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首页> 外文期刊>Chemical Engineering Research & Design: Transactions of the Institution of Chemical Engineers >CO2 capture by amine-based aqueous solution containing atorvastatin functionalized mesocellular silica foam in a counter-current rotating packed bed: Central composite design modeling
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CO2 capture by amine-based aqueous solution containing atorvastatin functionalized mesocellular silica foam in a counter-current rotating packed bed: Central composite design modeling

机译:CO2通过含有阿托伐他汀官能化的嵌合型Mesocellular硅胶泡沫的胺基水溶液捕获在逆流旋转填充床中:中央复合设计建模

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摘要

Novel mesocellular silica foam functionalized with atorvastatin (MCF-AT) was synthesized and applied to overcome the mass transfer limitation in carbon dioxide absorption by rotating packed bed (RPB). The MCF-AT with high order pore distribution and regular rod morphology material was dispersed in monoethanolamine (MEA) by ultrasonic dispersion method without any surfactant addition. Structural and chemical properties of MCF-AT were characterized by low angle XRD, FE-SEM, FTIR, BET and BJH analysis. The effect of operational parameters such as the gas and solution flow rate, MCF-AT dosage and rotational speed have been investigated and optimized by central composite design (CCD) combined with desirability function (DF) method. The maximum achieved carbon dioxide absorption percentage was 99.46% at condition which set at 15 L min(-1) gas flow rate, 0.2 L min(-1) solution flow rate, 0.15 g MCF-AT and 800 rpm rotational speed. Results indicated that using MEA solution in absence of MCF-AT has ability to 76.96% CO2 capture percentage which significantly improved following addition of MCF-AT to MEA solution due to the availability of appropriate pores and reactive functional groups which have more tendency for trapping and/or binding CO2. (C) 2017 Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:合成了用阿托伐他汀(MCF-at)官能化的新型Mesocellular二氧化硅泡沫,并施加通过旋转填充床(RPB)克服二氧化碳吸收中的质量传递限制。通过超声波分散法分散在单乙醇胺(MEA)中的MCF - 常规杆形态材料通过超声波分散法分散在没有任何表面活性剂的情况下。通过低角度XRD,Fe-SEM,FTIR,BET和BJH分析表征MCF-AT的结构和化学性质。通过中央复合设计(CCD)与期望函数(DF)方法相结合,研究了诸如气体和溶液流速,MCF的剂量和转速的运算参数,MCF - 递力和转速。在15μlmin(-1)气体流速,0.2L min(-1)溶液流速,0.15g mcf-at和800rpm旋转速度下,最大达到二氧化碳吸收百分比为99.46%。结果表明,在没有MCF的情况下使用MEA溶液具有76.96%的CO 2捕获百分比,其由于具有更多孔隙和具有更多捕获趋势和捕获倾向的可用性官能团而显着改善的MCF-at on MEA溶液。 /或结合CO2。 (c)2017年化学工程师机构。 elsevier b.v出版。保留所有权利。

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