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首页> 外文期刊>International Journal of Electrochemical Science >Electrochemical Impedance Spectroscopy (EIS) of NaCl- Saturated Sandy Soil at Sub-zero Temperatures
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Electrochemical Impedance Spectroscopy (EIS) of NaCl- Saturated Sandy Soil at Sub-zero Temperatures

机译:亚零温度下NaCl-饱和砂土的电化学阻抗光谱(EIS)

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摘要

In this paper, NaCl-saturated sandy soil at sub-zero temperatures was studied with electrochemical impedance spectroscopy (EIS). By considering the microstructure of the NaCl-saturated sandy soil, an equivalent circuit (EC) model (RCCP (CIP (CDCP RDCP))) is proposed on the basis of three kinds of conductive paths (continuous conductive paths (CCPs), discontinuous conductive paths (DCPs), and insulating paths (IPs). The correctness and suitability of the EC model are indicated by the small values of the chi-square statistic and fitting errors. The four circuit elements in this equivalent circuit model are associated with soil components, and the freezing of water to ice is the main cause of changes in their values. The fitting results obtained by this equivalent circuit model suggest that the values of the RCCP and RDCP increase exponentially with decreasing temperature. There is an obvious change in the trends for the values of the CDCP and CIP that depends on the freezing temperature. The proposed EC model can successfully explain the EIS results and help provide a better understanding of the microstructure of frozen soil. In addition, the model can be applied in other types of frozen soils and support studies of the corrosion of steel buried in soils at sub-zero temperatures, which can further broaden the application of EIS.
机译:本文用电化学阻抗光谱(EIS)研究了亚零温度下的NaCl饱和砂土。通过考虑NaCl饱和砂土的微观结构,基于三种导电路径提出了一种等效电路(EC)模型(RCCP(CIP(CIP(CDCP RDCP))(连续导电路径(CCP),不连续导电路径(DCP)和绝缘路径(IPS)。EC模型的正确性和适用性由Chi-Square统计和拟合误差的小值表示。该等效电路模型中的四个电路元件与土壤部件相关联然后将水冻结到冰是它们的值变化的主要原因。通过该等效电路模型获得的拟合结果表明,RCCP和RDCP的值随着较低的趋势而呈指数级增长。趋势有明显的变化对于CDCP和CIP的值取决于冻结温度。所提出的EC模型可以成功解释EIS结果,并​​帮助更好地了解的微观结构冻土。此外,该模型可用于其他类型的冷冻土壤和钢埋在亚零温度下钢的腐蚀的支持研究,这可以进一步扩大EIS的应用。

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