Alvarado Sarah, Megia-Fernandez Alicia, Ortega-Muñoz Mariano, Hernandez-Mateo Fernando, Lopez-Jaramillo F Javier, Santoyo-Gonzalez Francisco
Department Organic Chemistry, Faculty of Sciences, University of Granada, 18073 Granada, Spain.
Unit of Excellence in Chemistry Applied to Biomedicine and the Environment, University of Granada, 18073 Granada, Spain.
Polymers (Basel). 2023 Jul 27;15(15):3188. doi: 10.3390/polym15153188.
Water use has been increasing globally by 1% per year, and recycling and re-use are critical issues compromised by the presence of pollutants. In this context, the design of novel materials and/or procedures for the large scale-removal of pollutants must be economically and environmentally feasible in order to be considered as part of the solution by emerging economies. We demonstrate that the cross-linking of biodegradable polysaccharides such as starch, dextrin, or dextrin and β-cyclodextrin with divinyl sulfone is an innovative strategy for synthesizing insoluble and eco-friendly sorbent polymers, including , and . The evaluation of these polymers' ability to remove ciprofloxacin (CIP), a prime example of antibiotic pollution, revealed that , with a Kd of 1469 L/kg and a removal rate higher than 92%, is a favorable material. Its sorption is pH-dependent and enhanced at a mildly alkaline pH, allowing for the desorption (i.e., cleaning) and reuse of through an environmentally friendly treatment with 20 mM AcONa pH 4.6. The facts that (i) shows a high affinity for CIP even at high NaCl concentrations, (ii) can be obtained from affordable starting materials, and (iii) is synthesized and regenerated through organic, solvent-free procedures make a novel sustainable material for inland water and seawater remediation, especially in less developed countries, due to its simplicity and low cost.
全球用水量每年增长1%,而回收和再利用是受污染物影响的关键问题。在这种背景下,为大规模去除污染物而设计的新型材料和/或程序必须在经济和环境方面可行,才能被新兴经济体视为解决方案的一部分。我们证明,将淀粉、糊精或糊精与β-环糊精等可生物降解多糖与二乙烯基砜交联,是合成不溶性且环保的吸附剂聚合物的创新策略,包括[聚合物名称1]、[聚合物名称2]和[聚合物名称3]。对这些聚合物去除抗生素污染典型例子环丙沙星(CIP)能力的评估表明,[聚合物名称1]是一种理想材料,其分配系数Kd为1469 L/kg,去除率高于92%。其吸附作用依赖于pH值,在弱碱性pH条件下增强,通过用pH 4.6的20 mM醋酸钠进行环境友好处理,可实现[聚合物名称1]的解吸(即清洗)和再利用。[聚合物名称1](i)即使在高NaCl浓度下对CIP也表现出高亲和力,(ii)可从价格低廉的起始原料获得,以及(iii)通过无有机溶剂的有机程序合成和再生,这些事实使得[聚合物名称1]成为用于内陆水和海水修复的新型可持续材料,特别是在欠发达国家,因其操作简单且成本低廉。