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首页> 外文期刊>Transactions of The Institution of Chemical Engineers. Process Safety and Environmental Protection, Part B >Combination of coprecipitation and foam separation processes for rapid recovery and preconcentration of cesium radionuclides from water systems
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Combination of coprecipitation and foam separation processes for rapid recovery and preconcentration of cesium radionuclides from water systems

机译:共沉淀和泡沫分离过程的组合,用于从水系统中快速恢复和铯放射性核素的预浓度

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Foam separation of Cs-137(+) radionuclides coprecipitated with cadmium(II) hexacyanoferrate (Cs-137-CdHCF) particles is investigated in this study using two types of surfactants. The effects of several coprecipitation and foam separation parameters on the recovery percentage and volume reduction of cesium radionuclides are evaluated. The cationic surfactant, hexadecyltrimethylammonium bromide (HDTMA), and the anionic one, sodium lauryl sulfate (NaLS), had the ability to float Cs-137-CdHCF particles at [Cd(II)]/[KHCF] molar ratios of 0.5 and 2, respectively. Recovery percentages of 92% and 88% are obtained in the pH range of 4.7-8.3 and 3.8-9.5 using HDTMA and NaLS, respectively. The addition of stable cesium during the coprecipitation process improved the recovery percentage (98% for HDTMA and 96% for NaLS). The recovery process is very fast where induction time of <15 min (for coprecipitation process) and <5 min (for foam separation process) are sufficient for efficient recovery of cesium radionuclides. The proposed strategy succeeded to efficiently preconcentrate cesium radionuclides from surface water where recovery percentage more than 99% with high volume reduction is achieved using HDTMA. Comparison of the present combined process with previously reported preconcentration processes proved its applicability for preconcentration of cesium radionuclides from water systems. (C) 2019 Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:使用两种表面活性剂在本研究中研究了CS-137(+)CS-137(+)放射性核素(CS-137-CDHCF)颗粒的泡沫分离。评估了几种共沉淀和泡沫分离参数对铯放射核素的回收率和体积减少的影响。阳离子表面活性剂,十六烷基三甲基溴化铵(HDTMA)和阴离子1,月桂基硫酸钠(NALS)在0.5和2的CD(II)] /摩尔比下漂浮CS-137-CDHCF颗粒的能力, 分别。使用HDTMA和NAL的pH范围为4.7-8.3和3.8-9.5的pH范围内获得92%和88%的恢复百分比。在共沉淀过程中添加稳定的铯改善了恢复百分比(HDTMA的98%,NAL的96%)。回收过程非常快,其中<15分钟的诱导时间(对于共沉淀过程)和<5分钟(用于泡沫分离过程)足以有效回收铯放射核素。所提出的策略成功地从地表水中有效地预浓缩铯放射性核素,其中使用HDTMA实现了高体积减少的恢复百分比超过99%。本组合过程与先前报道的前浓缩过程的比较证明了其对水系统的铯放射核素的前浓缩的适用性。 (c)2019化学工程师机构。 elsevier b.v出版。保留所有权利。

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