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E-pH diagrams for the metal-water system at 150 degrees C: Thermodynamic analysis and application for extraction and separation of target metals from saprolitic laterite

机译:150摄氏度金属水系统的E-pH图:热力学分析和腹腔内靶金属的提取和分离的应用

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Hydrometallurgical processes of laterite ores mainly occur in the aqueous solution of acid, alkali or salt. The ionization of water and change of pH are of great importance during the extraction and separation of target components. Based on the empirical equations of potential (E), pH and ionic activity terms of various species, the thermodynamics of metal-water system is summarized in the form of potential-pH (E-pH) diagrams. In the Ni + Co + Mg-H2O potential-pH diagram, the predominant area of Ni2+, Co2+, and Mg2+ is contained in the region soluble Co2+ as the pH lower than 3.8 and potential higher than - 0.2 V. After superimposing the Fe-H2O potential diagram, the stable area of Ni2+, Co2+, Mg2+ and Fe2O3 is critical. The thermodynamic calculation results indicate that the extracting of Ni, Co and Mg is easy and the separation of Fe can be achieved by controlling final pH of nitric acid pressure leaching. The experiments of nitric acid pressure leaching display that more than 95% Ni and Mg and nearly 90% Co can be extracted and more than 98% Fe is separated into leach residue at initial nitric acid concentration of 120 g/L and a final pH of 0.8; leaching temperature of 150 degrees C; leaching time of 60 min and liquid to solid ratio of 4-8 ml/g. A new flow-sheet is proposed to treat saprolitic laterite, and target components are recovered efficiently. The experimental results are in agreement with the results of the thermodynamic calculation. The process is environmentally friendly and has high economic efficiency, which can provide possibilities for commercial application of saprolitic laterite by hydrometallurgical processes.
机译:红土矿石的液压冶金方法主要发生在酸,碱或盐的水溶液中。在靶分成分的提取和分离期间,水的电离和pH的变化非常重要。基于各种物种的潜在(e),pH和离子活动术语的经验方程,金属水系统的热力学以潜在-PH(E-pH)图的形式总结。在Ni + Co + Mg-H 2 O电位-P pHA图中,Ni2 +,CO 2 +和Mg2 +的主要面积包含在区域可溶性CO 2 +中,作为低于3.8的pH,叠加FE - 0.2V。 H2O电位图,Ni2 +,CO2 +,Mg2 +和Fe2O3的稳定区域至关重要。热力学计算结果表明,通过控制硝酸压力浸出的最终pH,可以通过控制硝酸压力浸出的最终pH来实现Ni,Co和Mg的提取,并且可以实现Fe的分离。硝酸压力浸出显示器的实验显示,可以提取95%的Ni和Mg和近90%的CO,并且在初始硝酸浓度为120克/升和最终pH值下分离成98%Fe。 0.8;浸出温度为150℃;浸出时间60分钟,液体为4-8ml / g。提出了一种新的流动片以治疗Saprogitic XDITE,并且有效地回收靶分组分。实验结果与热力学计算的结果一致。该过程是环保的,经济效率高,可以通过液压冶金工艺提供Saprolitic Wideinte商业应用的可能性。

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