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一种用于铅离子吸附与分离的具有磁性核和离子可识别壳层的新型智能微球。

A novel smart microsphere with magnetic core and ion-recognizable shell for Pb2+ adsorption and separation.

作者信息

Liu Ying-Mei, Ju Xiao-Jie, Xin Yan, Zheng Wei-Chao, Wang Wei, Wei Jie, Xie Rui, Liu Zhuang, Chu Liang-Yin

机构信息

School of Chemical Engineering, ‡State Key Laboratory of Polymer Materials Engineering, and Collaborative Innovation Center for Biomaterials Science and Technology, Sichuan University , Chengdu, Sichuan 610065, People's Republic of China.

出版信息

ACS Appl Mater Interfaces. 2014 Jun 25;6(12):9530-42. doi: 10.1021/am501919j. Epub 2014 Jun 13.

Abstract

Smart core-shell microspheres for selective Pb(2+) adsorption and separation have been developed. Each microsphere is composed of a Pb(2+) recognizable poly(N-isopropylacrylamide-co-benzo-18-crown-6-acrylamide) (PNB) shell and a magnetic Fe3O4 core. The magnetic PNB core-shell microspheres show excellent Pb(2+) adsorption selectivity among the coexisting Cd(2+), Co(2+), Cr(3+), Cu(2+), Ni(2+), Zn(2+), K(+), and Ca(2+) ions by forming stable B18C6Am/Pb(2+) host-guest complexes and exhibit an interesting temperature-dependent Pb(2+) adsorption. The inner independent magnetic Fe3O4 cores enable the Pb(2+)-adsorbed microspheres with a magnetically guided aggregation to be separated from the treated solution using a remotely controlled manner. The isothermal Pb(2+) adsorption result fits well with the Freundlich isotherm. The magnetic PNB core-shell microspheres show very fast adsorption of Pb(2+), and the adsorption process of Pb(2+) onto magnetic PNB core-shell microspheres fits well with the pseudo-second-order model. Moreover, Pb(2+)-adsorbed microspheres can be regenerated by simply increasing the operation temperature and washing with deionized water. The proposed magnetic PNB core-shell microspheres provide a promising candidate for Pb(2+) adsorbents with selectively separable and efficiently reusable abilities.

摘要

已开发出用于选择性吸附和分离Pb(2+)的智能核壳微球。每个微球由一个可识别Pb(2+)的聚(N-异丙基丙烯酰胺-共-苯并-18-冠-6-丙烯酰胺)(PNB)壳层和一个磁性Fe3O4核组成。磁性PNB核壳微球通过形成稳定的B18C6Am/Pb(2+)主客体络合物,在共存的Cd(2+)、Co(2+)、Cr(3+)、Cu(2+)、Ni(2+)、Zn(2+)、K(+)和Ca(2+)离子中表现出优异的Pb(2+)吸附选择性,并呈现出有趣的温度依赖性Pb(2+)吸附。内部独立的磁性Fe3O4核使吸附了Pb(2+)的微球能够通过遥控方式从处理后的溶液中进行磁导向聚集分离。等温Pb(2+)吸附结果与Freundlich等温线拟合良好。磁性PNB核壳微球对Pb(2+)的吸附非常快,Pb(2+)在磁性PNB核壳微球上的吸附过程与准二级模型拟合良好。此外,吸附了Pb(2+)的微球可以通过简单地提高操作温度并用去离子水洗涤来再生。所提出的磁性PNB核壳微球为具有选择性分离和高效可重复使用能力的Pb(2+)吸附剂提供了一个有前景的候选材料。

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