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Reusable Photocatalytic Optical Fibers for Underground Deep‐Sea and Turbid Water Remediation

机译:可重复使用的光催化光纤可用于地下深海和浑浊的水修复

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摘要

An approach for underground, deep, and turbid water remediation is presented based on optical fibers with a photocatalytic coating. Thus, photocatalytic TiO2 P25 nanoparticles immobilized in a poly(vinylidene difluoride) (PVDF) matrix are coated on polymeric optical fibers (POFs) and the photocatalytic performance of the system is assessed under artificial sunlight. To the best of our knowledge, poly(methyl methacrylate)‐POF coated with TiO2/PVDF and the reusability of any type of POF for photocatalytic applications are not previously reported. The photocatalytic efficiency of the hybrid material in the degradation of ciprofloxacin (CIP) and its reusability are evaluated here. It is shown that 50 w/w% of TiO2 P25 achieves a degradation of 95% after 72 h under artificial sunlight and a reusability of three times leads to a loss of activity inferior to 11%. The efficient removal of ciprofloxacin and the stability of the POF coated with TiO2 P25 successfully demonstrate its suitability in the degradation of pollutants with potential application in regions with low light illumination, as in underground and deep water.
机译:提出了一种基于具有光催化涂层的光纤的地下,深层和浑浊水修复方法。因此,固定在聚偏二氟乙烯(PVDF)基质中的光催化TiO2 P25纳米颗粒被涂覆在聚合物光纤(POF)上,并且在人造阳光下评估了该系统的光催化性能。据我们所知,以前没有报道过涂有TiO2 / PVDF的聚(甲基丙烯酸甲酯)-POF以及任何类型的POF在光催化应用中的可重复使用性。在此评估了杂化材料在环丙沙星(CIP)降解中的光催化效率及其可重复使用性。结果表明,在人造阳光下72小时后,50 w / w%的TiO2 P25的降解率达到95%,三倍的可重复使用性导致活性降低至11%以下。环丙沙星的有效去除和TiO2 P25涂层的POF的稳定性成功证明了其在污染物降解中的适用性,并潜在地应用于弱光区域,例如在地下和深水中。

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