Peng Xingyu, Chen Lingjie, You Lekai, Jin Yang, Zhang Chun, Ren Shengyuan, Kapteijn Freek, Wang Xuerui, Gu Xuehong
State Key Laboratory of Materials-Oriented Chemical Engineering, College of Chemical Engineering, Nanjing Tech University, No. 30 Puzhu South Road, Nanjing, 211816, P. R. China.
Quzhou Membrane Material Innovation Institute, No. 99 Zheda Road, Quzhou, 324000, P. R. China.
Angew Chem Int Ed Engl. 2024 Jul 29;63(31):e202405969. doi: 10.1002/anie.202405969. Epub 2024 Jun 24.
High-silica CHA zeolite membranes are highly desired for natural gas upgrading because of their separation performance in combination with superior mechanical and chemical stability. However, the narrow synthesis condition range significantly constrains scale-up preparation. Herein, we propose a facile interzeolite conversion approach using the FAU zeolite to prepare SSZ-13 zeolite seeds, featuring a shorter induction and a longer crystallization period of the membrane synthesis on hollow fiber substrates. The membrane thickness was constant at ~3 μm over a wide span of synthesis time (24-96 h), while the selectivity (separation efficiency) was easily improved by extending the synthesis time without compromising permeance (throughput). At 0.2 MPa feed pressure and 303 K, the membranes showed an average CO permeance of (5.2±0.5)×10 mol m s Pa (1530 GPU), with an average CO/CH mixture selectivity of 143±7. Minimal defects ensure a high selectivity of 126 with a CO permeation flux of 0.4 mol m s at 6.1 MPa feed pressure, far surpassing requirements for industrial applications. The feasibility for successful scale-up of our approach was further demonstrated by the batch synthesis of 40 cm-long hollow fiber SSZ-13 zeolite membranes exhibiting CO/CH mixture selectivity up to 400 (0.2 MPa feed pressure and 303 K) without using sweep gas.
高硅CHA沸石膜因其分离性能以及优异的机械和化学稳定性,在天然气提质方面备受青睐。然而,其狭窄的合成条件范围严重限制了规模化制备。在此,我们提出一种简便的沸石间转化方法,利用FAU沸石制备SSZ-13沸石晶种,其特点是在中空纤维载体上进行膜合成时诱导期较短而结晶期较长。在较宽的合成时间跨度(24 - 96小时)内,膜厚度恒定在约3μm,而通过延长合成时间可轻松提高选择性(分离效率),且不会降低通量(产率)。在0.2MPa进料压力和303K条件下,该膜的平均CO通量为(5.2±0.5)×10⁻⁷mol·m⁻²·s⁻¹·Pa⁻¹(1530 GPU),CO/CH₄混合气体的平均选择性为143±7。极少的缺陷确保了在6.1MPa进料压力下,CO渗透通量为0.4mol·m⁻²·s⁻¹时选择性高达126,远远超过工业应用要求。通过批量合成40cm长的中空纤维SSZ-13沸石膜,在不使用吹扫气的情况下,CO/CH₄混合气体选择性高达400(0.2MPa进料压力和303K),进一步证明了我们方法成功放大的可行性。