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The influence of water in silicate melt on aluminium excess in plagioclase as a potential hygrometer

机译:作为潜在湿度计的硅酸盐熔体中的水对斜长石中铝过量的影响

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摘要

Measuring water contents of magmas is fundamental to resolving a number of geological questions, such as the mechanisms of silicic magma evolution, the triggering of volcanic eruptions, and the formation of porphyry copper deposits. This study focuses on the correlation between apparent deviations from stoichiometry of plagioclase crystals and high water concentration in the magmatic melt from which they grew. We considered this relationship as a potential geo-hygrometer (water activity indicator). To test and potentially calibrate this new technique, a range of natural and experimental plagioclase crystals were analysed, with particular care taken to identify and avoid analytical bias and artefacts. In contrast to recently published material, we found no systematic aluminium excess in plagioclase, irrespective of the water concentration of the silicate melt it crystallised from. This suggests that aluminium excess in plagioclase cannot serve as a geo-hygrometer. The high likelihood of misinterpreting analytical artefacts (due to alkali migration and imprecise standardisation) as small deviations from stoichiometry, also requires its application as a mineral exploration tool to be treated with caution.
机译:测量岩浆的含水量是解决许多地质问题的基础,例如硅质岩浆的演化机制,火山爆发的触发以及斑岩铜矿床的形成。这项研究的重点是斜长石晶体化学计量的表观偏差与它们所生长的岩浆熔体中高水含量之间的相关性。我们认为这种关系是潜在的地物湿度计(水活度指标)。为了测试和潜在地校准这一新技术,分析了一系列天然和实验斜长石晶体,并特别注意识别和避免分析偏差和伪像。与最近发表的材料相反,我们发现斜长石中没有系统性的铝过量,无论其结晶出的硅酸盐熔体的水浓度如何。这表明斜长石中过量的铝不能用作地质湿度计。由于与化学计量的微小偏差,极有可能将分析伪像误解为(由于碱迁移和不精确的标准化),这也要求谨慎对待将其用作矿物勘探工具。

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