Effects of salinity build-up on the performance and bacterial community structure of a membrane bioreactor.

Publication Type:
Journal Article
Citation:
Bioresource technology, 2016, 200 pp. 305 - 310
Issue Date:
2016-01
Full metadata record
Files in This Item:
Filename Description Size
ThumbnailAccepted Manuscript Effects of salinity build-up on the performance of a MBR (BITE 15668).pdfAccepted Manuscript Version365.35 kB
Adobe PDF
This study investigated the effects of salinity increase on bacterial community structure in a membrane bioreactor (MBR) for wastewater treatment. The influent salt loading was increased gradually to simulate salinity build-up in the bioreactor during the operation of a high retention-membrane bioreactor (HR-MBR). Bacterial community diversity and structure were analyzed using 454 pyrosequencing of 16S rRNA genes of MBR mixed liquor samples. Results show that salinity increase reduced biological performance but did not affect microbial diversity in the bioreactor. Unweighted UniFrac and taxonomic analyses were conducted to relate the reduced biological performance to the change of bacterial community structure. In response to the elevated salinity condition, the succession of halophobic bacteria by halotolerant/halophilic microbes occurred and thereby the biological performance of MBR was recovered. These results suggest that salinity build-up during HR-MBR operation could be managed by allowing for the proliferation of halotolerant/halophilic bacteria.
Please use this identifier to cite or link to this item: