Laboratory of Green Chemistry, School of Engineering Science, Lappeenranta University of Technology, Sammonkatu 12, FI-50130, Mikkeli, Finland.
National & Local Joint Engineering Laboratory for New Petro-chemical Materials and Fine Utilization of Resources, Hunan Normal University, 410081, Changsha, China.
Sci Rep. 2017 Nov 17;7(1):15811. doi: 10.1038/s41598-017-16222-7.
The global contamination of water resources with inorganic and organic micropollutants, such as metals and pharmaceuticals, poses a critical threat to the environment and human health. Herein, we report on a bio-derived chitosan-EDTA-β-cyclodextrin (CS-ED-CD) trifunctional adsorbent fabricated via a facile and green one-pot synthesis method using EDTA as a cross-linker, for the adsorption of toxic metals and organic micropollutants from wastewater. In this system, chitosan chain is considered as the backbone, and the immobilized cyclodextrin cavities capture the organic compounds via host-guest inclusion complexation, while EDTA-groups complex metals. The thoroughly characterized CS-ED-CD was employed for batch adsorption experiments. The adsorbent displayed a monolayer adsorption capacity of 0.803, 1.258 mmol g for Pb(II) and Cd(II) respectively, while a heterogeneous sorption capacity of 0.177, 0.142, 0.203, 0.149 mmol g for bisphenol-S, ciprofloxacin, procaine, and imipramine, respectively. The adsorption mechanism was verified by FT-IR and elemental mapping. Importantly, the adsorbent perform is effective in the simultaneous removal of metals and organic pollutants at environmentally relevant concentrations. All these findings demonstrate the promise of CS-ED-CD for practical applications in the treatment of micropollutants. This work adds a new insight to design and preparation of efficient trifunctional adsorbents from sustainable materials for water purification.
水资源受到无机和有机微污染物(如金属和药物)的全球污染,对环境和人类健康构成了严重威胁。在此,我们报告了一种通过简便、绿色的一锅法合成方法制备的生物衍生壳聚糖-EDTA-β-环糊精(CS-ED-CD)三功能吸附剂,该方法使用 EDTA 作为交联剂,用于从废水中吸附有毒金属和有机微污染物。在该体系中,壳聚糖链被认为是骨架,固定化的环糊精空腔通过主客体包合作用捕获有机化合物,而 EDTA 基团则与金属配位。对充分表征的 CS-ED-CD 进行了批量吸附实验。该吸附剂对 Pb(II)和 Cd(II)的单层吸附容量分别为 0.803 和 1.258mmol/g,而对双酚 S、环丙沙星、普鲁卡因和丙咪嗪的非均相吸附容量分别为 0.177、0.142、0.203 和 0.149mmol/g。吸附机制通过傅里叶变换红外光谱和元素映射得到了验证。重要的是,该吸附剂在环境相关浓度下对金属和有机污染物的同时去除效果良好。所有这些发现都表明 CS-ED-CD 有望在实际应用中用于处理微污染物。这项工作为利用可持续材料设计和制备高效三功能吸附剂以净化水提供了新的思路。