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鉴定地中海海水淡化反渗透膜上的细菌生物膜。

Identification of bacterial biofilms on desalination reverse osmosis membranes from the mediterranean sea.

机构信息

LAPSAB Lab: Antifungal Antibiotic, Physico-Chemical Synthesis and Biological Activity, University of Tlemcen, Tlemcen, Algeria.

Department of Biology, University Center of Naâma, Naâma, Algeria.

出版信息

Biofouling. 2020 Oct;36(9):1065-1073. doi: 10.1080/08927014.2020.1851366. Epub 2020 Nov 24.

Abstract

Nanofiltration and reverse osmosis are two of the most effective surface water treatment processes. They provide water of high quality and eliminate a large amount of microorganisms, organic matter and micropollutants. However, the main limitation of membrane nanofiltration is fouling, which imposes an additional cost. This study focused on the search for microorganisms capable of reducing the performance of nanofilters and also to study autoaggregation and biofilms formation by bacterial strains isolated from the nanomembranes used in the seawater desalination plant of Souk Tlata (Algeria). It provides new microbiological data on the desalination of seawater in the southern Mediterranean basin. The results revealed 14 bacterial species isolated from six fouled reverse osmosis membranes; their quantities were significant with the dominance of sp., sp. sp., sp sp., and . In addition, electron imaging of nanomembrane surfaces revealed complex structures of microorganisms forming biofilms.

摘要

纳滤和反渗透是两种最有效的地表水处理工艺。它们提供高质量的水,并消除大量的微生物、有机物和微污染物。然而,膜纳滤的主要限制是结垢,这会带来额外的成本。本研究旨在寻找能够降低纳滤器性能的微生物,同时研究从位于阿尔及利亚苏克·特拉塔(Souk Tlata)海水淡化厂使用的纳米膜中分离出的细菌菌株的自动聚集和生物膜形成。它提供了关于地中海盆地南部海水淡化的新的微生物学数据。结果显示,从六张污染反渗透膜中分离出 14 种细菌,它们的数量非常多,优势种为 sp.、 sp.、 sp.、和 。此外,纳米膜表面的电子成像显示了形成生物膜的微生物的复杂结构。

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