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Electrochemical preparation of tungsten and cobalt from cemented carbide scrap in NaF-KF molten salts

机译:在NAF-KF熔盐中的碳化物废料中钨和钴的电化学制备

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In this study, WC-10Co was used as a consumable anode for the direct preparation of cobalt and tungsten from NaF-KF molten salt at 1023 K. Electrochemical analysis was performed via cyclic and square wave voltammetry. Results showed that cobalt and tungsten ions possess different precipitation potentials in the molten salt, thus theoretically proving the feasibility of preparing separating metallic cobalt and tungsten respectively. Tungsten and cobalt ions exist as W2+ and Co2+, and the reaction is reversible and controlled by diffusion. The effects of electrolytic current, duration, and temperature on anodic dissolution mass, dissolution rate, and cathode composition and morphology were studied via electrochemical analysis. The cathode product was analyzed by XRD and SEM. The results further showed that cobalt powder can be obtained when the electrolytic current was 12 mA for a short period of time. Tungsten powder can be obtained by increasing electrolytic current and duration. Furthermore, tungsten powder with a particle diameter of less than 1 inn can be obtained under the following electrolysis conditions: current of 88 mA, duration of 7 h, and temperature of 1023 K.
机译:在该研究中,WC-10CO被用作可消耗阳极,用于在1023K下从NAF-KF熔盐直接制备钴和钨的碳酸盐。通过环状和方波伏安法进行电化学分析。结果表明,钴和钨离子在熔盐中具有不同的沉淀电位,从而理论上证明了分别制备分离金属钴和钨的可行性。钨和钴离子作为W2 +和CO 2 +存在,反应是可逆的并通过扩散控制。通过电化学分析研究了电解流,持续时间和温度对阳极溶解质量,溶出速率和阴极组合物和形态的影响。通过XRD和SEM分析阴极产物。结果进一步表明,当电解电流为12mA短时间时,可以获得钴粉末。通过增加电解电流和持续时间可以获得钨粉。此外,可以在以下电解条件下获得粒径小于1型液体的钨粉:88 mA的电流,持续时间为7小时,温度为1023k。

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