Department of Materials Engineering, University of British Columbia, Vancouver V6T1Z4, Canada.
Department of Environmental Energy Engineering, Kyonggi University, 94 San, Iui-dong, Youngtong-ku, Suwon-si, Gyeonggi-do 442-760, South Korea.
Water Res. 2016 Sep 15;101:362-369. doi: 10.1016/j.watres.2016.05.071. Epub 2016 May 26.
Zinc Oxide Nano Wires (ZNWs) has been considered as a promising material for purification and disinfection of water and remediation of hazardous waste owing to its high activity and lower cost. In this study, three-dimensional (3D) structured palladium (Pd)/ZNWs were synthesized on the fabricated electrospun nanofibers and explored for enhancement of organic matter (OM) removal efficiency in water by suppressing electron-hole recombination during photocatalytic activity and increased surface area. The densely populated ZNWs were fabricated on the electrospun nanofiber by electroless plating (EP) and hydrothermal synthesis. In order to improve photocatalytic efficiency, a thin layer of Pd was coated prior to ZNWs growth to induce suppression of electron hole recombination produced during catalyst activity. The creation of a highly porous network of nanofibers decorated with ZNWs resulted in an increase of specific removal rate (SRR) of OM from 0.0249 to 0.0377 mg CODCr removed/mg ZNWs-hr when ZNW were grown on a Pd layer. It is believed that the demonstration of OM removal in the water through Pd/ZNWs membrane and enhanced photocatalytic activity under UV irradiation from layered structure can broaden potential applicability of Pd/ZNWs membranes for various photo catalytic water treatment.
氧化锌纳米线 (ZNWs) 因其高活性和低成本而被认为是一种很有前途的水净化和消毒材料,以及危险废物修复材料。在这项研究中,通过抑制光催化活性过程中的电子-空穴复合以及增加表面积,在制备的电纺纳米纤维上合成了三维(3D)结构的钯 (Pd)/ZNWs,以提高水中有机物 (OM) 的去除效率。通过化学镀 (EP) 和水热合成在电纺纳米纤维上制造了密集的 ZNWs。为了提高光催化效率,在 ZNWs 生长之前涂覆一层薄的 Pd 层,以诱导抑制催化剂活性过程中产生的电子空穴复合。由纳米纤维组成的高度多孔网络的形成,使 OM 的比去除率 (SRR) 从 0.0249 增加到 0.0377 mg CODCr 去除/mg ZNWs-hr,当 ZNWs 在 Pd 层上生长时。可以相信,通过 Pd/ZNWs 膜去除水中的 OM 以及分层结构在紫外光照射下增强的光催化活性,可以拓宽 Pd/ZNWs 膜在各种光催化水处理中的潜在应用。