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Life Cycle Assessment of mechanical biological pre-treatment of Municipal Solid Waste: A case study

机译:机械生物预处理城市生活垃圾的生命周期评估:一个案例研究

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摘要

The environmental performance of mechanical biological pre-treatment (MBT) of Municipal Solid Waste is quantified using Life Cycle Assessment (LCA), considering one of the 57 French plants currently in operation as a case study. The inventory is mostly based on plant-specific data, extrapolated from on-site measurements regarding mechanical and biological operations (including anaerobic digestion and composting of digestate). The combined treatment of 46,929 tonnes of residual Municipal Solid Waste and 12,158 tonnes of source-sorted biowaste (as treated in 2010 at the plant) generates 24,550 tonnes CO_2-eq as an impact on climate change, 69,9431 kg SO_2-eq on terrestrial acidification and 19,929 kg NMVOC-eq on photochemical oxidant formation, in a life-cycle perspective. On the contrary MBT induces environmental benefits in terms of fossil resource depletion, human toxicity (carcinogenic) and eco-toxicity. The results firstly highlight the relatively large contribution of some pollutants, such as CH_4, emitted at the plant and yet sometimes neglected in the LCA of waste MBT. Moreover this study identifies 4 plant-specific operation conditions which drive the environmental impact potentials induced by MBT: the conditions of degradation of the fermentable fraction, the collection of gaseous flows emitted from biological operations, the abatement of collected pollutants and NOx emissions from biogas combustion. Finally the results underline the relatively large influence of the operations downstream the plant (in particular residuals incineration) on the environmental performance of waste MBT.
机译:考虑到目前正在运行的法国57家工厂之一,使用生命周期评估(LCA)对城市固体废物的机械生物预处理(MBT)的环境性能进行了量化。清单主要基于特定于工厂的数据,这些数据是根据有关机械和生物操作(包括厌氧消化和消化物堆肥)的现场测量推算得出的。综合处理46,929吨残留的城市固体废物和12,158吨按源分类的生物废物(2010年在该厂进行了处理),产生了24,550吨二氧化碳当量,对气候变化的影响为69,9431千克二氧化碳当量。从生命周期的角度来看,酸化作用和19,929 kg NMVOC-eq对光化学氧化剂形成的影响。相反,MBT在化石资源枯竭,人类毒性(致癌性)和生态毒性方面具有环境效益。结果首先突出了一些污染物(例如CH_4)的相对较大贡献,这些污染物在工厂排放,但有时在废物MBT的LCA中却被忽略。此外,本研究还确定了4种特定于工厂的操作条件,这些条件会驱动MBT诱发的环境影响潜力:可发酵级分的降解条件,生物操作产生的气流收集,减少收集的污染物以及沼气燃烧产生的NOx排放。最后,结果强调了工厂下游作业(特别是残渣焚烧)对废MBT的环境绩效的较大影响。

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