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    卢成忠, 顾明光, 罗以达, 董传万, 陈国锋. 杭州泗岭铝质A型花岗岩的发现及其构造意义[J]. 中国地质, 2008, 35(3): 392-398.
    引用本文: 卢成忠, 顾明光, 罗以达, 董传万, 陈国锋. 杭州泗岭铝质A型花岗岩的发现及其构造意义[J]. 中国地质, 2008, 35(3): 392-398.
    LU Cheng-zhong, GU Ming-guang, LUO Yi-da, DONG Chuan-wan, CHEN Guo-feng. Discovery of the Siling aluminous A-type granite in Hangzhou and its tectonic significance[J]. GEOLOGY IN CHINA, 2008, 35(3): 392-398.
    Citation: LU Cheng-zhong, GU Ming-guang, LUO Yi-da, DONG Chuan-wan, CHEN Guo-feng. Discovery of the Siling aluminous A-type granite in Hangzhou and its tectonic significance[J]. GEOLOGY IN CHINA, 2008, 35(3): 392-398.

    杭州泗岭铝质A型花岗岩的发现及其构造意义

    Discovery of the Siling aluminous A-type granite in Hangzhou and its tectonic significance

    • 摘要: 提要:初步研究表明,以往被认为是典型的S型花岗岩或改造-重熔型花岗岩的泗岭岩体应为铝质A型花岗岩。该岩体高硅、碱、钾而明显贫钙、镁;高(K2O+Na2O)/ CaO值(平均16.79)和AKI指数(平均0.92);FeO?鄢/MgO比值大(平均13.95),高于M型、S型和I型花岗岩,而与世界A型花岗岩平均值(13.4)相近;岩石为弱碱性、准铝-弱过铝质,富含稀土元素、HFSE元素,高Rb、F和Nb,反映其具A型花岗岩的成分特征。泗岭岩体氧同位素δ1 8O为 +8‰~+9‰,反映岩浆主要起源于下地壳。该岩体侵位于拉张的构造环境,是晚白垩世早期一次重要的构造-岩浆热事件,同时也反映了区域性孝丰—三门湾大断裂与学川—湖州大断裂在晚白垩世早期处于拉伸阶段。

       

      Abstract: Abstract:The Siling rock mass, which was formerly regarded as typical S-type granites or reworked anatectic granites, should be aluminous A-type granites. This rock mass is rich in silica, alkalis and potassium and distinctively poor in calcium and magnesium; it has high K2O+Na2O/ CaO values (average 16.79) and a high AKI index (average 0.92);high FeO?鄢/MgO ratios (average 13.95), higher than that of M-type, S-type and I-type granites but close to the average value (13.4) of A-type granites worldwide;the rock is weakly alkaline, metaluminous-weakly peraluminous quality, rich in REE and HFSE , high in Rb, F and Nb, which are also the characteristics of A-type granites. The δ18O values of the Siling rock mass range from +8‰ to +9‰. All these suggest that the magma of the granites was mainly derived from the lower crust. The rock mass was emplaced into an extensional environment, which was an important tectono-magmato-thermal event in the early Late Cretaceous. It also indicates that the regional Xiaofeng-Sanmenwan fault and Xuechuan-Huzhou fault were in their extended stage in the early Late Cretaceous.

       

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