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首页> 外文期刊>Journal of Basic Microbiology: An International Journal on Morphology, Physiology, Genetics, and Ecology of Microorganisms >Application of response surface analysis for biodegradation of azo reactive textile dye using Aspergillus foetidus
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Application of response surface analysis for biodegradation of azo reactive textile dye using Aspergillus foetidus

机译:响应面分析在臭曲霉生物降解偶氮活性染料中的应用。

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This paper reports the application of experimental design methodology for the optimization of decolourization of azo reactive textile dye Remazol Red RR and reduction of chemical oxygen demand (COD) using fungal isolate Aspergillus foetidus. Response surface methodology (RSM), involving central composite design matrix in three most important input variables; temperature, pH and initial dye concentration was employed. A total of 20 experiments were conducted in the study towards the construction of a quadratic model. This demonstrated the benefits of approach in achieving excellent predictions, while minimizing the number of experiments required. Very high regression coefficient between the variables and the responses indicated excellent evaluation of experimental data. Under optimized conditions fungal isolate was capable to decolourize Remazol Red RR up to 86.21% and COD reduction up to 55.43% was achieved during the experimental setup. Enzymatic activity indicated excellent outcome under the optimal process conditions. The experimental values agreed with the predicted ones, indicating suitability of the model and success of RSM approach in optimizing the process.
机译:本文报道了实验设计方法学在使用真菌分离物Aspergillus foetidus优化偶氮活性纺织染料Remazol Red RR脱色和降低化学需氧量(COD)中的应用。响应面方法(RSM),涉及三个最重要的输入变量的中央复合设计矩阵;使用温度,pH和初始染料浓度。在研究中总共进行了20个实验,以构建二次模型。这证明了该方法在实现出色的预测的同时最大程度地减少了所需实验的数量。变量和响应之间的回归系数非常高,表明对实验数据进行了出色的评估。在优化的条件下,真菌分离物能够在实验装置中使Remazol Red RR脱色高达86.21%,COD降低高达55.43%。酶活性表明在最佳工艺条件下的优异结果。实验值与预测值一致,表明该模型的适用性以及RSM方法在优化过程中的成功。

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