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Study on the effect of LNAPL pollution to soil complex permittivity

机译:LNAPL污染对土壤复杂介电常数的影响研究

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According to the principle of reflection of electromagnetic waves, the authors use the open-ended coaxial probe method which operate the high frequency electromagnetic wave (200 MHz–8.5 GHz) to measure the dielectric constant of sand saturated with water and LNAPL (light non-aqueous phase liquid) under the laboratory conditions. The experimental results show the real part of the complex permittivity increases with LNAPL volume increasing and the imaginary part changes very little. However, the variation of the complex permittivity is not obvious after the sand is saturated. When the quartz sand contains water, the real and the imaginary parts of the complex permittivity increase with the volumetric content of LNAPL increasing. After some hours, both the real and imaginary parts of complex permittivity of the sand partly saturated with water and LNAPL have changed. In the study frequency range, the real part of complex permittivity decreases gradually with the frequency of electromagnetic wave elevation, the changes of the imaginary part is different. The experimental results show that the change of the mixture structure due to the LNAPL replacing the air in the pore and the absorption of the LNAPL, water and medium changes the ionic polarizability and further changes the dielectric properties of the mixture.
机译:根据电磁波的反射的原理,作者使用的操作高频电磁波的开放式的同轴探针的方法(200兆赫,8.5千兆赫)来测量的砂与水和饱和LNAPL的介电常数(非光水相液体)在实验室条件下。实验结果表明,复杂介电常数的实际部分随着LNAPL体积的增加而增加,虚部变化很少。然而,在饱和之后,复杂介电常数的变化是不明显的。当石英砂含有水时,复杂介电常数的真实和假想部分随着LNAPL增加的体积含量而增加。几个小时后,砂的复杂介电常数的真实和虚部部分饱和水和LNAPL已经改变。在研究频率范围内,随着电磁波升高的频率逐渐降低了复杂介电常数的实数,模糊部分的变化是不同的。实验结果表明,由于LNAPL在孔中替换空气和LNAPL,水和介质的吸收的影响,混合物结构的变化会改变离子极化性并进一步改变混合物的介电性质。

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