首页> 外文期刊>Lithos: An International Journal of Mineralogy, Petrology, and Geochemistry >Contrasting Triassic ferroan granitoids from northwestern Liaoning, North China: Magmatic monitor of Mesozoic decratonization and a craton-orogen boundary
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Contrasting Triassic ferroan granitoids from northwestern Liaoning, North China: Magmatic monitor of Mesozoic decratonization and a craton-orogen boundary

机译:辽西北地区三叠纪铁花岗花岗岩的对比:中生代克拉通和克拉通-造山带边界的岩浆监测

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The diversity exhibited by ferroan granitoids testifies to multiple distinct crustal and mantle processes generally within extensional environments and thus holds the key to monitoring important geodynamic and crustal evolutionary processes and calibrating terrane tectonic affinity. This study documents three Middle to Late Triassic ferroan granitoid suites from northwestern Liaoning, North China, and proposes distinct petrogenetic scenarios for each. The Middle Triassic (ca. 238 Ma) Ping'andi (PAD) granites are mainly calcalkaliand peraluminous. Their radiogenic whole-rock Nd and zircon Hf isotopic signatures argue for an origin consistent with partial melting of a juvenile quartzofeldspathic crust formed by prior mantle-derived magmatic underplating and their differentiations. By contrast, the Late Triassic (ca. 220 Ma) Dashaoleng (DSL) and Sijiazi (SJZ) suites show an evolved character from alkali-calcic to alkali and from metaluminous to peraluminous. Their variably evolved whole-rock Sr-Nd and mixed zircon Hf isotopic compositions suggest that both suites were formed by variable mixing between depleted mantle-derived mafic magma and old crust-derived felsic magma, with distinctively higher input from juvenile components in the DSL suite. These contrasting ferroan granitoid suites not only provide a spatial marker for monitoring juxtaposition of the North China Craton (NCC) and the Central Asian Orogenic Belt (CAOB) along a lithospheric-scale boundary fault in the region, but also present a temporal snapshot that records a southwardly-progressing crustal growth scenario possibly in response to lithospheric dripping within a post-orogenic extensional regime. The cratonic scale synthesis further indicates that diachronous decratonization pattern of the NCC might record episodic response of the craton to evolved plate tectonic processes with two contrasting Phanerozoic orogenic systems.
机译:铁氧体花岗岩显示出的多样性通常证明了在伸展环境中存在多个不同的地壳和地幔过程,因此是监测重要的地球动力学和地壳演化过程以及校准地层构造亲和力的关键。该研究记录了来自中国辽宁西北部的三叠纪三叠纪至三叠纪二叠纪铁花花岗岩类,并提出了各自的不同成岩情景。中三叠世(约238 Ma)Ping'andi(PAD)花岗岩主要为钙碱性和过铝质。他们的放射性成岩的Nd和Zrcon Hf同位素特征表明其成因与由先前地幔衍生的岩浆底板及其分化形成的幼年石英长石地壳的部分熔融相一致。相比之下,晚三叠世(约220 Ma)的Dashaoleng(DSL)和Sijiazi(SJZ)套件显示出从碱性钙质到碱性,从金属质到高铝质的演化特征。他们的演化演化的全岩Sr-Nd和锆石Hf混合同位素组成表明,这两个套件都是由贫化的地幔衍生的铁镁质岩浆和旧地壳衍生的长英质岩浆之间的可变混合形成的,而DSL套件中的幼年成分的输入明显更高。这些对比鲜明的铁花岗花岗岩套件不仅提供了空间标记,用于监测该地区岩石圈尺度边界断层上的华北克拉通(NCC)和中亚造山带(CAOB)的并置,而且还提供了记录时空的快照向南发展的地壳生长情况,可能是对造山后扩张期岩石圈滴水的反应。克拉通尺度的合成进一步表明,NCC的历时克拉通作用模式可能记录了克拉通对具有两个对比的古生代造山系统的演化的板块构造过程的情景响应。

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