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Dynamics of the physiochemical and community structures of biofilms under the influence of algal organic matter and humic substances

机译:藻类有机质和腐殖质物质影响下生物膜的生理化学和群落结构的动态

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摘要

Increased loading of algal organic matter (AOM) during harmful algal blooms not only burdens water treatment processes but also challenges safe drinking water delivery. While organic constituents promote biofilm growth in drinking water distribution systems (DWDS), the effects of AOM on biofilm formation in DWDS are not well understood. Herein, three parallel biofilm reactors were used to assess and compare how treated AOM- and humic substance (HS)-impacted bulk water, and R2A medium (a control) affect biofilm development for 168 days. The 16S rRNA gene sequencing analysis revealed that the bacterial communities in biofilms were clustered with the organic matter types in bulk water, where Family Comamonadaceae was the most dominant but showed different temporal dynamics depending on the organic matter characteristics in bulk water. Higher diversity was observed in the biofilms grown in AOM-impacted bulk water (BFAOM) than biofilms grown in HS -impacted (BFHS) and R2A-impacted bulk water (BFR2A) as the biofilms matured. In addition, some taxa (e.g., Rhodobacteraceae and Sphingomonadaceae) were enriched in BFAOM compared to BFHS and BFR2A. The biofilm image analysis results indicated that compared to BFHS, BFAOM and BFR2A had relatively thinner and heterogeneous physical structures with lower amounts of cell biomass, extracellular polymeric substances (EPS), and higher EPS protein/polysaccharide ratios. Overall, this study revealed how AOM- and HS-impacted bulk water shape the physiochemical and community structures of biofilms, which can provide insights into assessing biofilm-associated risks and optimizing disinfection practices for biofilm control in DWDS. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在有害的藻类盛开期间增加藻类有机物质(AOM)的载荷不仅负担水处理过程,而且挑战安全饮用水递送。虽然有机成分促进饮用水分配系统(DWDS)的生物膜生长,但AOM对DWDS的生物膜形成的影响尚不清楚。在此,使用三个平行的生物膜反应器评估和比较治疗的Aom和腐殖质(HS)-impacted散装水和R2a培养基(一种对照)影响生物膜发育168天。 16S rRNA基因测序分析显示,生物膜中的细菌群体与大量水中的有机物质类型聚集,其中族族群岛是最多的,但根据大量水中的有机物质特征表现出不同的时间动态。在Aom撞击的大散水(BFAOM)中生长的生物膜中观察到比HS-Impacted(BFHS)和R2A撞击的大量水(BFR2A)生长的生物膜在抗生物膜中观察到更高的多样性。此外,与BFHS和BFR2A相比,将一些素(例如乳菌痤疮和鞘氨基酰胺)富集BFAOM。生物膜图像分析结果表明,与BFHS,BFAOM和BFR2A相比具有较少量的细胞生物质,细胞外聚合物物质(EPS)和更高的EPS蛋白/多糖比例的相对较薄和异质的物理结构。总体而言,这项研究揭示了Aom-和HS-撞击的散装水的形状,生物膜的生理化学和群落结构,可以提供评估生物膜相关风险的见解,并在DWDS中优化生物膜控制的消毒实践。 (c)2019 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Water Research》 |2019年第jul1期|136-145|共10页
  • 作者单位

    Univ Toledo Dept Civil & Environm Engn Mail Stop 307 3048 Nitschke Hall Toledo OH USA;

    Univ Toledo Dept Civil & Environm Engn Mail Stop 307 3048 Nitschke Hall Toledo OH USA;

    Univ Toledo Dept Civil & Environm Engn Mail Stop 307 3048 Nitschke Hall Toledo OH USA;

    US EPA Water Syst Div Natl Risk Management Res Lab Cincinnati OH 45268 USA;

    US EPA Water Syst Div Natl Risk Management Res Lab Cincinnati OH 45268 USA;

    Univ Toledo Dept Civil & Environm Engn Mail Stop 307 3048 Nitschke Hall Toledo OH USA|Univ Toledo Dept Chem Engn Mail Stop 307 3048 Nitschke Hall Toledo OH 43606 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Algal organic matter; Humic substance; Biofilm development; Physiochemical and community structure; Drinking water;

    机译:藻类有机物;腐殖质;生物膜发育;物理化和社区结构;饮用水;

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