首页> 外文期刊>Proceedings of the Indian Academy of Sciences. Earth and Planetary Sciences >Discriminating four tectonic settings: Five new geochemical diagrams for basic and ultrabasic volcanic rocks based on log—ratio transformation of major-element data
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Discriminating four tectonic settings: Five new geochemical diagrams for basic and ultrabasic volcanic rocks based on log—ratio transformation of major-element data

机译:区分四种构造背景:基于对数-主要元素数据的比值转换的基础和超基性火山岩的五种新地球化学图

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We present five new discriminant function diagrams based on an extensive database representative of basic and ultrabasic rocks from four tectonic settings of island arc, continental rift, ocean-island, and mid-ocean ridge. These diagrams were obtained after log_e-transformation of concentration ratios of major-elements - a technique recommended for a correct statistical treatment of compositional data. Higher % success rates (overall values from ~83 to 97%) were obtained for proposing these new diagrams as compared to those (~82 to 94%) obtained from the discriminant analysis of the raw major-element concentration data (i.e., without the log_e-transformation and without taking ratios of the compositional data, but using exactly the same database to provide an unbiased comparison), suggesting that such a data transformation constitutes a statistically correct and recommended technique. The new diagrams also resulted in less mis-classification of basic and ultrabasic rocks from known tectonic settings than the diagrams obtained from the raw data. The use of these highly successful new discriminant function diagrams is illustrated using Miocene to Recent basic and ultrabasic rocks from three areas of Mexico with complex or controversial tectonic settings (Mexican Volcanic Belt, Los Tuxtlas volcanic field, and Eastern Alkaline Province), as well as older rocks from three areas (Deccan, Malani, and Bastar) of India. Additionally, the major-element data from two 'known' continental arc settings are used to show that they are similar to those from the island arc setting. Continental rift setting is inferred for all Mexican cases and for one cratonic area of India (Malani) and an IAB setting for the Bastar craton. The Deccan flood basalt province of India is used to warn against an indiscriminate use of those discrimination diagrams that do not explicitly include the likely setting of the area under evaluation. An Excel template is also provided for an easy application of these new diagrams for discriminating the four settings considered in this work.
机译:我们基于一个广泛的数据库,提供了五个新的判别函数图,这些数据库代表了来自岛弧,大陆裂谷,海洋岛和中海脊四个构造背景的基本和超基性岩石。这些图是在主要元素的浓度比进行log_e变换后获得的-一种推荐用于对组成数据进行正确的统计处理的技术。与通过原始主元素浓度数据的判别分析获得的成功率(〜82至94%)相比,提出这些新图的成功率更高(总值从约83%到97%)。 log_e-transformation,但不使用组成数据的比率,而是使用完全相同的数据库来提供无偏比较),这表明这种数据转换构成了统计上正确和推荐的技术。与从原始数据获得的图表相比,新的图表还减少了来自已知构造背景的基本和超基性岩石的误分类。这些中成功的新判别函数图的使用说明了中新世到来自墨西哥三个地区的近期基本和超基性岩石,这些地区具有复杂或有争议的构造背景(墨西哥火山带,洛斯图斯特拉斯火山场和东部碱性省),以及来自印度三个地区(Deccan,Malani和Bastar)的较旧岩石。此外,使用来自两个“已知”大陆弧设置的主要元素数据来显示它们与来自岛弧设置的相似。对于所有墨西哥病例和印度(马拉尼)的一个克拉通地区,都可以推断出大陆裂谷的环境,而对Bastar克拉通来说,则是根据IAB进行的。印度的Deccan洪水玄武岩省被警告不要乱使用那些没有明确包括评估区域可能设置的歧视图。还提供了一个Excel模板,可轻松应用这些新图表,以区分此工作中考虑的四个设置。

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