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Impacts of morphological-controlled ZnO nanoarchitectures on aerobic microbial communities during real wastewater treatment in an aerobic-photocatalytic system

机译:在好氧光催化系统中,在实际废水处理过程中,形态控制的ZnO纳米结构对好氧微生物群落的影响

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摘要

This study aimed to evaluate the impacts of morphological-controlled ZnO nanoarchitectures on aerobic microbial communities during real wastewater treatment in an aerobic-photocatalytic system. Results showed that the antibacterial properties of ZnO nanoarchitectures were significantly more overwhelming than their photocatalytic properties. The inhibition of microbial activities in activated sludge by ZnO nanoarchitectures entailed an adverse effect on wastewater treatment efficiency. Subsequently, the 16S sequencing analysis were conducted to examine the impacts of ZnO nanoarchitectures on aerobic microbial communities, and found the significantly lower microbial diversity and species richness in activated sludge treated with 1D-ZnO nanorods as compared to other ZnO nanoarchitectures. Additionally, 1D-ZnO nanorods reduced the highest proportion of Proteobacteria phylum in activated sludge due to its higher proportion of active polar surfaces that facilitates Zn2+ ions dissolution. Pearson correlation coefficients showed that the experimental data obtained from COD removal efficiency and bacterial log reduction were statistically significant (p-value < 0.05), and presented a positive correlation with the concentration of Zn2+ ions. Finally, a non-parametric analysis of Friedman test and post-hoc analysis confirmed that the concentration of Zn2+ ions being released from ZnO nanoarchitectures is the main contributing factor for both the reduction in COD removal efficiency and bacterial log reduction. (C) 2019 Elsevier Ltd. All rights reserved.
机译:这项研究旨在评估在好氧光催化系统中实际废水处理过程中形态控制的ZnO纳米结构对好氧微生物群落的影响。结果表明,ZnO纳米结构的抗菌性能远胜于其光催化性能。 ZnO纳米结构对活性污泥中微生物活性的抑制对废水处理效率产生不利影响。随后,进行了16S序列分析以检查ZnO纳米结构对好氧微生物群落的影响,发现与其他ZnO纳米结构相比,用1D-ZnO纳米棒处理的活性污泥中的微生物多样性和物种丰富度明显更低。此外,一维-ZnO纳米棒降低了活性污泥中Proteobacteria phylum的比例,这是由于其活性极性表面的比例较高,这有助于Zn2 +离子的溶解。 Pearson相关系数表明,从COD去除效率和细菌对数减少获得的实验数据具有统计学意义(p值<0.05),并且与Zn2 +离子的浓度呈正相关。最后,弗里德曼检验和事后分析的非参数分析证实,从ZnO纳米结构中释放的Zn2 +离子浓度是导致COD去除效率降低和细菌对数减少的主要原因。 (C)2019 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Environmental Pollution》 |2020年第4期|113867.1-113867.11|共11页
  • 作者

  • 作者单位

    Monash Univ Malaysia Sch Engn Chem Engn Discipline Jalan Lagoon Selatan Bandar Sunway 47500 Selangor Darul Malaysia;

    Univ Philippines Diliman Dept Chem Engn LEE Quezon City 1101 Philippines;

    Monash Univ Malaysia Genom Facil Trop Med & Biol Multidisciplinary Platform Bandar Sunway 47500 Selangor Darul Malaysia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Antibacterial activity; Photocatalytic degradation; Wastewater treatment; Zn2+ ions dissolution; ZnO photocatalyst;

    机译:抗菌活性;光催化降解;废水处理;Zn2 +离子溶解;ZnO光催化剂;

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