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Design of experiment for treatment of arsenic-contaminated water using Schiff's base metal complex modified Amberlite XAD-2

机译:用席夫氏贱金属配合物改性Amberlite XAD-2处理砷污染水的实验设计

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摘要

The present study aims to develop a method using multivariate design of experiment approach for the treatment of arsenic-contaminated water. A newly synthesized resin i.e. Amberlite XAD-2 modified with Schiff's base-iron complex is used as a solid surface for the removal optimization. The Schiff's base was synthesized by simple condensation reaction and its Fe(III) complex was prepared by refluxing Fe(III) salt with methanolic solution of Schiff's base. XAD-2 was impregnated with Fe(III)-Schiff's base complex, and FTIR spectroscopy was used to characterize the complex. Individual and interactive effects of pH, time, concentration, and sorbent amount on removal of arsenic were studied using factorial design approach. A face-centered Draper-Lin composite design predicted 100% removal efficiency at optimum variables; pH 5.5, concentration of arsenic 10mgL(-1), sorbent amount 57mg, and shaking time 160min. A good agreement between experimental and predicted data was observed. Langmuir and Frendlich sorption isotherms showed the validity of model with the sorption capacity of 227 mu mol(-1)g and 85.9mmolg(-1), respectively. Sorption energy calculated from D-R adsorption isotherm was 12kJmol(-1) and corresponded to the possible ion exchange nature of the sorption process. The kinetics of removal of arsenic has also been investigated.
机译:本研究旨在开发一种使用实验方法的多变量设计来处理砷污染水的方法。一种新合成的树脂,即用席夫的基础铁配合物改性的Amberlite XAD-2,被用作固体表面来优化去除效果。通过简单的缩合反应合成席夫碱,并通过席夫碱的甲醇溶液回流铁(III)盐来制备其铁(III)配合物。 XAD-2浸渍有Fe(III)-Schiff碱配合物,并使用FTIR光谱表征了该配合物。使用析因设计方法研究了pH,时间,浓度和吸附剂量对砷去除的单独和交互作用。以面部为中心的Draper-Lin复合设计预计在最佳变量下的去除效率为100%; pH值为5.5,砷的浓度为10mgL(-1),吸附剂的量为57mg,振摇时间为160min。观察到实验数据和预测数据之间的良好一致性。 Langmuir和Frendlich的吸附等温线显示模型的有效性,吸附容量分别为227μmol(-1)g和85.9mmolg(-1)。由D-R吸附等温线计算的吸附能量为12kJmol(-1),与吸附过程的可能离子交换性质相对应。还研究了去除砷的动力学。

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