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Modeling influence of gas/liquid/solid three-phase boundary zone on cathodic process of soil corrosion

机译:气/液/固三相边界带对土壤腐蚀阴极过程的模拟影响

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摘要

Geometric properties of gas/liquid/solid three-phase boundary (TPB) zones of dispersive liquid on a metal surface in soils, play an important role in the cathodic and corrosion behavior of metals. The correlation between the TPB geometric parameters (e.g. its length and width) and the soil water content is established, and on this basis, the influence of TPB parameters on the cathodic oxygen reduction process of soil corrosion is simulated. The simulation result shows an initial increase and a subsequent decrease in cathodic limiting current with increasing soil water content, and a maximum is present at about 60% water content of their water holding capacity (WHC), in good agreement with the experimental results. In addition, a parameter b is proposed to evaluate the liquid dispersion in soils, and a linear dependence of cathodic limiting current on parameter b is calculated from the model, confirming the important role of liquid dispersion in soil corrosion systems.
机译:土壤中金属表面上分散液的气/液/固三相边界(TPB)区的几何特性在金属的阴极和腐蚀行为中起着重要作用。建立了TPB几何参数(例如长度和宽度)与土壤含水量之间的相关性,并在此基础上模拟了TPB参数对土壤腐蚀阴极氧还原过程的影响。模拟结果表明,随着土壤含水量的增加,阴极极限电流开始增加,随后减少,最大持水量(WHC)的含水量约为60%,与实验结果吻合良好。此外,提出了参数b来评估土壤中的液体分散性,并从模型中计算出阴极极限电流对参数b的线性依赖性,从而确认了液体分散性在土壤腐蚀系统中的重要作用。

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