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用于从水中超快去除微污染物的分级微介孔 β-环糊精聚合物。

Hierarchically micro-mesoporous β-cyclodextrin polymers used for ultrafast removal of micropollutants from water.

机构信息

MOE Key Laboratory of Macromolecular Synthesis and Functionalization, Department of Polymer Science and Engineering, Zhejiang University, Hangzhou 310027, China.

Key Laboratory of Synthetic Rubber & Laboratory of Advanced Power Sources, Changchun Institute of Applied Chemistry (CIAC), Chinese Academy of Sciences, Changchun 130022, China.

出版信息

Carbohydr Polym. 2019 Jun 1;213:352-360. doi: 10.1016/j.carbpol.2019.03.021. Epub 2019 Mar 7.

Abstract

Persistent organic pollutants, including plasticizers, pesticides, pharmaceuticals and endocrine disrupters, have posed a serious threat to water safety and human health. Addressing this problem calls out new materials of purifying water with high efficiency. Here, a series of cross-linked β-cyclodextrin polymers (β-CDPs) with hierarchically micro-mesoporous structure and high surface area were first synthesized by introducing polymer of intrinsic microporosity (PIM) and used for adsorptive removal of organic micropollutants from water. The chemical compositions and porous structures of the obtained β-CDPs were characterized in detail. Adsorption data showed that the quasi-second-order adsorption rate constant and maximal adsorption capacity of β-CDPs towards bisphenol A was up to 3.88 g mg min and 502 mg g, almost 2.6 and 5.7 times as large as those of the state-of-the-art porous β-CD polymer, respectively. Further, hierarchically porous β-CDPs also demonstrated ultrafast adsorption rates and high adsorption capacities towards various organic pollutants under the synergistic effect of micropores and mesopores. In addition, β-CDPs were easily regenerated by simple ethanol cleaning and kept high removal ability over 5 cycles. The virtues of extraordinary adsorption ability and convenient regeneration offer β-CDPs potential applications in water purification.

摘要

持久性有机污染物,包括增塑剂、农药、药品和内分泌干扰物,对水安全和人类健康构成了严重威胁。解决这个问题需要开发新型高效净水材料。在这里,我们首次通过引入聚合物固有微孔(PIM)合成了具有分级微-介孔结构和高比表面积的交联β-环糊精聚合物(β-CDPs),并将其用于从水中吸附去除有机微污染物。详细表征了所得β-CDPs 的化学组成和多孔结构。吸附数据表明,β-CDPs 对双酚 A 的准二级吸附速率常数和最大吸附容量高达 3.88 g mg min 和 502 mg g,分别是最新的多孔β-CD 聚合物的 2.6 倍和 5.7 倍。此外,在微孔和介孔的协同作用下,分级多孔β-CDPs 对各种有机污染物也表现出超快的吸附速率和高吸附容量。此外,β-CDPs 可通过简单的乙醇清洗再生,在 5 次循环中保持高去除能力。β-CDPs 卓越的吸附能力和便捷的再生性能为其在水净化中的应用提供了潜力。

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