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废旧锂离子电池电极材料中钴的无氧焙烧回收 被引量:9
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作者 齐婷 陈家锋 +1 位作者 李佳 许振明 《有色金属(冶炼部分)》 CAS 北大核心 2017年第5期11-14,共4页
综合运用XRD、ICP及TOC表征破碎废旧锂离子电池筛分后得到的电极材料成分,并利用TGA、GC-MS对电极材料的碳热还原反应机理进行探究。在无氧焙烧条件下,废旧锂离子电池中的负极材料石墨与正极材料钴酸锂发生反应,得到产物钴与碳酸锂,经... 综合运用XRD、ICP及TOC表征破碎废旧锂离子电池筛分后得到的电极材料成分,并利用TGA、GC-MS对电极材料的碳热还原反应机理进行探究。在无氧焙烧条件下,废旧锂离子电池中的负极材料石墨与正极材料钴酸锂发生反应,得到产物钴与碳酸锂,经湿式磁选分离后,钴以单质形式富集在磁性固体中,钴回收率为95.12%。 展开更多
关键词 废旧锂离子电池 无氧焙烧
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铝电解槽废旧阴极在有氧和无氧环境的反应特性研究 被引量:6
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作者 张博 赵俊学 +3 位作者 梁李斯 施瑞盟 唐雯聃 李小明 《轻金属》 CSCD 北大核心 2015年第5期27-30,共4页
通过偏光显微镜观察、XRD检测分析铝电解废旧阴极材料成分,在此基础上,采用高温焙烧和差热热重实验研究了铝电解废旧阴极材料在有氧和无氧环境下的反应特性。结果表明,在无氧焙烧时,NaF和Na3AlF6会在800~1100℃受热发生分解与挥发... 通过偏光显微镜观察、XRD检测分析铝电解废旧阴极材料成分,在此基础上,采用高温焙烧和差热热重实验研究了铝电解废旧阴极材料在有氧和无氧环境下的反应特性。结果表明,在无氧焙烧时,NaF和Na3AlF6会在800~1100℃受热发生分解与挥发;而在有氧焙烧的情况下,碳在500—800℃可燃烧,且NaF和Na3AlF6反应受到抑制。因此,铝电解槽废旧阴极材料可以通过低温焙烧(500~800%)去碳,在无氧条件下高温焙烧(800℃以上)将含氟电解质去除。此参数可对浮选处理得到的高碳及高电解质产物处理提供理论参考。 展开更多
关键词 铝电解槽 废旧阴极 无氧焙烧 有氧焙烧
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Solvent-free selective oxidation of cyclohexane with molecular oxygen over manganese oxides:Effect of the calcination temperature 被引量:2
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作者 吴明周 詹望成 +5 位作者 郭耘 王筠松 郭杨龙 龚学庆 王丽 卢冠忠 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2016年第1期184-192,共9页
The effects of calcination temperature on the physicochemical properties of manganese oxide catalysts prepared by a precipitation method were assessed by X-ray diffraction,N2 adsorption-desorption,X-ray photoelectron ... The effects of calcination temperature on the physicochemical properties of manganese oxide catalysts prepared by a precipitation method were assessed by X-ray diffraction,N2 adsorption-desorption,X-ray photoelectron spectroscopy,H2 temperature-programmed reduction,O2 temperature-programmed desorption,and thermogravimetry-differential analysis.The catalytic performance of each of these materials during the selective oxidation of cyclohexane with oxygen in a solvent-free system was subsequently examined.It was found that the MnOx-500 catalyst,calcined at 500 °C,consisted of a Mn2O3 phase in addition to Mn5O8 and Mn3O4 phases and possessed a low surface area.Unlike MnOx-500,the MnOx-400 catalyst prepared at 400 °C was composed solely of Mn3O4 and Mn5O8 and had a higher surface area.The pronounced catalytic activity of this latter material for the oxidation of cyclohexene was determined to result from numerous factors,including a higher concentration of surface adsorbed oxygen,greater quantities of the surface Mn4+ ions that promote oxygen mobility and the extent of O2 adsorption and reducibility on the catalyst.The effects of various reaction conditions on the activity of the MnOx-400 during the oxidation of cyclohexane were also evaluated,such as the reaction temperature,reaction time,and initial oxygen pressure.Following a 4 h reaction at an initial O2 pressure of 0.5 MPa and 140 °C,an 8.0% cyclohexane conversion and 5.0% yield of cyclohexanol and cyclohexanone were achieved over the MnOx-400 catalyst.In contrast,employing MnOx-500 resulted in a 6.1% conversion of cyclohexane and 75% selectivity for cyclohexanol and cyclohexanone.After being recycled through 10 replicate uses,the catalytic activity of the MnOx-400 catalyst was unchanged,demonstrating its good stability. 展开更多
关键词 Manganese oxide catalyst Selective oxidation of cyclohexane OXYGEN Calcination temperature Solvent-free reaction
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