Key Laboratory of Industrial Ecology and Environmental Engineering (Ministry of Education), School of Environmental Science and Technology, Dalian University of Technology, Dalian 116024, China.
Water Res. 2011 May;45(11):3499-511. doi: 10.1016/j.watres.2011.04.004. Epub 2011 Apr 12.
A rational screening of cyclodextrin-based polymer (CDP), in terms of the relationship between adsorption potential and adsorbent-adsorbate, was investigated to adsorb and separate pesticides from water. Seven spherical porous CDPs were prepared with onefold or composite cyclodextrin(s) as complex and epichlorohydrin as cross-linking reagent. The adsorption kinetics and isotherms of the polymers toward a mixture of ten distinct pesticides clearly demonstrate that the adsorbents with a homogeneous open network structure can absorb pesticides via multiple adsorption interactions such as CD inclusion, loading into swelling water and physical adsorption on network. The multivariate regression analysis distinguishes the quantitative contributions of polymer properties to its adsorption potential, among which CD content, swelling capacity and pore size appear to be major influencing factors. Consequently, a facile mixture of three CDPs (i.e., β-CDP, RM-CDP and HP-CDP) was screened to obtain above prerequisite properties. The multiplex polymer could superiorly separate the pesticides at environmentally relevant levels from water.
以吸附潜力和吸附剂-吸附质之间的关系为依据,对基于环糊精的聚合物(CDP)进行了合理筛选,以从水中吸附和分离农药。使用单一或复合环糊精(s)作为复合物和表氯醇作为交联试剂,制备了七种球形多孔 CDP。聚合物对十种不同农药混合物的吸附动力学和等温线清楚地表明,具有均匀开放网络结构的吸附剂可以通过多种吸附相互作用(如 CD 包合、溶胀水负载和网络上的物理吸附)来吸附农药。多元回归分析区分了聚合物性质对其吸附潜力的定量贡献,其中 CD 含量、溶胀能力和孔径似乎是主要影响因素。因此,筛选了三种 CDP(即β-CDP、RM-CDP 和 HP-CDP)的简单混合物以获得上述必要性质。多组分聚合物可以优越地从水中分离出环境相关水平的农药。