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大别山超高压变质岩带氦同位素组成和某些微量元素分布 被引量:3
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作者 伍宗华 古平等 刘华忠 《物探与化探》 CAS CSCD 2001年第4期259-265,共7页
报导了大别山超高压变质杂岩带不同岩石类型及六安—蔡河地学剖面中氦同位素和某些微量元素的分配分布特征 ,并讨论了它们的影响因素及其地质意义。
关键词 超高压变质岩带 榴辉岩 氦同位素 微量元素 大别山
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郯庐断裂带鲁苏皖段及邻区地壳速度结构 被引量:79
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作者 黄耘 李清河 +4 位作者 张元生 孙业君 毕雪梅 金淑梅 王俊 《地球物理学报》 SCIE EI CAS CSCD 北大核心 2011年第10期2549-2559,共11页
郯庐断裂带是我国东部规模最大的深断裂带.为了揭示该断裂带的深部结构,本文利用江苏、安徽、山东、上海和浙江地震台网记录的近震到时资料,对8700个地震事件重新精确定位,进而开展了多震相地震走时成像法反演地壳速度结构.通过分析郯... 郯庐断裂带是我国东部规模最大的深断裂带.为了揭示该断裂带的深部结构,本文利用江苏、安徽、山东、上海和浙江地震台网记录的近震到时资料,对8700个地震事件重新精确定位,进而开展了多震相地震走时成像法反演地壳速度结构.通过分析郯庐断裂带鲁苏皖段及邻区三维地壳速度结构图像,发现(1)研究区内不同构造块体具有差异明显的地壳速度结构,即下扬子断块总体速度偏低,华北断块速度高于下扬子断块,大别断褶带和苏鲁断块整体速度最高;(2)在上地壳5~15 km内苏鲁超高压变质岩带的P波速度明显高于其他地区,中地壳速度与周围区别不大,但下地壳该区域速度电较高;(3)在20~25 km深度范围内,30°N~36°N,115°E~124°E间显示为低速异常区,研究区内发生的中强地震与该低速异常区分布有较强的空间对应关系;(4)莫霍面总体呈现西深东浅,南深北浅的形态;(5)研究区内沿郯庐断裂带速度结构呈现分段性,反映了不同构造块体间的速度差异,郯庐断裂带具有明显的构造块体边界特征. 展开更多
关键词 郯庐断裂鲁苏皖段及邻区 三维地壳速度结构 苏鲁超高压变质岩带 低速区与中强震
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中生代苏-鲁活动大陆边缘榴辉岩、煌斑岩、金矿及富集地幔间的成因联系 被引量:37
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作者 胡受奚 孙景贵 +3 位作者 凌洪飞 叶瑛 翟建平 方长泉 《岩石学报》 SCIE EI CAS CSCD 北大核心 2001年第3期425-435,共11页
海西期末形成的初始欧亚板块 ,从三叠纪 (2 5 0 Ma)开始 ,便与古太平洋板块 -太平洋板块发生强烈的挤压碰撞作用和俯冲作用 ,及由此引起的远距离效应使中国广大的东部地区从中生代开始成为活动大陆边缘。俯冲作用及构造环境的演化是控... 海西期末形成的初始欧亚板块 ,从三叠纪 (2 5 0 Ma)开始 ,便与古太平洋板块 -太平洋板块发生强烈的挤压碰撞作用和俯冲作用 ,及由此引起的远距离效应使中国广大的东部地区从中生代开始成为活动大陆边缘。俯冲作用及构造环境的演化是控制胶东地体等大多数中生代榴辉岩等变质岩类、花岗岩类、火山岩类、煌斑岩类以及金等矿床形成和使它们出露地表的重要因素。胶东地体中富钾的钙 -碱性煌斑岩类的特征与其它活动大陆边缘和造山带中金矿有关的煌斑岩很相似 ,例如呈脉状产出、晚期侵位、强烈的自变质、富含大离子亲石元素 (L IL E)和挥发分、高的金含量、高的 L REE/ HREE和 87Sr/ 86 Sr比值、低的 1 43Nd/ 1 44 Nd比值、与花岗岩类、橄榄安粗岩、酸性脉岩以及热液金矿床的密切共生及它们之间与富集地幔楔的成因联系等 ,这些都表明它们与板块或板片俯冲过程中的去气、去碱、去 L IL E作用或壳 展开更多
关键词 煌斑岩 榴辉岩 富集地幔 苏-鲁超高压变质岩带 金矿床 A-型俯冲 中生代 火山岩 花岗岩
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河南新县大银尖钼矿成矿物理化学条件研究 被引量:3
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作者 李红超 徐兆文 +4 位作者 陈伟 杨小男 王浩 陈进全 王少华 《矿物学报》 CAS CSCD 北大核心 2011年第S1期487-488,共2页
大别山地区出露有世界上规模最大的高压-超高压变质岩带,是当今国际上研究高压超高压变质作用的经典地区,也是我国重要的Mo、Au、Ag、Pb和Zn等多金属成矿带,与东秦岭Mo多金属成矿带相连,构成了中国最大的钼矿省,已探明钼金属量约500万t... 大别山地区出露有世界上规模最大的高压-超高压变质岩带,是当今国际上研究高压超高压变质作用的经典地区,也是我国重要的Mo、Au、Ag、Pb和Zn等多金属成矿带,与东秦岭Mo多金属成矿带相连,构成了中国最大的钼矿省,已探明钼金属量约500万t。大银尖钼矿床是西大别地区近年来取得较大勘探进展的典型矿列之一,初步估算钼金属储量已达到中型矿床,目前正在进一步勘探中(邱顺才,2006;杨泽强, 展开更多
关键词 银尖 多金属成矿 高压超高压变质作用 钼矿床 大别山地区 超高压变质岩带 西大别地区 东秦岭 钼金属 辉钼矿
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六安—蔡河地学剖面构造岩性单元的划分 被引量:1
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作者 伍宗华 古平等 刘华忠 《地质地球化学》 CSCD 2002年第2期1-9,共9页
叙述了大别造山带主要岩石类型及热源体周围微量元素的分布、分配特征 ,研究了它们的影响因素和地质意义 ,并根据六安—蔡河地学剖面微量元素和收集的地球物理、同位素年龄等资料 ,对该剖面构造岩性单元进行了划分。
关键词 超高压变质岩带 大别造山 构造地球化学 元素谱系图 热源体微量元素分布模式 同位素年龄
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Zircon SHRIMP U-Pb dating of granites from Dulan and the chronological framework of the North Qaidam UHP belt, NW China 被引量:24
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作者 WU CaiLai GAO YuanHong +7 位作者 LI ZhaoLi LEI Min QIN HaiPeng LI MinZe LIU ChunHua Ronald B FROST Paul T ROBINSON Joseph L WOODEN 《Science China Earth Sciences》 SCIE EI CAS 2014年第12期2945-2965,共21页
Zircon SHRIMP dating of granites from Dulan,east segment of North Qaidam UHP belt shows that they are 406.6±3.5 Ma for Yematan-E,407.3±4.3 and 397±6 Ma for Balijiehatan-W,404.5±4.0 and 397.0±3... Zircon SHRIMP dating of granites from Dulan,east segment of North Qaidam UHP belt shows that they are 406.6±3.5 Ma for Yematan-E,407.3±4.3 and 397±6 Ma for Balijiehatan-W,404.5±4.0 and 397.0±3.7 Ma for Shuiwenzhan-N,380.5±5.0 Ma for Shuiwenzhan-S,382.5±3.6 and 372.5±2.8 Ma for Chachagongma.These granites from Dulan represent the products of the third and fourth periods of Paleozoic magmatism in North Qaidam.Geochemically,the granitoids with metalumious to weak peratuminous are quartz diorite,granodiorite,and granite in composition and mainly belong to calc-alkaline series,a few samples to calc or alkali-calc series.The third period of granites is a rock association of granodiorite+granite,with initial 87Sr/86Sr ratios from 0.7082 to 0.7110 and T2DM model ages from 1.41–1.90 Ga;and the fourth period of granites is a rock association of quartz diorite+granodiorite+granite,with initial 87Sr/86Sr ratios from 0.7072 to 0.7091 and T2DM model ages from 1.07–1.38 Ga.Therefore,the third period of granites has higher initial 87Sr/86Sr ratios and T2DM model ages.On the contrary,the fourth period of granites has Nd(t)values from 0.6 to-3.0,higher than that of the third granite with Nd(t)values-3.2 to-9.3.Thus,the data comparison indicates that the third granites may derive from Paleo-proterzoic continental crust with mantle material whereas the fourth granites may derive from the Meso-proterzoic basalt crust with continental material.Combined with regional geology,we thought that the third granites were formed relative to plate exhumation and the fourth granites to delamination of the lithospheric mantle. 展开更多
关键词 GRANITE zircon SHRIMP U-Pb dating Dulan
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Petrology and phase equilibrium of newly found eclogites from Kekesu Valley in eastern part of southwest Tianshan HP-UHP metamorphic belt,China,and its tectonic significance 被引量:3
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作者 XIA Bin ZHANG LiFei XIA Yang 《Science China Earth Sciences》 SCIE EI CAS 2014年第1期117-131,共15页
Eclogites and omphacite-bearing blueschists have been newly found in the eastern segment of the southwest Tianshan orogenic belt, Xinjiang, northwest China. After detailed petrological study, three samples including o... Eclogites and omphacite-bearing blueschists have been newly found in the eastern segment of the southwest Tianshan orogenic belt, Xinjiang, northwest China. After detailed petrological study, three samples including one fresh eclogite TK003, one blueschist sample TK026-8 and one retrograded eclogite TK027, were selected for phase equilibrium modeling under NC(K)MnFMASHO (N20-CaO-K20-MnO-FeO-MgO-A1203-SiO2-H:O-O) system, by thermocalc 3.33 software. Composition analyses of garnets in these three samples show typical growth zoning with Xpy and Xgrs increasing, Xspss decreasing from core to rim. Pseudosection modeling of the garnet zonation reflects that the eclogites and blueschist experienced a similar P-T evo- lution trajectory, with a near iso-baric heating in the early stage, and reached eclogite facies metamorphic field with peak P-T regime of 480-515~C, 2.00-2.30 GPa. Subsequently the rocks experienced an early iso-thermal decompression retrograde stage with P-T conditions of 515-519~C, 1.78-1.93 GPa. Variations of mineralogy and modes of these rocks are probably due to different retrograde paths as a consequence of different bulk-rock composition, as well as a variation in fluid activity during exhumation. P-T calculation and a peak geothermal gradient of 6-7~C/km indicate HP rocks in the Kekesu Valley experienced cold subducted eclogite facies metamorphism. Thus a huge oceanic subduction eclogite facies metamorphic belt in southwest Tianshan has been recognized, extending from the Kekesu Valley in the east to the Muzhaerte Valley in the west for nearly 200 kin. However, UHP evidence has not been found in the Kekesu terrane, perhaps because the slab in east part of southwest Tianshan did not subduct into such a great depth. 展开更多
关键词 BLUESCHIST ECLOGITE phase equilibrium Kekesu Valley southwest Tianshan
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Ultradeep diamonds originate from deep subducted sedimentary carbonates 被引量:2
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作者 GAO Jing NIU JingJing +1 位作者 QIN Shan WU Xiang 《Science China Earth Sciences》 SCIE EI CAS CSCD 2017年第2期207-217,共11页
Diamonds are renowned as the record of Earth's evolution history.Natural diamonds on the Earth can be distinguished in light of genetic types as kimberlitic diamonds(including peridotitic diamonds and eclogitic di... Diamonds are renowned as the record of Earth's evolution history.Natural diamonds on the Earth can be distinguished in light of genetic types as kimberlitic diamonds(including peridotitic diamonds and eclogitic diamonds),ultrahigh-pressure metamorphic diamonds and ophiolitic diamonds.According to the inclusion mineralogy,most diamonds originated from continental lithospheric mantle at depths of 140-250 km.Several localities,however,yield ultradeep diamonds with inclusion compositions that require a sublithospheric origin(>~250 km).Ultradeep diamonds exhibit distinctions in terms of carbon isotope composition,N-concentration,mineral inclusions and so on.The present study provides a systematic compilation concerning the features of ultradeep diamonds,based on which to expound their genesis affinity with mantle-carbonate melts.The diamond-parental carbonate melts are proposed to be stemmed from the Earth's crust through subduction of oceanic lithosphere.Ultradeep diamonds are classified into a subgroup attaching to kimberlitic diamonds grounded by formation mechanism,and present connections in respect of carbon origin to eclogitic diamonds,ultrahigh-pressure metamorphic diamonds and ophiolitic diamonds. 展开更多
关键词 Ultradeep diamond CARBONATES Oceanic subduction Earth carbon cycle
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