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LAM-ICPMS法用于单颗粒锆石定年研究 被引量:17
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作者 刘海臣 朱炳泉 张展霞 《科学通报》 EI CAS CSCD 北大核心 1998年第10期1103-1106,共4页
利用激光微区探针与感耦等离子体质谱结合即LAM_ICPMS技术 ,对已知TIMS年龄数据的若干单颗粒锆石进行了Pb/Pb及Pb/U年龄测定 .Pb同位素单质量分馏因子变化在 0 0 10~ 0 0 12之间并由NIST6 10标准玻璃进行校正 ,同时对影响Pb/U比值稳... 利用激光微区探针与感耦等离子体质谱结合即LAM_ICPMS技术 ,对已知TIMS年龄数据的若干单颗粒锆石进行了Pb/Pb及Pb/U年龄测定 .Pb同位素单质量分馏因子变化在 0 0 10~ 0 0 12之间并由NIST6 10标准玻璃进行校正 ,同时对影响Pb/U比值稳定性的若干因素进行了研究和优化 .获得的单点测量精度分别为2 0 7Pb/ 2 0 6 Pb在 0 6 %~ 2 4 %之间 ,而2 0 6 Pb/ 2 38U在 1%~ 10 %之间 ;对应的外部测量精度分别为0 7%和 6 % .计算得到的Pb/Pb年龄和Pb/U年龄与TIMS结果相差分别为 1%和 <3% . 展开更多
关键词 激光探针 锆石 lam-icpms 地质年代学
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Petrography and Geochemistry of Peridotite Xenoliths from Hannuoba and Significance for Lithospheric Mantle Evolution 被引量:3
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作者 余淳梅 郑建平 Griffin WL 《Journal of China University of Geosciences》 SCIE CSCD 2006年第1期25-33,共9页
The compositions of the whole rocks and trace elements of minerals in peridotites can reflect the characteristics of the lithospheric mantle. The nature and evolution of the Cenozoic lithospheric mantle beneath Hannuo... The compositions of the whole rocks and trace elements of minerals in peridotites can reflect the characteristics of the lithospheric mantle. The nature and evolution of the Cenozoic lithospheric mantle beneath Hannuoba (汉诺坝), located on the north edge of the intra-North China orogenic belt, are discussed based on the in-situ LAM-ICPMS detected trace element compositions of clinopyroxenes in the Hannuoba peridotitic xenoliths combined with detailed petrography and geochemistry studies. The Hannuoba lithospheric mantle was formed by different partial meltings of the primitive mantle. Most of the samples reflect the partial melting degree of lower than 5% with a few samples of 15%-20%. Major element compositions of the whole rocks and geochemical compositions of clinopyroxenes reveal the coexistence of both fertile and depleted mantle underneath the Hannuoba region during the Cenozoic. This was probably caused by the asthenospheric mantle replacing the aged craton mantle through erosion, intermingling and modification. Our conclusion is further supported by the existence of both carbonatitic magmatic material and silicate melt/ fluid metasomatism as magnified by the trace elements of the clinopyroxencs from the Hannuoba lithospherJc mantle. 展开更多
关键词 peridotite xenoliths lam-icpms lithospheric mantle evolution HANNUOBA North China craton
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Trace-element of Tuoyun cli-nopyroxene:Implication for the deep processes of litho-spheric mantle beneath the southwest Tianshan,West China 被引量:12
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作者 ZHENG Jianping LU Fengxiang +1 位作者 S.Y.O’Reilly LUO Zhaohua 《Chinese Science Bulletin》 SCIE EI CAS 2001年第14期1206-1211,共6页
Based on the LAM-ICPMS analytic results on the trace elements of clinopyroxenes in peridotitic xenoliths occurring in early-Cretaceous basalts from western Xinjiang, the properties and the deep processes, including pa... Based on the LAM-ICPMS analytic results on the trace elements of clinopyroxenes in peridotitic xenoliths occurring in early-Cretaceous basalts from western Xinjiang, the properties and the deep processes, including partial melting and mantle metasomatism, of the subcontinental lithospheric mantle beneath the Tuoyun Basin are analyzed. In the northern edge of the Tarim Basin (southwest Tian-shan), the Mesozoic subcontinental lithosphere which has experienced the effect of partial melting (【10%) and intricate mantle metasomatism is characterized by Phanerozoic ’ocean-type’ mantle. The superposed influence of SiO2-un-saturated silicate melt and carbonate melt probably results in the metasomatic medium which resembles the hydrous silicated carbonate melt in some aspects. By comparing Tuoyun mantle with Cenozoic main mantle beneath eastern China, the properties are similar, while the former shows finer grain and higher diopside content of the peridotites and more conspicuous modal metasomatism. 展开更多
关键词 WEST China MANTLE CLINOPYROXENE lam-icpms MANTLE heterogeneity deep process.
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Almandine megacrysts from Yingfengling Cenozoic basalt in Leizhou Peninsula and their parental magma origin 被引量:3
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作者 YU Jinhai & S. Y. O’Reilly1. National Key Laboratory of Metallogenic Mechanism of Endogenetic Deposits, Department of Earth Sciences, Nanjing University, Nanjing 210093, China 2. National Key Center of GEMOC, Department of Earth and Planetary Sciences, Macquarie University, North Ryde, NSW 2109, Australia 《Chinese Science Bulletin》 SCIE EI CAS 2001年第14期1215-1219,共5页
The garnet megacrysts from Yingfengling basalts are characterlzed by high FeO (】20%), CaO (7.02% -8.16%) and low MgO (5.88%-10.87%). Significant composition variations are observed in these megacrysts, of which Ni, V... The garnet megacrysts from Yingfengling basalts are characterlzed by high FeO (】20%), CaO (7.02% -8.16%) and low MgO (5.88%-10.87%). Significant composition variations are observed in these megacrysts, of which Ni, V, Sc, Co, and HREE are positively correlated with their Mg# and Zr, Hf, Ga, Y, Sr, Nb, Zn and LREE-MREE are negatively correlated with Mg#. Megacryst parent magma is a highly evolved residual melt with strongl depletion in Ti, Sr, Hf, Nb and HREE. This parental magma was generated by more than 60% of crystallization fractionation of clinopyroxene, garnet, plagioclase and ilmenite from quartz tholeiitic magma. It has not erupted to the surface, but stayed at the upper mantle and formed the megacrystic cumulate. Megacrysts and their host basalt are in disequilibrium. 展开更多
关键词 ALMANDINE MEGACRYST geochemistry lam-icpms Lei-zhou Peninsula.
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