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Life Cycle Assessment of Mechanical-Biological Treatment of Mixed Municipal Waste

机译:机械-生物混合生活垃圾的生命周期评估

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The aim of this study is to quantify the environmental exchanges associated with the mechanical-biological treatment (MBT) of mixed municipal waste, for a specific MBT plant, based on the annual operation data for the year 2015. Modeling of environmental performance of the MBT technology is done on actual, real data of the operating plant, taking into account particular, explicit outputs and efficiencies of the plant. Results contribute to quantitative understanding of MBT technology and its environmental impact, including the impacts from individual unit processes within MBT. The study is based on Life Cycle Assessment methodology, employing the EASETECH model. One megagram of mixed municipal waste entering the MBT plant is adopted as the functional unit. The system boundaries cover the whole value chain from collection and transport of mixed municipal waste through mechanical and biological operations until final treatment of end-waste generated in the MBT plant. Results of modeling show the MBT of mixed municipal waste, with accompanying final treatment processes of end-waste has negative impact on the environment. Significant impact categories include photochemical ozone formation, eutrophication, acidification, human toxicity. Aerobic biological treatment of the undersize fraction rich in organic material has the biggest share in total environmental impact, mainly due to ammonia and dinitrogen monoxide emissions. It may suggest that aerobic treatment is not the best option for MBT plants and biogasification with energy recovery can be more beneficial. Landfilling of ballast and stabilized waste, and use of compost for remediation of a closed landfill entail slightly lower environmental impact than the biological treatment. Recycling of secondary materials sorted from residual waste has positive effects on the environment.
机译:这项研究的目的是基于2015年的年度运营数据,对特定的MBT工厂量化与混合市政垃圾的机械-生物处理(MBT)相关的环境交换。MBT的环境绩效模型技术是根据运营工厂的实际,真实数据完成的,同时要考虑工厂的特定,明确的输出和效率。结果有助于定量了解MBT技术及其对环境的影响,包括MBT内部各个单元过程的影响。该研究基于生命周期评估方法,采用了EASETECH模型。进入MBT厂的1毫克混合城市垃圾被用作功能单元。该系统的边界覆盖了整个价值链,从收集和运输混合的城市垃圾到通过机械和生物操作,直至对MBT工厂产生的最终废物进行最终处理。建模结果表明,混合城市垃圾的MBT以及伴随的最终废物最终处理过程对环境产生负面影响。重大影响类别包括光化学臭氧形成,富营养化,酸化,人类毒性。有氧生物处理富含有机物质的筛分过小的部分在整个环境影响中所占份额最大,这主要是由于氨和一氧化二氮的排放。这可能表明,好氧处理不是MBT植物的最佳选择,而利用能量回收进行生物气化会更加有益。压载物和稳定废物的填埋,以及堆肥用于封闭封闭填埋的补救措施,对环境的影响要比生物处理低。从残留废物中分类出来的次要材料的回收对环境有积极影响。

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