首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Determining the influence of active cells and conditioning layer on early stage biofilm formation using cellulose acetate ultrafiltration membranes
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Determining the influence of active cells and conditioning layer on early stage biofilm formation using cellulose acetate ultrafiltration membranes

机译:使用醋酸纤维素超滤膜确定活性细胞和调节层对早期生物膜形成的影响

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摘要

Membrane biofouling is a complicated process and can include both abiotic and biotic fouling. The objective of this research was to determine the contribution of conditioning layer in the presence of active cells to early stage membrane biofouling. Membranes were operated for 4, 11. and 24 h using buffered synthetic water composed of a conditioning layer (130.14 ppm sodium acetate trihydrate) and either inactive (fixed) or active cells (10~3 cells/mL). This study was performed using cross flow filtration through cellulose acetate (CA) ultrafiltration (UF) membranes. Flux decline, biofilm activity, biofilm surface area coverage, and biofilm morphology (surface roughness and skewness) were monitored over time. While biofilm surface area coverage could not effectively distinguish membranes being filtered with active and inactive cells, permeate flux data indicated that the presence of active cells resulted in significantly more flux decline. Feature height analyses (TM-AFM) combined with biofilm metabolic activity assessment allowed the consideration of abiotic and biotic fouling. The membrane resistance increased in the presence of active bacterial cells, regardless of the level of abiotic fouling. Howevei". abiotic fouling and bacterial cell activity are not independent since abiotic fouling serves as a food source that helps activate cells.
机译:膜生物污染是一个复杂的过程,可能包括非生物污染和生物污染。这项研究的目的是确定存在活性细胞的条件下调节层对早期膜生物污染的贡献。使用由调节层(130.14 ppm乙酸钠三水合物)和非活性(固定)或活性细胞(10〜3个细胞/ mL)组成的缓冲合成水将膜操作4、11和24小时。这项研究是通过错流过滤通过醋酸纤维素(CA)超滤(UF)膜进行的。随时间监测通量下降,生物膜活性,生物膜表面积覆盖率和生物膜形态(表面粗糙度和偏度)。尽管生物膜的表面积覆盖不能有效地区分被活性和非活性细胞过滤的膜,但渗透通量数据表明活性细胞的存在导致通量下降明显更多。特征高度分析(TM-AFM)与生物膜代谢活性评估相结合,可以考虑使用非生物和生物污垢。在存在活性细菌细胞的情况下,无论非生物污染的程度如何,膜抗性都会增加。然而,非生物污染和细菌细胞活性并不是独立的,因为非生物污染是有助于激活细胞的食物来源。

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