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利用电阻抗光谱法检测行星风化层中的水。

Using electrical impedance spectroscopy to detect water in planetary regoliths.

作者信息

Seshadri Suresh, Chin Keith B, Buehler Martin G, Anderson Robert C

机构信息

Jet Propulsion Laboratory, Pasadena, California 91109, USA.

出版信息

Astrobiology. 2008 Aug;8(4):781-92. doi: 10.1089/ast.2007.0180.

Abstract

We present data in examination of the utility of electrical impedance spectroscopy measurements for in situ surveys to determine the water content, distribution, and phase in unconsolidated planetary regolith. We conducted calibration experiments under conditions relevant to Mars: the concentration of electrolytes in solution was varied up to 1 M to simulate the effects of unsaturated dissolved minerals and brines. We also varied the water content of heterogeneous water/sand mixtures, made with these electrolytic solutions from 0.01 wt% to 10 wt%. Tests were performed at temperatures from +25 degrees C to -65 degrees C. Conductivity and dielectric permittivity calculated from the impedance measurements indicate an expected dependence on electrolyte concentration and relative independence from electrolyte type for both liquid water and water ice. Conductivity and calculated dielectric relaxation times for these aqueous solutions agree with existing data in the literature. The relative permittivity for heterogeneous water/sand mixtures is dominated by polarization effects for the electrode configuration used. However, the characteristic orientational relaxation of ice is still visible. The conductivity retains the strong dependence on electrolyte concentration, and the permittivity is still not affected by electrolyte type. A "universal" curve between conductivity and water content establishes detectability limits of <0.01 wt% and approximately 0.3 wt% for water/sand mixtures containing liquid water and ice, respectively.

摘要

我们展示了关于电阻抗光谱测量在原位勘测中的效用的数据,以确定未固结的行星风化层中的含水量、分布和相态。我们在与火星相关的条件下进行了校准实验:溶液中电解质的浓度变化高达1 M,以模拟不饱和溶解矿物质和盐水的影响。我们还改变了由这些电解液制成的非均匀水/沙混合物的含水量,范围从0.01 wt%到10 wt%。测试在+25摄氏度至-65摄氏度的温度下进行。由阻抗测量计算得出的电导率和介电常数表明,液态水和水冰对电解质浓度有预期的依赖性,而对电解质类型相对独立。这些水溶液的电导率和计算得出的介电弛豫时间与文献中的现有数据一致。对于所使用的电极配置,非均匀水/沙混合物的相对介电常数主要受极化效应影响。然而,冰的特征取向弛豫仍然可见。电导率对电解质浓度仍有强烈依赖性,介电常数仍不受电解质类型影响。对于分别含有液态水和冰的水/沙混合物,电导率与含水量之间的“通用”曲线确定了检测限,液态水混合物的检测限<0.01 wt%,冰混合物的检测限约为0.3 wt%。

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