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含β-环糊精的分子模板聚合物对酚类污染物的吸附性能。

Phenolic Pollutant Uptake Properties of Molecular Templated Polymers Containing β-Cyclodextrin.

机构信息

Department of Chemistry , University of Saskatchewan , 110 Science Place , Thorvaldson Building (Room 165), Saskatoon , Saskatchewan , S7N 5C9 Canada.

出版信息

J Phys Chem B. 2018 May 3;122(17):4748-4757. doi: 10.1021/acs.jpcb.8b01819. Epub 2018 Apr 23.

Abstract

Templated (T) and nontemplated (NT) cross-linked materials containing β-cyclodextrin (β-CD) and epichlorohydrin (EPH) were prepared at variable β-CD-EPH ratios (1:15, 1:20, and 1:25) in the presence and absence of a molecular template (toluene). The structural characterization of the materials was carried out using spectroscopy (Fourier transform infrared, solids C NMR, and scanning electron microscopy) and thermogravimetric analysis. The adsorption properties were studied with phenol-based adsorbates (2,4,6-trinitrophenol (TNP) and p-nitrophenol (PNP)) at equilibrium and dynamic conditions. The monolayer adsorption capacity ( Q) varied for the T-polymer/TNP systems ( Q = 0.10-0.95 mmol/g) and NT-polymer/TNP systems ( Q = 0.23-0.83 mmol/g). The range of Q values for the T-polymer/PNP systems (0.26-0.62 mmol/g) exceeded that of the NT-polymer/PNP systems (0.23-0.40 mmol/g). The kinetic uptake profiles for the polymers and phenolphthalein were reliably described by the pseudo-first-order model. The β-CD inclusion site accessibility for the polymers varied from 15 to 20%, according to the level of cross-linking, where the accessibility of the T-polymers exceeded that of the NT-polymers. The structural characterization and phenol adsorption properties provide complementary support for the role of tunable polymer morphology in adsorption processes. The role of two-site binding was demonstrated for linear and globular polymer materials according to their unique adsorption properties with phenols of variable size and hydrophile-lipophile character.

摘要

制备了含有β-环糊精(β-CD)和表氯醇(EPH)的模板(T)和无模板(NT)交联材料,β-CD-EPH 比为 1:15、1:20 和 1:25,存在和不存在分子模板(甲苯)。使用光谱学(傅里叶变换红外、固体 C NMR 和扫描电子显微镜)和热重分析对材料的结构进行了表征。在平衡和动态条件下,用基于苯酚的吸附剂(2,4,6-三硝基苯酚(TNP)和对硝基苯酚(PNP))研究了吸附性能。T-聚合物/TNP 体系( Q=0.10-0.95mmol/g)和 NT-聚合物/TNP 体系( Q=0.23-0.83mmol/g)的单层吸附容量( Q)有所不同。T-聚合物/PNP 体系(0.26-0.62mmol/g)的 Q 值范围超过 NT-聚合物/PNP 体系(0.23-0.40mmol/g)。聚合物和酚酞的动力学吸收曲线可以可靠地用拟一级模型描述。根据交联程度,聚合物的β-CD 包合位可及性从 15%到 20%变化,其中 T-聚合物的可及性超过 NT-聚合物。结构表征和苯酚吸附性能为可调聚合物形态在吸附过程中的作用提供了互补支持。根据具有不同大小和亲疏水性特征的酚类的独特吸附性质,对线性和球形聚合物材料的双位点结合作用进行了证明。

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