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Analysis of Ion Retained Mechanism of Natural Biofilm Matrices

机译:天然生物膜矩阵离子保留机制分析

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The mechanisms of ions retained in biofilm matrices were investigated and clarified in this study. Biofilm polymer characterization was conducted by measuring the electrical charge mobility and the potentiometric titration. The ion retained mechanism was explored in more detail by investigating the ion adsorption and desorption mechanisms of the biofilm matrices. The results suggested that both positively and negatively charged sites exist in the biofilm polymers. A physicochemical interaction between the sites and the ions in the surrounding water seems to promote the ion adsorption to the biofilm through an attractive electrostatic interaction and an ion-exchange mechanism. The attracted ions may be reserved in two regions; 1) the regions between biofilm polymers and 2) on the charged sites of biofilm polymers. The main factor regulating the ion retaining ability inside of biofilms seems to be an electrostatic interaction between the ions and the charged sites of biofilm polymer. The greater attractive electrostatic attraction between the retained ions and the charged sites of biofilm polymers will hinder the release of the ions from the biofilm matrices. The result obtained by the present study enables us to find out the determinant factor regulating the ion retained mechanisms of the natural biofilm matrices.
机译:研究并在本研究中研究并澄清了在生物膜基质中保留的离子机制。通过测量电荷迁移率和电位滴定来进行生物膜聚合物表征。通过研究生物膜基质的离子吸附和解吸机制,更详细地探索离子保留机制。结果表明,在生物膜聚合物中存在正极和带负电的位点。周围水中的位点与离子之间的物理化学相互作用似乎通过具有吸引力的静电相互作用和离子交换机制促进对生物膜的离子吸附。吸引的离子可以在两个区域保留; 1)生物膜聚合物和2)之间的区域在生物膜聚合物的带电位点上。调节生物膜内的离子保持能力的主要因素似乎是离子和生物膜聚合物的带电位点之间的静电相互作用。保留离子和生物膜聚合物的带电部位之间的较大静电吸引力将阻碍离子与生物膜基质的释放。通过本研究获得的结果使我们能够找到调节天然生物膜基质的离子保留机制的决定因子。

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