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首页> 外文期刊>Journal of natural gas science and engineering >Ultrasonic-assisted secondary growth of deca-dodecasil 3 rhombohedral (DD3R) membrane and its process optimization studies in CO2/CH4 separation using response surface methodology
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Ultrasonic-assisted secondary growth of deca-dodecasil 3 rhombohedral (DD3R) membrane and its process optimization studies in CO2/CH4 separation using response surface methodology

机译:响应表面法超声辅助十二碳三菱形(DD3R)膜的二次生长及其在CO2 / CH4分离中的工艺优化研究

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摘要

In the current work, the synthesis duration of DD3R membrane has been successfully reduced from 27 days to 3 days using DD3R seeds prepared in 1 day via ultrasonic irradiation coupled with conventional hydrothermal heating method. Two DD3R membranes have been grown on alpha-alumina support using vacuum-assisted seeding secondary growth method. A DD3R membrane has been synthesized in 2 days at 160 degrees C using DD3R seeds prepared in 1 day via ultrasonic irradiation coupled with hydrothermal heating method. Similarly, another DD3R membrane has also been synthesized in 2 days at 160 degrees C using DD3R seeds prepared in 25 days without ultrasonic irradiation pretreatment. Characterization tools including; XRD and FESEM confirmed the formation of DD3R topology for the resultant membranes. Subsequently, the effect of temperature, pressure and CO2 feed composition on the performance of resultant DD3R membrane in CO2/CH4 separation has been conducted based on the experimental conditions suggested by the statistical tool: response surface methodology. Overall, the single gas permeation result showed that high CO2 permeance of 2.46 x 10(-7) mol/m(2)sPa obtained in the present work was comparable with the CO2 permeance reported in the literature. Besides, DD3R membrane showed ideal CO2/CH4 selectivity about 5.22 which was also comparable with the results reported in the literature. In CO2/CH4 separation study, the experimental data were fitted well with the model suggested by response surface methodology, with R-2 value near to 0.99. The optimum condition for the separation has been obtained at temperature of 30.1 degrees C, feed pressure of 1 bar and CO2 feed composition of 10 vol% which yielded CO2 permeance, CH4 permeance and CO2/CH4 selectivity of 8.23 x 10(-8) mol/m(2)sPa, 4.64 x 10(-8) mol/m(2)sPa and 3.81, respectively. Thus, in the present study, it was concluded that the performance of DD3R membrane still need to be improved in order to meet the industrial requirement for CO2 separation from CH4. (C) 2016 Elsevier B.V. All rights reserved.
机译:在当前的工作中,使用超声辐射结合常规水热加热方法在1天之内制备的DD3R种子已成功地将DD3R膜的合成时间从27天减少到3天。已使用真空辅助接种二次生长法在α-氧化铝载体上生长了两个DD3R膜。使用超声辐射结合水热加热法在1天内制备的DD3R种子在160摄氏度下于2天内合成了DD3R膜。类似地,另一种DD3R膜也已经在160摄氏度下用2天合成了DD3R种子,该种子在25天内制备,未经超声辐照预处理。表征工具包括; XRD和FESEM证实了所得膜的DD3R拓扑结构形成。随后,基于统计工具建议的实验条件:响应面法,研究了温度,压力和CO2进料组成对所得DD3R膜在CO2 / CH4分离中性能的影响。总的来说,单一气体的渗透结果表明,本研究中获得的2.46 x 10(-7)mol / m(2)sPa的高CO2渗透率与文献中报道的CO2渗透率相当。此外,DD3R膜表现出理想的CO2 / CH4选择性,约为5.22,也可与文献报道的结果相媲美。在CO2 / CH4分离研究中,实验数据与响应面方法所建议的模型非常吻合,R-2值接近0.99。在30.1摄氏度的温度,1巴的进料压力和10体积%的CO2进料组成下获得了最佳分离条件,产生的CO2渗透率,CH4渗透率和CO2 / CH4选择性为8.23 x 10(-8)mol /m(2)sPa、4.64 x 10(-8)mol / m(2)sPa和3.81。因此,在本研究中,得出的结论是,DD3R膜的性能仍需改进,以满足工业上从CH4分离CO2的要求。 (C)2016 Elsevier B.V.保留所有权利。

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