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林产化学与工业 ›› 2015, Vol. 35 ›› Issue (4): 28-34.doi: 10.3969/j.issn.0253-2417.2015.04.005

• 研究报告 • 上一篇    下一篇

芦苇半纤维素基水凝胶的制备及对重金属离子的高效吸附

张文明1, 黄莹1, 朱厦1, 李晓苇1, 刘金炜1, 张玉苍2   

  1. 1. 河北大学 物理科学与技术学院;河北省光电信息材料重点实验室, 河北 保定 071002;
    2. 海南大学 材料与化工学院, 海南 海口 570228
  • 收稿日期:2014-06-26 出版日期:2015-08-25 发布日期:2015-08-29
  • 通讯作者: 张玉苍,教授,博士生导师,主要从事天然产物资源化研究;E-mail:yczhang@hainu.edu.cn。 E-mail:yczhang@hainu.edu.cn
  • 作者简介:张文明(1982—),男,吉林四平人,副教授,博士,主要从事生物质化学品改性研究
  • 基金资助:
    国家自然科学基金资助项目(51263006);海南省国际科技合作专项基金(KJHZ2014-02);河北省教育厅青年基金(QN2014057)

Preparation of Reed Hemicelluloses-based Hydrogels and its Highly Effective Adsorption of Heavy Metal Ions

ZHANG Wen-ming1, HUANG Ying1, ZHU Sha1, LI Xiao-wei1, LIU Jin-wei1, ZHANG Yu-cang2   

  1. 1. Hebei Key Lab of Optic-electronic Information and Materials;College of Physics Science and Technology, Hebei University, Baoding 071002, China;
    2. College of Materials and Chemical Engineering, Hainan University, Haikou 570228, China
  • Received:2014-06-26 Online:2015-08-25 Published:2015-08-29

摘要: 以芦苇半纤维素为基材,丙烯酸(AA)为单体,N,N,N',N'-四亚甲基乙二胺(MBA)为交联剂,通过自由基聚合法制备出水凝胶材料, 采用FT-IR对其结构进行表征,并考察了AA和MBA用量、pH值、吸附时间和金属离子初始质量浓度对水凝胶吸附Pd2+、Cd2+和Zn2+性能的影响,同时探讨了水凝胶对金属离子的吸附动力学和吸附机制。结果表明,AA用量、MBA用量和pH值对水凝胶的吸附性能均有较大影响,水凝胶对金属离子的吸附量随着pH值的增加而增大,1.0 g半纤维素中添加0.1 g MBA,9 g AA制得的水凝胶可在60 min内达到吸附平衡,金属离子溶液初始质量浓度为200 mg/L,Pb2+溶液pH值5.5,Cd2+、Zn2+溶液pH值6.5时,对Pd2+、Cd2+和Zn2+的最大吸附量可达699、521和265 mg/g。水凝胶吸附金属离子过程属于离子交换机制,吸附行为符合动力学准二级模型和Langmuir方程,该水凝胶经过吸附-解吸8次循环后,对金属离子仍有较高的吸附效率,Pd2+ 、Cd2+ 和Zn2+的吸附量仍达616、479和243 mg/g,回收率分别为96.7%、97.1%和97.6%。

关键词: 芦苇半纤维素, 水凝胶, 重金属, 等温吸附, 吸附动力学

Abstract: Reed hemicelluloses-based hydrogel was prepared by free radical polymerization using acrylic acid(AA) as monomer and N, N, N', N'-tetramethylene ethylene diamine(MBA) as crosslinking agent. The chemical structure was characterized by FT-IR and the adsorption of heavy metal ions(Pd2+, Cd2+, and Zn2+) was also investigated. The effects of AA and MBA dosages, pH value, contacting time, and initial concentration of metal ion on the adsorption capacity were studied. At the same time the adsorption kinetics and adsorption mechanism of metal ions were discussed. The results showed that the adsorption capacity was influenced by AA and MBA dosages and pH value, and increased with the increase of pH value. The adsorption equilibrium time was approximately 60 min when the hemicellulose was 1.0 g, MBA was 0.1 g, and AA was 9 g. The maximum adsorption capacities of Pd2+, Cd2+, and Zn2+ were 699, 521, and 265 mg/g, respectively. The adsorption process was an ion-exchange mechanism. This suggested that the adsorption kinetics fitted the pseudo-second-order model and the adsorption followed the Langmuir model. Furthermore, reed hemicelluloses-based hydrogel also exhibited highly efficient adsorption of metal ions after 8 repeated adsorption/desorption cycles as the adsorption capacity of Pd2+, Cd2+, and Zn2+ were 616, 479 and 243 mg/g, and the recovery of Pd2+, Cd2+, and Zn2+ were 96.7%, 97.1% and 97.6%, respectively.

Key words: reed hemicelluloses, hydrogel, heavy metal ions, isothermal adsorption, adsorption kinetics

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