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Early Triassic Volcanic Rocks in the Western Yarlung Zangbo Suture Zone:Implications for the Opening of the Neo-Tethys Ocean 被引量:1
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作者 HE Juan LI Yalin +4 位作者 HOU Yunling ZHOU Aorigele WEI Yushuai CHEN Xi dai jingen 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2024年第2期324-336,共13页
In this study,zircon U-Pb dating of volcanic rocks from the Zhongba ophiolite of the Yarlung Zangbo Suture Zone(YZSZ)in southern Xizang(Tibet)yielded an age of 247±3 Ma.According to whole rock geochemical and Sr-... In this study,zircon U-Pb dating of volcanic rocks from the Zhongba ophiolite of the Yarlung Zangbo Suture Zone(YZSZ)in southern Xizang(Tibet)yielded an age of 247±3 Ma.According to whole rock geochemical and Sr-NdPb isotopic data,the Early Triassic samples could be divided into two groups:Group 1 with P-MORB affinity,showing initial^(87)Sr/^(86)Sr ratios of 0.70253–0.70602,ε_(Nd)(t)values of 4.2–5.3,(^(206)Pb/^(204)Pb)_(t)ratios of 16.353–18.222,(^(207)Pb/^(204)Pb)_(t)ratios of 15.454–15.564,and(^(208)Pb/^(204)Pb)_(t)ratios of 35.665–38.136;Group 2 with OIB affinity,showing initial^(87)Sr/^(86)Sr ratios of 0.70249–0.70513,ε_(Nd)(t)values of 4.4–4.9,(^(206)Pb/^(204)Pb)_(t)ratios of 17.140–18.328,(^(207)Pb/^(204)Pb)_(t)ratios of 15.491–15.575,and(^(208)Pb/^(204)Pb)_(t)ratios of 36.051–38.247.Group 2 rocks formed by partial melting of the mantle source enriched by a former plume,and assimilated continental crustal material during melt ascension.The formation of Group 1 rocks corresponds to the mixing of OIB melts,with the same components as Group 2 and N-MORBs.The Zhongba Early Triassic rocks belong to the continental margin type ophiolite and formed in the continental–oceanic transition zone during the initial opening of the Neo-Tethys in southern Xizang(Tibet). 展开更多
关键词 RIFT Early Triassic magmatism Yarlung Zangbo Suture Zone NEO-TETHYS Southern Xizang TIBET
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《地球科学概论》教学理念形成和课程体系建设 被引量:5
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作者 戴紧根 颜丹平 +1 位作者 邱亮 曹秀华 《高校地质学报》 CAS CSCD 北大核心 2022年第3期352-356,共5页
《地球科学概论》是大学一年级地质类学生的学科基础课,也是专业入门课,承担着构建专业知识框架、培养地球科学兴趣等重要任务。文章系统梳理了中国地质大学(北京)《地球科学概论》的发展历程、教学理念形成与课程体系改革和建设,重点... 《地球科学概论》是大学一年级地质类学生的学科基础课,也是专业入门课,承担着构建专业知识框架、培养地球科学兴趣等重要任务。文章系统梳理了中国地质大学(北京)《地球科学概论》的发展历程、教学理念形成与课程体系改革和建设,重点阐述了教学理念形成过程中“因材施教和因才施教”等4种教学思想及其应用效果,强调了高水平教学团队在课程建设中的关键作用,提出了模块化教学体系能够最大程度发挥我校两本教材各自的优势。在课程体系改革与实践方面,首先是将理论学习和实践课程的学时对半,突出了该门课程的实践特色;其次是将以往单一的课堂授课的教学方式,逐渐过渡到课堂理论授课、室内和野外地质实践、平台在线学习和虚拟仿真野外实习等多种教学方式相结合。希望我校上述课程体系改革与建设能为相关院校同类课程提供一定的借鉴和参考。 展开更多
关键词 地球科学 教学理念 教学方式 实践教学
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变质底板的结构组分、形成时代及侵位机制:对大洋初始俯冲过程的约束 被引量:1
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作者 沈洁 戴紧根 杨凯 《地质科学》 CAS CSCD 北大核心 2021年第2期533-559,共27页
变质底板是俯冲下插板片发生变质作用而形成,一般与俯冲带之上热的地幔橄榄岩直接接触。主要包括石榴子石角闪岩等高温和变质泥岩等低温变质底板。全球范围内,变质底板一般以岩块形式出露在蛇绿混杂岩中。但是阿曼蛇绿岩中出现了相对完... 变质底板是俯冲下插板片发生变质作用而形成,一般与俯冲带之上热的地幔橄榄岩直接接触。主要包括石榴子石角闪岩等高温和变质泥岩等低温变质底板。全球范围内,变质底板一般以岩块形式出露在蛇绿混杂岩中。但是阿曼蛇绿岩中出现了相对完整的变质底板序列,由顶至底依次出露高温变质底板和低温变质底板,它们位于条带状橄榄岩之下。由于变质底板中包含的高温变质底板部分只能形成于板块初始俯冲阶段,因此变质底板能很好记录板块初始俯冲过程。初始俯冲是指俯冲带在转变为成熟俯冲体系之前的一个相对短暂的过程。变质底板形成时间的约束方法主要包括:1)40Ar/39Ar定年,定年矿物包括角闪石和白云母等;2)U‐Pb定年,定年矿物包括榍石、锆石和独居石等;3)Lu‐Hf定年,定年矿物包括石榴子石等。而变质底板侵位机制主要有:1)俯冲角度变缓模型,2)浮力驱动模型,3)局部应变增生模型。为了探讨变质底板对初始俯冲过程的约束,本文收集了大量新特提斯中蛇绿岩和变质底板的年龄数据。结果表明每期变质底板形成时都会有对应的俯冲带之上型蛇绿岩形成,而且它们在不同的测年体系下有近乎相同的定年结果,这可能反映变质底板和蛇绿岩在后期经历了快速的剥露作用。通过研究发现,仅仅依靠蛇绿岩和变质底板之间的年龄对比无法约束初始俯冲机制。只有在确定变质底板原岩、变质底板和蛇绿岩三者的年龄关系并重建变质底板的P‐T‐t轨迹等条件下,才能有效约束初始俯冲机制及蛇绿岩的形成背景。 展开更多
关键词 初始俯冲 变质底板 侵位机制 新特提斯洋
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全球不同构造环境蛇纹岩全岩和矿物微量元素组成及非传统稳定同位素(Fe-Zn-Cu同位素)特征
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作者 杨凯 戴紧根 +2 位作者 沈洁 张文仓 赵玲玲 《地质学报》 EI CAS CSCD 北大核心 2022年第12期4149-4166,共18页
蛇纹岩对地球深部和浅部的元素循环以及氧化还原状态调节具有非常重要的作用。蛇纹岩中的流体活动性元素(fluid-mobile element,FME)是揭示地幔岩石水化、脱水以及元素循环的关键。本文系统收集和分析了前人报道的不同构造环境的蛇纹岩... 蛇纹岩对地球深部和浅部的元素循环以及氧化还原状态调节具有非常重要的作用。蛇纹岩中的流体活动性元素(fluid-mobile element,FME)是揭示地幔岩石水化、脱水以及元素循环的关键。本文系统收集和分析了前人报道的不同构造环境的蛇纹岩矿物化学、全岩微量元素和非传统稳定同位素(Fe、Zn、Cu)的组成特征,试图从多个角度总结蛇纹岩脱水过程的元素迁移规律及流体性质。蛇纹岩主要矿物蛇纹石微量元素含量具有以下主要特征:①不同变质程度的蛇纹岩中的蛇纹石既包含轻稀土元素(light rare earth element,LREE)富集,又包含LREE亏损的特征;②纤蛇纹石的REE和微量元素分布在利蛇纹石和叶蛇纹石的范围内,利蛇纹石重稀土元素(heavy rare earth element,HREE)整体上略高于叶蛇纹石且更加富集FME;③通过中度不相容元素与REE含量相结合,能够较好地区分橄榄石和辉石蛇纹石化所形成的蛇纹石,即辉石形成的蛇纹石富集相容元素(如Sc、Zn、Cr、Y和Ti等)并具有较高的HREE,而橄榄石形成的蛇纹石则表现为平坦且整体较低的REE分布型式。在蛇纹岩全岩微量元素和稀土元素(rare earth element,REE)含量方面,不同构造环境的蛇纹岩具有较大范围的重叠,但也有一定的差异:①慢速扩张的印度洋中脊蛇纹岩REE和微量元素含量要整体高于快速扩张的大西洋中脊和太平洋中脊的蛇纹岩;②马里亚纳蛇纹岩泥相比于蛇纹岩和蛇纹石化纯橄岩具有更高的REE和微量元素,而蛇纹石化纯橄岩相比于蛇纹岩则具有相对低的REE及流体不活动性元素含量。因此,利用微量元素的含量在区分不同环境的蛇纹岩方面存在一定的困难。但是,碱金属元素与U元素含量及其相应的比值,则可以较明显区分出大洋蛇纹岩和弧前蛇纹岩。目前已发表的蛇纹岩Fe、Zn、Cu同位素数据表明:①蛇绿岩中的蛇纹岩Fe和Zn同位素的分馏与其变质程度密切相关。蛇纹岩在进变质过程中δ56Fe值与Fe^(3+)/ΣFe值呈负相关,而Zn含量和δ66Zn值则呈现正相关,表明蛇纹岩变质脱水能够释放氧化性流体;②与橄榄岩相比,蛇纹岩具有明显低的δ65 Cu值,表明橄榄岩蛇纹石化过程中存在氧化性流体的加入。蛇纹岩Fe、Zn、Cu同位素在示踪流体性质和氧化还原状态方面有很大潜力,对壳幔系统的化学循环具有重要意义。 展开更多
关键词 蛇纹岩 元素循环 微量元素 非传统稳定同位素
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Subduction Initiation and Generation of the Xigaze Ophiolite, Southern Tibet
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作者 dai jingen WANG Chengshan +2 位作者 Zhu Dicheng POLAT Ali LI Yalin 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2015年第A02期5-5,共1页
The Cretaceous Xigaze ophiolite is best exposed at the central Yarlung Zangbo Suture Zone (YZSZ, Tibet) which also includes the Gangdese arc and the Xigaze forearc basin. This study reports new geochronological and ... The Cretaceous Xigaze ophiolite is best exposed at the central Yarlung Zangbo Suture Zone (YZSZ, Tibet) which also includes the Gangdese arc and the Xigaze forearc basin. This study reports new geochronological and geochemical data for this ophiolite to revisit its geodynamic and petrogenetic evolution. 展开更多
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Nd isotopic compositions of the Tethyan Himalayan Sequence in southeastern Tibet 被引量:21
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作者 dai jingen YIN An +1 位作者 LIU WenCan WANG ChengShan 《Science China Earth Sciences》 SCIE EI CAS 2008年第9期1306-1316,共11页
The Himalayan orogen consists of three major lithologic units that are separated by two major north-dipping faults: the Lesser Himalayan Sequence (LHS) below the Main Central Thrust (MCT), the Greater Himalayan Crysta... The Himalayan orogen consists of three major lithologic units that are separated by two major north-dipping faults: the Lesser Himalayan Sequence (LHS) below the Main Central Thrust (MCT), the Greater Himalayan Crystalline Complex (GHC) above the MCT, and the Tethyan Himalayan Sequence (THS) juxtaposed by the South Tibet Detachment fault (STD) over the GHC. Due to widespread meta-morphism and intense deformation, differentiating the above three lithologic units is often difficult. This problem has been overcome by the use of Sm-Nd isotopic analysis. The previous studies suggested that the LHS can be clearly distinguished from the GHC and THS by their Nd isotope compositions. However, the lack of detailed and systematic Sm-Nd isotopic studies of the THS across the Himalaya in general has made differentiation of this unit from the nearby GHC impossible, as the two appear to share overlapping Nd compositions and model ages. To address this problem, we systematically sam-pled and analyzed Nd isotopes of the THS in southeastern Tibet directly north of Bhutan. Our study identifies two distinctive fields in a εNd -TDM plot. The first is defined by the εNd(210 Ma) values of -3.45 to -7.34 and TDM values of 1.15 to 1.29 Ga from a Late Triassic turbidite sequence, which are broadly similar to those obtained from the Lhasa block. The second field is derived from the Early Cretaceous meta-sedimentary rocks with εNd(130 Ma) values from -15.24 to -16.61 and TDM values from 1.63 to 2.00 Ga; these values are similar to those obtained from the Greater Himalayan Crystalline Complex in Bhutan directly south of our sampling traverse, which has εNd(130 Ma) values of -10.89 to -16.32 and Nd model ages (TDM) of 1.73 to 2.20 Ga. From the above observations, we suggest that the Late Triassic strata of the southeast Tibetan THS were derived from the Lhasa block in the north, while the Early Cretaceous strata of the THS were derived from a source similar to the High Himalayan Crystalline Complex or Indian craton in the south. Our interpretation is consistent with the existing palaeocurrent data and provenance analysis of the Late Triassic strata in southeastern Tibet, which indicate the sediments derived from a northern source. Thus, we suggest that the Lhasa terrane and the Indian craton were close to one another in the Late Triassic and were separated by a rift valley across which a large submarine fan was transported southward and deposited on the future northern margin of the Indian continent. 展开更多
关键词 HIMALAYAN OROGEN SM-ND isotopic systematics Greater HIMALAYAN Crystalline Complex TETHYAN Himalaya SEQUENCE Lhasa ter- rane Indian CRATON
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