4.5 Article

Hydrophobic modification of SAPO-34 membranes for improvement of stability under wet condition

期刊

CHINESE JOURNAL OF CHEMICAL ENGINEERING
卷 27, 期 10, 页码 2397-2406

出版社

CHEMICAL INDUSTRY PRESS CO LTD
DOI: 10.1016/j.cjche.2019.01.027

关键词

SAPO-34 membrane; CO2/CH4 separation; Hydrophobic modification; Stability; Moisture environment

资金

  1. National Natural Science Foundation of China [21490585, 21776128]
  2. State Key Laboratory of Materials-Oriented Chemical Engineering [ZK201602, ZK201719]
  3. Priority Academy Program Development of Jiangsu Higher Education Institutions (PAPD)
  4. 333 Talent Project of Jiangsu Province
  5. Six Top Talents of Jiangsu Province

向作者/读者索取更多资源

SAPO-34 zeolite membranes show high efficiency for CO2/CH4 separation but suffer from the reduction of separation performance when exposed to humid atmosphere. In this work, n-dodecyltrimethoxysilane (DTMS) was used to modify the hollow fibers supported SAPO-34 membranes to increase the external surface hydrophobicity and thus sustain their performance under moisture environment. The modified membranes were fully characterized. Their separation performance was extensively investigated in both dry and wet gaseous systems and compared with the un-modified ones. The un-modified SAPO-34 membrane exhibited a high separation selectivity of 160 and CO2 permeance of 1.18 x 10(-6) mol.m(-2) .s(-1) . Pa-1 for separation of dry CO2/CH4 at 298 K. However, its separation selectivity declined 0.9 and the CO2 permeance was only about 1.7 x 10(-8) mol. m(-2) .s(-1) . Pa-1 for wet CO2/CH4 at same temperature. High temperature (e.g. 353 K) could reduce the effect of moisture to improve SAPO-34 separation selectivity, but further increasing temperature (e.g 373 K) led to decrease in CO2/CH4 separation selectivity. A significant decrease of selectivity was observed at higher pressure drop. The modified SAPO-34 membrane showed decreased CO2 permeance but increased separation selectivity for dry CO2/CH4 gas mixture, and super performance for wet CO2/CH4 gas mixture due to the improved hydrophobicity of membrane surface. A separation selectivity of 65 and CO2 permeance of 4.73 x 10(-8) mol . m(-2) . s(-l) . Pa-1 for wet CO2/CH4 mixture can be observed at 353 K with a pressure drop of 0.4 MPa. Furthermore, the modified membrane exhibited stable separation performance during the 120-hour test for wet CO2/CH4 mixture at 353 K. The hydrophobic modification paves a way for SAPO-34 membranes in real applications. (C) 2019 The Chemical Industry and Engineering Society of China, and Chemical Industry Press Co., Ltd. All rights reserved.

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