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Application of manganese nodules leaching residue for adsorption of nickel(II) ions from aqueous solution

机译:锰结核浸出渣在水溶液中吸附镍离子中的应用

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摘要

Deep ocean manganese nodules are significant futuristic resource of copper, nickel and cobalt. After recovery of these valuable metals, a huge quantity of residue (similar to 70 % of ore body) is generated. In the present paper, investigations carried out for the application of washed manganese nodule leaching residue (wMNR) for the removal of nickel (Ni) ions from aqueous solution by adsorption are described. Several parameters have been varied to study the feasibility of using wMNR as potential adsorbent for remediation of Ni(II)-contaminated water. The adsorption kinetics followed pseudo-first-order equation, and the rate of adsorption increased with solution temperature. Kinetics data of Ni(II) adsorption were also discussed using diffusion models of Webber-Morris and Dumwald-Wagner models. The equilibrium data were best fitted into Langmuir adsorption isotherm, and the maximum adsorption capacity was found to be 15.15 mg g(-1) at pH 5.5 and temperature 303 K, which decreased to 10.64 mg g(-1) upon raising the solution temperature to 323 K. The activation energy for Ni(II) adsorption onto wMNR was 9.56 kJ mol(-1) indicated physical sorption. Desorption studies showed successful regeneration of adsorbent and recovery of Ni. This process can be utilized for removal and recovery of Ni from the industrial effluent.
机译:深海锰结核是铜,镍和钴的重要的未来资源。回收这些有价金属后,会产生大量残留物(约占矿体的70%)。在本文中,描述了对应用洗涤过的锰结核浸出残留物(wMNR)进行吸附吸附去除水溶液中镍(Ni)离子的研究。改变了几个参数以研究使用wMNR作为潜在吸附剂修复被Ni(II)污染的水的可行性。吸附动力学遵循拟一阶方程,吸附速率随溶液温度的升高而增加。还使用Webber-Morris和Dumwald-Wagner模型的扩散模型讨论了Ni(II)吸附的动力学数据。平衡数据最适合Langmuir吸附等温线,在pH 5.5和温度303 K时,最大吸附容量为15.15 mg g(-1),随着溶液温度的升高,最大吸附容量降至10.64 mg g(-1)。到323K。Ni(II)吸附到wMNR上的活化能为9.56 kJ mol(-1),表明物理吸附。解吸研究表明成功地再生了吸附剂并回收了镍。该过程可用于从工业废水中去除和回收镍。

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