首页|Effect of seed precursor on organic structure-directing agent free synthesis of SSZ-13 membrane and its dehydration performance

Effect of seed precursor on organic structure-directing agent free synthesis of SSZ-13 membrane and its dehydration performance

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Pure and compact zeolite SSZ-13 membrane with excellent dehydration performance was obtained with organ structure-directing agent(OSDA)free synthesis method.The seed precursor on the support affected the phas morphology and compactness of the obtained membranes.Without the usage of the seed,GIS membrane wi notable cracks were formed.Compared to the seed of H-SSZ-13,the crystallization rate of SSZ-13 crystal w,faster with the NH4-SSZ-13 seed.And the crystallinity of SSZ-13 crystal prepared with NH4-SSZ-13 seed w; obviously higher than that prepared with H-SSZ-13.In addition,the pure zeolite SSZ-13 can be obtained wi NH4-SSZ-13 seed,while GIS impurities and SSZ-13 co-existed in the product prepared with H-SSZ-13 see indicating that NH4-SSZ-13 seed showed higher inductive effect than H-SSZ-13 seed on the formation of SSZ-1 crystal.Thus,pure and compact SSZ-13 membrane can be synthesized with NH4-SSZ-13 seed.The characte ization results showed that the SSZ-13 membrane was obtained via dissolution-recrystallization rout Furthermore,the synthesis parameters of zeolite SSZ-13 membrane by OSDA free method were optimized sy tematically.The results revealed that synthesis temperature,time and the synthesis gel component would affe the morphology,phase and compactness of the obtained membrane.The SSZ-13 membrane with the optim conditions showed good reproducibility and a relatively high pervaporation dehydration performance,tl average water in permeate was 99.9%,and the average water flux was 1.82 kg/m~2-h,implying that pure zeoli SSZ-13 membrane,which was obtained by OSDA free method with optimum synthesis parameters,showed potential application value towards pervaporation dehydration process.

SSZ-13 membranePervaporationOSDA freeSeed precursor

Songyi Wang、Taohong Liu、Yi Cao

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School of Materials Science and Chemical Engineering,Ningbo University,Ningbo,Zhejiang 315211,PR China

Zhejiang Hymater New Materials Co.,Ltd,Ningbo,Zhejiang,315034,PR China

2022

Microporous and mesoporous materials

Microporous and mesoporous materials

EISCI
ISSN:1387-1811
年,卷(期):2022.341
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