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作 者:叶露 Ye Lu(Pangang Group Research Institute Co. , Ltd. , State Key Laboratory of Vanadium and Titanium Resources Comprehensive Utilization, Panzhihua 617000, Sichuan, China)
机构地区:[1]攀钢集团研究院有限公司、钒钛资源综合利用国家重点实验室,四川攀枝花617000
出 处:《钢铁钒钛》2017年第5期20-25,共6页Iron Steel Vanadium Titanium
基 金:国家重点基础研究发展计划项目(2013CB632603)
摘 要:以某公司钒渣钙化焙烧熟料为原料,开展硫酸酸浸试验,研究了浸出p H值、温度、时间、液固比及搅拌速度对钒浸出率的影响规律。采用SEM、XRD等分析方法,进一步研究了熟料中钒的赋存状态和酸浸过程的溶解规律。结果显示,熟料中钒以钒酸盐的形式存在,主要分布在钒酸钙、氧化铁固溶体、铁板钛矿等物相中。熟料在酸浸过程中含钒物相的溶解顺序为:钒酸钙>氧化铁固溶体>>铁板钛矿。最佳酸浸参数为浸出p H值0.75,温度50℃,时间10 min,液固比10∶1,搅拌速度500 r/min,钒浸出率可达90.21%。Using the calcified roasting clinker of vanadium slag from a certain company as raw materials, sulfuric acid leaching experiments were carried out to investigate the influences of pH, temperature and time, liquid-solid ratio and stirring rate of leaching process on extraction rate of vanadium. The occurrence state of vanadium in the clinker and its dissolution during leaching process were further studied by SEM and XRD. The results show that vanadium in clinker exists as vanadates, mainly distributing in calcium vanadate, iron oxides solid solution, pseudobrookite phases etc. In the process of acid leaching, the dissolution sequence of vanadium-containing phases is as follows: calcium vanadate 〉 solid solution of iron oxides 〉〉 pseudobrookite. The optimum leaching parameters are pH--0.75, 50 ℃ for 10 rain with 10 : 1 of liquid-solid ratio and 500 r/rain of stirring rate, where up to 90.21% of vanadium leaching rate can be achieved.
分 类 号:TF841.3[冶金工程—有色金属冶金]
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