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   747篇
  免费   110篇
  国内免费   299篇
测绘学   2篇
大气科学   3篇
地球物理   220篇
地质学   856篇
海洋学   43篇
天文学   1篇
综合类   15篇
自然地理   16篇
  2024年   3篇
  2023年   12篇
  2022年   24篇
  2021年   30篇
  2020年   26篇
  2019年   45篇
  2018年   34篇
  2017年   34篇
  2016年   33篇
  2015年   24篇
  2014年   48篇
  2013年   62篇
  2012年   51篇
  2011年   44篇
  2010年   42篇
  2009年   48篇
  2008年   61篇
  2007年   64篇
  2006年   58篇
  2005年   59篇
  2004年   54篇
  2003年   50篇
  2002年   40篇
  2001年   22篇
  2000年   20篇
  1999年   30篇
  1998年   16篇
  1997年   17篇
  1996年   15篇
  1995年   10篇
  1994年   11篇
  1993年   21篇
  1992年   10篇
  1991年   2篇
  1990年   7篇
  1989年   5篇
  1988年   6篇
  1987年   8篇
  1986年   3篇
  1985年   4篇
  1983年   1篇
  1977年   1篇
  1954年   1篇
排序方式: 共有1156条查询结果,搜索用时 15 毫秒
71.
本文对皖东郯庐断裂带东侧嘉山—来安地区广泛发育的上第三系玄武岩进行了研究。在以往工作的基础上对该区作了系统的同位素和微量元素地球化学研究;对皖东玄武岩的成因及其地幔源区性质加以探讨。为论证该区存在非均一的富集型地幔提供了地球化学证据。  相似文献   
72.
对有代表性的中国东部新生代玄武岩的Sr、Nd和Ce同位素组成进行了系统的研究,结合系统的微量元素研究结果,进一步阐明其地幔源区同位素组成的不均一性;利用Ce、Nd同位素地球化学给出的信息,探讨富集Ⅰ型(EMⅠ)地幔端元的成因。  相似文献   
73.
作者通过对我国东部新生代玄武岩中巨晶Cpx的109个样品的化学成分的统计、计算及投影,研究了Cpx巨晶的产状、物性及矿物化学的主要特征,并对其成因信息提出了自己的看法。Cpx巨晶的成分以A1_2O_3、A1~(v1)较高而Ti、Mg'中等为特征。但在“反应边”中,A1_2O_3、Na_2O、A1、A1~(v1)则明显降低。我国巨晶以普通辉石为主,而透辉石、次透辉石及顽透辉石少见。国内不同地区的Cpx巨晶成分也略有不同:华南区巨晶的Wo较高而A1_2O_3较低;华北区Fs、A1_2O_3较高;而东北区En较高而A1_2O_3中等。有关Cpx巨晶的成因信息,作者的观点是:(1)巨晶Cpx是寄主玄武岩浆在上地幔中结晶的产物,而不是地幔解体的捕虏晶。(2)我国巨晶Cpx的结晶温度是1021—1209℃,压力为1.4—3.2GPa,所以,Cpx巨晶的结晶深度为48—104Km。(3)我国东部新生代玄武岩均产于大陆板块内部,以碱性玄武岩成分为主,而拉斑玄武岩较少。  相似文献   
74.
阿尔泰东部新生代火山岩的地球化学特点及构造环境   总被引:3,自引:0,他引:3  
新疆三大山系均有新生代火山岩,其中南部西昆仑、阿尔金山及天山托云等地的新生代火山岩比较发育,在新疆东北部地区的阿尔泰哈拉乔拉一带也发育新生代的陆内喷发火山岩。这套火山岩虽然面积不是很大,但具有大陆溢流玄武岩的特点。在地球化学上也具有典型热点成因洋岛玄武岩或其它地幔柱成因玄武岩的特点,如TiO2含量高大于2%、轻稀土元素和不相容元素显著富集等。表明新疆北部特别是阿尔泰造山带东部演化到新生代以后,有向裂陷拉张方向演化的趋势,标志着一个新的大地构造演化阶段的到来。  相似文献   
75.
威宁铜厂河玄武岩铜矿成矿地质特征及成因探讨   总被引:3,自引:0,他引:3  
研究威宁铜厂河铜矿区玄武岩的岩石类型、常量元素、微量元素及稀土元素地球化学特征,探讨玄武岩铜矿的成矿地质背景、控矿因素、产出特征和成矿规律,系统总结了找矿标志.研究认为,本区玄武岩具大陆拉斑玄武岩特征,铜矿属火山同生热液成矿叠加埋藏变质作用改造形成的玄武岩铜矿.  相似文献   
76.
Tetsuji  Onoue  Hiroyoshi  Sano 《Island Arc》2007,16(1):173-190
Abstract   The Sambosan accretionary complex of southwest Japan was formed during the uppermost Jurassic to lowermost Cretaceous and consists of basaltic rocks, carbonates and siliceous rocks. The Sambosan oceanic rocks were grouped into four stratigraphic successions: (i) Middle Upper Triassic basaltic rock; (ii) Upper Triassic shallow-water limestone; (iii) limestone breccia; and (iv) Middle Middle Triassic to lower Upper Jurassic siliceous rock successions. The basaltic rocks have a geochemical affinity with oceanic island basalt of a normal hotspot origin. The shallow-water limestone, limestone breccia, and siliceous rock successions are interpreted to be sediments on the seamount-top, upper seamount-flank and surrounding ocean floor, respectively. Deposition of the radiolarian chert of the siliceous rock succession took place on the ocean floor in Late Anisian and continued until Middle Jurassic. Oceanic island basalt was erupted to form a seamount by an intraplate volcanism in Late Carnian. Late Triassic shallow-water carbonate sedimentation occurred at the top of this seamount. Accumulation of the radiolarian chert was temporally replaced by Late Carnian to Early Norian deep-water pelagic carbonate sedimentation. Biotic association and lithologic properties of the pelagic carbonates suggest that an enormous production and accumulation of calcareous planktonic biotas occurred in an open-ocean realm of the Panthalassa Ocean in Late Carnian through Early Norian. Upper Norian ribbon chert of the siliceous rock succession contains thin beds of limestone breccia displaced from the shallow-water buildup resting upon the seamount. The shallow-water limestone and siliceous rock successions are nearly coeval with one another and are laterally linked by displaced carbonates in the siliceous rock succession.  相似文献   
77.
准噶尔盆地腹地陆梁起基底火山岩岩性为富钠玄武岩及流纹岩,总体显示出板内双峰火山岩特点。玄武岩的特征是:岩石的五晶和基质中普遍出现橄榄石;辉石为普通辉石;斑晶和基质中的长石为偏酸性的斜长石(平均牌号为30-50);全岩化学成分CIPW计算结果表明,绝大部分含有Ne(2.8%-4.6%),均含有O1(19.3%-10.1%)和Di(0.2%-24.6%),标准矿物分子组合为Ne+O1+Di+An;在全碱-SiO2图上玄武岩投影于碱性区;Mg^#<65;REE总量为110.29-158.06μg/g。(La/Y)N变化范围为3.10-4.51。δEu变化于0.93-1.04;弱武岩的微量元素标准化图解为LILE相对于LREE适度富集,Nb,Ta相对于LREE和LILE亏损。Ni,Cr含量略低于原始岩浆的参考值;以上特征表明,弱武岩总体上属于碱性橄榄玄武岩;玄武岩具有较同正的εNd(t)和低的^87Sr/^86Sr,而流纹岩则具有较低的εNd(t)和较高的^87Sr/^86Sr,反映它们的同源性和遭受陆壳物质同化混染程度的不同。同位素Rb-Sr等时线年龄和单颗粒锆石蒸发年龄集中在323-395Ma。以上特点表明,陆梁玄武岩来自于亏损的地幔源区,并经历了一定程度的分异作用和陆壳物质的混染作用,其形成于板内环境,与泥盆纪-石灰纪区域伸展作用有关,因此,陆梁隆起带基底很可能是一个大陆裂谷带。  相似文献   
78.
Generation of Deccan Trap magmas   总被引:1,自引:0,他引:1  
Deccan Trap magmas may have erupted through multiple centers, the most prominent of which may have been a shield volcano-like structure in the Western Ghats area. The lavas are predominantly tholeiitic; alkalic mafic lavas and carbonatites are rare. Radioisotope dating, magnetic chronology, and age constraints from paleontology indicate that although the eruption started some 68 Ma, the bulk of lavas erupted at around 65–66 Ma. Paleomagnetic constraints indicate an uncertainty of ± 500,000 years for peak volcanic activity at 65 m.y. in the type section of the Western Ghats. Maximum magma residence times were calculated in this study based on growth rates of “giant plagioclase” crystals in lavas that marked the end phase of volcanic activity of different magma chambers. These calculations suggest that the > 1.7 km thick Western Ghats section might have erupted within a much shorter time interval of ∼ 55,000 years, implying phenomenal eruption rates that are orders of magnitude larger than any present-day eruption rate from any tectonic environment. Other significant observations/conclusions are as follows: (1) Deccan lavas can be grouped into stratigraphic subdivisions based on their geochemistry; (2) While some formations are relatively uncontaminated others are strongly contaminated by the continental crust; (3) Deccan magmas were produced by 15–30% melting of a Fe-rich lherzolitic source at ∼ 3–2 GPa; (4) Parent magmas of the relatively uncontaminated Ambenali formation had a primitive composition with 16%MgO, 47%SiO2; (5) Deccan magmas were generated much deeper and by significantly more melting than other continental flood basalt provinces; (6) The erupted Deccan tholeiitic lavas underwent fractionation and magma mixing at ∼ 0.2 GPa. The composition and origin of the crust and crust/mantle boundary beneath the Deccan are discussed with respect to the influence of Deccan magmatic episode.  相似文献   
79.
新生代黄骅坳陷构造伸展、沉积作用和岩浆活动   总被引:15,自引:1,他引:15  
孟庆任  王战  王翔  解建民 《地质论评》1993,39(6):535-547
黄骅坳陷是一典型的张性盆地,其构造主要受西缘向东倾的拆离断层的控制。构造沉降分析显示盆地西部以裂谷沉降为主,而向东热沉降逐渐增大,反映了上地壳的强烈裂谷区与岩石圈深部强烈减薄区发生了错位。沉积作用在裂谷期和热沉降期具明显不同的特点,指示了早期基底快速不均匀的下沉和晚期基底广泛缓慢下沉的过程。玄武岩的形成和演化也与盆地构造发展过程相一致。研究结果表明,黄骅坳陷是在下伏岩石圈上部发生简单剪切和下部发生纯剪切的构造伸展过程中形成的。  相似文献   
80.
The stratigraphical sequences composed of chert and basalt were found in the Daxinshan area of Simao and the Manbie area of Jinghong, southwestern Yunnan. The Middle Permian to ealiest Late Permian radiolarians, such as Follicucullus and Pseudoalbaillella, have been identified from the chert. The chert from the Manbie area of Jinghong is characterized by high SiO2content (over 92%), large ratios of MnO/TiO2 (2.15) and low ratios of Al/(Al+Fe+Mn) (≤0.1) and Ce/Ce*(0.4), which indicate that the chert was deposited in pelagic basin. The chert from the Daxinshan area of Simao, however, is characterized by low SiO2 content, low ratios of MnO/TiO2 (0.27) and high ratios of Al/(Al+Fe+Mn) (0.49) and Ce/Ce*(0.88), which imply that the chert was deposited in continental margin basin. The basalts from the both areas belong to tholeiite series, and the chemical compositions of their major, rare earth and trace elements show the characteristics of MORB. These results evidence that there are volcanic rocks and chert sequences representing pelagic basin and oceanic basin near continent. These sequences and the formerly reported island-arc volcanic rock sequences imply that the Daxinshan Formation in the Lancangjiang belt represents a sedimentary assemblage formed in active continental margin basin.  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