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High water content in primitive continental flood basalts

机译:原始大陆洪水玄武岩中水含量高

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摘要

As the main constituent of large igneous provinces, the generation of continental flood basalts (CFB) that are characterized by huge eruption volume (>105 km3) within short time span (<1–3 Ma) is in principle caused by an abnormally high temperature, extended decompression, a certain amount of mafic source rocks (e.g., pyroxenite), or an elevated H2O content in the mantle source. These four factors are not mutually exclusive. There are growing evidences for high temperature, decompression and mafic source rocks, albeit with hot debate. However, there is currently no convincing evidence of high water content in the source of CFB. We retrieved the initial H2O content of the primitive CFB in the early Permian Tarim large igneous province (NW China), using the H2O content of ten early-formed clinopyroxene (cpx) crystals that recorded the composition of the primitive Tarim basaltic melts and the partition coefficient of H2O between cpx and basaltic melt. The arc-like H2O content (4.82 ± 1.00 wt.%) provides the first clear evidence that H2O plays an important role in the generation of CFB.
机译:作为大火成岩省的主要组成部分,大陆喷水玄武岩(CFB)的生成在短时间内具有巨大的喷发量(> 10 5 km 3 ) (<1-3 Ma)原则上是由于异常高温,延长的减压,一定量的镁铁质烃源岩(如辉石)或地幔源中H2O含量较高所引起的。这四个因素不是相互排斥的。尽管争论不休,但高温,减压和镁铁质烃源岩的证据越来越多。但是,目前尚无令人信服的证据表明CFB的来源中含水量很高。我们使用十个早期形成的斜辉石(cpx)晶体的H2O含量来检索二叠纪塔里木大火成岩省(中国西北地区)的原始CFB的初始H2O含量,这些晶体记录了塔里木原始玄武岩熔体的组成和分隔cpx和玄武质熔体之间的H2O系数。弧状H2O含量(4.82±±1.001.00wt。%)提供了第一个明确的证据,表明H2O在CFB的产生中起重要作用。

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