Li Liangqing, Li Jiajia, Li Yang, Wu Xinyu, Li Liangsong, Zeng Wenhao, Chen Yajun, Choi Jungkyu
Key Laboratory of Functional Membranes and Energy Materials, School of Chemistry and Chemical Engineering, Huangshan University Huangshan 245041 China
School of Chemistry and Materials, University of Science and Technology of China Hefei 230026 China
RSC Adv. 2025 Jun 26;15(27):21859-21871. doi: 10.1039/d5ra03631c. eCollection 2025 Jun 23.
Environmentally friendly and sustainable synthesis technologies hold considerable significance in the manufacturing of high-performance mordenite membranes. Herein, a high-performance mordenite membrane was successfully fabricated on a macroporous tube under fluoride-free and organic template-free conditions, using a highly diluted synthesis solution with a molar composition of HO/SiO = 250. This approach eliminated the necessity of fluoride and template agents while reducing chemical usage a highly diluted solution. The effects of the presence of seed layers and corresponding coating methods and crystallization temperature and time on membrane formation and isopropanol/water separation performance were systematically investigated. Results indicated that high-quality membrane formation was facilitated by a seed layer prepared variable-temperature hot dip-coating on macroporous tubes. Under optimized preparation parameters, the resulting mordenite membrane achieved a permeation flux of 3.24 kg m h and a separation factor exceeding 10 000 in separation of isopropanol dehydration. These findings collectively demonstrate the potential of this fluoride-free, template-free, and diluted-solution approach for producing high-performance mordenite membranes boasting significant environmental and economic advantages.
环境友好且可持续的合成技术在高性能丝光沸石膜的制造中具有相当重要的意义。在此,在无氟和无有机模板的条件下,使用摩尔组成为HO/SiO = 250的高度稀释合成溶液,在大孔管上成功制备了高性能丝光沸石膜。这种方法消除了氟化物和模板剂的必要性,同时通过高度稀释的溶液减少了化学物质的使用。系统研究了晶种层的存在、相应的涂覆方法、结晶温度和时间对膜形成及异丙醇/水分离性能的影响。结果表明,通过在大孔管上进行变温热浸涂覆制备的晶种层有利于形成高质量的膜。在优化的制备参数下,所得丝光沸石膜在异丙醇脱水分离中实现了3.24 kg m h的渗透通量和超过10000的分离因子。这些发现共同证明了这种无氟、无模板和稀释溶液方法在生产具有显著环境和经济优势的高性能丝光沸石膜方面的潜力。