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Direct Method for Producing Scandium Metal and Scandium-Aluminium Intermetallic Compounds from the Oxides

机译:由氧化物生产Scan金属和Scan铝金属间化合物的直接方法

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The electrochemical de-oxidation process, also called FFC-Cambridge process, has been proposed previously to produce reactive metals and their alloys through reduction of their metal oxides. The process works by introducing metal oxides into a molten salt bath where it is electrolysed to form metal powders offering both economic and environmental benefits over the traditional metal production methods. Within the frame of the EU-financed project SCALE (GA 730105), SINTEF is investigating the optimal parameters of the direct electrolytic reduction of SC_2O_3 and SC_2O_3-Al_2O_3 precursors (dross from Al-Sc alloy production), giving Sc and Al-Sc metallic powders, respectively, in a molten CaCl_2-based electrolyte at a working temperature of ca. 900 °C. The influence of the applied cathodic potential in the reduction mechanism and in the metal product has been studied.
机译:先前已经提出了电化学脱氧方法,也称为FFC-剑桥方法,以通过还原其金属氧化物来生产反应性金属及其合金。该方法的工作原理是将金属氧化物引入熔融盐浴中,在该盐浴中进行电解以形成金属粉末,与传统的金属生产方法相比,具有经济和环境效益。在欧盟资助的SCALE项目(GA 730105)的框架内,SINTEF正在研究直接电解还原SC_2O_3和SC_2O_3-Al_2O_3前体(来自Al-Sc合金生产的锡渣),获得Sc和Al-Sc金属的最佳参数粉末分别在约Ca的工作温度下在熔融的CaCl 2基电解质中使用。 900℃。已经研究了施加的阴极电势对还原机理和金属产物的影响。

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