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Determination of 137Cs and 85Sr transport parameters in fucoidic sand columns and groundwater system

机译:岩藻土砂柱和地下水系统中137Cs和85Sr输运参数的确定

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The determination is based on the evaluation of experimentally obtained breakthrough curves using the erfc-function. The first method is founded on the assumption of a reversible linear sorption/desorption isotherm of radionuclides on solid phase with constant distribution and retardation coefficients, whereas the second one is based on the assumption of a reversible non-linear sorption/desorption isotherm described with the Freundlich equation, i.e., with non-constant distribution and retardation coefficients. Undisturbed cores of 5 cm in diameter and 10 cm long were embedded in the Eprosin-type cured epoxide resin column. In this study the so-called Cenomanian background groundwater was used as transport medium. The groundwater containing radionuclides was introduced at the bottom of the columns at about 4 mL h?1 constant flow-rate. The results have shown that in the investigated fucoidic sands: (i) the sorption was in principle characterized by linear isotherms and the corresponding retardation coefficients of 137Cs and 85Sr, depending on the type of sample, were approximately 13 or 44 and 5 or 15, respectively; (ii) the desorption was characterized by non-linear isotherms, and the retardation coefficients of the same radionuclides ranged between 23–50 and 5–25, respectively. The values of the hydrodynamic dispersion coefficients of these radionuclides varied between 0.43–1.2 cm2 h?1.
机译:该确定基于使用erfc函数对实验获得的突破曲线的评估。第一种方法是基于放射性核素在固相上具有恒定分布和延迟系数的可逆线性吸附/解吸等温线的假设,而第二种方法是基于以下描述的可逆非线性吸附/解吸等温线的假设: Freundlich方程,即具有非恒定分布和延迟系数。将直径为5 cm,长度为10 cm的未扰动的岩心埋入Eprosin型固化环氧树脂树脂柱中。在这项研究中,所谓的塞诺曼尼亚背景地下水被用作运输介质。将含放射性核素的地下水以约4 mL h?1的恒定流速引入色谱柱底部。结果表明,在所研究的岩藻土砂中:(i)原则上吸附具有线性等温线特征,并且根据样品类型,相应的137Cs和85Sr延迟系数约为13或44和5或15,分别; (ii)解吸的特征是非线性等温线,相同放射性核素的延迟系数分别在23–50和5–25之间。这些放射性核素的流体动力扩散系数值在0.43–1.2 cm2 h?1之间变化。

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