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Evaluating fugacity models for trace components in landfill gas

机译:评估垃圾填埋气中微量元素的逸度模型

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A fugacity approach was evaluated to reconcile loadings of vinyl chloride (chloroethene), benzene, 1,3-butadiene and trichloroethylene in waste with concentrations observed in landfill gas monitoring studies. An evaluative environment derived from fictitious but realistic properties such as volume, composition, and temperature, constructed with data from the Brogborough landfill (UK) test cells was used to test a fugacity approach to generating the source term for use in landfill gas risk assessment models (e.g. GasSim). SOILVE, a dynamic Level II model adapted here for landfills, showed greatest utility for benzene and 1,3-butadiene, modelled under anaerobic conditions over a 10 year simulation. Modelled concentrations of these components (95 300 mu g m(-3); 43 mu g m-3) fell within measured ranges observed in gas from landfills (24 300-180 000 mu g m(-3); 20-70 mu g m(-3)). This study highlights the need (i) for representative and time-referenced biotransformation data; (ii) to evaluate the partitioning characteristics of organic matter within waste systems and (iii) for a better understanding of the role that gas extraction rate (flux) plays in producing trace component concentrations in landfill gas. (c) 2006 Elsevier Ltd. All rights reserved.
机译:评价了一种逸度方法,以协调垃圾掩埋气监测研究中观察到的废物中氯乙烯(氯乙烯),苯,1,3-丁二烯和三氯乙烯的含量。利用来自Brogborough垃圾填埋场(英国)测试单元的数据构建的虚构但逼真的属性(例如体积,组成和温度)得出的评估环境用于测试逸度方法,以生成用于填埋场气体风险评估模型的源项(例如GasSim)。 SOILVE是适用于垃圾填埋场的动态II级动态模型,对苯和1,3-丁二烯的最大效用(在厌氧条件下进行了10年的模拟)。这些成分的模型浓度(95 300μgm(-3); 43μgm-3)处于从填埋场产生的气体(24300-180 000 mugm(-3); 20-70μg( -3))。这项研究强调了(i)具有代表性和时间参考的生物转化数据的需求; (ii)评估废物系统中有机物的分配特征,以及(iii)更好地理解抽气速率(通量)在垃圾填埋气中产生痕量组分浓度中的作用。 (c)2006 Elsevier Ltd.保留所有权利。

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