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作 者:LI Tiantian YUAN Yuan XIANG Yingqiao ZHOU Annan XU Qinghong
机构地区:[1]State Key Laboratory of Chemical Resource Engineering, Beoing University of Chemical Technology, Beijing 100029, P R. China [2]Petrochemical Research Institute, PetroChina Company Limited, Beijing 100083, P. R. China
出 处:《Chemical Research in Chinese Universities》2016年第3期334-337,共4页高等学校化学研究(英文版)
基 金:Supported by the National Natural Science Foundation of China(No.U1362113) and the Project of PetroChina Company Limited.
摘 要:A novel hybrid material with microporous structure was fabricated from SBA-15 with mesopores via silane modification and hydrolysis. Two kinds of pores with diameters of 6.5 and 1.9 nm were found in the hybrid material. Compared to that of SBA-15, the surface area of the hybrid material increased from 395.9 m2/g to 667.4 m2/g while its porous volume decreased. The new hybrid material was found to have high efficiency in removing NaCl from solution, and the maximum adsorption capacity of it was ca. 517.5 mg/g.A novel hybrid material with microporous structure was fabricated from SBA-15 with mesopores via silane modification and hydrolysis. Two kinds of pores with diameters of 6.5 and 1.9 nm were found in the hybrid material. Compared to that of SBA-15, the surface area of the hybrid material increased from 395.9 m2/g to 667.4 m2/g while its porous volume decreased. The new hybrid material was found to have high efficiency in removing NaCl from solution, and the maximum adsorption capacity of it was ca. 517.5 mg/g.
关 键 词:FABRICATION MESOPORE MICROPORE NaC1 ADSORPTION
分 类 号:TQ531.1[化学工程—煤化学工程] O643.36[理学—物理化学]
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