TY - JOUR
T1 - Catalytic performance of hierarchical H-ZSM-5/MCM-41 for methanol dehydration to dimethyl ether
AU - Sang, Yu
AU - Liu, Hongxiao
AU - He, Shichao
AU - Li, Hansheng
AU - Jiao, Qingze
AU - Wu, Qin
AU - Sun, Kening
PY - 2013/9
Y1 - 2013/9
N2 - Micro-mesoporous composite molecular sieves H-ZSM-5/MCM-41 were prepared by the hydrothermal technique with alkali-treated H-ZSM-5 zeolite as the source and characterized by scanning electron microscopy, transmission electron microscopy, energy dispersive spectroscopy, X-ray diffraction, N2 adsorption-desorption measurement and NH3 temperature-programmed desorption. The catalytic performances for the methanol dehydration to dimethyl ether over H-ZSM-5/MCM-41 were evaluated. Among these catalysts, H-ZSM-5/MCM-41 prepared with NaOH dosage (nNa/nSi) varying from 0.4 to 0.47 presented excellent catalytic activity with more than 80% methanol conversion and 100% dimethyl ether selectivity in a wide temperature range of 170-300 C, and H-ZSM-5/MCM-41 prepared with nNa/nSi = 0.47 showed constant methanol conversion of about 88.7%, 100% dimethyl ether selectivity and excellent lifetime at 220 C. The excellent catalytic performances were due to the highly active and uniform acidic sites and the hierarchical porosity in the micro-mesoporous composite molecular sieves. The catalytic mechanism of H-ZSM-5/MCM-41 for the methanol dehydration to dimethyl ether process was also discussed.
AB - Micro-mesoporous composite molecular sieves H-ZSM-5/MCM-41 were prepared by the hydrothermal technique with alkali-treated H-ZSM-5 zeolite as the source and characterized by scanning electron microscopy, transmission electron microscopy, energy dispersive spectroscopy, X-ray diffraction, N2 adsorption-desorption measurement and NH3 temperature-programmed desorption. The catalytic performances for the methanol dehydration to dimethyl ether over H-ZSM-5/MCM-41 were evaluated. Among these catalysts, H-ZSM-5/MCM-41 prepared with NaOH dosage (nNa/nSi) varying from 0.4 to 0.47 presented excellent catalytic activity with more than 80% methanol conversion and 100% dimethyl ether selectivity in a wide temperature range of 170-300 C, and H-ZSM-5/MCM-41 prepared with nNa/nSi = 0.47 showed constant methanol conversion of about 88.7%, 100% dimethyl ether selectivity and excellent lifetime at 220 C. The excellent catalytic performances were due to the highly active and uniform acidic sites and the hierarchical porosity in the micro-mesoporous composite molecular sieves. The catalytic mechanism of H-ZSM-5/MCM-41 for the methanol dehydration to dimethyl ether process was also discussed.
KW - H-ZSM-5
KW - composite molecular sieve
KW - dimethyl ether
KW - hierarchical porosity
KW - methanol dehydration
UR - http://www.scopus.com/inward/record.url?scp=84886679769&partnerID=8YFLogxK
U2 - 10.1016/S2095-4956(13)60102-3
DO - 10.1016/S2095-4956(13)60102-3
M3 - Article
AN - SCOPUS:84886679769
SN - 2095-4956
VL - 22
SP - 769
EP - 777
JO - Journal of Energy Chemistry
JF - Journal of Energy Chemistry
IS - 5
ER -