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A comparative investigation on removal performances of commercial activated carbon, chitosan biosorbent and chitosan/activated carbon composite for cadmium

机译:商用活性炭,壳聚糖生物吸附剂和壳聚糖/活性炭复合材料对镉的去除性能比较研究

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In this work, the removal of cadmium ions from dilute aqueous solution by adsorption on commercial activated carbon, chitosan biosorbent and chitosan/activated carbon composite were investigated Adsorption studies were performed in a batch system, and the effects of various experimental parameters such as solution pH, particle size and dose of adsorbent were evaluated. According to the results, the optimum operating conditions for cadmium removal by commercial activated carbon, chitosan and chitosan/ activated carbon composite were pH = 6, particle size of adsorbent = 0.425 mm and adsorbent dose = 6 g/ L. The ANOVA tables indicate that the pH solution is the most significant removal parameter. Under these optimum operating conditions, 100% of cadmium was removed by commercial activated carbon, chitosan and chitosan/activated carbon composite after 2 h. The equilibrium adsorption data were well described by the Freundlich model for activated carbon and Langmuir model for chitosan and chitosan/activated carbon composite. The maximum adsorption capacities of activated carbon, chitosan and chitosan/activated carbon composite were 10.3 mg/g, l0mg/g and 52.63 mg/g, respectively. It was observed that the adsorption kinetics of cadmium on these adsorbents could be well analyzed with pseudo-second-order model.
机译:在这项工作中,研究了通过在商用活性炭,壳聚糖生物吸附剂和壳聚糖/活性炭复合材料上吸附来从稀水溶液中去除镉离子的方法,并在间歇系统中进行了吸附研究,并考察了溶液pH值等各种实验参数的影响。评估了吸附剂的粒径和剂量。根据结果​​,商用活性炭,壳聚糖和壳聚糖/活性炭复合材料去除镉的最佳操作条件为pH = 6,吸附剂粒径= 0.425 mm和吸附剂剂量= 6 g /L。ANOVA表显示pH溶液是最重要的去除参数。在这些最佳操作条件下,2小时后通过商业活性炭,壳聚糖和壳聚糖/活性炭复合材料去除了100%的镉。平衡吸附数据通过活性炭的Freundlich模型和壳聚糖和壳聚糖/活性炭复合物的Langmuir模型很好地描述。活性炭,壳聚糖和壳聚糖/活性炭复合材料的最大吸附容量分别为10.3 mg / g,10 mg / g和52.63 mg / g。可以看出,利用伪二级模型可以很好地分析镉在这些吸附剂上的吸附动力学。

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