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Adsorption of Nickel(ll) and Cobalt(ll) Ions and Application of Surface Complex Formation Model to Ion Exchange Equilibria

机译:镍和钴离子的吸附及表面复合物形成模型在离子交换平衡中的应用

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Process effluents containing Co~(2+) and Ni~(2+) are often encountered in chemical process industries. Their major sources are hydrometallurgy, surface treatment, and galvanizing industries, as well as wastes from the production of batteries and sludge/wastes/scrap/dust of spent catalysts. Release of large quantities of these heavy metals into the natural environment has resulted in a number of environmental problems. Therefore, removal of these metals with some cation exchange separation has been investigated. Investigations were carried out using the strongly acidic cation exchange resins Amberlite IR 120, Amberjet 1200, Amberlite 200, and Amber-lite 252 ZU. Experiments focused on the measurement of exchange equilibria of Co~(2+) and Ni~(2+) for H~+. Since the state of equilibrium is mainly dominated by the pH of the liquid phase, the initial pH value was varied in each series of samples. For evaluation of equilibrium parameters the surface complexation theory was applied and the generalized separation factors determined from the results. The experiments demonstrated that Ni~(2+) ions were more efficiently adsorbed than Co~(2+) ions by the strongly acidic ion exchange resins.
机译:在化学过程工业中经常遇到含有Co〜(2+)和Ni〜(2+)的工艺废水。它们的主要来源是湿法冶金,表面处理和镀锌工业,以及电池生产中产生的废物以及废催化剂的污泥/废物/废料/粉尘。大量这些重金属释放到自然环境中导致了许多环境问题。因此,已经研究了通过一些阳离子交换分离除去这些金属。使用强酸性阳离子交换树脂Amberlite IR 120,Amberjet 1200,Amberlite 200和Amber-lite 252 ZU进行了研究。实验的重点是测量Co〜(2+)和Ni〜(2+)与H〜+的交换平衡。由于平衡状态主要由液相的pH值决定,因此在每个系列的样品中初始pH值都不同。为了评估平衡参数,应用了表面络合理论,并根据结果确定了广义分离因子。实验证明,强酸性离子交换树脂比Co〜(2+)离子更有效地吸附Ni〜(2+)离子。

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