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作 者:李占双[1] 范美青[2] 刘岩峰[1] 张艳[1] 王君[1] 刘琦[1]
机构地区:[1]哈尔滨工程大学材料科学与化学工程学院,黑龙江哈尔滨150001 [2]吉林工业职业技术学院化工系,吉林吉林132011
出 处:《石油化工》2009年第11期1151-1157,共7页Petrochemical Technology
基 金:黑龙江省科技攻关资助项目(TB06A05);哈尔滨市科学研究基金项目(2008RFQXG028);哈尔滨工程大学基础研究基金项目(HEUF04072)
摘 要:采用化学共沉淀法制备了SO_4^(2-)/ZrO_2/Fe_3O_4/TiO_2磁性固体酸,利用X射线衍射、示差扫描量热、M(o|¨)ssbauer谱、透射电子显微镜、NH_3-程序升温脱附、N_2吸附-脱附、磁滞回线等手段对磁性固体酸的结构与性质进行了表征。表征结果显示,磁性基质Fe_3O_4及TiO_2的引入有利于四方晶相ZrO_2(t)的稳定;ZrO_2晶体生长取向于ZrO_2(t)的(101)方向,(101)晶面间距为0.293 nm;M(o|¨)ssbauer谱中双峰的存在表明磁性基质Fe_3O_4的存在;在室温下磁性固体酸具有超顺磁性。以乙酸乙酯的合成为探针反应,考察了SO_4^(2-)/ZrO_2/Fe_3O_4/TiO_2磁性固体酸催化剂的催化性能,实验结果表明,外加磁场使酯化反应的醋酸转化率提高到92%。Nano magnetic solid acids SO4^2-/ZrO2/Fe3O4/TiO2 were prepared by co-precipitation. Obtained samples were characterized by XRD, DSC, M6ssbauer, TEM, NH3-TPD, N2 adsorption- desorption and magnetic hysteresis loop. The introduction of TiO2 and magnetic substrate Fe3O4 were beneficial to keep tetragonal crystalline structure of ZrO2 from transferring to monoclinic form in calcination, ZrO2 crystals grew along the direction of ( 101 ) crystal plane. The interplanar distance of ZrO2 (t) ( 101 ) plane were 0. 293 nm. Mossbauer results revealed the existence of magnetic substrate Fe3O4 particles. Magnetic measurement showed superparamagnetism of solid acid catalyst at ambient temperature. Taking synthesis of ethyl acetate as probe reaction for evaluating the activity of nano magnetic solid acid SO4^2-/ZrO2/Fe3O4/TiO2 catalyst, the conversion of acetic acid in the esterification mounted to 92% in external magnetic field and aggregation of nano magnetic solid acid catalyst was avoided.
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