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Chalcogen-Based Aerogels As Sorbents for Radionuclide Remediation

机译:基于硫属元素的气凝胶作为放射性核素修复的吸附剂

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摘要

The efficient capture of radionuclides with long half-lives such as technetium-99 (~(99)Tc), uranium-238 (~(238)U), and iodine-129 (~(129)I) is pivotal to prevent their transport into groundwater and/or release into the atmosphere. While different sorbents have been considered for capturing each of them, in the current work, nanostructured chalcogen-based aerogels called chalcogels are shown to be very effective at capturing ionic forms of ~(99)Tc and ~(238)U, as well as nonradioactive gaseous iodine (i.e., a surrogate for ~(129)I_2), irrespective of the sorbent polarity. The chalcogel chemistries studied were Co_(0.7)Bi_(0.3)MoS_4, Co_(0.7)Cr_(0.3)MoS_4, Co_(0.5)Ni_(0.5)MoS_4, PtGe_2S_5, and Sn_2S_3. The PtGe_2S_5 sorbent performed the best overall with capture efficiencies of 98.0% and 99.4% for ~(99)Tc and ~(238)U, respectively, and >99.0% for I_2(g) over the duration of the experiment. The capture efficiencies for ~(99)Tc and ~(238)U varied between the different sorbents, ranging from 57.3-98.0% and 68.1-99.4%, respectively. All chalcogels showed >99.0% capture efficiency for iodine over the test duration. This versatile nature of chalcogels can provide an attractive option for the environmental remediation of the radionuclides associated with legacy wastes from nuclear weapons production as well as wastes generated during nuclear power production or nuclear fuel reprocessing.
机译:具有长半衰期的放射性核素(例如capture 99(〜(99)Tc),铀238(〜(238)U)和碘129(〜(129)I))的有效捕获对于防止它们运入地下水和/或释放到大气中。尽管考虑使用不同的吸附剂来捕获每种吸附剂,但在当前工作中,被称为查尔凝胶的基于硫属元素的纳米结构气凝胶显示出非常有效的捕获〜(99)Tc和〜(238)U离子形式的方法。非放射性气态碘(即〜(129)I_2的替代物),与吸附剂极性无关。所研究的黄铜矿化学为Co_(0.7)Bi_(0.3)MoS_4,Co_(0.7)Cr_(0.3)MoS_4,Co_(0.5)Ni_(0.5)MoS_4,PtGe_2S_5和Sn_2S_3。在整个实验过程中,PtGe_2S_5吸附剂的整体效率最佳,〜(99)Tc和〜(238)U的捕获效率分别为98.0%和99.4%,I_2(g)的捕获效率> 99.0%。 〜(99)Tc和〜(238)U的捕获效率在不同的吸附剂之间有所不同,分别为57.3-98.0%和68.1-99.4%。在测试过程中,所有的硬脂凝胶均显示对碘的捕获效率> 99.0%。黄铜胶的这种多用途性质可以为环境修复与核武器生产遗留废物以及核电生产或核燃料后处理过程中产生的废物相关的放射性核素提供有吸引力的选择。

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  • 来源
    《Environmental Science & Technology》 |2013年第13期|7540-7547|共8页
  • 作者单位

    Pacinc Northwest National Laboratory, Richland, Washington 99352, United States;

    Pacinc Northwest National Laboratory, Richland, Washington 99352, United States;

    Pacinc Northwest National Laboratory, Richland, Washington 99352, United States;

    Pacinc Northwest National Laboratory, Richland, Washington 99352, United States;

    Pacinc Northwest National Laboratory, Richland, Washington 99352, United States;

    Pacinc Northwest National Laboratory, Richland, Washington 99352, United States;

    Pacinc Northwest National Laboratory, Richland, Washington 99352, United States;

    Pacinc Northwest National Laboratory, Richland, Washington 99352, United States;

    Department of Chemistry, Northwestern University, Evanston, Illinois 60208, United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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