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首页> 外文期刊>International Biodeterioration & Biodegradation >Exploitation of yeast biomass generated as a waste product of distillery industry for remediation of textile industry effluent
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Exploitation of yeast biomass generated as a waste product of distillery industry for remediation of textile industry effluent

机译:酿酒厂废弃物中产生的酵母生物质的开发,用于纺织工业废水的修复

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The objective of the present study was to evaluate efficacy of the yeast cell biomass (YB), generated as a waste product from the distillery industry and Saccharomyces cerevisiae MTCC 463 (SC) for remediation of the textile effluent. It was found that YB could decolorize the textile effluent up to 69% of decolorization within 48 h at 30 C; whereas SC could decolorize same effluent with up to 78% of decolorization, under similar experimental conditions. The decolorization of the effluent was mediated by both, biodegradation as well as biosorption mechanisms. Next to decolorization both YB and SC were found to be efficient for biosorption of heavy metals from the effluent. Effects of various experimental parameters like, physico-chemical factors, aerobic-anaerobic conditions on decolorization rate were tested. The immobilization studies were performed by using plaster of paris (POP) as a supportive material for immobilization of YB and SC. POP immobilized cells were used for development of the continuous effluent treatment plant on the laboratory scale. Analytical studies like UV-Vis spectroscopy; TLC, FTIR, HPLC and SEM were employed to monitor the process of biodegradation and decolorization. Cytotoxicity, genotoxicity and phytotoxicity studies were performed to evaluate the toxicity of metabolites produced after decolorization of textile effluent.
机译:本研究的目的是评估作为酿酒厂和酿酒酵母MTCC 463(SC)的废品而产生的酵母细胞生物量(YB)对纺织废水的修复效果。研究发现,YB可以在30°C下48 h内使纺织品废水脱色,最高可达脱色率的69%。在相似的实验条件下,SC可使相同的废水脱色,脱色率高达78%。废水的脱色是通过生物降解和生物吸附机制介导的。除了脱色,还发现YB和SC均可有效地吸附废水中的重金属。测试了各种实验参数,如理化因子,好氧厌氧条件对脱色率的影响。通过使用巴黎石膏(POP)作为YB和SC固定化的支持材料进行固定化研究。固定化POP的细胞用于实验室规模的连续污水处理厂的开发。分析研究,例如紫外-可见光谱;薄层色谱,红外光谱,高效液相色谱和扫描电镜被用来监测生物降解和脱色的过程。进行了细胞毒性,遗传毒性和植物毒性研究,以评估纺织品废水脱色后产生的代谢产物的毒性。

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