中国科学院机构知识库网格
Chinese Academy of Sciences Institutional Repositories Grid
Coupled photocatalytic-bacterial degradation of pyrene: Removal enhancement and bacterial community responses

文献类型:期刊论文

作者Qin, Zhirui; Zhao, Zhenhua; Jiao, Wentao; Han, Ziyu; Xia, Liling; Fang, Yinqing; Wang, Shiyu; Ji, Longjie; Jiang, Ying
刊名ENVIRONMENTAL RESEARCH
出版日期2020-04
卷号183页码:1-12
关键词Pyrene Photocatalysis Biodegradation Bacterial community Functional features
ISSN号0013-9351
英文摘要Polycyclic aromatic hydrocarbons (PAHs) are a class of pollutants that ubiquitously present in environment and hard to be degraded by microorganisms. Herein, we reported a novel photocatalytic-bacterial coupled removal system to treat PAH-polluted water. Using pyrene as the model pollutant, we demonstrated that the removal percentage of different groups was in order: 63.89% +/- 1.03% (Vis-Biological) > 61.27% +/- 1.08% (UV-Biological) > 59.58% +/- 1.15% (UV) > 57.41% +/- 1.13% (Vis) > 6.65% +/- 0.72% (Biological) > 1.70% +/- 0.34% (Control), showing the coupled system significantly improved the removal percentage of pyrene. Additionally, we observed that the coupled system driven by visible light showed higher removal percentage than UV light, exhibiting a good potential for future application. Sequencing analysis of 16S rRNA genes showed that alpha diversity (richness, evenness and diversity) got promoted and data of the relative abundance showed that Pseudomonadaceae was substituted as the dominant bacteria for Planococcaceae, with some other functional bacteria quickly acclimatizing in the bacterial community. Difference analysis indicated that over half of top fifteen genera were generally different significantly (p < 0.001) among two different samples, and UV light altered structure and composition of bacterial community more than visible light. Functional features' change suggested that the bacterial community not only protected itself but also participated in degrading pyrene. Overall, our study offered a new method for PAH degradation and contributed to further understanding of coupled catalytic-bacterial degradation processes.
源URL[http://ir.rcees.ac.cn/handle/311016/44254]  
专题生态环境研究中心_城市与区域生态国家重点实验室
推荐引用方式
GB/T 7714
Qin, Zhirui,Zhao, Zhenhua,Jiao, Wentao,et al. Coupled photocatalytic-bacterial degradation of pyrene: Removal enhancement and bacterial community responses[J]. ENVIRONMENTAL RESEARCH,2020,183:1-12.
APA Qin, Zhirui.,Zhao, Zhenhua.,Jiao, Wentao.,Han, Ziyu.,Xia, Liling.,...&Jiang, Ying.(2020).Coupled photocatalytic-bacterial degradation of pyrene: Removal enhancement and bacterial community responses.ENVIRONMENTAL RESEARCH,183,1-12.
MLA Qin, Zhirui,et al."Coupled photocatalytic-bacterial degradation of pyrene: Removal enhancement and bacterial community responses".ENVIRONMENTAL RESEARCH 183(2020):1-12.

入库方式: OAI收割

来源:生态环境研究中心

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