首页 | 本学科首页   官方微博 | 高级检索  
文章检索
  按 检索   检索词:      
出版年份:   被引次数:   他引次数: 提示:输入*表示无穷大
  收费全文   194篇
  免费   29篇
  国内免费   162篇
地球物理   6篇
地质学   359篇
综合类   7篇
自然地理   13篇
  2024年   1篇
  2023年   7篇
  2022年   5篇
  2021年   7篇
  2020年   9篇
  2019年   17篇
  2018年   16篇
  2017年   13篇
  2016年   16篇
  2015年   10篇
  2014年   14篇
  2013年   22篇
  2012年   22篇
  2011年   16篇
  2010年   20篇
  2009年   24篇
  2008年   27篇
  2007年   20篇
  2006年   9篇
  2005年   24篇
  2004年   18篇
  2003年   7篇
  2002年   9篇
  2001年   4篇
  2000年   5篇
  1999年   7篇
  1998年   3篇
  1997年   9篇
  1996年   4篇
  1995年   3篇
  1994年   10篇
  1993年   2篇
  1992年   2篇
  1991年   2篇
  1990年   1篇
排序方式: 共有385条查询结果,搜索用时 15 毫秒
351.
广东沿海地区基性岩脉地球化学及成因   总被引:4,自引:1,他引:3  
曹建劲  胡瑞忠  谢桂青  刘燊 《岩石学报》2009,25(4):984-1000
广东沿海地区基性岩脉的成岩年龄是146~54 Ma,主要形成于白垩纪,次为侏罗纪和第三纪。可将工作区基性岩脉的形成时代分为5期:第一期146Ma,第二期138~132Ma,第三期112~105Ma,第四期99~82Ma,第五期75~54Ma。根据K2O/Na2O比值和K2O含量,以及不相容元素分配模式的“Nb-Ta”异常,可以划分出两类基性岩脉。第一类K2O/Na2O比值<0.5和K2O含量<1.3%,在微量元素MORB标准化图解中具有弱的“Nb-Ta”负异常。第二类K2O/Na2O比值>0.5和K2O含量>1.3%,在微量元素MORB标准化图解中具有显著的“Nb-Ta”负异常。在K2O-SiO2图解中,第一类基性岩脉样品落入中钾岩石范围,第二类基性岩脉样品落入高钾岩石或钾玄岩范围。基性岩脉分布的重要特点是中钾基性岩脉分布于本区北部上地幔拗陷区,而高钾基性岩脉分布于本区南部地幔隆起区或斜坡区。两类基性岩脉有着不同的岩浆来源。在本区北部,软流圈物质入侵和熔蚀Ⅰ型富集地幔混合形成中钾基性岩脉,随着时代的由老至新和熔蚀作用的不断进行,岩浆中Ⅰ型富集地幔成分增加。晚期,岩浆活动向连平、新丰一带迁移。在本区南部,软流圈物质入侵并熔蚀Ⅱ型富集地幔,形成具有软流圈物质和Ⅱ型富集地幔混合特征的高钾基性岩脉。随着熔蚀作用的不断进行,岩浆中Ⅱ型富集地幔成分增加,晚期基性岩浆活动向三水裂谷、南澳裂谷迁移。  相似文献   
352.
小兴安岭东南晚奥陶世鹤林侵入杂岩体成因探讨   总被引:1,自引:0,他引:1  
小兴安岭东南晚奥陶世鹤林侵入杂岩体岩性变化较大,由角闪辉长岩—(石英)闪长岩—英云闪长岩—二长花岗岩组成,不同岩石类型在野外宏观上呈相互侵入、包裹和渐变的接触关系;在(石英)闪长岩、英云闪长岩和二长花岗岩中均发育微细粒闪长质包体,包体多具明显塑性流变特点的浑圆外形和典型岩浆结构、针状磷灰石及捕获的寄主岩钾长石、石英斑晶,为MME型岩浆混合成因包体;杂岩体相对富集LILE(Ba、Sr、Rb)、HFS(U、Th、Zr、Ce)元素等,显示出壳源特点,而较高的εNd(t)值(-2.38~-3.77)显示以幔源为主的特点。研究表明杂岩体具明显的壳幔岩浆混合成因的岩相学、岩石化学和地球化学特征,形成于基性岩浆底侵作用下的陆缘弧型活动大陆边缘构造环境。  相似文献   
353.
This work focuses on the kamafugites from Santo Antônio da Barra, Minas–Goiás Alkaline Province. These rocks contain olivine, clinopyroxene, titanomagnetite, perovskite, leucite (pseudomorphs), kalsilite, nepheline, and phlogopite.The rocks investigated are ultrabasic, with high contents of CaO, FeO, and TiO2, high to moderate contents of Al2O3, alkalis, and P2O5, and low contents of MgO. The alkaline characteristic of the rocks is reflected in TiO2, K2O, and Na2O contents and in the frequent presence of normative nepheline and leucite. K2O contents are not primary since most of the leucite was replaced by analcime.The negative K anomaly verified in the extended incompatible element distribution diagram for kamafugites seems to be mainly related to alteration. Kamafugites are characterized by a marked enrichment in incompatible and large ion lithophile elements together with other typical compatible elements.The Santo Antônio da Barra kamafugites are less enriched in titanium, niobium, zirconium, and REE than the Mata da Corda and most of the Toro-Ankole ones. San Venanzo–Cupaello rocks have much lower titanium contents.  相似文献   
354.
郭家岭花岗闪长岩岩体中闪长质包体的成因研究   总被引:15,自引:0,他引:15  
郭家岭花岗闪长岩是胶东金矿区的重要岩体,Rb-Sr全岩等时线年龄为200.6Ma[1]。岩体中常见一种闪长质包体,这些包体具有淬火结构、变余斑状结构及索列特扩散分带,表明它们是由来自地幔的高温玄武质岩浆快速冷凝结晶形成的。包体中存在由辉石→角闪石→黑云母→石英完整的交代系列,反映了包体岩浆受到壳源长英质主岩岩浆不同程度的交代改造。包体的常量元素、微量元素及稀土元素也支持壳幔岩浆相互作用的成因解释。  相似文献   
355.
王凯怡  李继亮 《岩石学报》1997,13(2):139-151
在五台山地区,在原五台群南北金岗库组内分布着大小不等的超镁铁质岩块体,包括蛇纹岩,滑石片岩,透闪石片岩,辉石岩,变辉长岩,斜长角闪岩和簿层硅质岩。这些块体作为外来岩块产出在强变形的复理石型基质中,分别代表了阜平陆块和弧地质体及恒山陆块和弧地质体之间的海洋岩石圈的残余  相似文献   
356.
秦岭杂岩中花岗质片麻岩体的岩石地球化学特征及成因   总被引:7,自引:1,他引:7  
王晓霞  王涛 《矿物岩石》1997,17(3):76-82
该片麻岩是目前秦岭杂岩中最古老的深成岩体,原岩岩性为(含斑)黑云母二长花岗岩,其地球化学特征是:SiO2较高;Al2O3,CaO,Na2O大离子亲石元素及过渡性元素低;稀土总量变化大,轻稀土分馏明显,Eu为负异常(0.31~0.61)。岩体中所含的黑云母变粒岩包体在地球化学方面与主岩有明显互补性,为难熔残体。研究表明该古岩体是成分相当于秦岭杂岩的长英质变质岩的岩石于晋宁期下冲深埋过程中部分熔融的产物。  相似文献   
357.
祁连山地区镁铁——超镁铁岩的多样性   总被引:11,自引:1,他引:11  
祁连山地区出露有不同类型的镁铁-超镁铁岩,包括蛇绿岩,阿拉斯加型岩体,橄榄岩-闪长岩型岩体以有产于北祁连西部的一种特殊的镁铁-超镁铁岩组合。不同的镁铁-超镁铁岩形成于一同的构造环境,蛇绿岩代表洋壳的残片,阿拉斯加型岩体产生岛弧或活动陆缘环境,橄榄岩一闪长岩体则是板块碰撞之后形成的,根据蛇绿岩与大致同时代的阿拉斯加型岩体产出的位置,推测在北祁连早古生代时存在向南的消减事件。  相似文献   
358.
G.F. Zellmer  S.P. Turner 《Lithos》2007,95(3-4):346-362
Mafic enclaves are commonly found in intermediate arc magmas, and their occurrence has been linked to eruption triggering by pre-eruptive magma mixing processes. New major, trace, Sr–Nd and U–Th isotope data of rocks from Nisyros in the Aegean volcanic arc are presented here. Pre-caldera samples display major and trace element trends that are consistent with fractionation of magnetite and apatite within intermediate compositions, and zircon within felsic compositions, and preclude extensive hybridization between mafic and felsic magmas. In contrast, post-caldera dacites form a mixing trend towards their mafic enclaves. In terms of U-series isotopes, most samples show small 238U excesses of up to  10%. Mafic enclaves have significantly higher U/Th ratios than their dacitic host lavas, precluding simple models that relate the mafic and felsic magmas by fractionation or aging alone. A more complicated petrogenetic scenario is required. The post-caldera dacites are interpreted to represent material remobilized from a young igneous protolith following influx of fresh mafic magma, consistent with the U–Th data and with Sr–Nd isotope constraints that point to very limited (< 10%) assimilation of old crust at Nisyros. When these results are compared to data from Santorini in the same arc, there are many geochemical similarities between the two volcanic centers during the petrogenesis of the pre-caldera samples. However, striking differences are apparent for the post-caldera lavas: in Nisyros, dacites show geochemical and textural evidence for magma mixing and remobilization by influx of mafic melts, and they erupt as viscous lava domes; in Santorini, evidence for geochemical hybridization of dacites and mafic enclaves is weak, dacite petrogenesis does not involve protolith remobilization, and lavas erupt as less viscous flows. Despite these differences, it appears that mafic enclaves in intermediate Aegean arc magmas consistently yield timescales of at least 100 kyrs between U enrichment of the mantle wedge and eruption, on the upper end of those estimated for the eruptive products of mafic arc volcanoes. Finally, the data presented here provide constraints on the rates of differentiation from primitive arc basalts to dacites (less than  140 kyrs), and on the crustal residence time of evolved igneous protoliths prior to their remobilization by mafic arc magmas (greater than  350 kyrs).  相似文献   
359.
The major and trace elements and Sr–Nd–Pb isotopes of the host rocks and the mafic microgranular enclaves (MME) gathered from the Dölek and Sariçiçek plutons, Eastern Turkey, were studied to understand the underlying petrogenesis and geodynamic setting. The plutons were emplaced at  43 Ma at shallow depths ( 5 to 9 km) as estimated from Al-in hornblende geobarometry. The host rocks consist of a variety of rock types ranging from diorite to granite (SiO2 = 56.98–72.67 wt.%; Mg# = 36.8–50.0) populated by MMEs of gabbroic diorite to monzodiorite in composition (SiO2 = 53.21–60.94 wt.%; Mg# = 44.4–53.5). All the rocks show a high-K calc-alkaline differentiation trend. Chondrite-normalized REE patterns are moderately fractionated and relatively flat [(La/Yb)N = 5.11 to 8.51]. They display small negative Eu anomalies (Eu/Eu = 0.62 to 0.88), with enrichment of LILE and depletion of HFSE. Initial Nd–Sr isotopic compositions for the host rocks are εNd(43 Ma) = − 0.6 to 0.8 and mostly ISr = 0.70482–0.70548. The Nd model ages (TDM) vary from 0.84 to 0.99 Ga. The Pb isotopic ratios are (206Pb/204Pb) = 18.60–18.65, (207Pb/204Pb) = 15.61–15.66 and (208Pb/204Pb) = 38.69–38.85. Compared with the host rocks, the MMEs are relatively homogeneous in isotopic composition, with ISr ranging from 0.70485 to 0.70517, εNd(43 Ma) − 0.1 to 0.8 and with Pb isotopic ratios of (206Pb/204Pb) = 18.58–18.64, (207Pb/204Pb) = 15.60–15.66 and (208Pb/204Pb) = 38.64–38.77. The MMEs have TDM ranging from 0.86 to 1.36 Ga. The geochemical and isotopic similarities between the MMEs and their host rocks indicate that the enclaves are of mixed origin and are most probably formed by the interaction between the lower crust- and mantle-derived magmas. All the geochemical data, in conjunction with the geodynamic evidence, suggest that a basic magma derived from an enriched subcontinental lithospheric mantle, probably triggered by the upwelling of the asthenophere, and interacted with a crustal melt that originated from the dehydration melting of the mafic lower crust at deep crustal levels. Modeling based on the Sr–Nd isotope data indicates that  77–83% of the subcontinental lithospheric mantle involved in the genesis. Consequently, the interaction process played an important role in the genesis of the hybrid granitoid bodies, which subsequently underwent a fractional crystallization process along with minor amounts of crustal assimilation, en route to the upper crustal levels generating a wide variety of rock types ranging from diorite to granite in an extensional regime.  相似文献   
360.
闽东南的海边斜闪煌斑岩脉和赤湖辉长岩脉分别形成于晚白垩世和古新世,为高钾钙碱性和钙碱性系列岩石,具有高Al、Na_2O>K_2O的特征;岩浆演化过程中可能经历了以橄榄石、单斜辉石为主的结晶分异作用。海边和赤湖基性岩脉具有相对富集大离子亲石元素和轻稀土元素,亏损高强场元素特征,不相容元素蛛网图显示出大陆边缘弧的地球化学特征,以Nb、Ta、Ti负异常为特征;海边和赤湖明显富集轻稀土元素,(La/Yb)_N分别为5.0~10.9和11.2~12.0。具有高Sr同位素初始值和低ε_(Nd)(t)值,海边的(~(87)Sr/~(86)Sr)_i:0.70577~0.707574,ε_(Nd)(t):-8.1~-1.8,赤湖的(~(87)Sr/~(86)Sr)_i:0.70547~0.70552,ε_(Nd)(t):-0.2~0.6。根据Sr、Nd同位素、微量元素研究及野外地质观察,本区基性岩脉的岩浆在上升侵位过程中未发生地壳物质混染。通过Sr、Nd同位素和微量元素等研究,认为地幔源区的演化与古太平洋板块俯冲密切相关,俯冲流体交代地幔楔、消减洋壳携带的海洋与陆源沉积物参与地幔源区的混合,形成本区基性岩脉的富集地幔源区,大离子亲石元素和轻稀土元素特别富集是俯冲流体与沉积物共同参与源区演化的结果。海边和赤湖基性岩脉形成的构造背景属于活动大陆边缘弧,构造性质应为活动陆缘拉张带(或裂谷带)。晚白垩世和古新世,闽东南发生了地壳拉张事件,与中国东南部晚白垩世以来的地壳拉张期次是一致。  相似文献   
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号