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Effects of synthesis conditions on MFI zeolite membrane quality and catalytic cracking deposition modification results

机译:合成条件对MFI分子筛膜质量和催化裂化沉积改性结果的影响

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MFI zeolite membranes were synthesized by the templated in-situ synthesis method on α-alumina porous supports under various conditions and subsequently modified by catalytic cracking deposition (CCD) of methyldiethoxysilane (MDES) to improve high temperature H_2/CO_2 separation performance. The quality of the zeolite membranes was examined by helium permeation (before template removal) and room temperature H_2/CO_2 separation (after template removal). For membranes prepared through single hydro-thermal synthesis, the helium permeance decreases and the room temperature H_2/CO_2 separation factor increases with increasing synthesis time (or membrane thickness). Helium flows through the defects of the as-prepared membranes before template removal decreases as membrane thickness increases, but the thicker membranes contain more defects formed during the template removal step. Twice-hydrother-mal treatment with calcination in between is effective to improve the quality of MFI zeolite membranes. However, a minimal synthesis time for each hydrothermal cycle is needed to eliminate the intercrystal-line defects. Catalytic cracking deposition of MDES improves the high temperature H_2/CO_2 separation performance of the MFI zeolite membranes and the extent of the improvements is directly correlated with the membrane synthesis conditions. After CCD modification, the H_2/CO_2 separation factor of the membrane synthesized twice with 4 h for each hydrothermal cycle was improved from 4.2 to 8.6 with around 40% reduction in H_2 permeance.
机译:通过模板化原位合成方法在各种条件下在α-氧化铝多孔载体上合成MFI沸石膜,然后通过甲基二乙氧基硅烷(MDES)的催化裂化沉积(CCD)进行改性,以提高高温H_2 / CO_2分离性能。通过氦气渗透(模板去除之前)和室温H_2 / CO_2分离(模板去除之后)来检查沸石膜的质量。对于通过单水热合成法制备的膜,随着合成时间(或膜厚度)的增加,氦气的透过率降低,室温的H_2 / CO_2分离系数增加。随着膜厚度的增加,在模板去除之前,氦会流过所制备膜的缺陷,但是较厚的膜包含更多在模板去除步骤中形成的缺陷。在两次煅烧之间进行两次水热法处理可有效提高MFI沸石膜的质量。然而,需要每个水热循环的最短合成时间来消除晶间缺陷。 MDES的催化裂化沉积改善了MFI沸石膜的高温H_2 / CO_2分离性能,并且改善程度与膜的合成条件直接相关。 CCD改性后,每个水热循环4 h合成两次的膜的H_2 / CO_2分离系数从4.2提高到8.6,H_2渗透率降低了约40%。

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