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首页> 外文期刊>Journal of Hazardous Materials >Energy efficient electrodes for lithium-ion batteries: Recovered and processed from spent primary batteries
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Energy efficient electrodes for lithium-ion batteries: Recovered and processed from spent primary batteries

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In an attempt to develop low cost, energy efficient and advanced electrode material for lithium-ion batteries (LIBs), waste-to-wealth derived as well as value added spent battery materials as potential alternatives assume paramount importance. By combining the low lithiation potential advantages, one can arrive at energy efficient electrodes bestowed with cost effective and eco-friendly benefits required for practical LIB applications. In the present study, Zn and Mn-salts along with C were successfully extracted from the spent zinc carbon batteries through a simple and efficient hydrometallurgy approach and decomposed thermally to obtain ZnMn2O4 at 350 degrees C for 12 h and 450 degrees C for 3 h. Further, C-ZnMn2O4 nanocomposites were prepared and demonstrated for appreciable electrochemical performance in LIB assembly. Our results show that C-ZnMn2O4 composites prepared at 350 degrees C and 450 degrees C demonstrate better performance than pristine ZnMn2O4 anode due to the improved electronic conductivity rendered by the added carbon obtained from spent primary battery. In particular, C-ZnMn2O4 at 350 degrees C @12 h exhibits appreciable electrochemical performance by showing a stable and higher capacity of 600 mAhg(-1) at a current density of 50 mAg(-1) in the voltage range of 0.01-3.0 V and qualifies it as a better performing cost-effective anode for LIBs.
机译:在尝试为锂离子电池(LIBS)开发低成本,节能和先进的电极材料,浪费到财富,以及附加的电池材料作为潜在的替代品,呈现至关重要。通过组合低锂电池潜在的优势,可以获得具有实用Lib应用所需的成本效益和生态友好益处的节能电极。在本研究中,通过简单且有效的氢冶金方法从废锌碳电池中成功地提取Zn和Mn-盐,并在350℃下热分解以在350℃下进行热量以获得450℃,得到3小时。此外,制备C-ZnMN2O4纳米复合材料,并在Lib组件中进行了可观的电化学性能。我们的结果表明,在350℃和450摄氏度下制备的C-ZnMN2O4复合材料表明,由于由废初级电池所获得的添加碳的改善的电子电导率,提高了比原始ZnMN2O4阳极更好的性能。特别地,在350℃/℃的C-ZnMN2O4,通过在电压范围为0.01-3.0的电压范围内的电流密度为600mAhg(-1),稳定且更高容量的电化学性能,在0.01-3.0 v并将其与Libs更好地表现更好的性价比阳极。

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