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Environmental performance and energy recovery potential of five processes for municipal solid waste treatment

机译:五种城市固体废物处理工艺的环境绩效和能量回收潜力

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In this study, the environmental impacts were assessed for five municipal solid waste (MSW) treatment processes with energy recovery potential. The life cycle assessment (LCA) tool was used to quantify the environmental impacts. The five processes considered are incineration, gasification, anaerobic digestion, bio-landfills, and composting. In addition, these processes were compared to recycling where applicable. In addition to environmental impacts quantification, the energy production potentials for the five processes were compared to provide a thorough assessment. To maximize the future applicability of our findings, the analyses were based on the waste treatment technologies as they apply to individual waste streams, but not for a specific MSW mixture at a particular location. Six MSW streams were considered; food, yard, plastic, paper, wood and textile wastes. From an energy recovery viewpoint, it was found that it is best to recycle paper, wood and plastics; to anaerobically digest food and yard wastes; and to incinerate textile waste. On the other hand, the level of environmental impact for each process depends on the considered impact category. Generally, anaerobic digestion and gasification were found to perform better environmentally than the other processes, while composting had the least environmental benefit. (C) 2013 Elsevier Ltd. All rights reserved.
机译:在这项研究中,评估了具有能量回收潜力的五个市政固体废物(MSW)处理过程的环境影响。生命周期评估(LCA)工具用于量化环境影响。考虑的五个过程是焚化,气化,厌氧消化,生物垃圾填埋和堆肥。此外,在适用的情况下,将这些过程与回收进行了比较。除了量化环境影响外,还对五个过程的能源生产潜力进行了比较,以提供全面的评估。为了最大程度地提高我们研究结果的未来适用性,这些分析基于废物处理技术,因为它们适用于单个废物流,但不适用于特定位置的特定MSW混合物。已考虑了六个MSW流;食品,院子,塑料,纸张,木材和纺织废料。从能量回收的角度来看,发现最好回收纸,木材和塑料;而从纸上回收木材则最好。厌氧消化食物和庭院垃圾;并焚化纺织废料。另一方面,每个过程对环境的影响程度取决于所考虑的影响类别。通常,发现厌氧消化和气化比其他过程在环境方面表现更好,而堆肥则对环境的影响最小。 (C)2013 Elsevier Ltd.保留所有权利。

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