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Trace element analysis of minerals in magmatic-hydrothermal ores by laser ablation inductively-coupled plasma mass spectrometry: approaches and opportunities

机译:激光烧蚀电感耦合等离子体质谱法分析岩浆 - 热液矿中矿物的微量元素:方法和机遇

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摘要

Laser ablation inductively-coupled plasma mass spectrometry (LA-ICP-MS) has rapidly established itself as the method of choice for generation of multi-element datasets for specific minerals, with broad applications in Earth science. Variation in absolute concentrations of different trace elements within common, widely distributed phases, such as pyrite, iron-oxides (magnetite and hematite), and key accessory minerals, such as apatite and titanite, can be particularly valuable for understanding processes of ore formation, and when trace element distributions vary systematically within a mineral system, for a vector approach in mineral exploration. LA-ICP-MS trace element data can assist in element deportment and geometallurgical studies, providing proof of which minerals host key elements of economic relevance, or elements that are deleterious to various metallurgical processes. This contribution reviews recent advances in LA-ICP-MS methodology, reference standards, the application of the method to new mineral matrices, outstanding analytical uncertainties that impact on the quality and usefulness of trace element data, and future applications of the technique. We illustrate how data interpretation is highly dependent on an adequate understanding of prevailing mineral textures, geological history, and in some cases, crystal structure.
机译:激光烧蚀电感耦合等离子体质谱法(LA-ICP-MS)已迅速确立其自身作为生成特定矿物的多元素数据集的选择方法,在地球科学中具有广泛的应用。在常见的,分布广泛的相中,例如黄铁矿,氧化铁(磁铁矿和赤铁矿)以及关键的辅助矿物(例如磷灰石和钛矿)中不同微量元素的绝对浓度变化,对于理解矿石形成过程特别有价值,当矿物系统中的痕量元素分布发生系统性变化时,则适用于矿物勘探中的矢量方法。 LA-ICP-MS痕量元素数据可协助元素迁移和地质冶金研究,提供证明哪些矿物具有经济相关性的关键元素或对各种冶金过程有害的元素的证据。本文对LA-ICP-MS方法的最新进展,参考标准,该方法在新矿物基质中的应用,影响痕量元素数据质量和实用性的突出分析不确定性以及该技术的未来应用进行了回顾。我们说明了数据解释如何高度依赖于对主要矿物纹理,地质历史以及在某些情况下晶体结构的充分理解。

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