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Effective gas-phase diffusion coefficient in soils

机译:土壤中有效的气相扩散系数

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摘要

Determination of the effective gas-phase diffusion coefficient is important to quantify gas diffusion for a number of environmental pollution problems involving migration and release of hazardous gases or organic vapors in soils. Conventionally, the only considered transport mechanism for this coefficient is molecular diffusion. This study additionally considers the effects of Knudsen diffusion and nonequimolar flux on this coefficient and proposes a relationship of this coefficient with both molecular and Knudsen diffusion coefficients, ratio of molar masses and composition of component gases for gas diffusion in soils. Through investigating calculation results of this relationship for hypothetical diffusion systems having different soil permeabilities and diffusing gases at a range of water saturation levels, it is found that the Knudsen and nonequimolar effects can only be substantial for systems with dry soil permeabilities -less than 10~(-13) m~2 at any saturation. The Knudsen effect on this relationship is further demonstrated through comparing results obtained from this relationship to the measured effective diffusion coefficients for 72 soil cores, which all have high silt and clay contents, given in the literature.
机译:有效气相扩散系数的测定对于量化涉及涉及迁移和释放土壤中有机蒸汽的环境污染问题的气体扩散是重要的。通常,该系数的唯一认为的传输机制是分子扩散。本研究另外考虑了knudsen扩散和非基准通量对该系数的影响,并提出了这种系数与分子和knudsen扩散系数的关系,摩尔质量比和土壤中气体扩散的组分气体组成。通过调查这种关系的测试结果,对于具有不同土壤渗透性的假设扩散系统以及在一系列水饱和水平下扩散气体的情况下,发现knudsen和非值效应只能为具有干燥土壤渗透率的系统而不是10〜 (-13)在任何饱和度下m〜2。通过比较从这种关系获得的结果与72个土核的测量有效扩散系数的比较,进一步证明了对这种关系的knudsen效应。

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