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Radiation-resistant metal-organic framework enables efficient separation of krypton fission gas from spent nuclear fuel

机译:抗辐射金属 - 有机框架使得能够从核燃料中有效地分离氪裂化气体

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Capture and storage of volatile radionuclides that result from processing of used nuclear fuel is a major challenge. Solid adsorbents, in particular ultra-microporous metal-organic frameworks, could be effective in capturing these volatile radionuclides, including 85 Kr. However, metal-organic frameworks are found to have higher affinity for xenon than for krypton, and have comparable affinity for Kr and N 2 . Also, the adsorbent needs to have high radiation stability. To address these challenges, here we evaluate a series of ultra-microporous metal-organic frameworks, SIFSIX-3-M (M?=?Zn, Cu, Ni, Co, or Fe) for their capability in 85 Kr separation and storage using a two-bed breakthrough method. These materials were found to have higher Kr/N 2 selectivity than current benchmark materials, which leads to a notable decrease in the nuclear waste volume. The materials were systematically studied for gamma and beta irradiation stability, and SIFSIX-3-Cu is found to be the most radiation resistant.
机译:捕获和储存由使用使用的核燃料加工产生的挥发性放射性核素是一项重大挑战。特别是超微微孔金属 - 有机骨架的固体吸附剂可以有效地捕获这些挥发性放射性核素,包括85kr。然而,发现金属有机骨架对氙具有更高的亲和力而不是Krypton,并且对Kr和N 2具有相当的亲和力。而且,吸附剂需要具有高辐射稳定性。为了解决这些挑战,我们在这里评估了一系列超微微孔金属有机框架,SiFSix-3-M(m?=γZn,Cu,Ni,Cu,Cu,Cu,Co,Cu,Cu,Cu,Co,Co,Co),其能力在85 kr分离和储存中双床突破法。发现这些材料具有比当前基准材料更高的Kr / N 2选择性,这导致核废料量显着降低。系统地研究了γ和β辐照稳定性的材料,发现SiFSix-3-Cu是最抗辐射的。

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