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银功能化二氧化硅气凝胶:对碘吸附性能老化的理解

Silver-functionalized silica aerogel: towards an understanding of aging on iodine sorption performance.

作者信息

Matyáš Josef, Ilton Eugene S, Kovařík Libor

机构信息

Pacific Northwest National Laboratory Richland WA 99354 USA

出版信息

RSC Adv. 2018 Sep 12;8(56):31843-31852. doi: 10.1039/c8ra05137b.

Abstract

The silver-functionalized silica aerogel (Ag-aerogel) is being developed for the removal and sequestration of iodine compounds from the off-gas of a nuclear fuel reprocessing plant. This material shows high selectivity and sorption capacity for iodine. However, its sorption performance decreases when exposed to air containing HO and NO at 150 °C for extended periods of time. This phenomenon is referred to as "aging" and simulates exposure of the sorbent during plant idling. This extensive study of unaged and aged samples of Ag-aerogel with and without iodine revealed that decreased efficiency of I capture after NO-aging can be attributed to an increase in size of silver nanoparticles and by the formation of free sulfate on their surfaces from oxidized thiol groups. The smaller reactive surface areas of bigger particles and thin sulfate layer on particle surfaces prevented a complete utilization of the silver. By contrast, formation of silver sulfate appears to be the main factor in decreasing the sorption capacity for samples aged in dry or humid air. It is hypothesized that a short period exposure of the Ag-aerogel to a reducing gas stream would reduce oxidized silver back to metal and sulfate to sulfide. This may recover the sorption performance of Ag-aerogel close to original levels.

摘要

银功能化二氧化硅气凝胶(Ag-气凝胶)正被开发用于从核燃料后处理厂的废气中去除和隔离碘化合物。这种材料对碘表现出高选择性和吸附能力。然而,当在150°C下长时间暴露于含有HO和NO的空气中时,其吸附性能会下降。这种现象被称为“老化”,模拟了工厂闲置期间吸附剂的暴露情况。对有碘和无碘的未老化和老化的Ag-气凝胶样品进行的这项广泛研究表明,NO老化后碘捕获效率的降低可归因于银纳米颗粒尺寸的增加以及其表面由氧化硫醇基团形成的游离硫酸盐。较大颗粒较小的反应表面积和颗粒表面的薄硫酸盐层阻碍了银的完全利用。相比之下,硫酸银的形成似乎是干燥或潮湿空气中老化样品吸附容量降低的主要因素。据推测,将Ag-气凝胶短时间暴露于还原气流中会将氧化银还原回金属,将硫酸盐还原为硫化物。这可能会使Ag-气凝胶的吸附性能恢复到接近原始水平。

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