无机盐工业
主管:中海油天津化工研究设计院有限公司
主办:中海油天津化工研究设计院有限公司
   中海油炼油化工科学研究院(北京)有限公司
   中国化工学会无机酸碱盐专业委员会
ISSN 1006-4990 CN 12-1069/TQ

无机盐工业 ›› 2019, Vol. 51 ›› Issue (6): 76-79.

• 催化材料 • 上一篇    下一篇

纳米γ-氧化铁的制备及其吸附性能研究

张斌1,韩宇霞1,赵斯琴1,2,长山1,2()   

  1. 1. 内蒙古师范大学,化学与环境科学学院,内蒙古呼和浩特 010022
    2. 内蒙古师范大学,内蒙古自治区功能材料物理与化学重点实验室
  • 收稿日期:2019-01-21 出版日期:2019-06-10 发布日期:2020-05-12
  • 通讯作者: 长山
  • 作者简介:张斌(1993— ),男,硕士研究生,主要从事无机纳米材料的研究及应用;E-mail:18341262251@163.com。
  • 基金资助:
    国家自然科学基金资助项目(21267016)

Preparation of γ-Fe2O3 nanoparticles and its adsorption properties

Zhang Bin1,Han Yuxia1,Zhao Siqin1,2, S.Asuha1,2()   

  1. 1. College of Chemical and Environmental Science,Inner Mongolia Normal University,Hohhot 010022,China
    2. Inner Mongolia Key Laboratory of Functional Materials of Physics and Chemistry,Inner Mongolia Normal University
  • Received:2019-01-21 Online:2019-06-10 Published:2020-05-12
  • Contact: S.Asuha

摘要:

以硝酸铁和十二烷基三甲基溴化铵为原料,采用固相法制备了γ-氧化铁纳米粒子。通过X射线衍射、氮气吸附-脱附、磁性测试等手段对γ-氧化铁样品进行了表征。研究了γ-氧化铁对有机染料直接耐酸大红4BS的吸附性能。结果表明,制备的γ-氧化铁样品为γ-氧化铁纳米粒子,平均晶粒尺寸为18.5 nm;γ-氧化铁的比表面积为83.2 m 2/g,孔容为0.25 cm 3/g,最可几孔径为3.8 nm,属于介孔范围;γ-氧化铁的最大饱和磁化强度为63.7 A·m 2/kg;介孔γ-氧化铁对直接耐酸大红4BS的吸附过程符合准二级吸附动力学模型;γ-氧化铁对直接耐酸大红4BS的吸附符合Langmuir吸附等温式,极限吸附量为113.3 mg/g;将γ-氧化铁脱附处理后可重复使用。

关键词: 介孔γ-氧化铁, 吸附, 磁性分离, 直接耐酸大红4BS

Abstract:

γ-Fe2O3 nanoparticles were prepared by a solid phase method using ferric nitrate[Fe(NO33·9H2O] and dodecyl trimethylammonium bromide(DTAB) as raw materials.The sample was characterized by X-ray diffraction(XRD),N2 adsorp-tion-desorption(BET) and vibrating-sample magnetometer(VSM),and its adsorption ability for direct acid-resistant red 4BS was also studied.The results showed that the prepared γ-Fe2O3 sample was γ-Fe2O3 nanoparticles with an average crystallite size of 18.5 nm,a specific surface area of 83.2 m 2/g,the pore volume was 0.25 cm 3/g and the most probable pore size was 3.8 nm which belonged to the mesoporous range.The maximum saturation magnetization(Ms) of γ-Fe2O3 was 63.7 A·m 2/kg. The adsorption process of mesoporous γ-Fe2O3 on direct acid-resistant red 4BS conformed to the quasi-secondary adsorption kinetics model.The adsorption process of γ-Fe2O3 on direct acid-resistant red 4BS also fitted well with Langmuir isotherm mo-del and its maximum adsorption capacity was estimated to be 113.3 mg/g,and the γ-Fe2O3 nanoparticles could be reusable.

Key words: mesoporous γ-Fe2O3, adsorbent, magnetic separation, direct acid-resistant red 4BS

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