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Fe(OH)2热解制备γ-Fe2O3
引用本文:章忠秀,刘泉,施新宇,吴东辉.Fe(OH)2热解制备γ-Fe2O3[J].南通航运职业技术学院学报,2006,5(3):41-43.
作者姓名:章忠秀  刘泉  施新宇  吴东辉
作者单位:南通大学,化学化工学院,江苏,南通,226007
摘    要:用硫酸亚铁为原料,加NH_3·H_2O得到的氢氧化亚铁作前驱物经干燥后,在有CO_3~(2-)存在下热解可得γ-Fe_2O_3。实验结果显示:前驱物经微波干燥得到的产物分散性比真空干燥法好且粒径减小;而前驱物在无CO_3~(2-)存在时热解产物却为α-Fe_2O_3。并采用XRD、TEM等方法对产物进行了表征。

关 键 词:γ-Fe_2O_3  微波干燥  热解
文章编号:1671-9891(2006)03-0041-03
收稿时间:2006-04-26
修稿时间:2006年4月26日

Preparation of Maghemite by Pyrolysis of Ferrous Hydroxide
ZHANG Zhong-xiu,LIU Quan,SHI Xin-yu,WU Dong-hui.Preparation of Maghemite by Pyrolysis of Ferrous Hydroxide[J].Journal of Nantong Vocational & Technical Shipping College,2006,5(3):41-43.
Authors:ZHANG Zhong-xiu  LIU Quan  SHI Xin-yu  WU Dong-hui
Abstract:Maghemite is prepared by pyrolysis of ferrous hydroxide as precursors after drying in the presence of CO32-. Experiment results show that if the precursors through microwave drying, the dispersity of product would be better and the particle size less than vacuum drying method. In contrast, hematite is obtained through pyrolysis of the same precursors in the absence of CO32-. The products are characterized by XRD, TEM methods.
Keywords:Maghemite  Microwave drying  Pyrolysis
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