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首页> 外文期刊>Waste Management >Emissions of organo-metal compounds via the leachate and gas pathway from two differently pre-treated municipal waste materials - A landfill reactor study
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Emissions of organo-metal compounds via the leachate and gas pathway from two differently pre-treated municipal waste materials - A landfill reactor study

机译:两种经过预处理的市政废物通过渗滤液和气体途径排放的有机金属化合物-垃圾填埋场研究

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摘要

Due to their broad industrial production and use as PVC-stabilisers, agro-chemicals and anti-fouling agents, organo-metal compounds are widely distributed throughout the terrestrial and marine biogeosphere. Here, we focused on the emission dynamics of various organo-metal compounds (e.g., di,- tri-, tetra-methyl tin, di-methyl mercury, tetra-methyl lead) from two different kinds of pre-treated mass waste, namely mechanically-biologically pre-treated municipal solid waste (MBP MSW) and municipal waste incineration ash (MWIA). In landfill simulation reactors, the emission of the organo-metal compounds via the leachate and gas pathway was observed over a period of 5 months simulating different environmental conditions (anaerobic with underlying soil layer/aerated/anaerobic). Both waste materials differ significantly in their initial amounts of organo-metal compounds and their environmental behaviour with regard to the accumulation and depletion rates within the solid material during incubation. For tri-methyl tin, the highest release rates in leachates were found in the incineration ash treatments, where anaerobic conditions in combination with underlying soil material significantly promoted its formation. Concerning the gas pathway, anaerobic conditions considerably favour the emission of organo-metal compounds (tetra-methyl tin, di-methyl mercury, tetra-methyl lead) in both the MBP material and especially in the incineration ash.
机译:由于其广泛的工业生产和用作PVC稳定剂,农药和防污剂的原因,有机金属化合物广泛分布于整个陆地和海洋生物地球圈。在这里,我们集中研究了两种不同的预处理过的废物中各种有机金属化合物(例如,二,三,四甲基锡,二甲基汞,四甲基铅)的排放动力学。机械生物预处理的城市固体垃圾(MBP MSW)和城市垃圾焚烧灰(MWIA)。在垃圾填埋模拟反应堆中,模拟不同的环境条件(厌氧层和下层土壤层/曝气/厌氧),在5个月内观察到有机金属化合物通过渗滤液和气体途径的排放。两种废物的初始有机金属化合物量和环境行为在温育过程中在固体物质中的累积和消耗速率方面都存在显着差异。对于三甲基锡,在焚烧灰处理中发现沥滤液中的释放速率最高,其中厌氧条件与底层土壤物质的结合显着促进了其形成。关于气体通道,厌氧条件大大有利于MBP材料,尤其是焚烧灰分中有机金属化合物(四甲基锡,二甲基汞,四甲基铅)的排放。

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