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Electrical Conductivity of Carbon Electrodes by Mixing Carbon Rod and Electrolyte Paste of Spent Battery

机译:碳电极的电导率通​​过混合碳棒和电解质浆料浆料

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摘要

As a consequence of increasing battery use, spent batteries are increasingly contributing to solid waste. This situation has the potential to create a severe environmental problem. Thus, the utilization of these spent batteries, including the reuse of some components, is essential. The reusable components of the spent battery are carbon rods and electrolyte pastes. In this work, these components were utilized to prepare a carbon-based electrode for reverse electrodialysis. These electrodes can be an alternative to commercial Ti-based electrodes. The important characteristics of an electrode are the electrical conductivity, porosity, and surface area of the particles. This study aimed to determine the best electrical conductivity exhibited by various mixtures of carbon rods and electrolyte paste taken from spent batteries. The spent battery contained 95% carbon, and the electrolyte paste of the spent battery contained 64% carbon, 19% zinc, and 5% manganese. Before mixing, the carbon rods were powdered using ball mills for 4 h; 85.6% of particles were sized <1 μm. The best electrical conductivity was obtained from a mixture of carbon rods and electrolyte paste in the weight ratio of 7:2, with electrical conductivity, porosity, and surface area of 2.75 S/cm, 0.019 cc/g, and 15.936 m2/g, respectively.
机译:由于电池使用增加,花电池越来越多地导致固体废物。这种情况有可能产生严重的环境问题。因此,使用这些花电池的利用,包括一些组件的重用是必不可少的。废电池的可重复使用部件是碳棒和电解质浆料。在这项工作中,使用这些组分来制备用于反向电渗析的碳基电极。这些电极可以是商业Ti基电极的替代方案。电极的重要特性是颗粒的电导率,孔隙率和表面积。本研究旨在确定由碳棒和电解质浆料的各种混合物所呈现的最佳导电性。花电池含有95%的碳,而废电池的电解质浆料含有64%的碳,19%锌和5%锰。在混合之前,使用球磨机将碳棒用球磨机进行粉末4小时; 85.6%的颗粒大小为<1μm。从碳棒和电解质浆料的混合物中获得最佳导电性,其重量比为7:2,电导率,孔隙率和表面积为2.75 s / cm,0.019 cc / g和15.936m 2 / g,分别。

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