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Direct and Indirect Recycling Strategies of Expired Oxytetracycline for the Anode Material in Lithium Ion Batteries

机译:用于锂离子电池阳极材料的过期催化素的直接和间接回收策略

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It is well known that the antibiotics inhibit the wide spread of various infectious diseases and guarantee the life safety of many patients. However, various waste antibiotics into the environment also posed the great challenges of the environmental contamination and the ecological poison. Unreasonable disposal of expired antibiotics is one of the main sources of waste antibiotics in the ecological environment. For this reason, in order to focus on the circular economy of such highly refined medical grade chemicals, expired oxytetracycline was recycled for the anode active material in lithium ion batteries (LIBs) by direct and indirect strategies. That is, it was directly used as the anode active material or recycled by two-step carbonization for LIBs anode. Furthermore, the effect of these two strategies on the electrochemical performances was also discussed. Both anode materials showed their individual advantages and high feasibility for LIBs anode. For example, both them delivered the satisfactory Li-storage performances. Additionally, the direct route possessed lower recycling cost and high recovery rate, while the application range of carbon material in the indirect route was broader.
机译:众所周知,抗生素抑制了各种传染病的广泛传播,保证了许多患者的生命安全。然而,各种废物抗生素进入环境中也构成了环境污染的巨大挑战和生态毒药。过期抗生素的不合理处置是生态环境中废物抗生素的主要来源之一。因此,为了专注于这种高度精制的医疗级化学品的循环经济,通过直接和间接策略将过期的催眠素用于锂离子电池(LIBS)中的阳极活性物质。也就是说,它被直接用作阳极活性材料或通过两步碳化为Libs阳极再循环。此外,还讨论了这两种策略对电化学性能的影响。两个阳极材料都显示出它们的个性优势和对LIBS阳极的高可行性。例如,它们都提供了令人满意的LI储存表演。另外,直接路线具有较低的回收成本和高回收率,而间接途径中的碳材料的应用范围更为宽阔。

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