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首页> 外文期刊>Applied and Environmental Microbiology >Biofilm Formation on Reverse Osmosis Membranes Is Initiated and Dominated by Sphingomonas spp.
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Biofilm Formation on Reverse Osmosis Membranes Is Initiated and Dominated by Sphingomonas spp.

机译:反渗透膜上的生物膜形成是由鞘氨醇单胞菌(Sphingomonas spp)引发并支配的。

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The initial formation and spatiotemporal development of microbial biofilm layers on surfaces of new and clean reverse osmosis (RO) membranes and feed-side spacers were monitored in situ using flow cells placed in parallel with the RO system of a full-scale water treatment plant. The feed water of the RO system had been treated by the sequential application of coagulation, flocculation, sand filtration, ultrafiltration, and cartridge filtration processes. The design of the flow cells permitted the production of permeate under cross-flow conditions similar to those in spiral-wound RO membrane elements of the full-scale system. Membrane autopsies were done after 4, 8, 16, and 32 days of flow-cell operation. A combination of molecular (fluorescence in situ hybridization [FISH], denaturing gradient gel electrophoresis [DGGE], and cloning) and microscopic (field emission scanning electron, epifluorescence, and confocal laser scanning microscopy) techniques was applied to analyze the abundance, composition, architecture, and three-dimensional structure of biofilm communities. The results of the study point out the unique role of Sphingomonas spp. in the initial formation and subsequent maturation of biofilms on the RO membrane and feed-side spacer surfaces.
机译:新型的和干净的反渗透(RO)膜和进料侧间隔物表面上微生物生物膜层的初始形成和时空发展通过与流通池的RO系统平行放置的流通池原位进行监测。大型水处理厂。反渗透系统的给水已通过依次应用混凝,絮凝,砂滤,超滤和筒式过滤工艺进行了处理。流通池的设计允许在错流条件下产生渗透液,类似于全尺寸系统的螺旋缠绕RO膜元件。在流动池操作第4、8、16和32天后进行膜尸检。结合了分子技术(荧光原位杂交[FISH],变性梯度凝胶电泳[DGGE]和克隆)和显微镜技术(场发射扫描电子,表面荧光和共聚焦激光扫描显微镜)分析生物膜群落的丰度,组成,结构和三维结构。研究结果指出了鞘氨醇单胞菌 spp的独特作用。在反渗透膜和进料侧间隔物表面上生物膜的初始形成和随后的成熟中。

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