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An Improved Method for Removal of Azo Dye Orange II from Textile Effluent Using Albumin as Sorbent

机译:一种以白蛋白为吸附剂去除纺织品废水中偶氮染料橙Ⅱ的改进方法

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Azo dyes are generally resistant to biodegradation due to their complex structures. Acid orange II is one of the most widely used dyes in the textile industry. The influence of bovine serum albumin (BSA) in different concentrations, pH, and time of contact on Orange II was investigated using kinetics and adsorption-isotherm experiments. The results showed that the maximum colour removed from dye/albumin was 99.50% and that a stable dye-protein complex had been formed at pH 3.5 and in a proportion of 1:3 (v/v), respectively. The synthetic effluent did not show toxicity to the microcrustacean Artemia salina, and showed a CL50 equal to 97 µg/mL to azo dye orange II. Additionally, the methodology was effective in removing the maximum of orange II using BSA by adsorption at pH 3.5 which mainly attracted ions to the azo dye during the adsorption process. This suggests that this form of treatment is economical and easy to use which potentially could lead to bovine serum albumin being used as a sorbent for azo dyes.
机译:偶氮染料由于其复杂的结构而通常抗生物降解。酸性橙II是纺织工业中使用最广泛的染料之一。使用动力学和吸附等温线实验研究了不同浓度,pH和接触时间的牛血清白蛋白(BSA)对Orange II的影响。结果表明,从染料/白蛋白中去除的最大颜色为99.50%,并且在pH 3.5和1:3(v / v)的比例下形成了稳定的染料-蛋白质复合物。合成废水对微甲壳类卤虫没有表现出毒性,对偶氮染料橙II的CL 50 等于97 µg / mL。此外,该方法可有效地使用BSA去除pH值3.5的吸附剂,从而最大程度地去除橙子II,在吸附过程中该离子主要将离子吸引至偶氮染料。这表明这种治疗形式是经济的并且易于使用,这可能导致牛血清白蛋白被用作偶氮染料的吸附剂。

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