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Removal of reactive dyes from aqueous solutions using combined coagulation/flocculation and adsorption on activated carbon

机译:使用混凝/絮凝和吸附在活性炭上的方法从水溶液中去除活性染料

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The removal of two reactive dyes (Black 5 and Orange 16) was investigated. The objective of this study was to investigate the removal of reactive dyes through a combined treatment process with coagulation/adsorption on activated carbon. Activated carbon derived from coconut shells Was used as the adsorbent and aluminum chloride was used as the coagulant. In order to obtain the best conditions for the removal of the dyes, the influence of the following parameters was verified: coagulant and alkalizer dosage, aqueous solution pH, temperature of the mixture and salt addition (sodium chloride). Spectrophotometry was the analysis technique used to measure the concentration of dye remaining in the fluid phase. The results for the adsorption of the reactive dyes were fitted to the models of the Langmuir, Freundlich and Radke-Prausnitz isotherms and showed good correlation. The removal efficiencies were approximately 90% and 84% for the Black 5 and Orange 16, respectively. In order to evaluate the final effluent obtained after the coagulation and adsorption process, acute toxicity tests were carried out with Artemia salina and Daphnia magna, which verified that the effluent was atoxic. The combined coagulation/adsorption process was shown to be an excellent option for the removal of reactive dyes.
机译:研究了两种活性染料(黑色5和橙色16)的去除。这项研究的目的是研究通过结合处理过程以及在活性炭上的凝聚/吸附来去除活性染料。椰子壳衍生的活性炭用作吸附剂,氯化铝用作凝结剂。为了获得去除染料的最佳条件,验证了以下参数的影响:凝结剂和碱化剂的用量,水溶液的pH值,混合物的温度和加盐(氯化钠)。分光光度法是用于测量残留在液相中的染料浓度的分析技术。活性染料的吸附结果与Langmuir,Freundlich和Radke-Prausnitz等温线的模型拟合,并显示出良好的相关性。黑色5和橙色16的去除效率分别约为90%和84%。为了评估凝结和吸附过程后获得的最终废水,对卤虫和大水蚤进行了急性毒性试验,证明了废水是无毒的。结合的凝结/吸附过程被证明是去除活性染料的绝佳选择。

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