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首页> 外文期刊>Journal of Environmental Management >Wastewater remediation with ZnO photocatalysts: Green synthesis and solar concentration as an economically and environmentally viable route to application
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Wastewater remediation with ZnO photocatalysts: Green synthesis and solar concentration as an economically and environmentally viable route to application

机译:用Zno Photocatalysts进行废水修复:绿色合成和太阳能浓度作为一种经济和环保的应用途径

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Green-synthesized materials and solar concentration technology for advanced oxidation processes (AOPs) offer important opportunities in water remediation by giving value to clean, renewable and potentially low-cost resources. Here, Zinc Oxide (ZnO) nanostructures (NSs) were prepared via a green synthesis method based on garlic bulbs (Allium Sativum) extract (ZnO-Green), resulting in crystalline (wurtzite) nanorods (NRs). ZnO nanoparticles (NPs) were also chemically prepared through a standard co-precipitation (ZnO-Chem) for comparative solar photocatalytic (PC) studies. The green-synthesized ZnO NRs exhibited a favorable photo-catalytic activity (PCA) in colloidal suspension for the methylene blue (MB) dye degradation upon exposure to concentrated sunlight. Comparison with the chemically synthesized ZnO results in almost equal degradations of 94% in optimal loading condition. To explore the possibility to use immobilized photocatalyst in heterogeneous condition, green-synthesized ZnO NRs coatings were fabricated and compared with a 135 nm thick ZnO thin film produced by pulsed laser deposition (PLD) (ZnO-PLD). PCA on MB degradation (120 min experiments) resulted in degradations of 69% and 73%, respectively, proving the feasibility of the immobilized photocatalyst approach. Finally, an economic analysis of the process shows that the combination of green-synthesis and concentrated sunlight significantly reduces costs, paving the way for large-scale photocatalytic wastewater remediation.
机译:用于高级氧化过程(AOP)的绿色合成材料和太阳能浓缩技术(AOPs)通过为清洁,可再生和潜在的低成本资源提供价值,为水处理提供了重要的机会。这里,通过基于大蒜鳞茎(ZnO-Green)的绿色合成方法制备氧化锌(ZnO)纳米结构(NSS),得到结晶(Wurtzite)纳米棒(NRS)。 ZnO纳米颗粒(NPS)也通过用于比较太阳能光催化(PC)研究的标准共沉淀(ZnO-Chem)进行化学制备。绿色合成的ZnO NRS在暴露于浓阳光下,在亚甲基蓝(MB)染料降解的胶体悬浮液中表现出良好的光催化活性(PCA)。与化学合成的ZnO的比较导致最佳负载条件的几乎等于94%的降解。为了探讨在异质条件下使用固定的光催化剂的可能性,制造了绿色合成的ZnO NRS涂层,并与由脉冲激光沉积(PLD)(ZnO-PLD)制备的135nm厚的ZnO薄膜进行比较。 MB降解的PCA(120分钟实验)导致降解69%和73%,证明了固定的光催化剂方法的可行性。最后,该过程的经济分析表明,绿色合成和浓缩阳光的组合显着降低了成本,为大规模的光催化废水修复铺平了道路。

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