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作 者:刘三平[1] 王海北[1] 曲志平[1] 苏立峰[1]
机构地区:[1]北京矿冶研究总院,北京100160
出 处:《有色冶金节能》2014年第5期17-20,共4页Energy Saving of Nonferrous Metallurgy
摘 要:研究了一段高酸—二段中和两段联合浸出红土矿新工艺。结果表明,该红土矿经人工分级后,细粒级矿石在温度95℃、反应时间6 h、初始矿浆浓度32%、酸矿比1.05的条件下,镍、钴一段高酸浸出率分别为97.39%、94.14%;一段浸出后矿浆与粗粒级矿石矿浆混合后在温度95℃、反应时间15 h、粗细粒级矿石质量比1.34的条件下,镍、钴二段中和浸出率分别为82.04%、93.35%,浸出后液含铁浓度小于2 g/L。The two-stage leaching process, which combined high acid leaching with neutralization leac- hing, has been researched to deal with laterite ore in this paper. The results showed that the respective extraction of Ni and Co from ONB0 sample ( -5 mm) in the primary acid leaching stage were 97.39% and 94. 14% , under the following optimum-conditions: reaction temperature 95℃ , residence time 6 hours, initial slurry concentration 32% , t-acid/t-ore 1.05. ONA0 sample ( + 5 mm) slurry was added to the primary leach residue slurry as the feed of the neutralization leach, and the optimum mass (ONA0)/ mass (ONB0) was 1.34. The neutralization leach test results showed that the respective extraction of Ni and Co were 82.04% and 93.35% , with the Fe concentration of the solution reducing to less than 2 g/L, under the following conditions: reaction temperature 95℃ , residence time 15 hours.
分 类 号:TF815[冶金工程—有色金属冶金]
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