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Simulation model for gas diffusion and methane oxidation in landfill cover soils

机译:垃圾掩埋土壤中气体扩散和甲烷氧化的模拟模型

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摘要

Landfill cover soils oxidize a considerable fraction of the methane produced by landfilled waste. Despite many efforts this oxidation is still poorly quantified. In order to reduce the uncertainties associated with methane oxidation in landfill cover soils, a simulation model was developed that incorporates Stefan-Maxwell diffusion, methane oxidation, and methanotrophic growth. The growth model was calibrated to laboratory data from an earlier study. There was an excellent agreement between the model and the experimental data. Therefore, the model is highly applicable to laboratory column studies, but it has not been validated with field data. A sensitivity analysis showed that the model is most sensitive to the parameter expressing the maximum attainable methanotrophic activity of the soil. Temperature and soil moisture are predicted to be the environmental factors affecting the methane oxidizing capacity of a landfill cover soil the most. Once validated with field data, the model will enable a year-round estimate of the methane oxidizing capacity of a landfill cover soil.
机译:垃圾填埋场覆盖的土壤氧化了垃圾填埋场产生的大量甲烷。尽管付出了许多努力,但这种氧化仍很难定量。为了减少与垃圾掩埋场中甲烷氧化相关的不确定性,开发了包含Stefan-Maxwell扩散,甲烷氧化和甲烷营养生长的模拟模型。生长模型已根据早期研究的实验室数据进行了校准。模型与实验数据之间有很好的一致性。因此,该模型高度适用于实验室色谱柱研究,但尚未通过现场数据进行验证。敏感性分析表明,该模型对表示土壤可获得的最大甲烷营养活性的参数最敏感。预计温度和土壤湿度是影响垃圾掩埋场甲烷氧化能力的环境因素。一旦通过现场数据验证,该模型将可以对填埋场覆盖土壤的甲烷氧化能力进行全年评估。

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