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首页> 外文期刊>Journal of environmental sciences >Insight into selective removal of copper from high-concentration nickel solutions with XPS and DFT: New technique to prepare 5N-nickel with chelating resin
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Insight into selective removal of copper from high-concentration nickel solutions with XPS and DFT: New technique to prepare 5N-nickel with chelating resin

机译:用XPS和DFT选择性去除高浓度镍溶液中的铜的见解:用螯合树脂制备5N镍的新技术

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摘要

An efficient and profitable separation process was proposed to prepare 5N (the purity of the metal solution reaches 99.999%) high-purity nickel from 3N nickel-solutions using Purolite S984. The adsorption performance of this superior resin, especially its selectivity for metal ions, was explored quantitatively. The maximum adsorption capacity for copper was 2.286 mmol/g calculated by the Langmuir model, which was twice as large as that for nickel. In the binary systems, the adsorption capacity for nickel was decreased by 45%, indicating direct competition for the active sites. The infinite separation factor for copper versus nickel exceeded 300, revealing the feasibility of preparing 5N-level high-purity nickel solutions, which was further verified using the 800 BV (bed volume) effluent in the column dynamic process. According to the cost-benefit analysis, purification contributed to a profit of approximately 60,000 USD per cycle, and the investment return period was less than 1/3 years. Density functional theory analysis confirmed that four nitrogen atoms would be involved in the coordination complex and thus a structure involving two five-membered rings could be achieved. The X-ray photoelectron spectra confirmed the involvement of nitrogen atoms, implying a coordination ratio of approximately 1:1. (C) 2016 The Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences. Published by Elsevier B.V.
机译:提出了一种有效且有利可图的分离工艺,使用Purolite S984从3N镍溶液中制备5N(金属溶液的纯度达到99.999%)高纯度镍。定量研究了这种高级树脂的吸附性能,尤其是其对金属离子的选择性。根据Langmuir模型计算,对铜的最大吸附容量为2.286 mmol / g,是镍的两倍。在二元体系中,镍的吸附能力降低了45%,表明对活性位的直接竞争。铜与镍的无限分离系数超过300,这表明制备5N级高纯度镍溶液的可行性,并在色谱柱动态过程中使用800 BV(床体积)流出物进一步证实了这一点。根据成本效益分析,每周期净化带来的利润约为60,000美元,投资回收期不到1/3年。密度泛函理论分析证实,四个氮原子将参与配位络合物,因此可实现包含两个五元环的结构。 X射线光电子能谱证实了氮原子的参与,这意味着配位比约为1:1。 (C)2016中国科学院生态环境研究中心。由Elsevier B.V.发布

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