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Exploring the metamorphic consequences of secular change in the siliciclastic compositions of continental margins 被引量:3
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作者 Gautier Nicoli Brendan Dyck 《Geoscience Frontiers》 SCIE CAS CSCD 2018年第4期967-975,共9页
Shale and greywacke compositions from the Archean to Phanerozoic record a secular change in the siliciclastic material that comprises much of Earth's continental margins, past and present. This study explores the met... Shale and greywacke compositions from the Archean to Phanerozoic record a secular change in the siliciclastic material that comprises much of Earth's continental margins, past and present. This study explores the metamorphic consequence of these compositional changes, by comparing phase equilibrium models constructed for average Archean, Proterozoic, and Phanerozoic shale and greywacke compositions equilibrated along two Barrovian-type geotherms: 1330℃/GPa(A) and 800 ℃/GPa(B). Our models show that Archean siliciclastic rocks can retain up to 4 vol.% water at middle to lower crustal conditions, nearly twice that of Proterozoic and Phanerozoic compositions. The increased ferromagnesium content of Archean siliciclastic rocks stabilizes chlorite to higher temperatures and results in a biotite-rich assemblage at solidus temperatures. Accordingly, water-absent biotite dehydration melting is predicted to play a greater role in the generation of melt in the metamorphism of Archean aged units,and water-absent muscovite dehydration melting is of increasing importance through the Proterozoic and Phanerozoic. This secular variation in predicted mineral assemblages demonstrates the care with which metamorphic facies diagrams should be applied to Archean compositions. Moreover, secular changes in the composition of shale and greywacke is reflected in the evolution of anatectic melt towards an increasingly less viscous, Ca-rich, and Mg-poor monzogranite. 展开更多
关键词 Secular change Shale GREYWACKE Dehydration melting Thermodynamic modelling perple_x
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变质相平衡在研究深熔岩石中的应用
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作者 邓亮鹏 《地质学报》 EI CAS CSCD 北大核心 2023年第2期613-622,共10页
下地壳岩石的深熔作用不仅与麻粒岩和花岗岩的形成具有紧密关联,而且在某些构造环境下会对地球动力学演化过程造成影响,因此,对深熔岩石的变质P-T条件的准确估算及对其熔融机制的限定具有重要意义。基于内洽性热力学数据库、THERMOCALC/... 下地壳岩石的深熔作用不仅与麻粒岩和花岗岩的形成具有紧密关联,而且在某些构造环境下会对地球动力学演化过程造成影响,因此,对深熔岩石的变质P-T条件的准确估算及对其熔融机制的限定具有重要意义。基于内洽性热力学数据库、THERMOCALC/Perple_X等程序以及适当的固溶体活度模型,变质相平衡模拟已逐渐成为变质岩石学的常规研究方法,广泛应用于推断天然岩石的矿物共生序列、估算岩石的变质P-T条件等。不仅如此,如果有适当的熔体活度模型,变质相平衡模拟还能估算深熔岩石的熔融温度、压力及熔体比例,以及限定其涉及的熔融反应,并计算熔体、转熔矿物及残余矿物的成分等。针对不同成分岩石,包括花岗质岩石、变泥质岩、变基性岩及橄榄岩在不同压力下产生的熔体,前人陆续提出了对应的活度模型,并且其有效性得到了相关实验数据的验证。随着近年来熔体活度模型的不断更新和完善,变质相平衡模拟有望成为研究自然界深熔岩石的常规方法,为相关的麻粒岩和花岗岩成因研究、相关地球动力学演化研究提供新的思路。 展开更多
关键词 变质相平衡 THERMOCALC/perple_x程序 熔体活度模型
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