生物污染
生物膜
光催化
废水
化学工程
化学需氧量
化学
涂层
超疏水涂料
纳米花
纳米技术
环境工程
材料科学
环境科学
有机化学
纳米结构
催化作用
工程类
生物化学
膜
生物
细菌
遗传学
作者
Shuo Pan,Dingnan Lu,Huihui Gan,David Z. Zhu,Zhiyuan Yao,Pradeep Kurup,Gaoke Zhang,Jiayue Luo
出处
期刊:Water Research
[Elsevier BV]
日期:2023-07-21
卷期号:243: 120383-120383
被引量:5
标识
DOI:10.1016/j.watres.2023.120383
摘要
Developing anti-biofouling and anti-biofilm techniques is of great importance for protecting water-contact surfaces. In this study, we developed a novel double-layer system consisting of a bottom immobilized TiO2 nanoflower arrays (TNFs) unit and an upper superhydrophobic (SHB) coating along with the assistance of nanobubbles (NBs), which can significantly elevate the interfacial oxygen level by establishing the long-range hydrophobic force between NBs and SHB and effectively maximize the photocatalytic reaction brought by the bottom TNFs. The developed NBs-SHB/TNFs system demonstrated the highest bulk chemical oxygen demand (COD) reduction efficiency at approximately 80% and achieved significant E. coli and Chlorella sp. inhibition efficiencies of 5.38 and 1.99 logs. Meanwhile, the system showed a sevenfold higher resistance to biofilm formation when testing in a wastewater matrix using a wildly collected biofilm seeding solution. These findings provide insights for implementing nanobubble-integrated techniques for submerged surface protection.
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