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Flue-gas and direct-air capture of CO2 by porous metal–organic materials

机译:多孔金属有机材料的烟气和直接空气捕集二氧化碳

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摘要

Sequestration of CO2, either from gas mixtures or directly from air (direct air capture), is a technological goal important to large-scale industrial processes such as gas purification and the mitigation of carbon emissions. Previously, we investigated five porous materials, three porous metal–organic materials (MOMs), a benchmark inorganic material, >Zeolite 13X and a chemisorbent, >TEPA-SBA-15, for their ability to adsorb CO2 directly from air and from simulated flue-gas. In this contribution, a further 10 physisorbent materials that exhibit strong interactions with CO2 have been evaluated by temperature-programmed desorption for their potential utility in carbon capture applications: four hybrid ultramicroporous materials, >SIFSIX-3-Cu, >DICRO-3-Ni-i, >SIFSIX-2-Cu-i and >MOOFOUR-1-Ni; five microporous MOMs, >DMOF-1, >ZIF-8, >MIL-101, >UiO-66 and >UiO-66-NH2; an ultramicroporous MOM, >Ni-4-PyC. The performance of these MOMs was found to be negatively impacted by moisture. Overall, we demonstrate that the incorporation of strong electrostatics from inorganic moieties combined with ultramicropores offers improved CO2 capture performance from even moist gas mixtures but not enough to compete with chemisorbents.This article is part of the themed issue ‘Coordination polymers and metal–organic frameworks: materials by design’.
机译:从气体混合物或直接从空气中隔离二氧化碳(直接捕获空气)是一项技术目标,对于大规模工业流程(例如气体净化和减少碳排放)很重要。以前,我们研究了五种多孔材料,三种多孔金属有机材料(MOM),基准无机材料> Zeolite 13X 和化学吸附剂> TEPA-SBA-15 ,它们直接从空气和模拟烟道气中吸收二氧化碳的能力。在此贡献中,通过程序升温脱附对另外10种表现出与CO2强烈相互作用的物理吸附剂材料在碳捕获应用中的潜在效用进行了评估:四种杂化超微孔材料,> SIFSIX-3-Cu , > DICRO-3-Ni-i ,> SIFSIX-2-Cu-i 和> MOOFOUR-1-Ni ;五个微孔MOM,> DMOF-1 ,> ZIF-8 ,> MIL-101 ,> UiO-66 和 > UiO-66-NH2 ;超微孔MOM,> Ni-4-PyC 。发现这些MOM的性能受到水分的负面影响。总的来说,我们证明了结合来自无机部分的强静电和超微孔,即使在潮湿的气体混合物中也能改善CO2的捕集性能,但不足以与化学吸附剂竞争。本文是主题“配位聚合物和金属有机框架”的一部分:设计材料”。

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