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Factors affecting the immobilization of fungal biomass on CNT as a biosorbent for textile dyes removal

机译:影响CNT对CNT作为纺织染料的生物吸附剂固定的因素

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Effluents from dye and textile industries are highly contaminated and toxic to the environment. High concentration of non-biodegradable compounds contributes to increased biochemical oxygen demand (BOD) and chemical oxygen demand (COD) of the wastewater bodies. Dyes found in wastewater from textile industries are carcinogenic, mutagenic or teratogenic. Biological processes involving certain bacteria, fungi and activated carbon have been employed in treating wastewater. These methods are either inefficient or ineffective. These complexities necessitates search for new approaches that will offset all the shortcomings of the present solutions to the challenges faced with textile wastewater management. This study produced a new biosorbent by the immobilization of fungal biomass on carbon nanotubes. The new biosorbent is called "carbon nanotubes immobilized biomass (CNTIB)" which was produced by immobilization technique. A potential fungal strain, Aspergillus niger was selected on the basis of biomass production. It was found out in this studies that fungal biomass were better produced in acidic medium. Aspergillus niger was immobilized on carbon nanotubes. One-factor-at-a time (OFAT) was employed to determine the effect of different factors on the immobilization of fungal biomass on carbon nanotubes and optimum levels at which the three selected parameters (pH, culture time and agitation rate) would perform. Findings from OFAT showed that the optimum conditions for immobilization are a pH of 5, agitation rate of 150rpm and a culture time of 5 days.
机译:来自染料和纺织工业的污染是对环境的高度污染和毒性。高浓度的非生物降解化合物有助于增加废水体的生化氧需求(BOD)和化学需氧量(COD)。来自纺织工业的废水中发现的染料是致癌,致突变性或致畸性。涉及某些细菌,真菌和活性炭的生物方法已在治疗废水中使用。这些方法效率低或无效。这些复杂性需要搜索新方法,这些方法将抵消本解决方案的所有缺点,以纺织废水管理面临的挑战。本研究通过固定在碳纳米管上的真菌生物质的固定来产生新的生物吸附剂。新的生物吸附剂被称为“碳纳米管固定化生物质(CNTIB)”,其通过固定化技术产生。在生物质生产的基础上选择潜在的真菌菌株,曲霉菌株。在这项研究中发现,在酸性介质中更好地产生真菌生物量。曲霉在碳纳米管上固定在碳纳米管上。使用单因素(OFAT)来确定不同因素对碳纳米管上的真菌生物质固定的影响,以及三种选定参数(pH,培养时间和搅拌率)的最佳水平。 OFAT的发现表明,固定化的最佳条件为5的pH,搅拌150rpm,培养时间为5天。

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