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   328篇
  免费   101篇
  国内免费   234篇
地球物理   40篇
地质学   582篇
海洋学   19篇
天文学   1篇
综合类   6篇
自然地理   15篇
  2024年   5篇
  2023年   16篇
  2022年   29篇
  2021年   45篇
  2020年   43篇
  2019年   54篇
  2018年   46篇
  2017年   46篇
  2016年   38篇
  2015年   31篇
  2014年   37篇
  2013年   33篇
  2012年   52篇
  2011年   38篇
  2010年   17篇
  2009年   13篇
  2008年   13篇
  2007年   20篇
  2006年   22篇
  2005年   12篇
  2004年   7篇
  2003年   9篇
  2002年   5篇
  2001年   1篇
  2000年   3篇
  1999年   6篇
  1998年   4篇
  1997年   1篇
  1995年   1篇
  1994年   3篇
  1992年   6篇
  1991年   2篇
  1990年   2篇
  1989年   1篇
  1988年   1篇
  1986年   1篇
排序方式: 共有663条查询结果,搜索用时 18 毫秒
41.
Magmatic-hydrothermal Sn deposits are commonly associated with high silica magmas, but why most global high silica granites do not bear economic Sn ore grades remains unclear. Two crucial factors controlling magmatic-hydrothermal Sn mineralization, including advanced fractionation and depressurization-induced rapid cooling, were revealed in the case study of the Guyong granitic pluton linked with the Xiaolonghe Sn deposit, in the Tengchong block, SW China. The Guyong granitic pluton comprises three petrological facies: less evolved biotite syenogranite, evolved alkali granite and leucogranite, and highly evolved facies (the protolith of greisenized granite). Similar crystallization ages (~77 Ma) and gradual contact between different petrological facies indicate the Guyong granitic pluton records a continuous fractionation process. Monte Carlo-revised Rayleigh fractionation model suggests the fractionation degree of the Guyong pluton is markedly high (>87 wt.%) that can only be achieved by a high initial water (≥4 wt.%) content in the parent granitic magma revealed by rhyolite-MELTS calculation. Advanced degree fractionation causes the first Sn enrichment but it also significantly increases the viscosity of evolved magmas, suppressing the exsolution and transport of hydrothermal fluids. Hence, it must be compensated by the second critical factor: depressurization-induced rapid cooling, reflected by the occurrence of highly metamict zircons in the greisenized granite. The highly metamict feature, indicated by the large full width at half maximum (FWHM) values of zircon ν3(SiO4) peak (>19.5 cm?1), suggests these zircons do not experience thermal annealing but rapidly ascend into a shallow cooling environment. Depressurization-induced rapid cooling facilitates exsolution and transport of hydrothermal fluids, interacting with wall rocks and resulting in Sn mineralization.  相似文献   
42.
中元古代晚期—新元古代早期的华北克拉通与塔里木、扬子克拉通存在明显差异,那里没有十分强烈的与罗迪尼亚超大陆汇聚及裂解有关的热-构造事件的地质记录,因此对华北克拉通与罗迪尼亚超大陆的关联存在不同的推测。近年来,在郯庐断裂带两侧新元古代碎屑岩地层中,从辽宁的榆树砬子群,经山东烟台蓬莱群至土门群,陆续测得众多具经典格林威尔期的碎屑锆石年龄。这一信息与西伯利亚东南缘上里菲碎屑岩中的碎屑锆石年龄谱十分相似。这些碎屑锆石的时代均不是华北或西伯利亚本土所具有的特点,说明华北东缘、西伯利亚东南缘与劳伦大陆东南缘格林威尔造山带存在某种亲缘关系。根据这种推测,笔者等提出了劳伦大陆格林威尔造山带、西伯利亚东南缘和华北东部(GOSEN)连接的假设。  相似文献   
43.
谢帕德(Shepard,1954)和福克(Folk)等(1970)的沉积物结构分类是较为常用的两种分类方法。尽管都是基于沉积物粒度组成的三元分类,但分类的出发点和基本思路有很大的不同。Shepard分类是三端元等价的纯描述性分类,不反映沉积物粒度组成的水动力学属性,砾质沉积物未考虑在内。Folk分类虽然也是三端元分类,但三个端元是不等价,首先按砂/泥比划分基本类型,然后再按粉砂/黏土比进一步分类,砂/泥比反映动力强度的大小,粉砂/黏土比反映介质的混浊度,具有明显的动力学意义。鉴于粒度分异与搬运距离的成因联系,Folk分类也是分析物源区的工具。笔者用两种分类研究了南黄海的表层沉积物,发现按照Folk分类,南黄海的表层沉积物分布可以分为两个沉积系列。在南黄海西部,沉积物由西向东依次为砂-粉砂质砂-砂质粉砂-粉砂;而在东部,由东向西依次为砂-泥质砂-砂质泥-泥组成。由岸及海随着沉积水动力由强变弱,沉积物粒度变细,大致与由东西两侧的强潮流作用区到中部的静水涡流作用区的动力学格局相一致,在一定程度上反映了沉积环境的变化、沉积物的物源和输运方向。实践证明,Folk分类的应用效果明显优于Shepard分类,可以较好地满足海洋地质研究的需要,应当在我国海洋沉积物的研究中予以推广。  相似文献   
44.
安徽金寨三仙山地区位于大别山北缘,该地梅山群主要为一套轻微变质的碎屑岩系。砂岩碎屑组分统计表明,砂岩类型主要为岩屑石英砂岩、岩屑石英杂砂岩,石英、长石、岩屑的平均含量为87.21%、1.67%、9.64%,杂基含量为15%,石英几乎全为单晶石英(95.79%),长石以斜长石为主,岩屑主要为沉积岩屑(75.49%),其次为变质岩屑(24.51%)。碎屑岩地球化学元素平均含量为:SiO2(75.99%),Al2O3(11.96%),MgO(0.72%),CaO(0.10%),Fe2O3(4.02%),K2O(1.70%),Na2O(0.26%)。ΣREE=170.49×10-6(74.49×10-6~309.42×10-6),LREE/HREE=11.16(7.89~14.26),轻稀土略有富集,δEu=0.72(0.59~0.90),La/Yb=22.08(13.01~31.18),(La/Yb)N=14.89(8.77~21.02),δCe=0.84(0.42~0.97)。碎屑岩地球化学特征指示三仙山地区梅山群母岩主要为古老沉积岩、长英质火山岩和古老变质基底,具有多重物源区。梅山群构造背景较复杂,主要为被动大陆边缘和活动大陆边缘,其次为大陆岛弧。三仙山地区梅山群碎屑岩的源岩成分、构造背景与商城-固始地区石炭系有很大差别,故其地层时代有待于进一步研究。  相似文献   
45.
安徽巢湖北部地区石炭系出露完整,层序清楚,沉积类型多样,是下扬子地区研究石炭系的重要地区之一。本研究在分析石炭系剖面的基础上,结合U-Pb碎屑锆石年代学分析,探讨了巢湖北部地区早石炭世物源特征。本研究共对两组岩石样品进行了LA-ICP-MS U-Pb锆石年代学分析,第一组样品为采集于高骊山组中段的砂岩,第二组样品为采集于和州组顶部的砂屑生屑灰岩。高骊山组样品锆石最晚年龄为404.4±10.2Ma,最早年龄为3194.1±40.7Ma,获得了两个峰值年龄435±6Ma与846±14Ma。和州组样品锆石最晚年龄为410±10.8Ma,最早年龄为2780±46.0Ma,获得了两个峰值年龄448±20Ma与849±12Ma。早石炭世沉积特征及年龄数据表明,巢湖北部地区早石炭世的陆源碎屑沉积主要来源于扬子海周围晋宁期及加里东期形成的古陆,部分沉积物可能来自其他古陆。  相似文献   
46.
胶北地体晚侏罗世下地壳重熔的玲珑黑云母花岗岩大面积出露,其中残留有大量继承锆石,记录了多期热事件,为复杂的地壳演化过程提供了重要线索。论文通过分析玲珑黑云母花岗岩中继承锆石的U-Pb年龄、微量元素和Hf同位素组成,探讨了胶北地体的地壳演化历史。结果显示胶北地体前寒武纪经历了~2.9Ga和~2.7Ga两期主要的地壳生长事件,~2.5Ga和2.2~1.8Ga两期地壳重熔改造事件,~2.5Ga和1.95~1.8Ga两期变质事件。~2.9Ga的岩浆作用形成于岛弧环境,~2.7Ga岩浆活动与下地壳基性物质的部分熔融有关,~2.5Ga发生的岩浆和变质事件与地幔柱底侵作用有关,并有同时期的表壳岩组合-胶东岩群形成。~2.1Ga地壳处于拉张状态,伴有与裂谷活动有关的双峰式岩浆作用,荆山群和粉子山群开始沉积,而后1.95~1.8Ga发生碰撞造山运动,胶北所有早前寒武纪岩石单元卷入此次事件,并发生变质作用。自此之后,直至二叠纪末,胶北处于岩浆活动的沉寂期,但于~1.7Ga和~1.0Ga发生沉积作用,形成芝罘群和蓬莱群。二叠纪末扬子板块向北俯冲于华北克拉通之下,并于三叠纪与华北克拉通发生陆陆碰撞作用,致使扬子板块北缘新元古代花岗岩发生超高压变质,形成苏鲁超高压变质带,之后超高压变质岩发生折返。玲珑黑云母花岗岩复杂的继承锆石组成可能表征了前寒武纪岩石卷入陆-陆碰撞事件而发生再循环作用。  相似文献   
47.
以西秦岭舒家坝地区泥盆纪舒家坝群碎屑岩为研究对象,进行碎屑锆石LA-ICP-MS U-Pb年龄研究,探讨其形成时代、物源组成和构造背景。所测样品最小锆石年龄组的年龄加权平均值为413Ma,代表了舒家坝群的沉积下限,结合前人研究的古生物资料将其形成时代限定为中泥盆世。所获碎屑锆石年龄可划分为4个谱段:震旦纪—古生代年龄谱段619~409Ma,峰值为445Ma;新元古代年龄谱段930~735Ma,峰值为849Ma;中元古代年龄谱段1760~1033Ma;新太古代—古元古代年龄谱段3095~2478Ma。综合研究认为,舒家坝群的物源具多元性,包括西秦岭北缘构造带、北祁连造山带东段和华北板块基底,其中北祁连造山带东段和西秦岭北缘构造带是舒家坝群沉积的主要物源区,且后者占主导地位。结合区域地质资料,根据其物源组成特征判断,舒家坝群形成于陆—陆或弧—陆碰撞后由挤压转换为伸展环境的局部裂陷盆地。  相似文献   
48.
古特提斯洋的构造与演化过程一直是研究热点,很多学者在其产生、扩张、俯冲及闭合的时间上持有不同观点。本次研究中,运用LA-ICP-MS锆石U-Pb测年技术对滇黔桂盆地三叠纪罗楼组碎屑锆石、泥盆纪坡松冲组碎屑独居石进行分析测试,同时结合古生代以来碎屑物源的演化历史,以期确定出古特提斯洋开启与闭合的时间。锆石测试结果显示:者桑地区罗楼组碎屑锆石U-Pb年龄主要集中在308-396 Ma,440-680 Ma,727-930 Ma,1004-1266 Ma,1400-1880 Ma,2360-2724 Ma;老寨湾地区坡松冲组碎屑独居石U-Pb年龄则主要集中在657-460 Ma和998-798 Ma。通过对比研究区与周围地块的年龄分布特征,联系研究区岩相古地理、古海流以及古流向等地质证据,发现滇黔桂盆地古生代时期碎屑物源在460 Ma左右发生了变化,460 Ma以前碎屑物源主要来自印度北部、喜马拉雅、拉萨、羌塘、海南岛、澳大利亚西部及江南造山带,460 Ma以后碎屑物源主要来自越北古陆、湘粤桂构造山系,云开地区也可能提供了碎屑物源。  相似文献   
49.
Detrital zircon provides a powerful archive of continental growth and recycling processes. We have tested this by a combined laser ablation ICP-MS U–Pb and Lu–Hf analysis of homogeneous growth domains in detrital zircon from late Paleozoic coastal accretionary systems in central Chile and the collisional Guarguaráz Complex in W Argentina. Because detritus from a large part of W Gondwana is present here, the data delineate the crustal evolution of southern South America at its Paleopacific margin, consistent with known data in the source regions.Zircon in the Guarguaráz Complex mainly displays an U–Pb age cluster at 0.93–1.46 Ga, similar to zircon in sediments of the adjacent allochthonous Cuyania Terrane. By contrast, zircon from the coastal accretionary systems shows a mixed provenance: Age clusters at 363–722 Ma are typical for zircon grown during the Braziliano, Pampean, Famatinian and post-Famatinian orogenic episodes east of Cuyania. An age spectrum at 1.00–1.39 Ga is interpreted as a mixture of zircon from Cuyania and several sources further east. Minor age clusters between 1.46 and 3.20 Ga suggest recycling of material from cratons within W Gondwana.The youngest age cluster (294–346 Ma) in the coastal accretionary prisms reflects a so far unknown local magmatic event, also represented by rhyolite and leucogranite pebbles. It sets time marks for the accretion history: Maximum depositional ages of most accreted metasediments are Middle to Upper Carboniferous. A change of the accretion mode occurred before 308 Ma, when also a concomitant retrowedge basin formed.Initial Hf-isotope compositions reveal at least three juvenile crust-forming periods in southern South America characterised by three major periods of juvenile magma production at 2.7–3.4 Ga, 1.9–2.3 Ga and 0.8–1.5 Ga. The 176Hf/177Hf of Mesoproterozoic zircon from the coastal accretionary systems is consistent with extensive crustal recycling and addition of some juvenile, mantle-derived magma, while that of zircon from the Guarguaráz Complex has a largely juvenile crustal signature. Zircon with Pampean, Famatinian and Braziliano ages (< 660 Ma) originated from recycled crust of variable age, which is, however, mainly Mesoproterozoic. By contrast, the Carboniferous magmatic event shows less variable and more radiogenic 176Hf/177Hf, pointing to a mean early Neoproterozoic crustal residence. This zircon is unlikely to have crystallized from melts of metasediments of the accretionary systems, but probably derived from a more juvenile crust in their backstop system.  相似文献   
50.
Recently reported detrital zircon (DZ) data help to associate the Paleogene strata of the Gulf of Mexico region to various provenance areas. By far, recent work has emphasised upper Paleocene‐lower Eocene and upper Oligocene strata that were deposited during the two episodes of the highest sediment supply in the Paleogene. The data reveal a dynamic drainage history, including (1) initial routing of western Cordilleran drainages towards the Gulf of Mexico in the Paleocene, (2) an eastward shift of the western continental divide, from the Jura‐Cretaceous cordilleran arc to the eastern edge of the Laramide province after the Paleocene and (3) a southward shift, along the eastern Laramide province, of the headwaters of river systems draining to the Mississippi and Houston embayments at some time between the early Eocene and Oligocene. However, DZ characterisation of most (~20 Myr) of the middle Eocene‐lower Oligocene section remains limited. We present 60 DZ age spectra, most of which are from the middle or upper Eocene outcrop belts, with 50–200‐km spacing. We define six to eight distinct groups of DZ age spectra for middle and upper Eocene strata. Data from this and other studies resolve at least six substantial temporal changes in age spectra at various positions along the continental margin. The evolving age spectra constrain the middle and upper Eocene drainage patterns of large parts of interior North America. The most well‐resolved aspects of these drainage patterns include (1) persistent rivers that flowed from erosional landscapes across the Paleozoic Appalachian orogen either into the low‐lying Mississippi embayment or directly into the eastern Gulf; (2) at least during marine regressions, a trunk channel that likely flowed southward along the axial part of Mississippi Embayment and integrated tributaries from the east and west; and (3) rivers that flowed to the Houston embayment in the middle Eocene that likely originated in the Laramide province in central Colorado and southern Wyoming, as Precambrian basement highs in those source areas were being unroofed.  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