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郑存江, 刘清辉, 胡勇平, 董利明, 王毅民, 顾铁新. 富钴结壳超细标准物质的加工制备[J]. 岩矿测试, 2010, 29(3): 301-304.
引用本文: 郑存江, 刘清辉, 胡勇平, 董利明, 王毅民, 顾铁新. 富钴结壳超细标准物质的加工制备[J]. 岩矿测试, 2010, 29(3): 301-304.
ZHENG Cun-jiang, LIU Qing-hui, HU Yong-ping, DONG Li-ming, WANG Yi-min, GU Tie-xin. Processing and Preparation of Ultra-fine Co-rich Crust Reference Materials[J]. Rock and Mineral Analysis, 2010, 29(3): 301-304.
Citation: ZHENG Cun-jiang, LIU Qing-hui, HU Yong-ping, DONG Li-ming, WANG Yi-min, GU Tie-xin. Processing and Preparation of Ultra-fine Co-rich Crust Reference Materials[J]. Rock and Mineral Analysis, 2010, 29(3): 301-304.

富钴结壳超细标准物质的加工制备

Processing and Preparation of Ultra-fine Co-rich Crust Reference Materials

  • 摘要: 用气流磨制备了2个具有超细粒度的海山富钴结壳标准物质MCPt-1 和 MCPt-2。原样先经球磨成74 μm(-200目),再用气流磨进行超细加工。样品粒度采用激光粒度仪检测,用粒度分布图和特征粒度来表达测量结果。两个样品的平均粒度分别为1.8 μm 和1.5 μm(约2000 目),是目前粒度最小的标准物质。文章介绍了用于超细加工的流化床式气流磨原理与方法,展示了样品加工后的粒度分析结果,对比了国内外超细标准物质的概况。最后讨论了当前关注样品加工的重要性、超细加工的问题及超细样品分析研究的意义。

     

    Abstract: Two Co-rich seamount crust reference materials of MCPt-1 and MCPt-2 for platinum group elements (PGEs) with an ultra-fine particle size have been prepared by a jet mill. The raw samples of the reference materials were ground by a ball mill to 74 μm(-200 mesh) powder and then were further processed by a jet mill to ultra-fine size. After well-mixed, the particle size distribution of the samples were tested by a laser particle analyzer. The results of particle size analysis were expressed by the particle size distribution plot and specific particle size. The average particle size MCPt-1 and MCPt-2 were 1.8 μm and 1.5 μm (about 2000 mesh) respectively. The paper also introduced principle and application development of fluidized bed jet mill used in ultra-fine process in standard reference material preparation worldwide. Finally, the importance and problems in ultra-fine sample processing, the significance of ultra-fine sample analysis in scientific research were discussed.

     

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