华夏陆块钠质高镁玄武岩地球化学特征及地质意义
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本文为中国核工业集团公司“中国中—新生代铀成矿作用研究”(批准号:中核地计2008-74)项目的成果。


Geochemical Characteristics of Sodium and High-Mg Basalt in Cathaysia Block and Their Geological Significance
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    摘要:

    赣州盆地位于钦杭(钦州—杭州)结合带南侧华夏陆块西部,由晚白垩世早期红色碎屑沉积岩系组成,其底部夹有一套玄武岩,全岩SiO2含量为4650%~4813%,具有钠质高镁特征(MgO=1547%~1824%,Mg#=74~77,K2O/Na2O=022~039)。稀土元素配分型式表现出轻稀土富集右倾,没有明显的Eu异常的特点,表明岩浆没有明显的斜长石分离结晶作用;微量元素上富集大离子亲石元素,高场强元素特别是Ta、Nb、Ti亏损不明显,Cr、Ni的含量分别为235×10-6~617×10-6、157×10-6~493×10-6,与原生岩浆的Cr、Ni含量接近,Ba/Nb比值(1351~2318)和La/Nb比值(082~103)表明源区有富集地幔组分;Sr—Nd—Pb—O同位素显示出源区性质具有EMⅡ型富集地幔特征。岩石学和地球化学特征表明,玄武岩具有原生岩浆性质,是富集地幔部分熔融的产物。同时为中生代华夏陆块EMⅡ型岩石圈地幔提供了准确的证据。由赣州盆地晚白垩世构造背景和构造环境判别图解可知,本区玄武岩形成于板内拉张环境,可能与古太平洋俯冲条件的转变有关。

    Abstract:

    Objectives: Lying at western Cathaysia Block and southern Qinzhou—Hangzhou junction,Ganzhou Basin develops a red clastic sedimentary rock system of early Late Cretaceous,of which the bottom clips a suit of basalt, these rocks are highMg and sodium. The highMg mafic volcanic rock represents the composition of the original magma. According to this study, and combining the achievements of the predecessors, we can Provide more accurate evidence about nature of source region and tectonic setting of these basalts, in addition to restrict the lithospheric mantle features of Cathaysia Block. Methods: Based on detailed observations of occurrence of Ganzhou Basin sodium and highMg Basalt in the field, we have studied the petrology, geochemistry, Sr—Nd—Pb radio isotope and O isotope of these basalts to discuss nature of source region and tectonic setting. In compare with achievements of the predecessors, we have discussed the lithosphere mantle features of Cathaysia Block. Results: The total rocks span a SiO2 range of 46.50%~48.13%,in addition,these rocks are highMg and sodium(MgO=15.47%~18.24%,Mg#=74~77,K2O/Na2O=0.22~0.39). Distribution pattern of REE is enriched in LREE and less obvious Eu anomaly,which show that the magma has not happen obvious plagioclase fractional crystallization. These rocks are enriched in LILE a little,such as Ta,Nb and Ti. Cr=235×10-6~617×10-6,Ni=157×10-6~493×10-6. They are similar to primary magma. Ba/Nb=13.51~23.18 and La/Nb=0.82~1.03,which show that source includes enriched mantle. Sr—Nd—Pb—O isotopes show that the area has the characteristics of EMII enriched mantle. Conclusions: these basalts in Ganzhou Basin have the primary magma characteristics, in addition, the genesis of them is related to the partial melting of the enriched mantle. In short,this paper presents the partial melting of the enriched mantle rock to explain the reason for source area,which offers proof of Cathaysia block lithospheric mantle type in Mesozoic Era. According to structure setting of Ganzhou basin in Late Cretaceous and diagrams,the basalt is formed in the withinplate extension environment,it is also related to subducting of PaleoPacific Plate.

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郭恒飞,巫建华,郭国林.2018.华夏陆块钠质高镁玄武岩地球化学特征及地质意义[J].地质论评,64(2):418-434,[DOI].
GUO Hengfei, WU Jianhua, GUO Guolin.2018. Geochemical Characteristics of Sodium and High-Mg Basalt in Cathaysia Block and Their Geological Significance[J]. Geological Review,64(2):418-434.

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  • 收稿日期:2017-06-21
  • 最后修改日期:2018-02-15
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  • 在线发布日期: 2018-03-24
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