首页> 外文期刊>Powder diffraction >Mineral identification by elemental composition: a new tool within PDF-4 databases
【24h】

Mineral identification by elemental composition: a new tool within PDF-4 databases

机译:通过元素组成进行矿物鉴定:PDF-4数据库中的新工具

获取原文
获取原文并翻译 | 示例
           

摘要

The ICDD has developed a microanalysis tool to help scientists identify minerals from their elemental analyses, most typically micro-XRF or a microprobe analysis. Many minerals have characteristic elemental profiles that can often distinguish the mineral from others by their composition differences. In Release 2016 ICDD (R) PDF-4 databases 20 670 unique compositions have been identified out of 45 497 mineral and mineral-related entries. The application utilizes several common features of PDF (R) databases to enhance correct Identification, most notably those formulas are expressed in weight and atomic percent, data sets are classified by mineral nomenclature and structural classifications, and most minerals have associated atomic and molecular structures. These crystal structures are very useful in determining compositional variants and solid solutions. The ICDD has developed algorithms that are analogous to the search/match processes used for powder diffraction identification. Data can be input as either the element or common oxide. To test the algorithm and graphics interfaces we compared results from the microanalysis module to published data from the Smithsonian Microbeam reference mineral collection. The software correctly identified 24/28 minerals by the highest merit score in the algorithm. In two cases, an isoelemental mineral was identified and in two other cases, the specimens had more elements than the reference standards hindering positive phase identification. (C) 2018 International Centre for Diffraction Data.
机译:ICDD开发了一种微量分析工具,可帮助科学家从元素分析(最典型的是微型XRF或微型探针分析)中鉴定出矿物。许多矿物具有特征性的元素特征,这些特征通常可以通过成分差异将其与其他矿物区分开。在2016版ICDD(R)PDF-4数据库中,从45 497个矿物和与矿物相关的条目中鉴定出20 670种独特的成分。该应用程序利用PDF(R)数据库的几个共同特征来增强正确的识别,最著名的是这些公式以重量和原子百分数表示,数据集通过矿物命名法和结构分类进行分类,并且大多数矿物具有相关的原子和分子结构。这些晶体结构对于确定组成变体和固溶体非常有用。 ICDD已开发出类似于用于粉末衍射识别的搜索/匹配过程的算法。数据可以元素或普通氧化物的形式输入。为了测试算法和图形界面,我们将微分析模块的结果与史密森尼微束参考矿物采集的已发布数据进行了比较。该软件通过算法中的最高成绩得分正确识别了24/28种矿物。在两种情况下,鉴定出了等元素矿物,在另两种情况下,标本中的元素含量超过了参考标准,从而妨碍了正相鉴定。 (C)2018年国际衍射数据中心。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号