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BIOSORPTION PROCESSES AT THE INTERFACE OF THE ACTIVATED CARBON-NONIONIC SURFACTANT WATER SOLUTION

机译:活性炭 - 非离子表面活性水溶液界面的生物吸附过程

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A gradual decrease in concentration of NPhEO and variations in its composition in the process of filtration through a proposed adsorption-biosorption system were studied. An adsorption system consisting of two parts was investigated in this study. The first part was loaded with ordinary AC. The second part was loaded with AC, that was infected by bacteria-degraders of the surfactant. Aeration of the solution was arranged between these two parts of the system. When the solution, containing surfactants, is filtered through the first part of the AC packing, chromatographic separation of the initial substance and its biodegradation products takes place. Then still another separation of biodegradation products occurs along the second part of the adsorption columns. The most effective biodegradation process occurs in the AC underlying layers. A new type of biosorber on the basis of these studies has been proposed. The developed biosorber enables to reach very high degree of purification of wastewater from NPhEO, from COD 159 mgO2·L~(-1) to COD of 7 mgO_2·L~(-1).
机译:研究了通过提出的吸附 - 生物吸附系统的含量浓度的NPHEO浓度和其组合物的变化。在本研究中研究了由两部分组成的吸附系统。第一部分装载普通AC。第二部分用AC加载,由表面活性剂的细菌降解剂感染。在该系统的这两部分之间布置溶液的曝气。当含有表面活性剂的溶液通过AC包装的第一部分过滤时,发生初始物质的色谱分离及其生物降解产物。然后仍然沿着吸附柱的第二部分发生生物降解产物的另一个分离。最有效的生物降解过程发生在AC下面层中。已经提出了一种新的生物机构的基础上这些研究。开发的生物机能够从NPheo达到来自Npheo的废水的非常高度纯化,从COD 159 MgO2·L〜(-1)到7 MgO_2·L〜(-1)的COD。

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