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Biosorption of Nickel and Copper from aMixed Metals Solution Using Chitosan Derivedfrom Crabs

机译:螃蟹衍生的壳聚糖对混合金属溶液中镍和铜的生物吸附

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Aims: To ascertain the adsorptive potentials of chitosan derived from crab shell for the removal of copper and nickel from mixed metals solution in order to evaluate the competition of different metallic ions for the chelation sites of chitosan.Study Design: Multifactorial design.Place and Duration of Study: Chemistry department, The Federal University of Technology, Akure, Ondo State, Nigeria between April 2011 and December 2012.Methodology: Chitosan was derived from crab shells through deacetylation process using 50% NaOH. The obtained chitosan was characterized by FTIR and used for removal of nickel and copper from aqueous mixture. Adsorption parameters such as pH, contact time, metal concentration, adsorbent dosage and temperature were investigated. Results: It was observed that optimum pH for the adsorption of both nickel and copper was 5 while maximum adsorption for both metals was achieved within 120 minutes. Evaluation of the effect of temperature on adsorption showed that metal removal decreased with increase in temperature since the adsorption process was exothermic (negative ΔHo). Isotherm studies showed that the adsorption process obeyed Freundlich model with high R2 values. Conclusion: Crab shell derived chitosan effectively removed copper and nickel ions from a mixed metals solution. The removal processes followed second order kinetic model and the sorption capacity was high for both metals.
机译:目的:确定壳蟹壳聚糖对混合金属溶液中铜和镍的吸附能力,以评价不同金属离子对壳聚糖螯合位点的竞争研究设计:多因素设计,位置和持续时间研究方向:2011年4月至2012年12月,尼日利亚翁多州阿库雷市联邦技术大学化学系。方法:壳聚糖是使用50%NaOH通过脱乙酰过程从蟹壳中提取得到的。通过FTIR对获得的壳聚糖进行表征,并将其用于从水性混合物中去除镍和铜。研究了pH,接触时间,金属浓度,吸附剂量和温度等吸附参数。结果:观察到镍和铜的最佳吸附pH均为5,而两种金属的最大吸附均在120分钟内达到。评价温度对吸附的影响表明,由于吸附过程放热(ΔHo为负),金属去除量随温度的升高而降低。等温线研究表明,吸附过程遵循具有高R2值的Freundlich模型。结论:蟹壳衍生的壳聚糖可有效地从混合金属溶液中去除铜和镍离子。去除过程遵循二阶动力学模型,两种金属的吸附能力均很高。

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