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Utilization of Thamnidium elegans fungal culture in environmental cleanup: A reactive dye biosorption study

机译:秀丽隐杆线虫真菌培养在环境净化中的利用:活性染料的生物吸附研究

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In this study, the potential of biomaterial obtained from filamentous fungi, Thamnidium elegans was investigated for the batch and dynamic flow mode biosorption of Reactive Red 198 (RR198). The effects of pH, biosorbent amount, contact time, initial dye concentration and ionic strength were evaluated in addition to the investigation of its biosorption performance in the presence of other dyes in the biosorption medium. High biosorption yields were recorded by using small amount of biosorbent in a relatively short time. The biosorption process followed by the pseudo-second-order kinetic and the Langmuir isotherm models. Maximum monolayer dye biosorption capacity of biosorbent was found as 234.24 mg g~(-1) in batch conditions. Biosorption-desorption studies indicated that T. elegans has relatively good regeneration ability. Also the suggested biomaterial exhibited high biosorption yield in competitive and real wastewater conditions. The dye removal mechanism was evaluated by IR, SEM and zeta potential analysis. Overall, batch and dynamic-flow mode studies indicated that this environmentally friendly biosorbent may be an alternative for the removal of reactive dyes from contaminated media.
机译:在这项研究中,研究了从丝状真菌线虫(Thamnidium elegans)获得的生物材料对活性红198(RR198)的批次和动态流式生物吸附的潜力。除了研究在生物吸附介质中存在其他染料时其生物吸附性能之外,还评估了pH,生物吸附量,接触时间,初始染料浓度和离子强度的影响。通过在相对较短的时间内使用少量生物吸附剂,记录到高生物吸附率。生物吸附过程之后是伪二级动力学模型和Langmuir等温模型。在分批条件下,生物吸附剂对染料的最大单层吸附能力为234.24 mg g〜(-1)。生物吸附-解吸研究表明线虫具有相对较好的再生能力。同样,建议的生物材料在竞争性和实际废水条件下表现出高的生物吸附产量。通过IR,SEM和ζ电势分析评估了染料去除机理。总体而言,分批和动态流动模式研究表明,这种环保型生物吸附剂可能是从受污染介质中去除活性染料的替代方法。

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