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首页> 外文期刊>Australian Journal of Earth Sciences >Physico-chemical parameters from melt inclusions for the formation of the massive sulfide deposits in the Altai-Sayan Region, Central Asia
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Physico-chemical parameters from melt inclusions for the formation of the massive sulfide deposits in the Altai-Sayan Region, Central Asia

机译:中亚阿尔泰-萨彦地区熔体包裹体形成大量硫化物矿床的理化参数

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Studies of quartz-hosted melt inclusions from rhyolitic dacite and andesite rocks showed that high-temperature (910-1180°C) felsic melts of normal alkalinity, which correspond to a tholeiitic K-Na series, played an active role during the formation of volcanogenic massive sulfide deposits of the Altai-Sayan Region. High temperatures can be explained by felsic melts degassing in open volcanic systems and heating by ascending basaltic magma. Considerable variation in the H2O content in magmatic systems of the Altai-Sayan volcanogenic massive sulfide deposits (0.08-4.30 wt%) has been established. REE patterns of quartz-hosted inclusions from volcanic rocks of the Altai-Sayan volcanogenic massive sulfide deposits display distinct negative Eu anomalies, which suggest plagioclase fractionation during differentiation of the melt. They are similar to the patterns of quartz-hosted inclusions of the Yaman-Kasy deposit (marginal sea setting) in the South Urals and to island arc rhyolites. Analyses of melt inclusions showed high values of Cu—up to 4100 ppm at the Yubileinoe deposit (Rudny Altai) and up to 3230 ppm at the Kyzyl-Tashtyg deposit (East Tuva). Comparison of data on melt inclusions has shown that some physical and chemical parameters of the magmas that generate volcanogenic massive sulfide and porphyry Cu deposits can be quite similar within certain limits. View full textDownload full textKey WordsCentral Asia, inclusions, massive sulfide deposits, porphyry mineral deposits, physico-chemical parameters, volcanogenic depositsRelated var addthis_config = { ui_cobrand: "Taylor & Francis Online", services_compact: "citeulike,netvibes,twitter,technorati,delicious,linkedin,facebook,stumbleupon,digg,google,more", pubid: "ra-4dff56cd6bb1830b" }; Add to shortlist Link Permalink http://dx.doi.org/10.1080/08120091003739148
机译:流纹沸石和安山岩岩石中石英熔体包裹体的研究表明,正常碱性的高温(910-1180°C)长英质熔体对应于高钾钾钠系列,在火山成因形成过程中发挥了积极作用阿尔泰-萨彦地区的大量硫化物矿床。高温可以通过开放火山系统中的长石熔体脱气以及通过上升玄武岩浆加热来解释。在阿尔泰-萨彦火山成因的块状硫化物矿床(0.08-4.30 wt%)的岩浆系统中,H 2 O含量已经确定了相当大的变化。阿尔泰-萨彦火山成岩块状硫化物矿床火山岩中石英包裹体的REE模式显示出明显的负Eu异常,这表明在熔体分化过程中斜长石分馏。它们与南乌拉尔的Yaman-Kasy矿床(边缘海域)的石英基质包裹体和岛弧流纹岩相似。熔融夹杂物的分析显示,Yubileinoe矿床(Rudny Altai)的Cu值高达4100 ppm,而Kyzyl-Tashtyg矿床(East Tuva)的Cu值高达3230 ppm。对熔融夹杂物数据的比较表明,在一定范围内,产生火山成块的硫化物和斑岩型铜矿床的岩浆的某些物理和化学参数可能非常相似。查看全文下载全文关键词中亚,内含物,块状硫化物矿床,斑岩矿床,理化参数,火山成矿床相关var addthis_config = { ,linkedin,facebook,stumbleupon,digg,google,更多”,发布号:“ ra-4dff56cd6bb1830b”};添加到候选列表链接永久链接http://dx.doi.org/10.1080/08120091003739148

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