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Highly Effective Hydrogen Isotope Separation in Nanoporous Metal--Organic Frameworks with Open Metal Sites: DirectMeasurement and Theoretical Analysis

机译:具有开放金属位点的纳米多孔金属-有机骨架中的高效氢同位素分离:直接测量和理论分析

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Separating gaseous mixtures that consist of very similar size is one of the critical issues in modern separation technology. Especially, the separation of the isotopes hydrogen and deuterium requires special efforts, even though these isotopes show a very large mass ratio. Conventionally, H/D separation can be realized through cryogenic distillation of the molecular species or the Girdler-sulfide process, which are among the most energy-intensive separation techniques in the chemical industry. However, costs can be significantly reduced by using highly mass-selective nanoporous sorbents. Here, we describe a hydrogen isotope separation strategy exploiting the strongly attractive open metal sites present in nanoporous metal--organic frameworks of the CPO-27 family (also referred to as MOF-74). A theoretical analysis predicts an outstanding hydrogen isotopologue separation at open metal sites due to isotopal effects, which has been directly observed through cryogenic thermal desorption spectroscopy. For H_2/D_2 separation of an equimolar mixture at 60 K, the selectivity of 12 is the highest value ever measured, and this methodology shows extremely high separation efficiencies even above 77 K. Our theoretical results imply also a high selectivity for HD/H_2 separation at similar temperatures, and together with catalytically active sites, we propose a mechanism to produce D_2 from HD/H_2 mixtures with natural or enriched deuterium content.
机译:分离大小相似的气体混合物是现代分离技术中的关键问题之一。特别地,即使氢和氘的同位素显示出非常大的质量比,也需要付出特殊的努力。通常,H / D分离可通过分子种类的低温蒸馏或Girdler-硫化物工艺来实现,这是化学工业中能耗最高的分离技术之一。但是,通过使用具有高质量选择性的纳米孔吸附剂,可以显着降低成本。在这里,我们描述了一种氢同位素分离策略,该策略利用了CPO-27家族(也称为MOF-74)的纳米孔金属-有机骨架中存在的极具吸引力的开放金属位点。理论分析预测,由于同位素效应,在开放金属位置上氢原子同位素分离极佳,这已通过低温热解吸光谱法直接观察到。对于在60 K下等摩尔混合物的H_2 / D_2分离,选择性12的测量值是有史以来的最高值,这种方法显示了甚至在77 K以上的分离效率也很高。我们的理论结果也暗示了HD / H_2分离的高选择性在相似的温度下,以及催化活性位点,我们提出了一种从具有天然或富集氘含量的HD / H_2混合物生产D_2的机制。

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