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Radiocesium Adsorption-Desorption on Soils and Clay Minerals as Influenced by Potassium Activity Ratio

机译:钾活度比对土壤和粘土矿物中放射性铯的吸附-解吸

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The knowledge on radiocesium behavior in soils is important for devising effective strategies and techniques to minimize its transfer to plants. In the present investigation, adsorption-desorption of radiocesium in soils and clay minerals as influenced by activity ratio of potassium (AR_K) was studied. Seventeen soils representing different soil orders and seven pure clay minerals representing distinct clay mineral groups were used for the present study. The data indicates that > 90 percent of ~(134)Cs was adsorbed on soils and clays even under the influence of competing solutions like calcium chloride and potassium. On an average the adsorption of ~(134)Cs were comparatively higher in soils with neutral to alkaline pH. In the presence of(K~+) ion, and with the increase in K~+ ion concentration, the ~(134)Cs adsorption decreased in all soils. Amongst the clays, the adsorption was minimum for kaolinite and halloysite in AR_K solution. The desorption studies using AR_K shows that, in general with an increase in concentration of the extractants, the total Cs desorbed also increases. Desorption was maximum in laterite and red soils and amongst clays, kaolinites showed almost similar trend.
机译:关于土壤中放射性铯行为的知识对于设计有效的策略和技术以最大程度地减少其向植物的转移非常重要。在本研究中,研究了受钾活度比(AR_K)影响的土壤和粘土矿物中放射性铯的吸附-解吸。本研究使用了代表不同土壤阶的17种土壤和代表了不同粘土矿物组的7种纯粘土矿物。数据表明,即使在竞争性溶液(如氯化钙和钾)的影响下,也有90%以上的〜(134)Cs吸附在土壤和粘土上。在中性至碱性pH值的土壤中,平均〜(134)Cs的吸附相对较高。在存在(K〜+)离子的情况下,随着K〜+离子浓度的增加,在所有土壤中〜(134)Cs的吸附均降低。在粘土中,高岭石和埃洛石在AR_K溶液中的吸附最小。使用AR_K进行的解吸研究表明,通常随着萃取剂浓度的增加,解吸的总Cs也会增加。在红土和红壤中的解吸作用最大,在粘土中,高岭石表现出几乎相似的趋势。

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