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Design of highly efficient adsorbents for removal of gaseous methyl iodide using tertiary amine-impregnated activated carbon: Integrated experimental and first-principles approach

机译:使用叔胺浸渍活性炭除去气态甲基碘的高效吸附剂的设计:综合实验和第一原理方法

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摘要

Activated carbons (ACs) impregnated with triethylenediamine (TEDA) and quinuclidine (QD) are prepared for the removal of methyl iodide (CH3I) gas in the event of nuclear accidents. The effect of the tertiary amine loading (1, 5, and 10 wt.%) on the adsorption capability of the ACs is evaluated under dry and humid (RH 75%) conditions. Experimental evaluation of the 'breakthrough' combined with rigorous first-principles calculations enables us to identify the fundamental mechanism underlying the superior adsorption capability of QD to TEDA for real application, especially under humid conditions. The adsorption of CH3I by the impregnated ACs under dry conditions strongly depends on the physical properties (porosity) of the adsorbent. On the other hand, the chemical properties and the tertiary amine loading play dominant roles in CH3I adsorption at 75% RH. In particular, this study suggests a novel mechanism of the protonation reaction, rather than the already known alkylation of tertiary amines, to capture CH3I chemically under humid conditions. The molecular-level behavior of amines and water is a key factor for the enhanced adsorption of methyl iodide. The adsorbents developed herein can be applied to the efficient removal of radioactive methyl iodide in severe accidents.
机译:浸渍有三乙二胺(TEDA)和奎宁(QD)的活化的碳(ACS)制备用于在核事故发生时除去甲基碘(CH3I)气体。在干燥和潮湿(RH 75%)条件下评价叔胺负载(1,5和10重量%)对ACS的吸附能力的影响。 “突破”结合严谨的第一原理计算的实验评价使我们能够识别QD对TEDA的卓越吸附能力的基本机制,特别是在潮湿的条件下。浸渍的AC在干燥条件下对CH3I的吸附强烈取决于吸附剂的物理性质(孔隙率)。另一方面,化学性质和叔胺装载在75%RH下的CH 3I吸附中起显性作用。特别是,该研究表明了质子化反应的新机制,而不是已经已知的叔胺的烷基化,在潮湿条件下化学捕获CH 3。胺和水的分子水平行为是增强甲基碘的吸附的关键因素。本文开发的吸附剂可用于在严重事故中有效地除去放射性甲基碘。

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