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Maxwell-wagner-sillars, adsorbed water, and free-water dielectric relaxations within a hydrated arid-zone calcic soil

机译:Maxwell-wagner-sillars,吸附水和水化干旱区钙质土壤中的自由水介电弛豫

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We measured the broadband (40 Hz-20 GHz) relative dielectric permittivity of sieved surficial samples of an arid-zone soil. The soil samples were equilibrated at 25 °C with relative humidities of 43, 54, 84, and 97 %. Debye-like Maxwell-Wagner-Sillars (MWS) polarization relaxation times of 309, 227, and 73 ns were calculated for the soil samples equilibrated at relative humidities of 43, 54, and 84 %, respectively. Due to electrode polarization, MWS polarization relaxations could be not be discerned on the soil sample equilibrated at 97 % relative humidity. The measured differences between the static and high-frequency relative permittivity (ε - ε) due to MWS polarization were between 25 and 45 times that of the oven dry soil. This would cause the MWS relaxation to increase radar-wave attenuation rates at frequencies as high as 1 GHz. We found Debye-type relaxation times associated with adsorbed water of 13, 15, 17, 19, and 22 ps for an oven-dry sample and ones equilibrated at at relative humidities of 43, 54, 84, and 97 %, respectively. These frequencies are higher than previously thought. This progression with water contents may be due to the increase in soil solution salinity with increasing water contents. They were not likely caused by free water since a weakly resolved relaxation could be discerned corresponding to a relaxation time of approximately 8 ps, as expected for free-water.
机译:我们测量了干旱地区土壤筛分表面样品的宽带(40 Hz-20 GHz)相对介电常数。将土壤样品在25°C下以43%,54%,84%和97%的相对湿度平衡。对于相对湿度分别为43%,54%和84%的土壤样品,计算得出的Debye样麦克斯韦-瓦格纳-西拉(MWS)极化弛豫时间分别为309、227和73 ns。由于电极极化,无法在相对湿度为97%的土壤样品上观察到MWS极化弛豫。由于MWS极化,测得的静态和高频相对介电常数(ε-ε)之间的差异是干燥土壤的25至45倍。这将导致MWS弛豫增加频率高达1 GHz的雷达波衰减率。对于烘干样品,我们发现与吸附水相关的德拜型弛豫时间分别为13、15、17、19和22 ps,在相对湿度分别为43、54、84和97%时达到平衡。这些频率比以前认为的要高。含水量的这种增加可能是由于土壤溶液盐度随含水量的增加而增加。它们不太可能是由自由水引起的,因为与自由水所预期的一样,大约8 ps的弛豫时间可以识别出较弱的松弛。

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