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NumericalEvaluation of Lateral Diffusion Inside DiffusiveGradients in Thin Films Samplers

机译:数值型扩散内部的横向扩散评估薄膜采样器中的渐变

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摘要

Using numerical simulation of diffusion inside diffusive gradients in thin films (DGT) samplers, we show that the effect of lateral diffusion inside the sampler on the solute flux into the sampler is a nonlinear function of the diffusion layer thickness and the physical sampling window size. In contrast, earlier work concluded that this effect was constant irrespective of parameters of the sampler geometry. The flux increase caused by lateral diffusion inside the sampler was determined to be ∼8.8% for standard samplers, which is considerably lower than the previous estimate of ∼20%. Lateral diffusion is also propagated to the diffusive boundary layer (DBL), where it leads to a slightly stronger decrease in the mass uptake than suggested by the common 1D diffusion model that is applied for evaluating DGT results. We introduce a simple correction procedure for lateral diffusion and demonstrate how the effect of lateral diffusion on diffusion in the DBL can be accounted for. These corrections often result in better estimates of the DBL thickness (δ) and the DGT-measured concentrationthan earlier approaches and will contribute to more accurate concentrationmeasurements in solute monitoring in waters.
机译:使用薄膜(DGT)采样器中扩散梯度内部扩散的数值模拟,我们表明,采样器内部横向扩散对进入采样器的溶质通量的影响是扩散层厚度和物理采样窗口大小的非线性函数。相反,早期的工作得出的结论是,不管采样器几何参数如何,这种效果都是恒定的。对于标准采样器,由采样器内部的横向扩散引起的通量增加被确定为8.8%,这大大低于先前估计的20%。横向扩散也传播到扩散边界层(DBL),在扩散边界层中,质量吸收的降低比用于评估DGT结果的通用1D扩散模型所建议的略强。我们介绍了一种简单的横向扩散校正程序,并演示了如何解决横向扩散对DBL中扩散的影响。这些校正通常可以更好地估计DBL厚度(δ)和DGT测得的浓度比早期的方法,将有助于更准确的集中水质溶质监测中的测量。

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