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Selective extraction and separation of metal values from leach liquor of mixed spent Li-ion batteries

机译:从混合废锂离子电池浸出液中选择性萃取和分离金属价值

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This work describes the extraction and separation of Mn(II), Co(II), Ni(II) and Li(l) from the leach liquor of mixed lithium ion batteries using 0.04 M Na-CYANEX272. Before the extraction step, elimination of some impurities such as Fe(III), Cu(II) and Al (III) was carried out by 20% Acorga M5640 in kerosene with agitation for 5 min at 30 degrees C at equal phase ratio of unity. The effects of the different parameters affecting the extraction rate, such as mixing time, pH, extractant concentration and temperature, were separately investigated. The obtained results indicate that the extraction behavior of the investigated metal ions depends on the pH value, where 91.2% Mn(II), 89.3% Co(II) and 95.6% Ni(II) were extracted at pH 3.5, 5.0 and 8.0, respectively, while the extraction of Li(l) was almost constant regardless of the pH value. Mn(II), Co(II) and Ni(II) were extracted in the organic phase as (MA(2)center dot 3HA)((org)) while Li(I) was extracted as (MA center dot 2HA)((org)). The thermodynamic parameters were calculated by applying Van't Hoff equations. A complete stripping and precipitation from the organic and aqueous phases could be achieved with different stripping and precipitating agents. Precipitates of Mn(II), Ni(II) and Li(l) with purity > 99% could be obtained under the investigated conditions. (C) 2015 Taiwan Institute of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:这项工作描述了使用0.04 M Na-CYANEX272从混合锂离子电池浸出液中萃取和分离Mn(II),Co(II),Ni(II)和Li(l)。在萃取步骤之前,通过在煤油中使用20%Acorga M5640在30°C下以等比例的单位体积比搅拌5分钟,消除一些杂质,例如Fe(III),Cu(II)和Al(III)。 。分别研究了混合时间,pH,萃取剂浓度和温度等不同参数对萃取速率的影响。所得结果表明,所研究金属离子的萃取行为取决于pH值,其中在pH 3.5、5.0和8.0时分别萃取了91.2%的Mn(II),89.3%的Co(II)和95.6%的Ni(II), Li(1)的萃取几乎恒定,而与pH值无关。 Mn(II),Co(II)和Ni(II)在有机相中以(MA(2)中心点3HA)((org))的形式提取,而Li(I)在(Morg中心点2HA)( (org))。通过应用Van't Hoff方程计算热力学参数。用不同的汽提和沉淀剂可以实现从有机相和水相的完全汽提和沉淀。在所研究的条件下,可以获得纯度> 99%的Mn(II),Ni(II)和Li(l)沉淀。 (C)2015台湾化学工程师学会。由Elsevier B.V.发布。保留所有权利。

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