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Development of a leaching procedure to assess the risk of uranium leaching due to construction and demolition waste disposal

机译:制定浸出程序以评估由于建筑和拆除废物处置而造成的铀浸出风险

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Naturally-occurring uranium can be found at elevated concentrations in groundwater throughout the world, with the potential to cause kidney damage in chronically exposed individuals. Empirical evidence shows that uranium mobilization can be enhanced in the presence of ions that are associated with leachate from construction and demolition (C&D) disposal sites. There is need for a simple and effective procedure to evaluate soil and rock formations for uranium mobility prior to the permitting of waste disposal facilities which could alter groundwater chemistry. A series of leachate extractions were performed to represent the impact of C&D leachate on uranium-bearing rocks, focusing on the impact of calcium, sodium, chloride, sulphate, and bicarbonate concentrations on uranium mobilization. Based on these observations a uranium leaching procedure (ULP) was developed and compared to the synthetic precipitation leaching procedure (SPLP). The ULP was capable of mobilizing an order of magnitude more uranium than the SPLP from six rock samples and shows promise as a tool for assessing the risk of groundwater contamination by C&D waste through uranium mobilization. (C) 2018 Elsevier Ltd. All rights reserved.
机译:在世界各地的地下水中,天然铀的含量都很高,有可能对长期接触肾脏的人造成肾脏损害。经验证据表明,在存在与来自建筑和拆除(C&D)处置场的渗滤液有关的离子的情况下,可以提高铀的动员能力。在允许可能改变地下水化学性质的废物处理设施允许之前,需要一种简单有效的程序来评估土壤和岩层的铀迁移率。进行了一系列浸出液提取,以代表C&D浸出液对含铀岩石的影响,重点是钙,钠,氯,硫酸盐和碳酸氢盐浓度对铀动员的影响。基于这些观察,开发了铀浸出程序(ULP),并将其与合成沉淀浸出程序(SPLP)进行了比较。 ULP能够从六个岩石样品中迁移出的铀比SPLP多出一个数量级,并显示出有望作为通过铀迁移来评估C&D废物对地下水污染风险的工具。 (C)2018 Elsevier Ltd.保留所有权利。

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