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首页> 外文期刊>Chemistry and Ecology >Effective removal of Cobalt(II) ions from aqueous solutions and nuclear industry wastewater using sulfhydryl and carboxyl functionalised magnetite nanocellulose composite: batch adsorption studies
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Effective removal of Cobalt(II) ions from aqueous solutions and nuclear industry wastewater using sulfhydryl and carboxyl functionalised magnetite nanocellulose composite: batch adsorption studies

机译:使用巯基和羧基官能化磁铁矿纳米纤维素复合材料有效除去水溶液和核工业废水中的钴(II)离子:分批吸附研究

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摘要

A new adsorbent sulfhydryl and carboxyl functionalized magnetite nanocellulose composite [(MB-IA)-g-MNCC] was synthesized by graft co-polymerization of itaconic acid onto magnetite nanocellulose (MNCC) using EGDMA as cross linking agent and K2S2O8 as free radical initiator. The adsorption occurs maximum in the pH 6.5. The best fitted kinetic model was found to be pseudo-second-order kinetics. Therefore the mechanism of Co(II) adsorption onto (MB-IA)-g-MNCC follows ion exchange followed by complexation. The Langmuir model was the best fitted isotherm model for the adsorption of Co(II) onto the (MB-IA)-g-MNCC. Simulated nuclear power plant coolant water samples were also treated with (MB-IA)-g-MNCC to demonstrate its efficiency for the removal of Co(II) from aqueous solutions in the presence of other metal ions. To recover the adsorbed Co(II) ions and also to regenerate the adsorbent to its original state 0.1 M HCl was used as suitable desorbing agent. Six cycles of adsorption-desorption experiments were conducted and was found that adsorption capacity of (MB-IA)-g-MNCC has been decreased from 97.5% in the first cycle to 84.7% in the sixth cycle. Recovery of Co(II) using 0.1 M HCl decreased from 93.2% in the first cycle to 79.3% in the sixth cycle.
机译:通过衣康酸与磁铁矿纳米纤维素(MNCC)的接枝共聚在磁铁矿纳米纤维素(MNCC)中,通过EGDMA作为自由基引发剂,通过衣康酸与磁铁矿纳米纤维素(MNCC)的接枝共聚合成新的吸附剂巯基和羧基官能化纳米纤维素复合物[(MB-IA)-G-MNCC]。在pH6.5中,吸附最大。发现最好的动力学模型是伪二阶动力学。因此,CO(II)吸附到(MB-IA)-G-MNCC上的机制遵循离子交换,然后络合。 Langmuir模型是最适合于(II)的最佳拟合等温模型,如(MB-IA)-G-MNCC。模拟核电厂冷却剂水样也用(MB-IA)-G-MNCC处理,以证明其在其他金属离子存在下从水溶液中除去CO(II)的效率。为了回收吸附的CO(II)离子,也将吸附剂再生成其原始状态0.1M HCl作为合适的解吸剂。进行了六次吸附 - 解吸实验,发现(MB-IA)-G-MNCC的吸附能力从第六循环中的第一个循环中的97.5%降低至84.7%。使用0.1M HCl的CO(II)的回收率从第六循环中的第一个循环中的93.2%降低至79.3%。

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