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Evolution of Sr distribution coefficient as a function of time, incubation conditions and measurement technique

机译:Sr分布系数随时间,孵育条件和测量技术的变化

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A thorough understanding of the dynamics of radiostrontium in soil is required to allow accurate long-term predictions of its mobility. We have followed the soil solution distribution of ~(85)Sr as a function of time under controlled conditions over 4 months and studied the effect of soil moisture content and organic matter amendments. Data have been compared to redox conditions and soil pH. To fuel the ongoing debate on the validity of distribution coefficient (K_d) values measured in dilute suspension, we have compared values obtained from the activity concentration in soil solution obtained by centrifugation to data obtained in suspension with or without air-drying of the soil samples after incubation. The ~(85)Sr adsorption properties of soil, incubated without prior contamination were also measured. There is some time-dependent adsorption of Sr. This is partly due to changing soil composition due to the decomposition of added organic matter and anaerobic conditions induced by flooding. There is also a kinetic effect, but adsorption remains largely reversible. Most of the observed effects are lost when soil is suspended in electrolyte solution.
机译:需要对土壤中放射性锶的动力学有透彻的了解,才能准确预测其活动性。在4个月的可控条件下,我们跟踪了〜(85)Sr随时间变化的土壤溶液分布,并研究了土壤含水量和有机质改良剂的影响。将数据与氧化还原条件和土壤pH值进行了比较。为了进一步讨论稀稀悬浮液中分配系数(K_d)值的有效性,我们将通过离心获得的土壤溶液中的活性浓度与通过空气干燥或不干燥的悬浮液中的数据进行了比较。孵育后。还测量了土壤的〜(85)Sr吸附特性,无需事先污染即可进行孵育。 Sr的吸附时间是随时间变化的,部分原因是由于添加的有机物的分解和洪水引起的厌氧条件,土壤成分发生了变化。也有动力学作用,但吸附仍在很大程度上可逆。当土壤悬浮在电解质溶液中时,大多数观察到的影响会消失。

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