首页> 外文期刊>Journal of Geochemical Exploration: Journal of the Association of Exploration Geochemists >Distinguishing pedogenic carbonates from weathered marine carbonates on the Yorke Peninsula, South Australia: Implications for mineral exploration
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Distinguishing pedogenic carbonates from weathered marine carbonates on the Yorke Peninsula, South Australia: Implications for mineral exploration

机译:区分从风化的海洋碳酸盐碳酸盐在南澳大利亚yorke peninsula上区分:对矿物勘探的影响

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摘要

We present whole rock and strontium isotope geochemistry from geological profiles from the Yorke Peninsula in South Australia and provide a geochemical means of discriminating between Cenozoic marine carbonate-bearing rocks and Quaternary pedogenic carbonate-bearing rocks. Pedogenic carbonate-bearing rocks (commonly referred to as calcrete) are potentially useful mineral exploration sampling media whereas weathered marine carbonate-bearing rocks (limestone), are less useful. Distinguishing between the two in drill cuttings where textural information has been destroyed is difficult. Strontium isotope ratios are variable, strongly dependent on clastic sedimentary component and thus do not differentiate effectively between pedogenic and marine carbonate-bearing rocks. There is a systematic difference between Ca/Sr and Ca/Mg ratios in the pedogenic carbonate bearing rocks compared to the weathered Cenozoic marine carbonate-bearing rocks. Pedogenic carbonate bearing rocks have systematically lower Ca/Mg (< 28) and Ca/Sr (< 650) ratios than their marine counterparts Ca/Mg (> 35) and Ca/Sr (> 1260). This simple discriminant can be used to identify samples appropriate for carbonate sampling in mineral exploration, particularly in drill cuttings, as well as retrospective filtering of multi-element geochemical exploration data sets.
机译:我们呈现来自南澳大利亚yorke半岛的地质型材的整个岩石和锶同位素地球化学,并提供了鉴别新生代海洋碳酸岩石和季型碳酸岩岩石之间的地球化学手段。含有基础碳酸盐的岩石(通常称为Calcrete)是潜在有用的矿物探索采样媒体,而风化的海洋碳酸盐岩石(石灰石)不太有用。区分两者在钻孔切割中难以破坏纹理信息。锶同位素比是可变的,强烈依赖于碎屑沉积组分,因此在基础和海洋碳酸盐岩石之间有效地没有区分。与风化的新生代海洋碳酸岩岩石相比,基础碳酸盐轴承岩体中的Ca / Sr和Ca / mg比率之间存在系统差异。含有比其母船对应于其母线对应的Ca / Mg(> 35)和Ca / Sr(> 1260),系统碳酸盐岩石轴承岩石系统地下降了Ca / mg(<28)和Ca / Sr(<650)比率。这种简单的判别可用于识别适合于矿物勘探中的碳酸酯采样的样品,特别是在钻屑中,以及多元素地球化学勘探数据集的回顾性过滤。

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