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Mapping the Cu-BTC metal-organic framework (HKUST-1) stability envelope in the presence of water vapour for CO2 adsorption from flue gases

机译:在水蒸气存在下绘制Cu-BTC金属有机骨架(HKUsT-1)稳定性包络线,用于从烟气中吸附CO2

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摘要

Cu-BTC metal-organic framework (HKUST-1) was evaluated as the model material for CO2 capture from flue gas streams. This paper presents an optimised hydrothermal synthesis of HKUST-1 and an analysis of water stability of HKUST-1. Substantial improvements of the hydrothermal synthesis process of HKUST-1 are shown to increase the quantitative yield up to 89.4% at 100 degrees C. Single-component adsorption experiments were carried out under conditions relevant for flue gases adsorption (45-60 degrees C, 0-1 barG) to evaluate the performance of HKUST-1 in terms of adsorption capacity, showing that the amount adsorbed of water can reach up to 21.7 mmol g(-1), about one order of magnitude higher than CO2 (1.75 mmol g(-1)) and almost two orders of magnitude higher than N-2 (0.17 mmol g(-1)). The hydration process of HKUST-1 framework was investigated using dynamic vapour adsorption under the flue gas emitting conditions. HKUST-1 is sensitive to humid streams and dynamic deformation of its porous structure takes place at 40-50 degrees C and various relative humidity values, leading to the irreversible decomposition of HKUST-1 framework and the consequent deterioration in its adsorption capacity. Under humid conditions, water displaces the organic linkers from the copper centres causing the collapse of HKUST-1 framework. These results provide fundamental knowledge to enable future material design for the modification of the hydrophilic nature of copper sites in HKUST-1 to improve its moisture stability. (C) 2015 Elsevier B.V. All rights reserved.
机译:Cu-BTC金属有机框架(HKUST-1)被评估为从烟道气中捕集CO2的模型材料。本文介绍了HKUST-1的优化水热合成方法,并对HKUST-1的水稳定性进行了分析。结果表明,对HKUST-1的水热合成工艺进行了重大改进,可以在100摄氏度下将定量收率提高到89.4%。在与烟气吸附有关的条件下(45-60摄氏度,0进行了单组分吸附实验) -1 barG)来评估HKUST-1的吸附容量性能,表明水的吸附量可以达到21.7 mmol g(-1),比CO2(1.75 mmol g(-1)高约一个数量级。 -1)),并且比N-2(0.17 mmol g(-1))高出两个数量级。使用烟气排放条件下的动态蒸气吸附研究了HKUST-1骨架的水合过程。 HKUST-1对潮湿的水流敏感,其多孔结构的动态变形发生在40-50摄氏度和各种相对湿度值下,导致HKUST-1骨架不可逆地分解并因此降低了其吸附能力。在潮湿条件下,水会取代铜中心的有机连接基,导致HKUST-1构架崩溃。这些结果提供了基础知识,可以使将来的材料设计能够改变HKUST-1中铜位的亲水性,从而提高其水分稳定性。 (C)2015 Elsevier B.V.保留所有权利。

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