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Cenozoic alkali basalts from Jingpohu, NE China: The role of lithosphere-asthenosphere interaction

机译:中国内蒙古镜泊湖新生代碱性玄武岩:岩石圈-软流圈相互作用的作用

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The geochemistry of Late Cenozoic volcanic rocks from Jingpohu, NE China, provides important constraints on the petrogenesis of continental alkali basalts and lithospheric evolution in the eastern Central Asian Orogenic Belt (CAOB). Miocene-Pleistocene and Holo-cene basalts from Jingpohu show alkali affinities and are characterized by Ocean Island Basalt (OIB)-like REE and trace element patterns somehow resembling Holocene potassic rocks from Wudalianchi which are considered to be derived from ancient enriched lithospheric mantle. These basalts show depleted Sr-Nd isotopic compositions (~(87)Sr/~(86)Sr = 0.7039-0.7046, ε_(Nd) = 1.3-6.0) and Dupal-like but unrad-iogenic Pb isotopic signatures (~(206)Pb/~(204)Pb = 17.54-17.94, ~(207)Pb/~(204)Pb = 15.45-15.54, ~(208)Pb/~(204)Pb = 37.71-38.07), comparable to the OIB. The combined geochemical and isotopic signatures are consistent with magma source mixing between a Focal Zone (FOZO)-like asthenospheric mantle component (characterized by enriched Pb and depleted Sr-Nd isotopic compositions) and an isotopically enriched EM1-type subcontinental lithospheric mantle component. Lithospheric thickness inferred from alkali basalts from different regions implies a progressive thinning from west to east in the CAOB, which may be caused by lithosphere-asthenosphere interaction. We propose that upwelling of the asthenosphere and subsequent mechanical and chemical erosion beneath lithospheric mantle induced by sub-duction of the Pacific plate might have been responsible for the lithospheric thinning in the eastern CAOB. The lithospheric thinning has proceeded in a dischronous way in the western North China Craton, near the Daxinganling-Taihangshan gravity lineament, but this event did not take place in the corresponding area of the CAOB. The lithospheric thinning shows different styles both spatially and temporally in the two tectonic units.
机译:来自中国东北地区景颇湖的晚新生代火山岩的地球化学对中亚东部造山带(CAOB)的大陆性碱性玄武岩的岩石成因和岩石圈演化提供了重要的限制。景颇湖的中新世—更新世和全新世玄武岩具有碱性亲和力,其特征为大洋洲玄武岩(OIB)样的稀土元素和微量元素模式,某种程度上类似于五大连池的全新世钾盐岩,被认为是源自古代丰富的岩石圈地幔。这些玄武岩显示出贫化的Sr-Nd同位素组成(〜(87)Sr /〜(86)Sr = 0.7039-0.7046,ε_(Nd)= 1.3-6.0)和类似Dupal但无放射性的Pb同位素特征(〜(206 Pb /〜(204)Pb = 17.54-17.94,〜(207)Pb /〜(204)Pb = 15.45-15.54,〜(208)Pb /〜(204)Pb = 37.71-38.07),与OIB相当。结合的地球化学和同位素特征与类似震源区(FOZO)的软流圈地幔组分(特征在于富集的Pb和贫化的Sr-Nd同位素组成)与同位素富集的EM1型次大陆岩石圈地幔组分之间的岩浆源混合相一致。由不同地区的碱玄武岩推断出的岩石圈厚度意味着CAOB从西向东逐渐变薄,这可能是由岩石圈-软流圈相互作用引起的。我们认为,由于太平洋板块俯冲而引起的软流圈上升以及随后的岩石圈地幔下的机械和化学侵蚀可能是造成东部CAOB岩石圈变薄的原因。在华北克拉通西部大兴安岭-太行山重力线附近,岩石圈变薄的过程是不同步的,但这一事件并未发生在CAOB的相应区域。在两个构造单元中,岩石圈变薄在空间和时间上显示出不同的样式。

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