Literature DB >> 30138872

Removal and degradation mechanisms of sulfonamide antibiotics in a new integrated aerobic submerged membrane bioreactor system.

Zhihao Yu1, Xinbo Zhang1, Huu Hao Ngo2, Wenshan Guo3, Haitao Wen1, Lijuan Deng4, Yajing Li1, Jianbo Guo1.   

Abstract

A novel laboratory-scale aerobic submerged membrane bioreactor integrating sponge-plastic biocarriers (SPSMBR) was conducted to study the removal and degradation mechanisms of sulfonamide antibiotics (SAs). Experimental results indicated that SPSMBR had a better removal of sulfadiazine (91% SDZ) and sulfamethoxazole (88% SMZ) than that of a conventional aerobic submerged membrane bioreactor (CSMBR) (76% SDZ and 71% SMZ, respectively). Material balance calculations suggested that biodegradation is the primary removal mechanism of SDZ and SMZ. Protein (tyrosine-like materials) significantly affected the removal of SAs. Moreover, the SPSMBR exhibited its better performance in removing SAs due to more abundance of tyrosine-like materials. The 16S rRNA sequencing showed that biocarriers could promote the enrichment of slow growing bacteria, especially Thermomonas, associated with the removal of SAs. Valuable insights into the removal and degradation mechanisms of SAs in the SPSMBR systems are documented here.
Copyright © 2018 Elsevier Ltd. All rights reserved.

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Keywords:  Extracellular polymeric substances; Integrated aerobic membrane bioreactor; Intermediates; Sponge-plastic biocarriers; Sulfonamide antibiotics

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Year:  2018        PMID: 30138872     DOI: 10.1016/j.biortech.2018.08.028

Source DB:  PubMed          Journal:  Bioresour Technol        ISSN: 0960-8524            Impact factor:   9.642


  1 in total

1.  Analysis of the biodegradation performance and biofouling in a halophilic MBBR-MBR to improve the treatment of disinfected saline wastewater.

Authors:  Mengchang Xu; Wenhu Zhou; Xuncai Chen; Ying Zhou; Binsheng He; Songwen Tan
Journal:  Chemosphere       Date:  2020-10-22       Impact factor: 7.086

  1 in total

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