首页> 外文会议>Meeting of the International Humic Substances Society >Adsorption of Extracellular Polymeric Substances (EPS) from Pseudomonas putida on Various Soil Particles from an Alfisol
【24h】

Adsorption of Extracellular Polymeric Substances (EPS) from Pseudomonas putida on Various Soil Particles from an Alfisol

机译:从丙二醇的各种土壤颗粒上吸附来自假单胞菌的细胞外聚合物物质(EPS)

获取原文

摘要

The adsorption of EPS from Pseudomonas putida on various soil particles from an Alfisol was investigated in batch systems.The interaction mechanisms were discussed using the DLVO theory.The functional groups of EPS were phosphoric/carboxylic (pKa=2.68),carboxyl (pKa=4.52),phosphoryl (pKa=7.09),hydroxyl/amine (pKa=8.99),respectively.The adsorption isotherms of EPS on soil particles conformed to the Langmuir equation.The amount of EPS-C and-P adsorbed followed the sequence of inorganic clay > organic clay > silt > sand.However,EPS-N adsorption on organic clay was greater than that on inorganic clay slightly.The mass fraction EPS-C,and-N adsorption on soil particles increased with the increase of NaCl or CaC12 concentrations but the opposite is true for EPS-P.Calcium ions were more efficient than sodium ions in promoting EPS-C,and-N adsorption and hindering EPS-P adsorption on soil particles.These results suggest that EPS was adsorbed primarily on fine soil clays which is also in accordance with the prediction by DLVO.Organic matter stimulated EPS-C and-P constituents adsorption on soil particles,while inhibited EPS-N adsorption.The information obtained is of fundamental significance for understanding interfacial reactions between microorganisms and soil particles.
机译:在批量系中研究了来自普通的Pseudomonas pivida的EPS的吸附。使用DLVO理论讨论了相互作用机制。EPS的官能团是磷/羧酸(PKA = 2.68),羧基(PKA = 4.52 ),磷酸磷(PKA = 7.09),羟基/胺(PKA = 8.99)。土壤颗粒上的EPS的吸附等温线符合Langmuir方程。吸附的EPS-C和-P的量遵循无机粘土序列>有机粘土>淤泥>砂。但是,在有机粘土上的EPS-N吸附大于无机粘土。随着NaCl或CaC12浓度的增加,土壤颗粒的质量分数EPS-C,和-N和-N和-N吸附增加对于EPS-P.calcium离子的相反比促进EPS-C和-N吸附和阻碍土壤颗粒的吸附和阻碍EPS-P吸附更有效。这些结果表明EPS主要吸附在细土粘土上也是在acciptan DLVO的预测。有机物质刺激了土壤颗粒上吸附的EPS-C和P成分,同时抑制EPS-N吸附。获得的信息对于了解微生物和土壤颗粒之间的界面反应是至关重要的。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号