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首页> 外文期刊>Hydrometallurgy >Conversion of chalcopyrite to copper oxide in hypochlorite solution for selective leaching of copper in dilute sulfuric acid solution
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Conversion of chalcopyrite to copper oxide in hypochlorite solution for selective leaching of copper in dilute sulfuric acid solution

机译:氯酸盐溶液中铜氧化铜氧化铜氧化铜的转化铜中稀硫酸溶液中的选择性浸出

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摘要

In the present study, development of a novel oxidation route to convert chalcopyrite to tenorite for leaching of copper has been described. Initially chalcopyrite was converted into tenorite/copper oxide (CuO) under alkaline region using electro-generated chlorine as an oxidant. Various process parameters such as chlorine sparging rate, temperature, and reaction time were investigated. It was found that 93.8% chalcopyrite converted to tenorite at 60 degrees C in 300 min when chlorine sparging rate was 0.69 mmol min(-1) while, maintaining the pulp density of 10 g/ L and pH of the solution between 11 - 12.7 using dilute sodium hydroxide solution. The oxidized sample containing tenorite phase was leached in dilute sulfuric acid solution at 30 degrees C and 10 g/L pulp density for 60 min. It was observed that pH of the solution plays a crucial role to enhance the selective recovery of copper. Almost 88% of copper along with 43.1% iron were leached out when pH of the leaching solution was varied between 0.9 - 1.2. However, negligible dissolution of iron with almost same percentage of copper leaching (88.2%) was observed with the solution having pH 2.7 - 3.2. Enhanced copper leaching efficiency of up to 99.3% was achieved in the same pH range (2.7 - 3.2) at 60 degrees C within 30 min.
机译:在本研究中,已经描述了开发新的氧化途径以将核黄素转化为铜浸出的金属铜矿。最初使用电生氯作为氧化剂在碱性区域下转化硫铜矿。研究了各种工艺参数,例如氯喷射率,温度和反应时间。发现93.8%的氯气二氯气铜矿在氯喷射率为0.69mmol min(-1)时,在300分钟内在300分钟内转化为100分钟,同时保持10g / L的纸浆密度和11-12.7之间的溶液的pH值稀氢氧化钠溶液。将含有金属相的氧化样品在稀硫酸溶液中以30℃和10g / L纸浆密度浸出60分钟。观察到溶液的pH值起到提高铜的选择性恢复的关键作用。当浸出溶液的pH在0.9-1.2之间变化时,近88%的铜以及43.1%的铁被浸出。然而,通过具有pH 2.7-3.2的溶液,观察到具有几乎相同含量的铜浸出百分比(88.2%)的可忽略不计的铁溶解。增强型铜浸出效率高达99.3%在30分钟内在60℃的相同pH范围(2.7-3.2)中实现。

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