Responses of microbial communities and their interactions to ibuprofen in a bio-electrochemical system
Ibuprofen has caused great concerns due to their potential environmental risks. However, their removal efficiency and their effects on microbial interactions in bio-electrochemical system remain unclear. To address these issues, a lab-scale bio-electrochemical reactor integrated with sulfur/iron-med...
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Published in | Journal of environmental management Vol. 289; p. 112473 |
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Main Authors | , , , , , , , , |
Format | Journal Article |
Language | English |
Published |
England
Elsevier Ltd
01.07.2021
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Abstract | Ibuprofen has caused great concerns due to their potential environmental risks. However, their removal efficiency and their effects on microbial interactions in bio-electrochemical system remain unclear. To address these issues, a lab-scale bio-electrochemical reactor integrated with sulfur/iron-mediated autotrophic denitrification (BER-S/IAD) system exposing to 1000 μg L−1 ibuprofen was operated for about two months. Results revealed that the BER-S/IAD system obtained efficient simultaneous denitrification (98.93%) and phosphorus (82.67%) removal, as well as an excellent ibuprofen removal performance (96.98%). Ibuprofen had no significant impacts on the nitrate (NO3−-N) removal and the ammonia (NH4+-N) accumulation, but decreased the total nitrogen (TN) and total phosphorus (TP) removal efficiencies. MiSeq sequencing analysis revealed that ibuprofen significantly (P < 0.05) decreased the microbial community diversity and changed their overall structure. Some bacteria related to denitrification and phosphorus removal, such as Pseudomonas and Thiobacillus, decreased significantly (P < 0.05). Moreover, molecular ecological network (MEN) analysis revealed that ibuprofen decreased the network's size and complexity, and enhanced the negative correlations of Proteobacteria and Firmicutes. Besides, ibuprofen decreased the links of some keystone bacteria related to denitrification and phosphorus removal. This research could provide a new dimension for our comprehending of the responses of microbial communities and their interactions to ibuprofen in bio-electrochemical system.
[Display omitted]
•The BER-S/IAD system has high-efficient wastewater nutrients removal performance.•Ibuprofen triggered the deterioration of denitrification and phosphorus removal.•Ibuprofen decreased the microbial diversity and altered the microbial composition.•Ibuprofen reduced the microbial network scale and enhanced the microbial competition.•Ibuprofen reduced the links of some keystone bacteria related to nutrients removal. |
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AbstractList | Ibuprofen has caused great concerns due to their potential environmental risks. However, their removal efficiency and their effects on microbial interactions in bio-electrochemical system remain unclear. To address these issues, a lab-scale bio-electrochemical reactor integrated with sulfur/iron-mediated autotrophic denitrification (BER-S/IAD) system exposing to 1000 μg L
ibuprofen was operated for about two months. Results revealed that the BER-S/IAD system obtained efficient simultaneous denitrification (98.93%) and phosphorus (82.67%) removal, as well as an excellent ibuprofen removal performance (96.98%). Ibuprofen had no significant impacts on the nitrate (NO
-N) removal and the ammonia (NH
-N) accumulation, but decreased the total nitrogen (TN) and total phosphorus (TP) removal efficiencies. MiSeq sequencing analysis revealed that ibuprofen significantly (P < 0.05) decreased the microbial community diversity and changed their overall structure. Some bacteria related to denitrification and phosphorus removal, such as Pseudomonas and Thiobacillus, decreased significantly (P < 0.05). Moreover, molecular ecological network (MEN) analysis revealed that ibuprofen decreased the network's size and complexity, and enhanced the negative correlations of Proteobacteria and Firmicutes. Besides, ibuprofen decreased the links of some keystone bacteria related to denitrification and phosphorus removal. This research could provide a new dimension for our comprehending of the responses of microbial communities and their interactions to ibuprofen in bio-electrochemical system. Ibuprofen has caused great concerns due to their potential environmental risks. However, their removal efficiency and their effects on microbial interactions in bio-electrochemical system remain unclear. To address these issues, a lab-scale bio-electrochemical reactor integrated with sulfur/iron-mediated autotrophic denitrification (BER-S/IAD) system exposing to 1000 μg L−1 ibuprofen was operated for about two months. Results revealed that the BER-S/IAD system obtained efficient simultaneous denitrification (98.93%) and phosphorus (82.67%) removal, as well as an excellent ibuprofen removal performance (96.98%). Ibuprofen had no significant impacts on the nitrate (NO3−-N) removal and the ammonia (NH4+-N) accumulation, but decreased the total nitrogen (TN) and total phosphorus (TP) removal efficiencies. MiSeq sequencing analysis revealed that ibuprofen significantly (P < 0.05) decreased the microbial community diversity and changed their overall structure. Some bacteria related to denitrification and phosphorus removal, such as Pseudomonas and Thiobacillus, decreased significantly (P < 0.05). Moreover, molecular ecological network (MEN) analysis revealed that ibuprofen decreased the network's size and complexity, and enhanced the negative correlations of Proteobacteria and Firmicutes. Besides, ibuprofen decreased the links of some keystone bacteria related to denitrification and phosphorus removal. This research could provide a new dimension for our comprehending of the responses of microbial communities and their interactions to ibuprofen in bio-electrochemical system. [Display omitted] •The BER-S/IAD system has high-efficient wastewater nutrients removal performance.•Ibuprofen triggered the deterioration of denitrification and phosphorus removal.•Ibuprofen decreased the microbial diversity and altered the microbial composition.•Ibuprofen reduced the microbial network scale and enhanced the microbial competition.•Ibuprofen reduced the links of some keystone bacteria related to nutrients removal. |
ArticleNumber | 112473 |
Author | Zhu, Minghan Zhang, Peilin Chen, Daying Du, Shuai Yuan, Yibo Ya, Tao Zhang, Minglu Wang, Xiaohui Zhang, Tingting |
Author_xml | – sequence: 1 givenname: Minghan surname: Zhu fullname: Zhu, Minghan organization: Key Laboratory of Cleaner Production and Integrated Resource Utilization of China National Light Industry, Beijing Technology and Business University, Beijing, 100048, China – sequence: 2 givenname: Minglu surname: Zhang fullname: Zhang, Minglu organization: Key Laboratory of Cleaner Production and Integrated Resource Utilization of China National Light Industry, Beijing Technology and Business University, Beijing, 100048, China – sequence: 3 givenname: Yibo surname: Yuan fullname: Yuan, Yibo organization: School of Environment and Energy, South China University of Technology, Guangzhou, 510006, China – sequence: 4 givenname: Peilin surname: Zhang fullname: Zhang, Peilin organization: Beijing Engineering Research Center of Environmental Material for Water Purification, College of Chemical Engineering, Beijing University of Chemical Technology, Beijing, 100029, China – sequence: 5 givenname: Shuai surname: Du fullname: Du, Shuai organization: Beijing Guo Dian Fu Tong Science and Technology Development Co., Ltd., Beijing, 100090, China – sequence: 6 givenname: Tao surname: Ya fullname: Ya, Tao organization: Beijing Engineering Research Center of Environmental Material for Water Purification, College of Chemical Engineering, Beijing University of Chemical Technology, Beijing, 100029, China – sequence: 7 givenname: Daying surname: Chen fullname: Chen, Daying organization: Beijing Engineering Research Center of Environmental Material for Water Purification, College of Chemical Engineering, Beijing University of Chemical Technology, Beijing, 100029, China – sequence: 8 givenname: Xiaohui surname: Wang fullname: Wang, Xiaohui email: xhwang@mail.buct.edu.cn organization: Beijing Engineering Research Center of Environmental Material for Water Purification, College of Chemical Engineering, Beijing University of Chemical Technology, Beijing, 100029, China – sequence: 9 givenname: Tingting orcidid: 0000-0001-5249-2201 surname: Zhang fullname: Zhang, Tingting email: zhangtt@mail.buct.edu.cn organization: Beijing Engineering Research Center of Environmental Material for Water Purification, College of Chemical Engineering, Beijing University of Chemical Technology, Beijing, 100029, China |
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Keywords | Molecular ecological network Bio-electrochemical system Wastewater nutrients removal Microbial community Ibuprofen |
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SubjectTerms | Bio-electrochemical system Bioreactors Denitrification Humans Ibuprofen Microbial community Microbiota Molecular ecological network Nitrates Nitrogen Phosphorus Waste Water Wastewater nutrients removal |
Title | Responses of microbial communities and their interactions to ibuprofen in a bio-electrochemical system |
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