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Dynamics of microbial communities in an integrated ultrafiltration–reverse osmosis desalination pilot plant located at the Arabian Gulf

机译:位于阿拉伯湾的综合超滤-反渗透海水淡化试验工厂中微生物群落的动态

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摘要

This study demonstrated the use of high-throughput sequencing to assess the efficacy of an integrated ultrafiltration (UF)–reverse osmosis (RO) desalination pilot plant located at the Arabian Gulf, and to identify potential microbial-associated problems that may arise in this plant. When integrated into the desalination treatment system, the UF membranes were able to serve as a good pretreatment strategy to delay RO fouling by achieving up to 1.96-log removal of cells from the seawater. Consequently, the differential pressure of the RO membrane remained around 1 bar for the entire six-month study, suggesting no significant biofouling performance issue identified for this RO system. Examples of microbial populations effectively removed by the UF membranes from the feed waters included Nitrosoarchaeum limnia and phototrophic eukaryotes. Microbial-associated problems observed in this pilot plant included the presence of Pseudomonas spp. in coexistence with Desulfovibrio spp. These two bacterial populations can reduce sulfate and produce hydrogen sulfide, which would in turn cause corrosion problems or compromise membrane integrities. Chemical-enhanced backwashing (CEB) can be used as an effective strategy to minimize the associated microbial problems by removing bacterial populations including sulfate reducers from the UF membranes.
机译:这项研究证明了使用高通量测序来评估位于阿拉伯湾的综合超滤(UF)-反渗透(RO)海水淡化中试厂的功效,并确定该厂可能出现的与微生物相关的潜在问题。当与海水淡化处理系统集成在一起时,超滤膜可以作为一种很好的预处理策略,通过从海水中去除高达1.96 log的细胞来延迟RO结垢。因此,在整个六个月的研究中,反渗透膜的压差保持在1 bar左右,这表明该反渗透系统没有发现明显的生物污染性能问题。通过超滤膜有效地从给水中去除的微生物种群的例子包括亚硝基古生菌(Nitrosoarchaeum limnia)和光养性真核生物。在该试验工厂中观察到的与微生物相关的问题包括假单胞菌的存在。与Desulfovibrio spp共存。这两个细菌种群可以还原硫酸盐并产生硫化氢,这又会引起腐蚀问题或损害膜的完整性。通过从超滤膜中去除细菌种群(包括硫酸盐还原剂),化学增强的反冲洗(CEB)可以作为一种有效的策略来最大程度地减少相关的微生物问题。

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