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Tempo of magma degassing and the genesis of porphyry copper deposits

机译:岩浆脱气速度与斑岩型铜矿床成因

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摘要

Porphyry deposits are copper-rich orebodies formed by precipitation of metal sulphides from hydrothermal fluids released from magmatic intrusions that cooled at depth within the Earth’s crust. Finding new porphyry deposits is essential because they are our largest source of copper and they also contain other strategic metals including gold and molybdenum. However, the discovery of giant porphyry deposits is hindered by a lack of understanding of the factors governing their size. Here, we use thermal modelling and statistical simulations to quantify the tempo and the chemistry of fluids released from cooling magmatic systems. We confirm that typical arc magmas produce fluids similar in composition to those that form porphyry deposits and conclude that the volume and duration of magmatic activity exert a first order control on the endowment (total mass of deposited copper) of economic porphyry copper deposits. Therefore, initial magma enrichment in copper and sulphur, although adding to the metallogenic potential, is not necessary to form a giant deposit. Our results link the respective durations of magmatic and hydrothermal activity from well-known large to supergiant deposits to their metal endowment. This novel approach can readily be implemented as an additional exploration tool that can help assess the economic potential of magmatic-hydrothermal systems.
机译:斑岩矿床是富含铜的矿石,是由岩浆侵入体释放出的热液中的金属硫化物沉淀而成的,这些岩浆侵入体在地壳深处冷却。寻找新的斑岩矿床至关重要,因为它们是我们最大的铜来源,而且还包含其他战略金属,包括金和钼。但是,由于缺乏对决定其大小的因素的了解,阻碍了大型斑岩矿床的发现。在这里,我们使用热建模和统计模拟来量化冷却岩浆系统释放出的流体的速度和化学性质。我们确认典型的弧状岩浆产生的流体与形成斑岩矿床的流体成分相似,并得出结论,岩浆活动的数量和持续时间对经济斑岩铜矿床的赋存量(沉积铜的总质量)施加了一级控制。因此,尽管铜和硫的初始岩浆富集增加了成矿的潜力,但并不需要形成巨大的矿床。我们的研究结果将岩浆和热液活动的持续时间从著名的大型矿床到超大型矿床与其金属赋存联系在一起。这种新颖的方法可以很容易地作为一种附加的勘探工具来实施,可以帮助评估岩浆热液系统的经济潜力。

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