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The Influence of Phase Dispersion of Sulfide Alloys on their Electrochemical Properties

机译:硫化物合金相分散对其电化学性能的影响

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It has been found that the dispersion of phases in copper-nickel sulfide-metal alloys influences their electrochemical properties. X-ray diffraction and optical and electron microscopy have been used to study structural characteristics of the samples prepared by crystallization of sulfide melts at different rates of 10÷10~3 K/s. High-rate cooling of a converter matte leads to the formation of nonequilibrium sulfide phases and a metallic component dissolved in these phases. The electrochemical oxidation of copper-nickel sulfide alloys has been studied by voltammetry with a linear potential sweep. The data point to a reduction of the limiting oxidation currents of the sulfide alloys prepared by high-rate cooling. The compositions of the intermediate phases and solid products of the electrochemical oxidation, which form the passivating layer, have been determined. The electrolysis of dispersed sulfide alloys allows performing the process at low densities of the current and, thus, the diffusion limitations have been removed.
机译:已经发现,铜-硫化镍-金属合金中相的分散会影响其电化学性能。 X射线衍射,光学和电子显微镜已被用于研究通过硫化物熔体以10÷10〜3 K / s的不同速率结晶而制备的样品的结构特征。转炉磨砂的高速冷却导致形成非平衡硫化物相以及溶解在这些相中的金属成分。铜镍硫化物合金的电化学氧化已通过伏安法与线性电势扫描进行了研究。数据表明通过高速冷却制备的硫化物合金的极限氧化电流降低了。已经确定了形成钝化层的电化学氧化的中间相和固体产物的组成。分散的硫化物合金的电解允许在低电流密度下执行该过程,因此消除了扩散限制。

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