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Decolourization of the reconstituted dye bath effluent by commercial laccase treatment: Optimization through response surface methodology

机译:通过商业漆酶处理对再生的染浴废水进行脱色:通过响应面方法进行优化

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摘要

This paper aims to study the effect of temperature, pH and enzyme concentration on decolourization of separately two reactive textile dyes (Black Novacron R and Blue Bezaktiv S-GLD 150) used in reconstituted dye bath effluent (textile dye and auxiliary components) and in aqueous dye solutions (dye dissolved in deionised water) by a commercial laccase formulation (DeniLite~R IIS). The central composite design (CCD) matrix and response surface methodology (RSM) have been applied to design experiments for the evaluation of the interactive effects of the three most important operating variables: temperature T (25-45 °C), pH (3.0-7.0), and enzyme concentration 'EC' (80-240 U/L) on the enzymatic decolourization of the different synthetic dyes solutions at initial dye concentration of 40mg/L. The RSM indicated that the optimum parameter values were respectively for the reconstituted Black Novacron R and the Blue Bezaktiv S-GLD 150 effluents: T= 43 °C and 41.44 °C, pH 6 and 6.29, EC = 222 and 226.43 U/L The maximum colour removal was about 98.9% at 593 nm and 79.9% at 400 nm for reconstituted Black Novacron R effluent and about 98.9% at 620 nm for reconstituted Blue Bezaktiv S-GLD 150 effluent. For aqueous dye solutions, RSM has shown that colour removal obtained were quite similar. However, the optimum parameters were different. Hence, enzyme concentration depends on the effluent component.
机译:本文旨在研究温度,pH和酶浓度对分别用于再生染浴废水(纺织染料和辅助组分)和水溶液中的两种活性纺织染料(Black Novacron R和Blue Bezaktiv S-GLD 150)脱色的影响。染料溶液(溶于去离子水中的染料)通过商业漆酶配方(DeniLite〜R IIS)制成。中央复合设计(CCD)矩阵和响应面方法(RSM)已用于设计实验,以评估三个最重要的操作变量的交互作用:温度T(25-45°C),pH(3.0- 7.0),以及在初始染料浓度为40mg / L时不同合成染料溶液进行酶脱色后的酶浓度'EC'(80-240 U / L)。 RSM指出最佳参数值分别是重构的Black Novacron R和Blue Bezaktiv S-GLD 150流出物:T = 43°C和41.44°C,pH 6和6.29,EC = 222和226.43 U / L。重构的黑色Novacron R流出物的最大色去除在593 nm处约为98.9%,在400 nm处为79.9%,对于重构的Blue Bezaktiv S-GLD 150流出物在620 nm处约为98.9%。对于水性染料溶液,RSM已显示获得的脱色效果非常相似。但是,最佳参数不同。因此,酶浓度取决于废水成分。

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