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Study of metal-organic framework MIL-101(Cr) for natural gas (methane) storage and compare with other MOFs (metal-organic frameworks)

机译:研究用于天然气(甲烷)存储的金属有机框架MIL-101(Cr),并与其他MOF(金属有机框架)进行比较

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摘要

Natural gas, containing mainly methane (CH4), has the potential to substitute petroleum as fuel for vehicles. However, the storage of natural gas at adequately high densities to fulfil the requirement of driving range is a challenging task. One prospective solution is the use of porous materials to adsorb natural gas at lower pressures and temperatures resulting in higher density storage. In this article, we present an extensive study on synthesis, characterization and property evaluation of MIL-101(Cr) MOF (metal-organic framework) for CH4 adsorption. At 298 K, it is observed that the total volumetric uptake of CH4 on MIL-101(Cr) MOF is about (i) 150 cm(3)/cm(3) at 35 bar, (ii) 215 cm(3)/cm(3) at 65 bar, and (iii) 30 cm(3)/cm(3) at 5 bar. Further, we have demonstrated a novel idea to store CH4 on MOFs in an ANG (adsorbed natural gas) vessel below critical point temperature employing LNG (liquefied natural gas) regasification. This LNG ANG coupling improves the competitiveness of ANG storage and increases the CH4 working capacity. Employing LNG-ANG coupling, it is found that MIL-101(Cr) exhibits high CH4 delivery or working capacity which is (i) 240 cm(3)/cm(3) for the operating parameters ranging from 6 bar at 160 K to 5 bar at 298 K, and (ii) 125 cm(3)/cm(3) for the operating parameters varying from 1.2 bar at 160 K to 5 bar at 298 K. (C) 2015 Elsevier Ltd. All rights reserved.
机译:天然气主要含甲烷(CH4),有可能替代石油作为汽车燃料。然而,以足够高的密度存储天然气以满足行驶里程的要求是一项艰巨的任务。一种预期的解决方案是使用多孔材料在较低的压力和温度下吸附天然气,从而实现更高的密度存储。在本文中,我们对用于CH4吸附的MIL-101(Cr)MOF(金属-有机骨架)的合成,表征和性能评估进行了广泛的研究。在298 K时,观察到MIL-101(Cr)MOF上CH4的总体积吸收约为(i)在35 bar下为150 cm(3)/ cm(3),(ii)215 cm(3)/在65 bar下为cm(3)和(iii)在5 bar下为30 cm(3)/ cm(3)。此外,我们已经展示了一种新颖的想法,即通过使用LNG(液化天然气)再气化,将CH4储存在低于临界点温度的ANG(吸附天然气)容器中的MOF上。这种LNG ANG耦合提高了ANG存储的竞争力,并增加了CH4的工作能力。通过使用LNG-ANG耦合,发现MIL-101(Cr)表现出较高的CH4输送或工作能力,其工作参数范围为160 bar至6 bar时为(i)240 cm(3)/ cm(3)。 298 K时为5 bar,操作参数从(160 K时的1.2 bar到298 K的5 bar)变化为(ii)125 cm(3)/ cm(3)。(C)2015 Elsevier Ltd.保留所有权利。

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