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| 1 | 吕梁山前寒武纪野鸡山群火山岩的地质学、地球化学及其构造意义显示文摘吕梁山前寒武纪变质杂岩位于华北克拉通中部带中段西侧。其中野鸡山群位于该杂岩的中西部,呈NNE-SSW向狭长带状展布。野鸡山群的底部保存了变质的滨海-浅海相的砾岩和粗砂岩,中部主体岩性为变质玄武岩和玄武质安山岩,保存了良好的枕状构造,发育同期辉长岩浅成侵入体,并有少量的变质安山岩、英安岩和流纹岩。变质火山岩之上发育了良好的薄层状复理石沉积,记录了深水海相火山喷发和沉积特征。复理石之上以角度不整合沉积了河流相砾岩和含砾砂岩。岩石化学分析表明,野鸡山群火山岩有右斜式稀土配分模式,稀土总量在101×101^(-6)~240×10^(-6)范围内,(La/Yb)_N比值在6~13之间变化。随着SiO_2的增加(La/Yb)_N和负Eu异常明显增加。在原始地幔标准化的蛛网图上,所有的岩石都表现了明显的Nb、Ta、Sr、P、Ti负异常。岩石成因研究揭示这套变质火山岩组合的原始岩浆导源于成分相当于尖晶石二辉橄榄岩与石榴石二辉橄榄岩大约以等量混合地幔源区的低度部分熔融。岩浆演化过程中经历了单斜辉石和少量斜长石的分离结晶,并在上升过程中受到了地壳物质的混染。综合地质学、岩石学和地球化学研究,结合前人的Sm-Nd同位素研究成果,野鸡山群变质火山岩组合最有可能形成于大陆边缘岛弧的弧后靠近岛弧一侧的构造背景,其形成可能与古元古代晚期洋壳俯冲作用有关。 | 刘树文 李秋根 张立飞 | 2009 | 岩石学报2009,25,3: | 36 |
| 2 | 华北克拉通新太古代板块俯冲作用:来自山西云中山地区变质高镁火成岩组合的证据显示文摘在华北克拉通中部的山西云中山地区,新太古代花岗闪长质片麻岩中存在一些超镁铁质岩-镁铁质岩块及由斜长角闪岩、角闪变粒岩、石英岩和石榴夕线黑云片岩等岩石类型构成的变质表壳岩残片,其中的超镁铁质-镁铁质岩、斜长角闪岩和角闪变粒岩构成一套高镁火成岩组合。超镁铁质岩已变质为橄榄绿泥阳起片岩等岩石类型,呈变余斑状结构,橄榄石斑晶仍有保存;岩石SiO_2含量为39.22%~44.99%,Al_2O_3为8.82%~13.47%,Mg O为19.24%~22.13%,Na_2O+K_2O=0.71%~1.11%,CaO为5.75%~8.42%;Al_2O_3/TiO_2=14.8~17.4,CaO/Al_2O_3=0.60~0.84;化学成分上与科马提岩有一定的相似性。与之紧密伴生的斜长角闪岩也具有高镁特征,Mg O含量为11.28%~15.09%,铝、硅和碱质均偏低,具正铕异常,显示堆晶辉长岩的特征。非高镁斜长角闪岩有相对高的铝、硅和碱质,其原岩应为钙碱性玄武岩。角闪变粒岩样品的SiO_2含量为54.21%~55.71%,Al_2O_3为14.24%~15.49%,Mg O为6.26%~8.28%,Fe OT/Mg O=1.11~1.58,高钠低钾,Na_2O+K_2O=3.7%~4.78%,Na_2O/K_2O=5.15%~13.13,Mg#=53.0~61.5,属于高镁安山岩。由超镁铁质质岩-斜长角闪岩-角闪变粒岩构成的变质高镁火山岩组合具有钙碱性系列趋势。超镁铁质岩稀土元素含量总量较低,具有轻稀土富集和重稀土亏损的稀土型式;斜长角闪岩与超镁铁质岩比较,除富集大离子亲石元素和Cr、Ni明显较低外,具有相似的微量元素图谱形态。三种岩石类型在微量元素蛛网图上均显示出Ta、Nb、Ti负异常和Pb正异常。野外产状和岩石地球化学特征表明超镁铁质岩和高镁斜长角闪岩属于阿拉斯加型杂岩体,角闪变粒岩属于赞岐岩质高镁安山岩。在Zr/Nb-Nb/Th和Nb/Y-Zr/Y构造环境判别图解上显示出与俯冲相关的演化趋势,在Hf-Th-Ta、Nb/La-(La/Sm)N和Th/Yb-Nb/Yb图解上也落在岛弧钙碱性岩石区域。以上特征表明高镁火成岩组合形成于与板块俯冲相关的岛弧构造背景。野外地质关系和锆石U-Pb年龄限定高镁火成岩组合形成时代在~2.5Ga。云中山地区阿拉斯加型镁铁质-超镁铁质杂岩与赞岐岩质高镁安山岩共生,表明该地区存在新太古代的板块俯冲作用,为太古宙存在板块构造机制提供了新证据。 | 王惠初 康健丽 肖志斌 相振群 李建荣 孙义伟 施建荣 张家辉 | 2018 | 岩石学报2018,34,4: | 8 |
| 3 | Petrogenesis of the Paleoproterozoic Guandishan Granitoids in Shanxi Province:Constraints from Geochemistry and Nd Isotopes显示文摘The Guandishan granitoids consist mainly of various granitoid intrusions with different scales, including the Huijiazhuang intrusion, Shizhuang intrusion and Hengjian intrusion, which were formed between 1906 Ma and 1848 Ma. On the basis of geological and petrological characteristics, these granitoids can be classified into two groups: the earlier gneissic granodiorites and monzogranites, and the later massive leuco-monzogranites. Their geochemical and Nd isotopic features indicate that they could be derived from complicated partial melting of supracrustal rocks with an affinity of continental arc materials, such as sandy shale and pelite, and with garnet, pyroxene, hornblende and plagioclase as residual phases. Biotite, feldspar and other minerals were most likely fractionated during the magma evolution. Their source may have an affinity with continental arcs, and the granitoids could be derived from the main syn-collisional to late-orogenic tectonic environment, which may be related to the final amalgamation between the Eastern and Western continental blocks in the North China Craton. | LIU Chaohui LIU Shuwen LI Qiugen Lü Yongjun K. H. PARK Y. S. SONG | 2006 | Acta Geologica Sinica(English Edition)2006,80,6: | 5 |