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Remazol Black B removal from aqueous solutions and wastewater using weakly basic anion exchange resins

机译:使用弱碱性阴离子交换树脂从水溶液和废水中去除Remazol Black B

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In this study, the use of the weakly basic anion exchange resins of phenol-formaldehyde (Amberlyst A 23), polyacrylate (Amberlite IRA 67) and polystyrene (Lewatit MonoPlus MP 62) matrices for removal of the reactive dye Remazol Black B (RBB) from aqueous solution and wastewater were investigated. RBB sorption on the anion exchangers was a time dependent process. Color reduction percentiles of 75.2, 33.9 and 25.1% in wastewater treatment were found after 216 h of phase contact time with Lewatit MonoPlus MP 62, Amberlyst A 23 and Amberlite IRA 67, respectively. Inorganic salts and anionic surfactant action influenced RBB uptake by the anion exchangers. The amounts of dye retained by the anion exchangers increased with a rise in temperature. The maximum sorption capacities calculated from the Langmuir model were 66.4, 282.1 and 796.1 mg g?1 for Amberlite IRA 67, Amberlyst A 23 and Lewatit MonoPlus MP 62, respectively. Regeneration of phenol-formaldehyde and polystyrene resins were possible using 1 M NaOH, 2 M KSCN, 1M KSCN in 40–60% methanol as well as 1 M NaOH in 60% methanol.
机译:在这项研究中,使用酚醛甲醛(Amberlyst A 23),聚丙烯酸酯(Amberlite IRA 67)和聚苯乙烯(Lewatit MonoPlus MP 62)基质的弱碱性阴离子交换树脂去除活性染料Remazol Black B(RBB)从水溶液和废水中进行了调查。 RBB在阴离子交换剂上的吸附是一个与时间有关的过程。在与Lewatit MonoPlus MP 62,Amberlyst A 23和Amberlite IRA 67分别相接触216小时后,发现废水处理中的颜色还原百分位数分别为75.2、33.9和25.1%。无机盐和阴离子表面活性剂的作用会影响阴离子交换剂对RBB的吸收。阴离子交换剂保留的染料量随温度的升高而增加。由Langmuir模型计算出的Amberlite IRA 67,Amberlyst A 23和Lewatit MonoPlus MP 62的最大吸附容量分别为66.4、282.1和796.1 mg g?1。可以在40-60%甲醇中使用1 M NaOH,2 M KSCN,1M KSCN以及在60%甲醇中使用1 M NaOH再生酚醛和聚苯乙烯树脂。

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