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A NOVEL GREEN TECHNIQUE FOR THE RECOVERY OF VALUE-NONFERROUS METAL COMPOUNDS FROM MOLTEN SLAGS

机译:从废渣中回收有价无色金属化合物的新型绿色技术

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摘要

Based on several case studies on the precipitating behavior of valuable nonferrous metal compounds (VNMC) in molten slags a green technology for the recovery of VNMC from molten slags was proposed. This technology involves three steps: (1) The selective enrichment of the dispersed VNMC into the designed mineral phase in the molten slag; (2) The selective coarsening of the designed mineral phase to a critical grain size in the molten slag; (3) The selective separation from tailing of the grown mineral phase in the solidified slag by dressing or hydrometallurgy processes. This is a clean and low cost technique and has a great capacity to deal with a large quantity of slags. The utilization of the recovered VNMC such as Titanium, Boron, Vanadium compounds was summarized as examples of application. It was confirmed by experiments that the precipitating behavior of the designed mineral phases like Perovskite(CaTiO_3), Suanite(2MgO·B_2O_3) and Sincosite(CaO·V_2O_5·P_2O_5) in molten slags is obviously affected by operation factors such as temperature, chemical composition, heat-treatment, additives and so on. The precipitating kinetics and mechanism of the VNMC from molten slags during solidification processes were also investigated.
机译:基于对熔渣中有价值的有色金属化合物(VNMC)沉淀行为的几个案例研究,提出了一种绿色技术,用于从熔渣中回收VNMC。该技术涉及三个步骤:(1)将分散的VNMC选择性富集到熔融矿渣中的设计矿相中; (2)将设计的矿物相选择性地粗化至熔渣中的临界晶粒尺寸; (3)通过选矿或湿法冶金方法从凝固矿渣中的长大矿物相的尾矿中选择性分离。这是一种清洁且低成本的技术,并且具有处理大量炉渣的强大能力。作为实例,总结了回收的VNMC如钛,硼,钒化合物的利用。实验证实,熔渣中钙钛矿(CaTiO_3),酸钙石(2MgO·B_2O_3),三水铝石(CaO·V_2O_5·P_2O_5)等设计矿物相的析出行为受温度,化学组成等操作因素的明显影响。 ,热处理,添加剂等。还研究了熔融过程中熔渣中VNMC的沉淀动力学和机理。

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