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961.
西南天山阔克萨彦岭巴雷公镁铁质岩石的地球化学特征、LA-ICP-MS U-Pb年龄及其大地构造意义 总被引:7,自引:1,他引:6
巴雷公镁铁—超镁铁质岩套出露于南天山阔克萨彦岭地区,本文对其中的镁铁质岩石进行了详细的地球化学和锆石U-Pb年代学研究。岩石学和地球化学特征表明:巴雷公镁铁质岩石主要为洋岛拉斑岩石系列,P2O5 (0.33%~0.75%)、TiO2 (2.49%~370%)、TFe2O3 (12.69%~15.63%)含量高,富集轻稀土,LREE/HREE分异明显,(La /Yb)N介于3.66~6.54之间。 Cr (28.93×10-6~123.99×10-6)、Co (44.04×10-6~52.40×10-6)和Ni (25.61×10-6~63.04×10-6)含量低,且Ni、Cr与MgO呈正相关关系指示其母岩浆在岩浆房中或上升途中经受了橄榄石和尖晶石分离结晶作用。Zr/Nb(7.06~7.99) 和Zr/Hf (35.98~37.53) 比值低,推测其可能来自于含石榴子石的富集地幔的深部熔融。Zr/Y—Nb/Y和Nb/Th—Zr/Nb图解显示,其源区具有EM1—EM2型地幔端元组分混入,可能主要有再循环的发生了交代熔融作用的深部大洋岩石圈的参与。锆石LA-ICPMS U-Pb定年结果表明,巴雷公洋岛火山岩的结晶年龄为450±2Ma。结合新获得的该岩套夹层灰岩中的牙行刺化石资料,指示该岩体在早石炭世以后成为蛇绿混杂岩的一部分。综合区域年代学和地球化学研究资料,推测南天山古洋盆在晚奥陶世—早志留世期间已演化成为成熟的多岛洋盆。 相似文献
962.
山西临县紫金山碱性杂岩LA-ICP MS锆石U-Pb年龄、地球化学特征及其地质意义 总被引:9,自引:0,他引:9
本文对鄂尔多斯盆地东缘晋西挠褶带临县紫金山杂岩体进行了锆石LA-ICPMSU-Pb年代学及地球化学研究。锆石LA-ICPMSU-Pb测得紫金山碱性杂岩的结晶年龄为138.3±1.1Ma(MSWD=2.3,9个样品点);地球化学研究表明该套火成岩富碱(K2O+Na2O=8.60%~15.62%),强烈富集大离子亲石元素和LREE、具有Eu正异常,亏损Nb、Ta、Ti等高场强元素,高Nb/Ta比值(16.85~18.19),表明岩石起源于交代富集地幔的部分熔融。结合区域地质背景,文章提出紫金山碱性杂岩可能是早白垩世华北克拉通大规模伸展背景下由交代富集地幔部分熔融作用的产物,该期岩石圈深部的强烈岩浆—热活动是鄂尔多斯盆地燕山晚期构造热事件发生的主要原因。 相似文献
963.
济阳坳陷奥陶系碳酸盐岩及缝洞充填方解石C、O同位素特征及其意义 总被引:1,自引:0,他引:1
对济阳坳陷奥陶系碳酸盐原岩及孔洞缝中充填方解石进行了C、O同位素测定,结果表明孔洞缝充填方解石的δ13C和δ18O值比原岩偏负。奥陶系三山子组和马家沟组孔缝中充填的方解石C、O同位素演化有很大区别,前者的δ13C和δ18O值均为负值,δ13C向较高负值偏移,δ18O值向较低负值偏移;马家沟组八陡段孔缝充填方解石的δ13C和δ18O值也多为负值,δ13C向较正值方向偏移,δ18O值向较高负值偏移。奥陶系碳酸盐岩孔缝充填方解石形成于大气淡水环境和埋藏成岩环境,次生孔洞可能主要形成于早期表生阶段,裂缝形成于中-新生代的构造运动,方解石主要充填于埋藏环境中。次生孔缝的主要形成时期早于油气大量运移期,对古潜山油藏的形成有利。 相似文献
964.
965.
地壳中的氮大都以NH4 储存在矿物中.由于成岩时含氮有机物质的分解作用,氮广泛分布在沉积岩和低级变质岩中;在岩浆岩和变质岩中,氮主要以NH4 存在于含钾硅酸盐(长石和云母类)中;岩浆岩的δ(15N)值和氮浓度明显地不同于沉积物和变沉积岩,主要是由于有机物的缺乏.具有明显铵含量的火成岩主要是含钾矿物的深成岩.因而NH4 可以作为一个"示踪元素"而用于成矿作用等方面的研究.文章还提出了未来的研究方向. 相似文献
966.
北祁连造山带老虎山奥陶系硅质岩地球化学特征及古地理意义 总被引:5,自引:0,他引:5
对北祁连造山带老虎山地区下奥陶统和中、上奥陶统硅质岩的沉积学和地球化学研究表明:下奥陶统硅质岩为生物化学作用成因,沉积于被动大陆边缘深海环境;中、上奥陶统下部与玄武岩共生的硅质岩显示热液成因,沉积于洋脊环境;中、上奥陶统上部硅质岩指示生物化学成因,形成于大陆边缘环境。上述特征表明老虎山地区在早奥陶世为相对稳定的被动大陆边缘构造环境,所含硅质岩和陆缘碎屑岩为大陆斜坡相浊流沉积。中、晚奥陶世柴达木板块向华北板块俯冲在弧后产生离散型活动大陆边缘,形成弧后盆地,硅质岩及其共生的枕状玄武岩和浊积岩应属于扩张弧后盆地的产物。 相似文献
967.
《China Geology》2021,4(1):147-177
The Qinghai-Tibet Plateau (also referred to as the Plateau) has long received much attention from the community of geoscience due to its unique geographical location and rich mineral resources. This paper reviews the aeromagnetic surveys in the Plateau in the past 60 years and summarizes relevant research achievements, which mainly include the followings. (1) The boundaries between the Plateau and its surrounding regions have been clarified. In detail, its western boundary is restricted by West Kunlun-Altyn Tagh arc-shaped magnetic anomaly zone forming due to the arc-shaped connection of the Altyn Tagh and Kangxiwa faults and its eastern boundary consists of the boundaries among different magnetic fields along the Longnan (Wudu)-Kangding Fault. Meanwhile, the fault on the northern margin of the Northern Qilian Mountains serves as its northern boundary. (2) The Plateau is mainly composed of four orogens that were stitched together, namely East Kunlun-Qilian, Hoh-Xil-Songpan, Chamdo-Southwestern Sanjiang (Nujiang, Lancang, and Jinsha rivers in southeastern China), and Gangdese-Himalaya orogens. (3) The basement of the Plateau is dominated by weakly magnetic Proterozoic metamorphic rocks and lacks strongly magnetic Archean crystalline basement of stable continents such as the Tarim and Sichuan blocks. Therefore, it exhibits the characteristics of unstable orogenic basement. (4) The Yarlung-Zangbo suture zone forming due to continent-continent collisions since the Cenozoic shows double aeromagnetic anomaly zones. Therefore, it can be inferred that the Yarlung-Zangbo suture zone formed from the Indian Plate subducting towards and colliding with the Eurasian Plate twice. (5) A huge negative aeromagnetic anomaly in nearly SN trending has been discovered in the middle part of the Plateau, indicating a giant deep thermal-tectonic zone. (6) A dual-layer magnetic structure has been revealed in the Plateau. It consists of shallow magnetic anomaly zones in nearly EW and NW trending and deep magnetic anomaly zones in nearly SN trending. They overlap vertically and cross horizontally, showing the flyover-type geological structure of the Plateau. (7) A group of NW-trending faults occur in eastern Tibet, which is intersected rather than connected by the nearly EW trending that develop in middle-west Tibet. (8) As for the central uplift zone that occurs through the Qiangtang Basin, its metamorphic basement tends to gradually descend from west to east, showing the form of steps. The Qiangtang Basin is divided into the northern and southern part by the central uplift zone in it. The basement in the Qiangtang Basin is deep in the north and west and shallow in the south and west. The basement in the northern Qiangtang Basin is deep and relatively stable and thus is more favorable for the generation and preservation of oil and gas. Up to now, 19 favorable tectonic regions of oil and gas have been determined in the Qiangtang Basin. (9) A total of 21 prospecting areas of mineral resources have been delineated and thousands of ore-bearing (or mineralization) anomalies have been discovered. Additionally, the formation and uplift mechanism of the Plateau are briefly discussed in this paper.©2021 China Geology Editorial Office. 相似文献
968.
969.
970.
This paper presents a semianalytical approach for solving first-order perturbation (FOP) equations, which are used to describe dissolution-timescale reactive infiltration instability (RII) problems in fluid-saturated rocks. The proposed approach contains two parts because the chemical dissolution reaction divides the whole problem domain into two subdomains. In the first part, the interface-condition substitution strategy is used to derive the analytical expressions of purely mathematical solutions for the FOP equations in the upstream subdomain, where the dissolution chemical reaction is ceased and the FOP equations are weakly coupled. In the second part, the finite element method (FEM) is used to derive the analytical expressions of numerical solutions for the FOP equations in the downstream subdomain, where the dissolution chemical reaction needs to be considered and the FOP equations are strongly coupled so that it is impossible to derive purely mathematical solutions for them. Particular attention is paid to the development of the element-by-element forward marching strategy, which is associated with the use of the FEM for solving this new kind of scientific problem. The related analytical results demonstrated that (1) both the dynamic characteristic of a reactive infiltration system and the dimensionless wavenumber can have pronounced influences on the distribution of the FOP dimensionless acid concentration within the entire domain of the dissolution-timescale RII problems in fluid-saturated rocks and (2) the FOP dimensionless acid concentration distribution exhibits two significantly different patterns in the upstream and downstream subdomains of the dissolution-timescale RII system. 相似文献