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不同萃取體系分離微生物浸出液中低含量鎳鈷

Separating low-content nickel and cobalt in bioleaching solution by different extraction systems

  • 摘要: 采用P507一Cyanex272混合萃取體系分離微生物浸出液中的鎳鈷,實驗結果表明該體系具有較好的協萃效應.結合低含量鎳鈷的微生物浸出液體系高酸度、低鈷鎳比的特點,對比了P507、Cyanex272和P507-Cyanex272三種萃取體系對鎳鈷的萃取分離效果,確定了在初始pH值1.5~2.2、對應的平衡pH值4.00~5.25條件下P507-Cyanex272協萃體系有較好的鎳鈷分離效果.系統考察了室溫28℃下協萃體系各影響因素對鎳鈷分離的影響,確定協同萃取的最佳工藝為:P507與Cyanex272摩爾比3:2,皂化率60%,萃取劑體積分數10%,有機相(由萃取劑與煤油組成)和水相體積比1:4.在此條件下鉆的一級萃取率為99.16%,鎳鉆分離系數為932.59.

     

    Abstract: Separation of nickel and cobalt from bioleaching solution was studied using a synergistic extraction system of P507 and Cyanex272. Test results indicate that the system has a better extraction effect. Combined with the system characteristic of high acidity and low cobalt-to-nickel ratio, the separation effect of nickel and cobalt was compared in three extraction systems of P507, Cyanex272, and P507-Cyanex272. P507-Cyanex272 was identified to have a good separation effect of nickel and cobalt at the initial pH value of 1.5 to 2.2 and the balance pH value of 4.00 to 5.25. Influence factors on separation of nickel and cobalt in the extraction system at 28℃ were examined systematically, and the best processes for this synergistic extraction are the P507/Cyanex272 mole ratio of 3:2, the saponification rate of 60%, the extractant volume fraction of 10%, and the organic to aqueous phase ratio of 1:4. Under these conditions, the first extraction rate of cobalt is 99.16%, and the separation factor of nickel and cobalt is 932.59.

     

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