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The out-of-life saggar after repeated use for LiCoO2 sintering in industry was taken to explore its erosion mechanism during high temperature synthesis of LiCoO2 by adopting fluorescence analysis, chemical composition analysis, X-ray diffraction analysis, microstructure and energy spectrum analysis. Results show that when saggar is used to hold basic cobalt carbonate and lithium carbonate and calcined at 950 ℃ for 15 h, it is eroded and damaged after 15 times of operation. During LiCoO2 synthesis, saggar is mainly eroded by lithium ions, with the dominant erosion products including tetragonal LiAlO2, α-LiAlO2, LiAlSiO4, Li3AlSiO5 and Li3.17Si0.7S0.3O4. Cobalt ions are not involved in the chemical erosion but the synthesized lithium cobalt compounds migrate along the pores and also deposit along the migrating pores of saggar.

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以工业上用于烧结合成LiCoO2、经反复多次使用报废的匣钵为研究对象,通过荧光分析、化学成分分析、物相分析、微观结构以及能谱分析等研究了LiCoO2高温合成过程对匣钵的侵蚀机理。结果表明,用于盛装碱式碳酸钴和碳酸锂并在950 ℃下煅烧15 h的匣钵在使用15次后发生侵蚀损毁,在LiCoO2合成过程中,对匣钵的侵蚀主要为锂离子侵蚀,侵蚀产物主要有四方晶系LiAlO2、α-LiAlO2、LiAlSiO4、Li3AlSiO5和Li3.17Si0.7S0.3O4;钴离子不参与侵蚀反应,但合成的锂钴化合物会沿着匣钵的孔道进行迁移,并沿着迁移孔道沉积。

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张丽芬(1983—),女,广东清远人,硕士,高级工程师,主要从事有色金属冶金及固废资源回收研究。

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张丽芬(1983—),女,广东清远人,硕士,高级工程师,主要从事有色金属冶金及固废资源回收研究。

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LiCoO2烧结用匣钵侵蚀机制研究
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张丽芬 1 , 万洪强 1 , 王奉刚 1 , 马云聪 1 , 黄彦强 1 , 孙振华 2, 3 , 李少鹏 3
矿冶工程杂志 | 材料 2023,43(4): 144-146
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矿冶工程杂志 | 材料 2023, 43(4): 144-146
LiCoO2烧结用匣钵侵蚀机制研究
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张丽芬1, 万洪强1, 王奉刚1, 马云聪1, 黄彦强1, 孙振华2, 3, 李少鹏3
作者信息
  • 1.长沙矿冶研究院有限责任公司,湖南 长沙 410012
  • 2.中国地质大学(北京)材料科学与工程学院,北京 100083
  • 3.中国科学院绿色过程与工程重点实验室(中国科学院过程工程研究所),战略金属资源绿色循环利用国家工程研究中心,北京 100190
  • 张丽芬(1983—),女,广东清远人,硕士,高级工程师,主要从事有色金属冶金及固废资源回收研究。

Erosion Mechanism of Saggar Used for LiCoO2 Sintering
Lifen ZHANG1, Hongqiang WAN1, Fenggang WANG1, Yuncong MA1, Yanqiang HUANG1, Zhenhua SUN2, 3, Shaopeng LI3
Affiliations
  • 1.Changsha Research Institute of Mining and Metallurgy Co Ltd, Changsha 410012, Hunan, China
  • 2.School of Materials Science and Technology, China University of Geosciences(Beijing), Beijing 100083, China
  • 3.CAS Key Laboratory of Green Process and Engineering, Institute of Process Engineering, Chinese Academy of Sciences, National Engineering Research Center of Green Recycling for Strategic Metal Resources, Beijing 100190, China
出版时间: 2023-08-01 doi: 10.3969/j.issn.0253-6099.2023.04.031
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以工业上用于烧结合成LiCoO2、经反复多次使用报废的匣钵为研究对象,通过荧光分析、化学成分分析、物相分析、微观结构以及能谱分析等研究了LiCoO2高温合成过程对匣钵的侵蚀机理。结果表明,用于盛装碱式碳酸钴和碳酸锂并在950 ℃下煅烧15 h的匣钵在使用15次后发生侵蚀损毁,在LiCoO2合成过程中,对匣钵的侵蚀主要为锂离子侵蚀,侵蚀产物主要有四方晶系LiAlO2、α-LiAlO2、LiAlSiO4、Li3AlSiO5和Li3.17Si0.7S0.3O4;钴离子不参与侵蚀反应,但合成的锂钴化合物会沿着匣钵的孔道进行迁移,并沿着迁移孔道沉积。

高温合成  /  合成装置  /  钴酸锂  /  匣钵  /  侵蚀机理

The out-of-life saggar after repeated use for LiCoO2 sintering in industry was taken to explore its erosion mechanism during high temperature synthesis of LiCoO2 by adopting fluorescence analysis, chemical composition analysis, X-ray diffraction analysis, microstructure and energy spectrum analysis. Results show that when saggar is used to hold basic cobalt carbonate and lithium carbonate and calcined at 950 ℃ for 15 h, it is eroded and damaged after 15 times of operation. During LiCoO2 synthesis, saggar is mainly eroded by lithium ions, with the dominant erosion products including tetragonal LiAlO2, α-LiAlO2, LiAlSiO4, Li3AlSiO5 and Li3.17Si0.7S0.3O4. Cobalt ions are not involved in the chemical erosion but the synthesized lithium cobalt compounds migrate along the pores and also deposit along the migrating pores of saggar.

high temperature synthesis  /  synthesis device  /  LiCoO2  /  saggar  /  erosion mechanism
张丽芬, 万洪强, 王奉刚, 马云聪, 黄彦强, 孙振华, 李少鹏. LiCoO2烧结用匣钵侵蚀机制研究. 矿冶工程杂志, 2023 , 43 (4) : 144 -146 . DOI: 10.3969/j.issn.0253-6099.2023.04.031
Lifen ZHANG, Hongqiang WAN, Fenggang WANG, Yuncong MA, Yanqiang HUANG, Zhenhua SUN, Shaopeng LI. Erosion Mechanism of Saggar Used for LiCoO2 Sintering[J]. Mining and Metallurgical Engineering, 2023 , 43 (4) : 144 -146 . DOI: 10.3969/j.issn.0253-6099.2023.04.031
  • 国家重点研发计划(2018YFC1901802)
  • 国家自然科学基金(52204425)
  • 中国科学院青年创新促进会项目(2021045)
2023年第43卷第4期
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doi: 10.3969/j.issn.0253-6099.2023.04.031
  • 接收时间:2022-10-20
  • 首发时间:2026-03-05
  • 出版时间:2023-08-01
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  • 收稿日期:2022-10-20
基金
国家重点研发计划(2018YFC1901802)
国家自然科学基金(52204425)
中国科学院青年创新促进会项目(2021045)
作者信息
    1.长沙矿冶研究院有限责任公司,湖南 长沙 410012
    2.中国地质大学(北京)材料科学与工程学院,北京 100083
    3.中国科学院绿色过程与工程重点实验室(中国科学院过程工程研究所),战略金属资源绿色循环利用国家工程研究中心,北京 100190
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https://castjournals.cast.org.cn/joweb/kygczz/CN/10.3969/j.issn.0253-6099.2023.04.031
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2种不同金属材料的力学参数

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Genus
种数
Number of
species
占总种数比例
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species (%)
鹅膏菌科Amanitaceae 2 11 5.26 鹅膏菌属 Amanita 10 4.78
小菇科 Mycenaceae 2 12 5.74 丝盖伞属 Inocybe 5 2.39
多孔菌科 Polyporaceae 8 14 6.70 蜡蘑属 Laccaria 5 2.39
红菇科 Russulaceae 3 23 11.00 小皮伞属 Marasmius 6 2.87
小菇属 Mycena 11 5.26
光柄菇属 Pluteus 5 2.39
红菇属 Russula 17 8.13
栓菌属 Trametes 5 2.39
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