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首页> 外文期刊>Polish Journal of Microbiology >Luffa cylindrica Immobilized with Aspergillus terreus QMS-1: an Efficient and Cost-Effective Strategy for the Removal of Congo Red using Stirred Tank Reactor
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Luffa cylindrica Immobilized with Aspergillus terreus QMS-1: an Efficient and Cost-Effective Strategy for the Removal of Congo Red using Stirred Tank Reactor

机译:用曲霉QMS QMS-1固定的Luffa Comindrica:使用搅拌釜反应器去除刚果红色的有效和经济有效的策略

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摘要

Microbial populations within the rhizosphere have been considered as prosperous repositories with respect to bioremediation aptitude. Among various environmental contaminants, effluent from textile industries holds a huge amount of noxious colored materials having high chemical oxygen demand concentrations causing ecological disturbances. The study was aimed to explore the promising mycobiome of rhizospheric soil for the degradation of azo dyes to develop an efficient system for the exclusion of toxic recalcitrants. An effluent sample from the textile industry and soil samples from the rhizospheric region of Musa acuminata and Azadirachta indica were screened for indigenous fungi to decolorize Congo red, a carcinogenic diazo dye, particularly known for its health hazards to the community. To develop a bio-treatment process, Aspergillus terreus QMS-1 was immobilized on pieces of Luffa cylindrica and exploited in stirred tank bioreactor under aerobic and optimized environment. Quantitative estimation of Congo red decolorization was carried out using UV-Visible spectrophotometer. The effects of fungal immobilization and biosorption on the native structure of Luffa cylindrica were evaluated using a scanning electron microscope. A. terreus QMS-1 can remove (92%) of the dye at 100 ppm within 24 h in the presence of 1% glucose and 1% ammonium sulphate at pH 5.0. The operation of the bioreactor in a continuous flow for 12 h with 100 ppm of Congo red dye in simulated textile effluent resulted in 97% decolorization. The stirred tank bioreactor was found to be a dynamic, well maintained, no sludge producing approach for the treatment of textile effluents by A. terreus QMS-1 of the significant potential fbr decolorization of Congo red.
机译:根际的微生物群体被认为是关于生物修复能力的繁荣储存库。在各种环境污染物中,来自纺织工业的流出物具有巨大的有毒彩色材料,具有高化学氧需求浓度,导致生态障碍。该研究旨在探讨厌氧土壤的有前途的脊髓灰质土壤,以开发含有含有含有含有含有含有含有含有的高效系统。来自纺织工业和来自Musa Acuminata和Azadirachta indica的根茎区域的纺织工业和土壤样品的污水样品被筛选土着真菌,以脱色刚果红,一种致癌性重氮染料,特别是令其健康危害对社区的危害。为了开发生物处理过程,Aspergillus Terreus QMS-1固定在Luffa Cylindrica块上,并在有氧和优化的环境下在搅拌釜生物反应器中被剥削。使用UV可见分光光度计进行刚果红色脱色的定量估计。使用扫描电子显微镜评估真菌固定和生物吸附对Luffa Cylindrica天然结构的影响。 A. Terreus QMS-1可以在24小时内在100ppm的情况下在1%葡萄糖和1%硫酸铵在pH5.0下除去100ppm的染料。在模拟纺织污水中连续流动的生物反应器在连续流动中进行12小时,导致模拟纺织品流出物中的100ppm,导致97%的脱色。发现搅拌的罐体生物反应器是一种动态,良好的维护,没有污泥生产方法,用于通过A.Terreus QMS-1治疗刚果红色的显着潜在FBR脱色的纺织品污水。

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