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The role of extracellular polymeric substances on the sorption of natural organic matter

机译:细胞外聚合物质对天然有机物吸附的作用

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摘要

In this study, the influence of extracellular polymeric substances (EPS) composition and quantity was explored for biosorption of natural organic matter (NOM), using variants of Pseudomonas aeruginosa and Pseudomonas putida. Model EPS (sodium alginate beads) were tested and sorption capacity for NOM was also elucidated. In the absence of divalent ions, minimal NOM biosorption was observed and differences among strains were negligible. Under presence of divalent ions, biosorption of NOM was proportional to the amount of EPS secreted by P. aeruginosa variants. For sorption tests with model EPS, divalent ions also promoted biosorption of tested NOM, and total biosorption was also proportional to alginate quantity. Carboxyl group content in both alginate EPS and NOM appeared to be linked to increased biosorption via bridging with divalent ions. The alginate overproducing strain possessed more potential NOM biosorption sites, while the wild-type and alginate deficient strains possessed fewer potential binding sites. In comparison, P. putida, secreting protein-based EPS, behaved differently for NOM biosorption, due to its hydrophobicity and the structural characteristics of proteins. Hydrophobic interactions appeared to enhance the biosorption of more hydrophobic Suwannee River humic acid by P. putida, whose biosorption of more hydrophilic NOM variants was similar to the alginate deficient strain. Mechanistically, the presence of a diffuse electrical double layer will present potential energy barriers limiting biosorption; however, divalent ion concentrations in the aquatic environment will promote biosorption processes, permitting functional group interactions between EPS and NOM. Bridging between hydrophilic carboxyl groups on alginate EPS and NOM appeared to be the dominant form of biosorption, while hydrophobic interactions enhanced biosorption for protein-based EPS.
机译:在这项研究中,利用铜绿假单胞菌和恶臭假单胞菌的变体,探索了细胞外聚合物(EPS)的组成和数量对天然有机物(NOM)的生物吸附的影响。测试了EPS型(藻酸钠珠),并阐明了NOM的吸附能力。在没有二价离子的情况下,观察到最小的NOM生物吸附,并且菌株之间的差异可以忽略不计。在二价离子存在下,NOM的生物吸附与铜绿假单胞菌变种分泌的EPS量成正比。对于使用模型EPS进行的吸附测试,二价离子还促进了受测NOM的生物吸附,总生物吸附也与藻酸盐量成正比。海藻酸盐EPS和NOM中的羧基含量似乎都与二价离子桥联而增加了生物吸收。藻酸盐过量生产菌株具有更多潜在的NOM生物吸附位点,而野生型和藻酸盐缺乏菌株具有较少的潜在结合位点。相比之下,由于蛋白质的疏水性和蛋白质的结构特征,恶臭假单胞菌分泌基于蛋白质的EPS,其NOM生物吸附的行为有所不同。疏水性相互作用似乎增强了恶臭假单胞菌对更多疏水性Suwannee河腐殖酸的生物吸附,恶臭假单胞菌对更多亲水NOM变体的生物吸附类似于藻酸盐缺乏菌株。从机理上讲,双电层的扩散将存在限制生物吸附的潜在能垒。但是,水生环境中的二价离子浓度将促进生物吸附过程,从而允许EPS和NOM之间发生官能团相互作用。海藻酸盐EPS和NOM上的亲水性羧基之间的桥接似乎是生物吸附的主要形式,而疏水相互作用增强了基于蛋白质的EPS的生物吸附。

著录项

  • 来源
    《Water Research》 |2012年第4期|p.1052-1060|共9页
  • 作者单位

    Department of Chemical and Environmental Engineering, University of Toledo, Mail Stop 307, 3048 Nitschfee Hall, Toledo,OH 43606-3390, USA;

    Department of Chemical and Environmental Engineering, University of Toledo, Mail Stop 307, 3048 Nitschfee Hall, Toledo,OH 43606-3390, USA;

    Department of Civil Engineering, Uniuersity of Toledo, Mail Stop 307, 3006 Nitschfee Hall, Toledo, OH 43606-3390, USA;

    Department of Chemical and Environmental Engineering, University of Toledo, Mail Stop 307, 3048 Nitschfee Hall, Toledo,OH 43606-3390, USA,Department of Civil Engineering, Uniuersity of Toledo, Mail Stop 307, 3006 Nitschfee Hall, Toledo, OH 43606-3390, 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

    biosorption; biofilm; natural organic matter (NOM); ultraviolet absorbance 254 nm; (UVA_(254)); planktonic cells;

    机译:生物吸附生物膜天然有机物(NOM);紫外线吸收254nm;(UVA_(254));浮游细胞;

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