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Removal of radioactive iodide from simulated liquid waste in an integrated precipitation reactor and membrane separator (PR-MS) system

机译:在集成的沉淀反应器和膜分离器(PR-MS)系统中从模拟废液中去除放射性碘化物

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摘要

A novel integrated precipitation reactor (PR) and membrane separator (MS) system was developed for the removal of radioactive I- from simulated liquid waste. The PR-MS system was evaluated at the lab-scale, the I- removal efficiency reached approximately 97.0% and the concentration factor (CF) value was 1050 when the concentration of added Na2SO3 was 40 mg/L and the CuCI dosage was 260 mg/L. The addition of Na2SO3 played an important role in the removal of dissolved oxygen (DO) and the formation of CuI. These reactions, including the oxidation of SO32-, the dissociation of CuCI, the disproportionation of Cu+, and the formation of CuI and Cu2O, occurred in the PR. Furthermore, the influence of the concentration of added CO32- on copper removal was investigated, and solid-liquid separation and copper removal were simultaneously attained in the MS. The I- removal efficiency gradually decreased from 97.0% to 58.5% and the Cu2(+) concentration in the effluent decreased from 18.71 mg/L to 0.719 mg/L with the addition of CO32- at a concentration that ranged from 0 to 80 mg/L. Experimental results show the PR-MS system is of great potential for industrial application on treatment of liquid waste contaminated with radioactive I-. (C) 2016 Elsevier B.V. All rights reserved.
机译:开发了一种新型的集成沉淀反应器(PR)和膜分离器(MS)系统,用于从模拟废液中去除放射性I-。在实验室规模评估PR-MS系统,当添加的Na2SO3浓度为40 mg / L,CuCl剂量为260 mg时,I去除效率达到约97.0%,浓缩系数(CF)值为1050。 /升Na2SO3的添加在去除溶解氧(DO)和形成CuI中起着重要作用。这些反应包括PR中发生的SO32-的氧化,CuCl的解离,Cu +的歧化以及CuI和Cu2O的形成。此外,研究了添加的CO32-浓度对铜去除的影响,并且在MS中同时实现了固液分离和铜去除。 I-去除效率从97.0%逐渐降低到58.5%,废水中的Cu2(+)浓度从18.71 mg / L降低到0.719 mg / L,并且添加浓度范围为0到80 mg的CO32- /升实验结果表明,PR-MS系统在处理被放射性I-污染的废液方面具有巨大的工业应用潜力。 (C)2016 Elsevier B.V.保留所有权利。

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