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Optimization of Physiochemical Parameters during Bioremediation of Synthetic Dye by Marasmius cladophyllus UMAS MS8 Using Statistical Approach

机译:统计方法优化毛乌头UMAS MS8生物修复染料的理化参数。

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摘要

In many industrial areas such as in food, pharmaceutical, cosmetic, printing, and textile, the use of synthetic dyes has been integral with products such as azo dye, anthrax, and dyestuffs. As such, these industries produce a lot of waste by-products that could contaminate the environment. Bioremediation, therefore, has become an important emerging technology due to its cost-sustainable, effective, natural approach to cleaning up contaminated groundwater and soil via the use of microorganisms. The use of microorganisms in bioremediation requires the optimisation of parameters used in cultivating the organism. Thus the aim of the work was to assess the degradation of Remazol Brilliant Blue R (RBBR) dye on soil using Plackett-Burman design by the basidiomycete, M. cladophyllus UMAS MS8. Biodegradation analyses were carried out on a soil spiked with RBBR and supplemented with rice husk as the fungus growth enhancer. A two-level Plackett-Burman design was used to screen the medium components for the effects on the decolourization of RBBR. For the analysis, eleven variables were selected and from these four parameters, dye concentration, yeast extract concentration, inoculum size, and incubation time, were found to be most effective to degrade RBBR with up to 91% RBBR removal in soil after 15 days.
机译:在许多工业领域,例如食品,药品,化妆品,印刷和纺织中,合成染料的使用已与偶氮染料,炭疽和染料等产品结合在一起。因此,这些行业会产生大量可能污染环境的废物副产品。因此,生物修复已成为一项重要的新兴技术,因为它具有成本可持续,有效,自然的方法,可以通过利用微生物清除污染的地下水和土壤。在生物修复中使用微生物需要优化用于培养生物体的参数。因此,该工作的目的是使用担子菌M. cladophyllus UMAS MS8的Plackett-Burman设计来评估Remazol亮蓝R(RBBR)染料在土壤上的降解。在掺有RBBR并补充有稻壳作为真菌生长促进剂的土壤上进行了生物降解分析。采用两级Plackett-Burman设计来筛选介质组分,以了解对RBBR脱色的影响。为了进行分析,选择了11个变量,从这四个参数中,染料浓度,酵母提取物浓度,接种量和孵育时间被发现最有效地降解RBBR,在15天后土壤中的RBBR去除率高达91%。

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