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Geochemistry of deep Manihiki Plateau crust: Implications for compositional diversity of large igneous provinces in the Western Pacific and their genetic link

机译:深化曼希基高原地壳:西太平洋大火省组成多样性的影响及其基因环节

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Geochemical studies revealed two major (high-and low-Ti) magmatic series composing the Manihiki Plateau in the Western Pacific. Here we report new geochemical data (major and trace element and Sr-Nd-Pb isotope compositions) of the Manihiki rocks. The rocks belong to the previously rarely sampled high-Ti Manihiki series and represent a section of deep crust of the plateau. The rocks were collected by remotely operated vehicle ROV Kiel 6000 during R/V SONNE SO225 expedition from a tectonic block at a stretched and faulted boundary between the Northern and Western Manihiki sub-plateaus. Additional data is presented on samples obtained by dredging during the same cruise. Judging from the age of stratigraphically higher lavas, most samples must be = 125 Ma old. They comprise fully crystalline microdolerites, aphyric and Ol-Px-Pl-phyric basalts and breccias metamorphosed under greenschist to amphibolite facies with peak metamorphic temperatures of 636-677 degrees C and pressures of 2.0-2.7 kbar. A single sample of hornblende gabbro was also recovered and likely represents a late stage intrusion. Despite strong metamorphism, the samples from the ROV profile reveal only minor to moderate chemical alteration and their initial compositions are well preserved. The rocks are relatively primitive with MgO up to 13 wt%, range from enriched to depleted in LREE (La-N/Sm-N = 0.7-1.1), exhibit variable but mostly depleted Nb contents (Nb/Nb* = 0.8-1.3) and display only a narrow range in isotope compositions with strong EM1 characteristics (epsilon Nd (t) = 1.8-3.6, Pb-206/Pb-204 (t) = 17.9-18.1, Pb-207/Pb-204 (t) = 15.49-15.53, Pb-208/Pb-204 (t) = 38.08-38.42). The parental magmas are interpreted to originate from a thermochemical plume with a potential mantle temperature 1460 degrees C. The trace element and isotope EM1 signature of the high-Ti rocks reflects the presence of recycled lower continental crust material or re-fertilized subcontinental lithospheric mantle in the
机译:地球化学研究揭示了两种(高和低TI)魔法系列,在西太平洋化工中组成了曼希基高原。在这里,我们报告了Manihiki岩石的新地球化学数据(主要和痕量元素和SR-ND-PB同位素组合物)。岩石属于先前很少采样的高Ti Manihiki系列,代表了高原的深层地壳的一部分。通过在北部和西部北部和西部的北部和西部北部和西部的亚波西州的拉伸和断层边界的构造块期间通过远程操作的车辆ROV基准赛6000收集岩石。在相同的巡航期间通过疏浚而获得的额外数据。从地层上较高的熔岩时期判断,大多数样本必须是& = 125马老。它们包含完全结晶的微溶剂,透析和OL-PX-PL-Phyics底座和Breccias Metormorphats在Greenschist下到Amphibolite相位,峰变质温度为636-677℃和2.0-2.7 kbar的压力。还回收了单一的Hornblende Gabbro样品,并且可能代表晚期侵扰。尽管变质强,但来自ROV型材的样品仅显示轻微的化学改变,并且它们的初始组合物得到很好的保存。岩石与MgO相对原始,MgO高达13wt%,范围从富含烧蚀(La-N / SM-N = 0.7-1.1),表现出可变但大多耗尽的Nb内容物(Nb / Nb * = 0.8-1.3 )并且仅在具有强EM1特征的同位素组合物中显示窄范围(εnd(t)= 1.8-3.6,Pb-206 / pb-204(t)= 17.9-18.1,Pb-207 / pb-204(t) = 15.49-15.53,PB-208 / PB-204(T)= 38.08-38.42)。父母的岩浆被解释为源自潜在的地幔温度和 1460℃。高TI岩石的痕量元素和同位素EM1签名反映了再生的下欧洲地壳材料或再施肥的亚联土型岩性岩石披风在

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