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首页> 外文期刊>Minerals Engineering >Effect of microwave irradiation and conventional calcification roasting with calcium hydroxide on the extraction of vanadium and chromium from high-chromium vanadium slag
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Effect of microwave irradiation and conventional calcification roasting with calcium hydroxide on the extraction of vanadium and chromium from high-chromium vanadium slag

机译:微波辐射和常规钙化焙烧氢氧化物对高铬钒渣钒及铬萃取的影响

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摘要

A novel high-efficiency method based on microwave irradiation roasting has been proposed to extract valuable metals from minerals. In this study, we employed microwave irradiation and conventional roasting for extracting vanadium and chromium from high-chromium vanadium slag (HCVS) with the additive calcium hydroxide. Differential thermal-thermogravimetry analysis (TG-DSC), X-ray diffraction (XRD), scanning electron microscopy-energy dispersive X-ray spectroscopy analysis (SEM-EDS), particle size distribution analysis and chemical analyses were used for the characterization and analysis to explain the mechanism of the roasting process. The results shown that roasting temperature, the m(CaO)/m(V2O5) ratio, and roasting time roasted by microwave irradiation and muffle furnace had significantly effect on extraction ratio of vanadium while the effect on the extraction ratio of chromium was relatively small. For the same roasting temperature, the degree of oxidation of HCVS roasted by microwave irradiation was higher than that roasted by muffle furnace. When the m(CaO)/m (V2O5) ratio is low, Mn4V2O9 and CaV2O6 are formed; with the m(CaO)/m(V2O5) ratio increased, Mn4V2O9 and CaV2O6 gradually converted to CaV2O2, and CaCrO3 is formed. Microwave irradiation decreased the particles size and shortened the roasting time. The optimal roasting conditions was determined to be: roasting temperature of 850 degrees C, m(CaO)/(V2O5) ratio of 0.95, and roasting time of 1.5 h. The maximum extraction ratio of vanadium and chromium roasted by microwave irradiation and muffle furnace were 98.29%, 4.32% and 85.36%, 2.48%, respectively.
机译:已经提出了一种基于微波辐射焙烧的高效方法,从矿物质中提取有价值的金属。在该研究中,我们使用微波辐射和常规烘焙用氢氧化钙从高铬钒渣(HCV)中提取钒和铬。差分热热重量分析(TG-DSC),X射线衍射(XRD),扫描电子显微镜 - 能量分散X射线光谱分析(SEM-EDS),粒度分布分析和化学分析用于表征和分析解释焙烧过程的机制。结果表明,通过微波辐射和马弗炉烘烤的焙烧温度,M(CaO)/ m(V2O5)比和焙烧时间对钒的萃取比具有显着影响,而铬的提取比率相对较小。对于相同的烘焙温度,通过微波辐射烘烤的HCV氧化程度高于Muffle炉烤的氧化程度。当M(CAO)/ m(V2O5)比率低时,形成MN4V2O9和CAV2O6;利用M(CAO)/ m(V2O5)的比率增加,Mn4V2O9和Cav2O6逐渐转化为Cav2O2,形成Cacro3。微波辐射降低颗粒尺寸并缩短了焙烧时间。确定最佳的焙烧条件是:850℃,m(CaO)/(V2O5)比为0.95的焙烧温度,焙烧时间为1.5小时。微波辐射和Muffle炉烤的钒和铬的最大提取率分别为98.29%,4.32%和85.36%,2.48%。

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