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Resource utilization of titanium-containing slurry by selective extraction and leaching

机译:选择性提取和浸出含钛浆料的资源利用

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Resource utilization of titanium-containing slurry was realized by selective extraction and leaching. The results from the experiment confirmed that thistechnology was effective for recycling titanium and niobium from the slurry. During selective extraction, the extract solution with titanium content of 159.40 g/L was obtained after 3 stage-counter current extractions, and the titanium content of extracted residue could be reduced to 1.85 wt% which was much lower than the titanium content of titanium-containing slurry. The results of evaporation experiments indicated that CH2Cl2 in extracted residue could be separated and recovered effectively by evaporation and high temperature is beneficial for the whole process. Meanwhile, the titanium oxide and titanium oxychloride in extracted residue could also be transformed into TiCl4 and recovered by evaporation as the evaporation of dichloromethane in extracted residue. The beneficiation of niobium could be achieved when the evaporated residue was leached with diluted hydrochloric acid, the results of leaching test showed that more than 97% of the aluminum in evaporation residue was dissolved, while, only 1.3% of the niobium was leached. Finally, niobium concentrate with Nb2O5 content of 76.39% was obtained by washing the leaching residue with dilute ammonia water.
机译:通过选择性提取和浸出来实现含钛浆料的资源利用。实验结果证实,晶体学可有效地从浆料中回收钛和铌。在选择性萃取过程中,在3阶段响应电流萃取后获得钛含量为159.40g / L的提取溶液,提取的残余物的钛含量降至1.85wt%,其远低于钛的钛含量 - 含有浆料。蒸发实验结果表明,通过蒸发和高温有效地分离并恢复萃取的残余物中的CH 2 Cl 2对整个过程有益。同时,提取的残余物中的氧化钛和氯氧化钛也可以转化为TiCl4并通过蒸发回收作为萃取残余物中二氯甲烷的蒸发。当蒸发的残余物用稀释的盐酸浸出蒸发的残余物时,可以实现铌的效果,浸出试验结果显示,蒸发残留物中超过97%的铝溶解,而仅浸出1.3%的铌。最后,通过用稀氨水洗涤浸出残余物获得Nb2O5含量为76.39%的铌浓缩物。

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