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Development of a Coupled Reactor Model for Prediction of Organic Contaminant Fate in Landfills

机译:预测堆填区中有机污染物归宿的耦合反应器模型的建立

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Models describing the behavior of organic chemicals in landfills can be useful to predict their fate and transport and also to generate input data for estimates of exposure and risk. The landfill coupled-reactor (LFCR) model developed in this work simulates a landfill as a series of fully mixed reactors, each representing a daily volume of waste. The LFCR model is a numerical model allowing time-variable input parameters such as gas generation, and cover type and thickness. The model was applied to three volatile organic chemicals (acetone, toluene, benzene) as well as naphthalene and the chemical warfare agent sarin under three landfill conditions (conventional, arid, bioreactor). Sarin was rapidly hydrolyzed, whereas naphthalene was largely associated with the landfill solid phase in all scenarios. Although similar biodegradation rates were used for acetone and toluene, toluene was more persistent in the landfill due to its hydrophobicity. The cover soil moisture content had a significant impact on gaseous diffusive losses.
机译:描述垃圾掩埋场中有机化学品行为的模型可用于预测其命运和运输,还可以生成输入数据以估计暴露和风险。在这项工作中开发的垃圾填埋耦合反应器(LFCR)模型将垃圾填埋场模拟为一系列完全混合的反应堆,每个堆都代表每天的废物量。 LFCR模型是一个数值模型,允许随时间变化的输入参数,例如气体产生,覆盖层类型和厚度。该模型在三种垃圾填埋条件下(常规,干旱,生物反应器)应用于三种挥发性有机化学品(丙酮,甲苯,苯)以及萘和化学战剂沙林。 Sarin迅速水解,而萘在所有情况下都与垃圾填埋固相密切相关。尽管丙酮和甲苯使用了相似的生物降解速率,但由于其疏水性,甲苯在垃圾填埋场中更持久。覆盖土壤的水分含量对气体扩散损失有重大影响。

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