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281.
大兴安岭北段一脑丸地区花岗斑岩锆石U-Pb年代学和地球化学特征研究结果表明该岩石的加权平均年龄为140.5±2.4 Ma,属早白垩世,同时含有较多中-晚三叠世的捕获锆石(223~232 Ma)。岩石的SiO_2含量为63.73%~64.35%,(K_2O+N_2O)为6.77%~7.31%,Al_2O_3含量为15.20%~15.40%,MgO含量和Mg#值分别为1.85%~2.01%和32~34,Fe_2O_3/FeO值为1.37~1.53,铝饱和指数(A/CNK值)为0.94~0.96之间,属于高钾钙碱性系列、准铝质I型花岗岩岩石。岩石的稀土总量相对较低(∑REE=110.37×10~(-6)~117.55×10~(-6)),轻重稀土元素分馏较高((La/Yb)N=22.39~31.72),Eu异常不明显(Eu/Eu*=0.91~1.07),富集轻稀土元素和Rb、K等大离子亲石元素,相对亏损重稀土元素和Nb、Ta、Ti、P等高场强元素,高Sr(515×10~(-6)~665×10~(-6)),低Y(6.73×10~(-6)~7.39×10~(-6)),具有埃达克岩性质。结合区域构造演化特征,认为该花岗斑岩起源于增厚下地壳部分熔融,应与蒙古—鄂霍茨克洋闭合后的陆陆碰撞造山作用有关。  相似文献   
282.
张广才岭是松嫩地块与佳木斯地块之间的碰撞造山带,是东北"巨型花岗岩省"的重要组成部分。本文通过锆石U-Pb定年和岩石地球化学分析,研究了张广才岭南部帽儿山二长花岗岩年代学、地球化学特征和构造背景。锆石U-Pb年代学结果显示:张广才岭南部细粒二长花岗岩成岩年龄为(176.4±1.1)Ma,中粒二长花岗岩成岩年龄为(178.9±1.3)、(177.7±1.1)Ma,粗粒二长花岗岩成岩年龄为(180.0±1.8)、(179.9±1.2)Ma,成岩时代均属于早侏罗世。岩石地球化学研究显示:细粒二长花岗岩、中粒二长花岗岩和粗粒二长花岗岩均具有富硅、贫铝、高碱、低钙,富集Zr、Hf、Rb、K,亏损Ba、Sr、Nb、P、Ti,燕式型稀土配分模式等特征,成岩类型属于造山后A2型花岗岩。结合年代学和地球化学特征,研究区早侏罗世二长花岗岩形成于碰撞后构造背景,代表佳木斯地块和松嫩地块碰撞—拼合过程中的一次伸展作用,表明早侏罗世区域构造环境逐渐由挤压造山向造山后伸展环境转变。  相似文献   
283.
赵保具  张艳飞  颜开  肖荣阁 《现代地质》2021,35(5):1380-1396
大兴安岭中段是我国重要的铅锌银等有色金属成矿区,探讨其成矿物质来源对区内成矿预测及找矿工作具有重要意义。经广泛地质调查、典型矿床采样、岩矿鉴定、全岩地球化学分析,并在此基础上进行元素聚类分析,结果显示海西期成矿岩浆岩稀土总量偏低,负铕异常不明显,轻重稀土比值较大,与稀土总量呈正相关关系,与δEu值呈负相关关系,表明成岩物质以幔源为主。燕山期成矿岩浆岩则相反,显示壳源物质特征。铅锌银多金属矿以锌为主,铅锌矿石与幔源分异岩浆岩的稀土配分模式基本一致;聚类分析显示TFeO-Cu-Zn为独立群组,表明铁铜锌物质是从岩浆结晶晚期的岩浆中分异出来;TFeO-Cu-Zn独立群组显示区域内闪锌矿均为高温铁闪锌矿。研究认为,大兴安岭中段铅锌银矿成矿物质来自闪长岩,后期热液改造对铅银富集有一定作用,中基性岩浆岩形成铅锌银成矿系统,而酸性岩浆岩形成铜钼及铜锡成矿系统。  相似文献   
284.
许晨  陈衍景  周振菊 《地质论评》2022,68(5):2022102011-2022102011
古元古代晚期的花岗岩类在华北克拉通南缘广泛分布,记录了区域岩石圈演化的重要信息。通过对小秦岭地区南部沿小河断裂出露的花岗岩类的锆石LA- ICP- MS U- Pb年代学、岩石地球化学和Nd—Hf同位素地球化学研究,为小秦岭地区古元古代晚期的地壳演化提供了依据。自西向东,小河中粗粒二长花岗岩、小河细粒二长花岗岩和贵家峪花岗闪长岩的结晶年龄分别为1831±32 Ma、1860±13 Ma和1811±10 Ma。3个花岗岩体均以富硅(67. 4%~76. 0%)和高碱(7. 47%~9. 33%)为特征,属于高碱钙碱性到钾玄岩类。地球化学特征表明两个小河花岗岩体属I型花岗岩,具有碰撞型花岗岩特征,其中形成年龄为1831 Ma花岗岩具有高的Sr/Y(26. 56~49. 52)和(La/Yb)N(31. 35~236. 71)值、Eu负异常(0. 42~0. 68),表明源区残留有石榴子石和少量的斜长石;贵家峪花岗闪长岩具有较高的FeOT/MgO比值(17. 7~29. 2)和10000Ga/Al比值(2. 95~3. 17),表现出造山后A2型花岗岩特征,与1831Ma的地壳相比,地壳厚度明显减薄。三个岩体的岩浆锆石εHf(t)=-10. 5~-4. 5,两阶段模式年龄TDM2=2781~3122 Ma,全岩的εHf(t)=-7. 5~-4. 5,DM2=2667~2888 Ma,均指示了其物质来源于中到新太古代古老基底的部分熔融。这期岩浆事件可能是小秦岭区域对1. 85 Ga吕梁运动的响应,反映了碰撞造山作用地壳增厚向碰撞后地壳伸展减薄这一演化过程。  相似文献   
285.
Footwall rocks of the northern Snake Range detachment fault (Hampton and Hendry's Creeks) offer exposures of quartzite mylonites (sub-horizontal foliation) that were permeated by surface fluids. An S–C–C′ mylonitic fabric is defined by dynamically recrystallized quartz and mica. Electron backscatter diffraction analyses indicate a strong preferred orientation of quartz that is overprinted by two sets of sub-vertical, ESE and NNE striking fractures. Analyses of sets of three perpendicular thin sections indicate that fluid inclusions (FIs) are arranged according to macroscopic fracture patterns. FIs associated with NNE and ESE-striking fractures coevally trapped unmixed CO2 and H2O-rich fluids at conditions near the critical CO2–H2O solvus, giving minimum trapping conditions of T = 175–200 °C and ∼100 MPa H2O-rich FIs trapped along ESE-trending microcracks in single crystals of quartz may have been trapped at conditions as low as 150 °C and 50 MPa indicating the latest microfracturing and annealing of quartz in an overall extensional system. Results suggest that the upper crust was thin (4–8 km) during FI trapping and had an elevated geotherm (>50 °C/km). Footwall rocks that have been exhumed through the brittle-ductile transition in such extensional systems experience both brittle and crystal-plastic deformation that may allow for circulation of meteoric fluids and grain-scale fluid–rock interactions.  相似文献   
286.
本文对大兴安岭中部柴河地区晚侏罗世花岗质岩石进行了岩石学、同位素年代学、地球化学等研究,探讨了其岩石成因及形成的构造背景。岩石学研究表明,大兴安岭中部柴河地区晚侏罗世花岗质岩石主要岩石组合为花岗闪长岩、二长花岗岩和碱长花岗岩。LA-ICP-MS锆石U-Pb测年结果获得2个二长花岗岩年龄分别为(152±1)Ma和(150±1)Ma。岩石主量元素具有富钾钠、富铝的特点,属铁质碱-钙性岩石。稀土元素相对富集轻稀土元素、亏损重稀土元素,具有弱到中等的Eu负异常,微量元素主要富集大离子亲石元素(Rb、Th、U、K、LREE)和Zr、Hf元素,亏损高场强元素(Nb、Ta、P、Ti)和Ba、Sr元素。地球化学特征指示这些晚侏罗世花岗质岩石来源于新元古代和早古生代期间从亏损地幔新增生的地壳物质部分熔融,形成于蒙古-鄂霍茨克洋闭合陆壳加厚之后挤压到伸展的转换环境。  相似文献   
287.
North‐northwest normal faults intersect ENE normal faults in the vicinity of Querétaro City, in central México, affecting the Miocene–Pliocene northern‐central sector of the Mexican Volcanic Belt province. This intersection produced an orthogonal arrangement of grabens, half‐grabens and horsts that include the Querétaro graben. The NNW faults are part of the Taxco–San Miguel de Allende fault system, which is proposed here as part of the southernmost Basin and Range province in México. The ENE to E–W faults are part of the E–W oriented Chapala–Tula fault zone, which has been interpreted as an active intra‐arc fault system of the Mexican Volcanic Belt. Seventy‐four normal faults were mapped, of which the NNW faults are the largest and have the best morphological expression in the region. More numerous, although shorter, are the ENE faults. Total length of the ENE faults is greater than the total length of the NNW faults. Both sets are dominantly normal faults, indicating ENE extension for the NNW set and NNW extension for the ENE set. Field data indicate that displacement on the two fault sets has overlapped in time, as some NNW faults are younger than some ENE faults, which are supposed to be the younger ones. Seismicity in 1998 on a NNW fault indicates ENE active extension on the NNW faults. These observations support our interpretation that the northern Mexican Volcanic Belt lies on the boundary between the Basin and Range province, which is undergoing ENE extension, and the central Mexican Volcanic Belt province, which is undergoing northerly extension. The apparent overlap in space and time of displacements on the two fault sets reflects the difference in stress regime between the two provinces. Copyright © 2005 John Wiley & Sons, Ltd.  相似文献   
288.
于1994年5月-1995年6月在实验室进行了不同磷到盐浓度、pH条件下的悬浮物吸附解吸模拟实验,对黄河口磷酸盐的缓冲机制进行了探讨。黄河口悬浮物对磷酸盐的吸附量(解吸量)随磷酸盐浓度的增大而增大(减小),零平衡时磷酸盐浓度(EPC0)值在0.4-1.3αmol/dm^3之间,且随温度的升高和悬浮物粒度的增大而略有减小。黄河口悬浮物的线性吸附系数(K)在0.03-0.40dm^3/g之间,且随温度  相似文献   
289.
The Grande Découverte Volcanic Complex (GDVC), active since at least 0.2 Ma, is the most recent volcanic complex of the Basse-Terre Island (Guadeloupe, Lesser Antilles Arc). A detailed geochronological study using the K–Ar Cassignol–Gillot technique has been undertaken in order to reconstruct the history of effusive activity of this long-lived volcanic system. Twenty new ages permit to suggest that the GDVC experienced at least six main effusive stages, from 200 ka to present time. To the north of the GDVC, the GDS (Grande Découverte–Soufrière volcano) has been active since at least 200 ka, and to the south, the TRMF (Trois-Rivières–Madeleine Field), started to be emplaced 100 ka. Morphological investigations suggest that the whole TRMF volcanism was emitted from vents distinct from the GDS, most probably a large E–W fissure network linked to the Marie-Galante rift. The mean age of 62 ± 5 ka, obtained for the E–W Madeleine–Le Palmiste alignment suggests that a fissure-opening event occurred at that time. However, whole-rock major and trace element signatures are similar for both systems, suggesting that a common complex magma-plumbing system has fed the overall GDVC. We report very young ages for lava flows from the TRMF, which implies that < 10 ka volcanic activity is now identified for both massifs. Although hazards associated with such effusive volcanism are much lower than those associated with potential flank-collapse of the Soufrière lava dome or a magmatic dome eruption with explosive phases within the GDS, the emplacement of relatively large Holocene age lava flows (3–1 × 108 m3) suggests that a revised integrated volcanic hazard assessment for Southern Basse-Terre should now consider the potential for renewed future activity from two Holocene volcanic centers including the TRMF.  相似文献   
290.
Peaks in the Cascade Range in northern Washington State are on average ~800 m higher than in southern Washington. The influences of differential valley excavation and variations in hillslope length and average slope on these altitudinal trends were tested using a 3‐dimensional model for isostatic rock uplift and calculations of hillslope length and slope respectively. The magnitude of isostatic peak uplift calculated by the model is highly dependent on the flexural rigidity (D) and the related effective elastic thickness (Te) of the crust of this region. Crustal rigidity was constrained using published estimates and by estimating the depth of the seismogenic zone in the area (D > 1 × 1023 Nm and Te > 24 km). With these constraints, isostatic compensation due to differential erosion added < 700 m and 300 m, or < 25% overall, of height to peaks in the northern and southern Cascades, respectively. Deeper valley incision in the northern Cascades accounts for < 300 m of the 800 m difference in peak altitudes between north and south. Similarly, variation in valley spacing and slope account for < 350 m of the difference in mean altitude between northern and southern regions. Hence, at least several hundred m difference in altitude between the northern and southern regions of the Cascades in Washington must be due to tectonic, geologic, or geophysical factors rather than surficial and geomorphic effects like isostatic response to valley incision and hillslope geometry. Copyright © 2009 John Wiley & Sons, Ltd.  相似文献   
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