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Kinetic modeling study on the combustion treatment of cathode from spent lithium-ion batteries

机译:废锂离子电池阴极燃烧动力学模型研究

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Thermal treatment offers an alternative method for the separation of aluminum foil and cathode materials during spent lithium-ion batteries recycling. In this work, the combustion kinetic of cathode was studied based on six model-free (isoconversional) methods, namely Flynn-Wall-Ozawa (FWO), Friedman, Kissinger-Akahira-Sunose, Starink, Tang, and Boswell methods. The possible decomposition mechanism was also probed using a master-plots method (Criado method). Thermogravimetric analysis showed that the whole thermal process could be divided into three stages with temperatures of 37-578 degrees C, 578-849 degrees C, and 849-1000 degrees C. The activation energy (E alpha) derived from these model-free methods displayed the same trend, gradually increasing with a conversion range of 0.002-0.013, and significantly elevating beyond this range. The coefficients from the FWO method were larger, and the resulted E alpha fell into the range of 10.992-40.298 kJ/mol with an average value of 20.228 kJ/mol. Comparing the theoretical master plots with an experimental curve, the thermal decomposition of cathode could be better described by the geometric contraction models.
机译:热处理为在废旧锂离子电池回收过程中分离铝箔和阴极材料提供了另一种方法。在这项工作中,基于Flynn-Wall-Ozawa(FWO),Friedman,Kissinger-Akahira-Sunose,Starink,Tang和Boswell方法等六种无模型(等转化)方法研究了阴极的燃烧动力学。还使用主图方法(Criado方法)探究了可能的分解机理。热重分析表明,整个热过程可以分为三个阶段,温度分别为37-578摄氏度,578-849摄氏度和849-1000摄氏度。从这些无模型方法得出的活化能(E alpha)显示相同的趋势,并以0.002-0.013的转换范围逐渐增加,并显着超出此范围。 FWO方法的系数较大,所得的E alpha落在10.992-40.298 kJ / mol的范围内,平均值为20.228 kJ / mol。将理论主图与实验曲线进行比较,可以通过几何收缩模型更好地描述阴极的热分解。

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