吸附剂
硫族元素
吸附
放射性废物
背景(考古学)
软硬酸碱理论
吸附
环境修复
材料科学
人体净化
化学工程
化学
核化学
废物管理
无机化学
有机化学
污染
古生物学
工程类
生态学
生物
作者
Brian J. Riley,Jaehun Chun,Joseph V. Ryan,Josef Matyáš,Xiaohong S. Li,Dean W. Matson,S. K. Sundaram,Denis M. Strachan,John D. Vienna
出处
期刊:RSC Advances
[Royal Society of Chemistry]
日期:2011-01-01
卷期号:1 (9): 1704-1704
被引量:113
摘要
Aerogels employing chalcogen-based (i.e., S, Se, and/or Te) structural units and interlinking metals are termed chalcogels and have many emerging applications. Here, chalcogels are discussed in the context of nuclear fuel reprocessing and radioactive waste remediation. Motivated by previous work on removal of heavy metals in aqueous solution, we explored the application of germanium sulfide chalcogels as a sorbent for gas-phase I2 based on Pearson's Hard/Soft Acid–Base (HSAB) principle. This work was driven by a significant need for high-efficiency sorbents for 129I, a long-lived isotope evolved during irradiated UO2 nuclear fuel reprocessing. These chalcogel compositions are shown to possess an affinity for iodine gas, I2(g), at various concentrations in air. This affinity is attributed to a strong chemical attraction between the chalcogen and I2(g), according to the HSAB principle. The high sorption efficiency is facilitated by the high porosity as well as the exceptionally large surface area of the chalcogels. This paper briefly discusses the current and alternative waste forms for 129I, elaborates on preliminary work to evaluate a Pt-Ge-S chalcogel as a I2(g) sorbent, and discusses the unknown chalcogel properties related to these materials in waste form.
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