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Preparation of an As(V) solution for scorodite synthesis and a proposal for an integrated As fixation process in a Zn refinery

机译:用于臭葱石合成的As(V)溶液的制备以及Zn精炼厂集成As固定工艺的建议

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A method for producing an As(V) solution from an As-bearing material obtained from a nonferrous hydrometallurgical process was investigated. Preparation of the As(V) solution included oxidative leaching of As with a NaOH solution, elimination of As as a calcium arsenate precipitate (johnbaumite: Ca_5(AsO_4)_3(OH)) with a Ca(OH)_2 secondary salt, washing the Ca-As compounds, and reaction of the Ca-As precipitate with H_2SO_4. This process was shown to be industrially applicable. The As ions and Cu ions were effectively separated by oxidative leaching with O_2 gas injection under strongly basic conditions. In this system, As dissolved in the NaOH solution and Cu precipitated with the residue. The dissolved As in this highly concentrated NaOH solution was then effectively precipitated from the solution by addition of a surplus amount of CaO, which allowed recycling of the NaOH solution. The addition of surplus Ca precipitated Ca_5 (AsO_4)_3(OH) and Ca(OH)_2, which inhibited the leaching of As but did leach Ca and Na. When the Ca-As compounds were dissolved with H_2SO_4, Ca ions precipitated in the form of gypsum from the As-bearing solution. The gypsum produced by this process is likely to give rise to a number of As-related issues and the As level, therefore, needs to be reduced. This process is advantageous for the treatment of As since it is stabilized as scorodite. The production of an As(V) solution could be applied to hydrometallurgical operations as it necessary for the removal of As. This process is shown to be practically useful to As removal in Zn refining and a closed flow circuit is proposed for integration of this process into a Zn hydrometallurgical operation.
机译:研究了一种由有色湿法冶金工艺获得的含砷材料生产As(V)溶液的方法。 As(V)溶液的制备包括用NaOH溶液氧化浸出As,用砷酸Ca(OH)_2除去砷酸钙沉淀的砷酸(johnbaumite:Ca_5(AsO_4)_3(OH)),洗涤Ca-As化合物,以及Ca-As与H_2SO_4的沉淀反应。已证明该方法在工业上是适用的。在强碱性条件下,通过O_2注气氧化浸出有效分离了As离子和Cu离子。在该系统中,As溶解在NaOH溶液中,Cu随残留物沉淀。然后,通过添加过量的CaO,可以有效地从溶液中沉淀出溶解在这种高浓度NaOH溶液中的As,从而可以回收NaOH溶液。多余的钙的添加使Ca_5(AsO_4)_3(OH)和Ca(OH)_2沉淀,这抑制了As的浸出,但浸出了Ca和Na。当Ca-As化合物与H_2SO_4溶解时,Ca离子以石膏的形式从含As的溶液中沉淀出来。通过该方法生产的石膏可能会引起许多与砷有关的问题,因此需要降低砷含量。该方法对As的处理是有利的,因为它被稳定为臭葱石。 As(V)溶液的生产可用于除去As所必需的湿法冶金操作。已表明该方法对于去除锌精炼中的砷实际上是有用的,并且提出了一种闭合流回路以将该方法集成到锌湿法冶金操作中。

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