首页> 外文期刊>Annals of nuclear energy >Physical speciation of Pu-239 + 240 and Cs-137 in oligotrophic and organic rich ground water of tropical environment
【24h】

Physical speciation of Pu-239 + 240 and Cs-137 in oligotrophic and organic rich ground water of tropical environment

机译:热带环境贫营养和有机质丰富的地下水中Pu-239 + 240和Cs-137的物理形态

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

Laboratory experiments were carried out in oligotrophic and organic rich ground water to study the fractionation of Pu-239 + 240 and Cs-137 in suspended particulate matter and in various dissolved fraction. The experimental solutions were spiked with Pu-239 + 240 and Cs-137 solution. The total concentration of Cs-137 and Pu-239 + 240 in unfiltered water were partitioned into suspended particu-lates by using conventional filtration assembly. The colloidal components were concentrated with ultra-filtration stirred cell ranging from <0.45 μm to 1.1 nm in six different stages. Fractionation of Cs-137 and Pu-239 + 240 associated with the particulate matter in the size range of 2.7 μm - 0.22 μm in oligotrophic and organic rich ground water are <30% and <20%, respectively. For the dissolved state in the oligotrophic environment, the maximum concentrations of Cs-137 and Pu-239 + 240 were observed in fraction concentrated with ≤1.1 nm. In organic rich ground water, Cs-137 and Pu-239 + 240 were distributed in all the dissolved fractions with a marginally higher concentration associated with 1.6 nm (10,000 NMWL). The possibility of formation of pseudo colloid of Cs-137 and Pu-239 + 240 by complexation with naturally occurring organic and inorganic colloids was investigated in detail.
机译:在贫营养和富含有机物的地下水中进行了实验室实验,以研究Pu-239 + 240和Cs-137在悬浮颗粒物和各种溶解组分中的分离。实验溶液中加入Pu-239 + 240和Cs-137溶液。通过使用常规过滤组件,将未过滤水中的Cs-137和Pu-239 + 240的总浓度分配为悬浮的微粒。胶体组分在六个不同的阶段中用范围<0.45μm至1.1 nm的超滤搅拌池进行浓缩。在贫营养和富含有机物的地下水中,与粒径在2.7μm-0.22μm范围内的颗粒物相关的Cs-137和Pu-239 + 240的分离率分别为<30%和<20%。对于在贫营养环境中的溶解状态,在浓缩至≤1.1nm的馏分中观察到Cs-137和Pu-239 + 240的最大浓度。在富含有机物的地下水中,Cs-137和Pu-239 + 240分布在所有溶解的馏分中,浓度略高,分别为1.6 nm(10,000 NMWL)。详细研究了通过与天然有机和无机胶体络合形成Cs-137和Pu-239 + 240假胶体的可能性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号