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Optimisation of nickel extraction from laterite ores by high pressure acid leaching with addition of sodium sulphate

机译:通过添加硫酸钠进行高压酸浸优化从红土矿石中提取镍的工艺

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Extraction of nickel from Western Australian laterite ores via sulphuric acid leaching at 250 deg C has been optimised by the addition of sodium sulphate. Leaching of a nontronitic nickel laterite ore in fresh water, with a sulphuric acid loading of 420 kg/t ore extracted 93 percent of nickel from the ore. When limonitic nickel laterite ore was leached in fresh water with an acid loading of 310 kg/t ore. 92 percent of the total nickel was extracted. The nickel extractions were optimised at 96 percent for the nontronitic ore and 95 percent for the limonitic ore, at the above acid loadings, when process water sodium ion levels were increased to 4 g/L and 2 g/L. respectively. Further addition of sodium ion resulted in a gradual decrease in overall nickel extraction, as the leach liquor free acidity decreased. At higher acid loadings, the process water sodium ion levels required for optimum extraction were also higher, so as to prevent dissolution of aluminium.
机译:通过添加硫酸钠,已优化了在250摄氏度下通过硫酸浸出从西澳大利亚红土矿石中提取镍的工艺。在淡水中浸出非还原性红土镍矿,硫酸负荷为420 kg / t矿石,从矿石中提取了93%的镍。将莫来镍红土镍矿矿石浸入淡水中,酸负荷为310 kg / t矿石。提取了总镍的92%。当工艺用水中的钠离子含量增加到4 g / L和2 g / L时,在上述酸负荷下,非铁矿矿石的镍提取量优化为96%,锂铁矿矿石的95%。分别。随着浸出液游离酸度的降低,进一步添加钠离子会导致总镍提取量逐渐减少。在较高的酸负荷下,最佳萃取所需的工艺用水钠离子含量也较高,以防止铝溶解。

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