高等学校化学学报 ›› 2017, Vol. 38 ›› Issue (4): 669.doi: 10.7503/cjcu20160760

• 高分子化学 • 上一篇    下一篇

接枝亲水型高分子的丝瓜络对水中重金属离子的吸附行为

刘志1,2, 李炳睿2, 潘艳雄2, 石凯2, 王伟财2, 彭超2, 王哲1(), 姬相玲2()   

  1. 1. 长春工业大学材料科学高等研究院, 长春 130012
    2. 中国科学院长春应用化学研究所, 高分子物理与化学国家重点实验室, 长春 130022
  • 收稿日期:2016-11-01 出版日期:2017-04-10 发布日期:2017-03-22
  • 作者简介:联系人简介: 王 哲, 男, 博士, 教授, 主要从事高聚物膜材料的分子设计、 结构与形态、 传输机理研究. E-mail: wangzhe@ccut.edu.cn; 姬相玲, 女, 博士, 研究员, 主要从事高分子溶液和多孔材料研究. E-mail: xlji@ciac.ac.cn
  • 基金资助:
    国家自然科学基金(批准号: 51673030)资助

Adsorption Behavior of Hydrophilic Luffa Sponges to Heavy Metal Ions in Water System

LIU Zhi1,2, LI Bingrui2, PAN Yanxiong2, SHI Kai2, WANG Weicai2, PENG Chao2, WANG Zhe1,*(), JI Xiangling2,*()   

  1. 1. Advanced Institute of Materials Science, Changchun University of Technology, Changchun 130012, China
    2. State Key Laboratory of Polymer Physics and Chemistry, Changchun Institute of Applied Chemistry,Chinese Academy of Sciences, Changchun 130022, China
  • Received:2016-11-01 Online:2017-04-10 Published:2017-03-22
  • Contact: WANG Zhe,JI Xiangling E-mail:wangzhe@ccut.edu.cn;xlji@ciac.ac.cn
  • Supported by:
    † Supported by the National Natural Science Foundation of China(No.51673030)

摘要:

采用接枝聚合的方法将亲水性聚丙烯酰胺接枝到丝瓜络上, 部分水解的聚丙烯酰胺的接枝率可高达161.3%. 选择典型的Cu2+和Pb2+体系, 研究亲水型丝瓜络对水中重金属离子的吸附行为. 结果表明, 在单离子体系中, 准二级动力学方程适于描述亲水型丝瓜络吸附动力学过程, 饱和吸附量随着接枝率和pH值增加而增大, 对Cu2+和Pb2+的最大饱和吸附量分别为647和 887 mg/g. Langmuir 和Freundlich等温吸附模型都适合描述等温吸附过程. 8次吸附-解吸附循环实验表明, 饱和吸附量基本保持恒定, 同时对吸附机理进行了讨论.

关键词: 丝瓜络, 接枝聚合, 重金属离子, 吸附

Abstract:

A kind of partially hydrolyzed polyacrylamidehydrophilic luffa sponges [luffa-g-(PAM-co-PAANa)] was prepared through grafting polymerization, and the grafting percentage reached up to 161.3%. In typical Cu2+ and Pb2+ systems, the adsorption behavior of hydrophilic luffa sponges was studied. In a single metal ion system, the adsorption kinetics fits well with the pseudo-second-order kinetic equation. The adsorption capacities increase with the grafting percentage and pH value. In particular, the highest adsorption capacities can reach up to 647 mg/g for Cu2+ and 887 mg/g for Pb2+. Hydrophilic sample can be regenerated through a simple route and reused in eight adsorption-desorption cycles without any significant loss in the adsorption capacity. The adsorption mechanism was discussed. Definitely, this kind of hydrophilic luffa sponges as effective adsorbent, exhibits potential application in the purification of polluted water system.

Key words: Luffa sponge, Grafting polymerization, Metal ion adsorption, Adsorbent

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