生的一氧化二氮是其他重要参数。从环境角度来看,最佳的污泥处理方案取决于在影响评估中哪个方面被认为更为重要。在全球变暖方面,能量回收方法比农业利用表现更好。

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