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Gas emissions from biodegradable waste in United Kingdom landfills

机译:英国垃圾填埋场可生物降解废物产生的气体排放

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The aim of this research was to predict the effect that the biodegradable municipal waste (BMW) diversion targets in the European Union landfill directive (99/31 /EC) would have on landfill gas emissions. This is important for continued mitigation of these emissions. Work was undertaken in three stages using the GasSim model (vl.03) developed by the Environment Agency (England and Wales). The first stage considered the contribution to gas emissions made by each biodegradable component of the waste stream. The second stage considered how gas emissions from a landfill accepting biodegradable wastes with reduced biodegradable content would be affected. The third stage looked at the contribution to gas emissions from real samples of biologically pretreated BMW. For the first two stages, data on the waste components were available in the model. For the third stage samples were obtained from four different biological treatment facilities and the required parameters determined experimentally. The results of stage 1 indicated that in the first 15 years of the landfill the putrescible fraction makes the most significant contribution, after which paper/card becomes the most significant. The second stage found that biodegradability must be reduced by at least 60% to achieve a reduction in overall methane generation. The third stage found that emissions from samples of biologically pretreated BMW would result in a significant reduction in gas emissions over untreated waste, particularly in the early stage of the landfill lifetime; however, low level emissions would continue to occur for the long term.
机译:这项研究的目的是预测欧盟垃圾填埋指令(99/31 / EC)中可生物降解的城市垃圾(BMW)转移目标对垃圾填埋气体排放的影响。这对于持续减少这些排放非常重要。使用由环境署(英格兰和威尔士)开发的GasSim模型(v.03)分三个阶段进行了工作。第一阶段考虑了废物流中每个可生物降解组分对气体排放的贡献。第二阶段考虑了垃圾填埋场接收的可生物降解含量降低的可生物降解废物的气体排放将受到怎样的影响。第三阶段研究了经过生物预处理的宝马实际样品对气体排放的贡献。对于前两个阶段,该模型中提供了有关废物成分的数据。对于第三阶段,样品是从四个不同的生物处理设备中获得的,并通过实验确定了所需的参数。第1阶段的结果表明,在垃圾填埋场的前15年中,可腐烂部分贡献最大,其后纸张/卡片成为最重要的部分。第二阶段发现,必须将生物降解能力至少降低60%,才能减少甲烷的总体产生量。第三阶段发现,经过生物预处理的宝马样品产生的排放将大大减少未处理废物的气体排放,尤其是在垃圾填埋场生命周期的早期;但是,长期而言,低水平的排放将继续发生。

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