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大洋中脊玄武岩磁性特征 被引量:3
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作者 刘隆 周建平 +3 位作者 吴涛 陶春辉 李倩宇 陈明 《地球物理学进展》 CSCD 北大核心 2021年第5期1880-1890,共11页
大洋中脊玄武岩磁性研究是了解洋脊磁异常机理和洋壳圈层结构等基础科学问题的重要手段,但由于深海样品采集难度较大,岩浆后期氧化和热液蚀变如何改变岩石磁性至今仍然是研究的瓶颈.本文从磁性矿物类型、岩石磁性能和磁性颗粒特征等方... 大洋中脊玄武岩磁性研究是了解洋脊磁异常机理和洋壳圈层结构等基础科学问题的重要手段,但由于深海样品采集难度较大,岩浆后期氧化和热液蚀变如何改变岩石磁性至今仍然是研究的瓶颈.本文从磁性矿物类型、岩石磁性能和磁性颗粒特征等方面概述了大洋中脊玄武岩的岩石磁性特征,其主要的磁性矿物是钛磁铁矿,平均居里温度274℃,具有较高的Q比.这表明在磁法勘探正演与资料解释过程中,不能忽视岩石剩余磁化和感应磁化的共同作用.通过重点对比分析超慢速扩张西南印度洋中脊的玄武岩磁性特征,认为该区的岩石磁性研究将为磁法勘探提供约束条件,同时有望基于岩石磁性研究,在热液蚀变过程定量化研究,与超慢速扩张洋中脊下地壳演化模型等研究方面取得突破. 展开更多
关键词 大洋中脊玄武岩 磁性矿物 岩石磁性能 磁性颗粒 西南印度洋
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Mantle-derived magmas:intraplate,hot-spots and mid-ocean ridges 被引量:8
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作者 David H.Green Trevor J.Falloon 《Science Bulletin》 SCIE EI CAS CSCD 2015年第22期1873-1900,共28页
Primary or parental magmas act as probes to infer eruption and source temperatures for both mid-ocean ridge (MOR) and‘hot-spot' magmas (tholeiitic picrites). The experimental petrogenetic constraints ('inverse... Primary or parental magmas act as probes to infer eruption and source temperatures for both mid-ocean ridge (MOR) and‘hot-spot' magmas (tholeiitic picrites). The experimental petrogenetic constraints ('inverse' experiments) argue for no significant temperature differences between them. However, there are differences in major, minor and trace elements which characterise geochemical, not thermal, anomalies beneath ‘hot-spots'. We suggest that diapiric upwelling from interfaces (redox contrasts) between old subducted slab and normal MOR basalt source mantle is the major reason for the observed characteristics of island chain or ‘hot-spot' volcanism. Intraplate basalts also include widely distributed volcanic centres containing lherzolite xenoliths, i.e. mantle-derived magmas. Inverse experiments on olivine basalt, alkali oli- vine basalt, olivine basanite, olivine nephelinite, olivine melilitite and olivine leucitite (lamproite) determined liquidus phases as a function of pressure, initially under anhydrous and CO2-absent conditions. Under C- and H-absent conditions, only tholeiites to alkali olivine basalts had O1 + Opx 4-Cpx as high-pressure liquidus phases. Addition of H20 accessed olivine basanites at 2.5-3 GPa, ,- 1,200 ℃, but both CO2 and H20 were necessary to obtain saturation with O1, Opx, Cpx and Ga at 2.5-3.5 GPa for olivine nephelinite and olivine melilitite. The forward and inverse experimental studies are combined to formulate a petrogenetic grid for intraplate, ‘hot-spot' and MOR magmatism within the plate tectonics paradigm. The asthenosphere is geochemically zoned by slow upward migration of incipient melt. The solidus and phasestabilities of lherzolite with very small water contents (〈3,000 ppm) determine the thin plate behaviour of the oceanic lithosphere and thus the Earth's convection in the form of plate tectonics. There is no evidence from the parental magmas of MOR and ‘hot-spots' to support the 'deep mantle thermal plume' hypothesis. The preferred alternative is the presence of old subducted slabs, relatively buoyant and oxidised with respect to MORB source mantle and suspended or upwelling in or below the lower asthenosphere (and thus detached from overlying plate movement). 展开更多
关键词 experimentsMantle-derived magmas ·High-pressureC-H-O · Asthenosphere - Hot-spotsPlate tectonics
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