A'/> Petrogenesis of Cretaceous shoshonitic rocks in the northern Wuyi Mountains, South China: A result of the roll-back of a flat-slab?
首页> 外文期刊>Lithos: An International Journal of Mineralogy, Petrology, and Geochemistry >Petrogenesis of Cretaceous shoshonitic rocks in the northern Wuyi Mountains, South China: A result of the roll-back of a flat-slab?
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Petrogenesis of Cretaceous shoshonitic rocks in the northern Wuyi Mountains, South China: A result of the roll-back of a flat-slab?

机译:南方武夷山北部白垩纪鞋岩岩石岩石:扁平板卷的结果?

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Abstract Potassic magmatism is commonly linked to post-/late-orogenic environments, such as foundering or convection thinning of continental lithosphere. Their petrogenesis is crucial for constraining the chemical and physical properties of the remnant sub-continental lithospheric mantle. Here we report new SHRIMP zircon U–Pb ages, whole rock geochemical results and Sr–Nd and zircon Hf isotope data from four potassic plutons (the Da'an, Yingcheng, Zixi and Honggong plutons) in the northern Wuyi Mountains, South China. SHRIMP U–Pb zircon analyses indicate that these potassic rocks formed at 139–126Ma. They are characterized by high SiO2 (56–73%) and K2O (3.8–6.7%), with a K2O/Na2O ratio of 2.18–2.04, plotting within the field of high-SiO2 shoshonites. Their I Sr and εNd(t) values vary from 0.7077 to 0.7162 and ?5.66 to ?10.52, respectively. The initial zircon εHf(t) values range from 2.3 to ?13.1, corresponding to TDM modal ages between 707 and 1330Ma. These geochemical and isotope characteristics indicate that these shoshonites derived from a subduction-modified ancient subcontinental lithospheric mantle, and then underwent significantly fractional crystallization of K-feldspar, plagioclase, and accessory minerals, such as apatite and Fe–Ti oxides during magma ascent. We interpret that asthenospheric mantle upwelling (caused by eastward roll-back of a flat-slab?) triggered partial melting of the metasomatized lithospheric mantle to result in the Early Cretaceous shoshonitic magmatism in the northern Wuyi Mountains. An integration of our new results with compiled data from the interior of the South China Block reveals that the arc-like geochemical signature is confined to the Wuyi Mountains region, but becomes little or even invisible toward inland in South China. This implies that the far-field effects of the early Mesozoic subduction only reached the Wuyi Mountains, ca. 500km away from the trench, consistent with flat or shallow subduction models. Graphical abstract Display Omitted Highlights ? The shoshonitic rocks in the northern Wuyi Mountains were formed at 139–126Ma. ? The rocks are derived from an enriched subcontin
机译:<![cdata [ 抽象 Potassic Magmatism通常与大陆岩石圈的创始或对流变薄等联系起来。它们的纤维化是对限制残余亚欧式岩石岩石罩的化学和物理性质至关重要。在这里,我们在武夷山南北部武夷山北部的四个型芦苇(大安,yingheng,ZIXI和洪刚钚)上举报了新的虾Zircon U-PB年龄,整个岩石地球化学结果和SR-ND和Zircon HF同位素数据。虾U-PB锆石分析表明,这些型岩石在139-126 ma。它们的特点是High SiO 2 (56-73%)和K 2 O( 3.8-6.7%),带K 2 O / NA 2 O比例2.18 -2.04,在高SIO 2 Shoshonites的领域。他们 i sr 和εnd(t)值从0.7077变化到0.7162和? 5.66至? 10.52。初始锆石εhf(t)值范围为2.3到? 13.1,对应于T DM 模态年龄在707之间和1330 ma。这些地球化学和同位素特征表明,这些旋流源衍生自视域改性的古联型岩石罩,然后在岩浆Ascence期间介绍了K-Feldspar,Plagioclase和辅助矿物的显着分数结晶,如磷灰石和Fe-Ti氧化物。我们解释了哮喘的搭桥上升(由扁平板的东回回来率引起的扁平板)触发了弥映瘤岩石型壁炉的部分熔化,导致武夷山北部的早期白垩纪秋山岩。我们的新结果与来自华南地区内部的编译数据的整合揭示了弧形地球化学签名被限制在武夷山地区,而是对南方的内陆变得很少甚至不可见。这意味着早期中生代俯冲的远场效果仅达到了武夷山。 500 千克远离沟槽,与平坦或浅层俯冲模型一致。 图形抽象 显示省略 突出显示 < CE:标签>? 武夷北部的斯科尼岩岩未存在于139-126 ma。 岩石源自富集的亚电脑

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