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Enhanced separation of carbon dioxide from a CO2 + CH4 gas mixture using a hybrid adsorption-hydrate formation process in the presence of coal particles

机译:在煤颗粒存在下使用混合吸附水合物形成工艺增强了从CO2 + CH4气体混合物中分离二氧化碳的能力

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In the present study, CO2 separation from a simulated shale gas (40 mol% CO2 and 60 mol% CH4) was experimentally investigated in a fixed bed reactor (FBR) filled with mesoporous coal particles. The experiments were conducted at a fixed temperature of 277.2 K and in the pressure range of 3.7-5.2 MPa. It was found that a hybrid adsorption-hydrate formation process occurred when liquid water was added to the fixed bed of coal particles, and the gas uptake was enormously enlarged as compared to that obtained in the fixed bed reactor without water. The effects of driving force (overpressure) and bed height on CO2 selectivity were also studied. The results indicated that a higher driving force led to the increase of gas uptake but the CO2 separation efficiency was compromised. A higher CO2 selectivity was obtained when increasing the fixed bed height from 4.0 to 6.0 cm, and the highest CO2 separation factor (37.6) obtained in the fixed bed of coal particles was 4.3 times larger than that in a stirred tank reactor (STR). Therefore, low driving force and large lied height would be optimum conditions for CO2 capture in the fixed bed of mesoporous coal particles. (C) 2016 Elsevier B.V. All rights reserved.
机译:在本研究中,在填充有介孔煤颗粒的固定床反应器(FBR)中,通过实验研究了从模拟页岩气中分离出CO2(40摩尔%CO2和60摩尔%CH4)。实验在277.2 K的固定温度和3.7-5.2 MPa的压力范围内进行。已经发现,当将液态水添加到煤颗粒的固定床中时,发生了混合吸附水合物的形成过程,并且与没有水的固定床反应器中相比,气体的吸收大大增加。还研究了驱动力(超压)和床高对CO2选择性的影响。结果表明,较高的驱动力导致气体吸收的增加,但二氧化碳分离效率受到损害。当固定床高度从4.0 cm增加到6.0 cm时,可以获得更高的CO2选择性,并且在固定的煤颗粒床中获得的最高CO2分离因子(37.6)是搅拌釜反应器(STR)的4.3倍。因此,较低的驱动力和较大的垫层高度将是在介孔煤颗粒固定床中捕获CO2的最佳条件。 (C)2016 Elsevier B.V.保留所有权利。

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