A series of Fe-Ti incorporated-SBA-15 and MCM-41 has been synthesized using different heteroatom sources and characterized by using XRD, N-2-adsorption, HRTEM, ICP, FT-IR, and UV-vis techniques. Catalytic performances of the obtained materials were evaluated in the hydroxylation of styrene with H2O2. Results indicated that (a) all samples exhibited typical hexagonal arrangement of mesoporous structure with high surface areas, (b) the kinds of heteroatoms sources had a significant effect on the heteroatom contents in the samples, i.e. there was a strong interaction between Ti and Fe species in the synthesis procedure, and (c) catalytic results revealed that the selectivity of benzaldehyde and the conversion of styrene were controlled by the contents of Fe and Ti species in the samples, respectively. An appropriate n(Ti)/n(Fe) ratio in catalysts could approach the optimal catalytic performance. (C) 2012 Elsevier Inc. All rights reserved.
机构:
Beijing Research Institute of Chemical Industry, China Petroleum and Chemical Corporation, Beijing 100013, ChinaBeijing Research Institute of Chemical Industry, China Petroleum and Chemical Corporation, Beijing 100013, China
Kang, Yu
Xie, Lunjia
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Beijing Research Institute of Chemical Industry, China Petroleum and Chemical Corporation, Beijing 100013, ChinaBeijing Research Institute of Chemical Industry, China Petroleum and Chemical Corporation, Beijing 100013, China
Xie, Lunjia
Wang, Yanqiang
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Beijing Research Institute of Chemical Industry, China Petroleum and Chemical Corporation, Beijing 100013, ChinaBeijing Research Institute of Chemical Industry, China Petroleum and Chemical Corporation, Beijing 100013, China
Wang, Yanqiang
Wang, Wei
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Beijing Research Institute of Chemical Industry, China Petroleum and Chemical Corporation, Beijing 100013, ChinaBeijing Research Institute of Chemical Industry, China Petroleum and Chemical Corporation, Beijing 100013, China
Wang, Wei
Zhao, Siyuan
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Beijing Research Institute of Chemical Industry, China Petroleum and Chemical Corporation, Beijing 100013, ChinaBeijing Research Institute of Chemical Industry, China Petroleum and Chemical Corporation, Beijing 100013, China
Zhao, Siyuan
Kuei Suan Jen Hsueh Pao/Journal of the Chinese Ceramic Society,
2009,
37
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: 1859
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1863