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首页> 外文期刊>Chemical engineering journal >Improvement of adsorbent materials for CO2 capture by amine functionalized mesoporous silica with worm-hole framework structure
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Improvement of adsorbent materials for CO2 capture by amine functionalized mesoporous silica with worm-hole framework structure

机译:具有蠕虫-孔骨架结构的胺官能化介孔二氧化硅用于捕获CO2的吸附材料的改进

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Amine functionalized mesoporous silica MSU-J with 3-D connective channel is employed as an effective absorbent for CO2. CO2 adsorption measurements were conducted by gravimetry to investigate the effects of (i) framework structure, (ii) mesoporous structure, (iii) the type of organic amine, (iv) hydrolyzation treatment, (V) cycle performance. Comparing with tetraethylenepentamine (TEPA) functionalized SBA 15, TEPA functionalized MSU-J has lower gas diffusion resistance. The CO2 uptake of 25MSU-J is 139.6 mg.g(-1), which is almost 2.5 times than that of SBA-15 of 58 mg.g(-1) at 20 wt% TEPA loading. The different textured MSU-J is synthesized at 25 degrees C, 45 degrees C, 65 degrees C and impregnated with TEPA. 65MSU-J synthesized at 65 degrees C exhibits the larger pore size (16.2 nm) and CO2 adsorption capacity due to pore size instead of larger specific surface area is more feasible for CO2 diffusion. The MSU-J is impregnated with tetraethylenepentamine (TEPA), diethylenetriamine (DETA), triethylenetetramine (TETA). TEPA impregnated MSU-J possesses higher thermostability (200 degrees C) and CO2 capture (164 mg.g(-1)) than counterparts, due to higher N content and the stronger combination between support and amine. The regeneration of Si-OH from Si-O-Si effectively improves the CO2 adsorption capacity. Both MSU-J and hydrolyzing MSU-J exhibit good cycle performance of CO2 capture after 6 times cycle. (C) 2016 Elsevier B.V. All rights reserved.
机译:具有3-D连接通道的胺官能化介孔二氧化硅MSU-J被用作有效的CO2吸收剂。通过重量分析法进行CO2吸附测量,以研究(i)骨架结构,(ii)中孔结构,(iii)有机胺的类型,(iv)水解处理,(V)循环性能的影响。与四亚乙基五胺(TEPA)官能化的SBA 15相比,TEPA官能化的MSU-J具有较低的气体扩散阻力。 25MSU-J的CO2吸收量为139.6 mg.g(-1),几乎是在20 wt%TEPA负载下SBA-15的58 mg.g(-1)的2.5倍。不同的织构化MSU-J在25摄氏度,45摄氏度,65摄氏度下合成,并浸渍有TEPA。在65摄氏度下合成的65MSU-J表现出较大的孔径(16.2 nm),并且由于孔径而不是较大的比表面积,CO 2的吸附容量更适合于CO 2扩散。 MSU-J浸渍有四亚乙基五胺(TEPA),二亚乙基三胺(DETA),三亚乙基四胺(TETA)。 TEPA浸渍的MSU-J具有更高的热稳定性(200摄氏度)和CO2捕集(164 mg.g(-1)),这是由于N含量更高以及载体和胺之间的结合更强。由Si-O-Si再生Si-OH可有效提高CO2吸附能力。 MSU-J和水解MSU-J在6次循环后均表现出良好的CO2捕集循环性能。 (C)2016 Elsevier B.V.保留所有权利。

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