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Effects of zinc, copper and sodium ions on ferric arsenate precipitation in a novel atmospheric scorodite process

机译:新型臭葱石工艺中锌,铜和钠离子对砷酸铁沉淀的影响

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摘要

A novel process has been developed for the fixation of arsenic using the formation of scorodite. Stable scorodite particles were produced by introducing an oxidizing gas into a reaction mixture containing ferrous sulfate and arsenic(V) at high concentration to convert the ferrous ion to ferric ion. This approach to scorodite synthesis enabled the reaction to proceed in the presence of sulfuric acid under atmospheric pressure. The influence of zinc, copper, and sodium ions in the solution was investigated; as well as the effect of pure O_2 gas and air as the oxidizing agent and the effect of arsenic concentration and pH of the reaction mixture. Scorodite grains were precipitated even though the reaction system contained co-existing ions at high concentration. It was found that zinc did not affect the synthesis and that the presence of copper yielded a good scorodite product. However, the presence of sodium inhibited the formation of scorodite. An initial pH under 2 was significant for producing well-crystallized scorodite and avoiding conditions favorable for jarosite formation.
机译:已经开发出一种新方法,用于通过臭葱石的形成来固定砷。通过向高浓度的硫酸亚铁和砷(V)的反应混合物中通入氧化性气体,将亚铁离子转化为铁离子,可制得稳定的臭葱石粒子。这种臭葱石合成方法使反应能够在大气压下在硫酸存在下进行。研究了溶液中锌,铜和钠离子的影响;以及纯O_2气体和空气作为氧化剂的影响以及砷浓度和反应混合物的pH的影响。即使反应系统包含高浓度的共存离子,也会沉淀出臭葱石晶粒。发现锌不影响合成,并且铜的存在产生良好的臭葱石产物。但是,钠的存在抑制臭葱石的形成。初始pH值低于2对于产生结晶良好的臭葱石和避免有利于黄铁矿形成的条件具有重要意义。

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