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The physicochemical distribution of I-131 in a municipal wastewater treatment plant

机译:I-131在城市污水处理厂中的物理化学分布

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As a consequence of therapeutic and diagnostic treatment of patients with thyroid diseases, I-131 is introduced into the sewage system on a regular basis. This presents an opportunity to use the I-131 as a tracer to study its partitioning and transport within a wastewater treatment plant (WWTP). In the case of nuclear accidents where I-131 is one of the most prominent nuclides, an understanding of iodine partitioning and transport will be valuable for developing models that may prognosticate the activity concentrations in sludge and outflow, especially after an accidental input. In this study, samples from various locations inside a municipal WWTP were taken and for each sample, three different fractions were separated by a chemical extraction process. These fractions were analysed for their I-131 activity concentrations by gamma-ray spectroscopy. While about 30% of the radioiodine activity in the inflow is associated with organic molecules, this amounts to about 90% after biological treatment. This is caused by the accumulation of I-131 bound to organic matter in the return sludge and by a transfer of I-131 from the inorganic to the organic fractions, most likely mediated by microbial action. In the outflow, inorganic and low-molecular I-131 is dominant, but the overall activity concentration is reduced to about 50-75%. (C) 2017 Elsevier Ltd. All rights reserved.
机译:由于对甲状腺疾病患者进行了治疗和诊断,因此定期将I-131引入污水处理系统。这提供了使用I-131作为示踪剂来研究其在废水处理厂(WWTP)中的分配和运输的机会。对于I-131是最突出的核素之一的核事故,了解碘的分配和运输对于开发可预测污泥和流出物中的活性浓度(尤其是在意外输入后)的浓度的模型将非常有价值。在这项研究中,从市政污水处理厂内的不同位置采集了样品,对于每种样品,通过化学提取工艺将三个不同的馏分分离。通过伽马射线光谱法分析这些级分的它们的I-131活性浓度。虽然流入物中约30%的放射性碘活性与有机分子有关,但经过生物处理后,约占90%。这是由于回流污泥中与有机物结合的I-131积累以及I-131从无机部分转移到有机部分而引起的,这很可能是由微生物作用介导的。在流出中,无机和低分子I-131占主导地位,但总活性浓度降低到约50-75%。 (C)2017 Elsevier Ltd.保留所有权利。

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