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271.
综述了该同位素体系晚侏罗世以来,尤其是现代地幔岩石的研究成表明,地幔在晚侏罗世以来在187Os/186Os比值方面显示出非均一性,其比值从0.90~1.26,但此类岩石的187Os/186Os比值分别与各个不同研究者所确定的地幔演化线相一致;来自较古老正常地幔或贫化地幔的岩石,在锇同位素方面体现为187Os/186Os初始比值接近或低于Re-Os同位素体系地幔演化线值。在此类岩石中,Re-Os同位素体系与Sm-Nd同位素体系之间存在着三种可能的关系:①正相关关系;②负相关关系;③无相关关系。据认为,第一种关系是由羽状地幔端元和富集亲石元素而且贫铼之次大陆型岩石圈地幔端元混合而成;第二种关系则是由羽状地幔端元与地壳物质混合而成;第三种关系则是锇同位素成分相同但钕同位素成分明显不同的两端元物质混合而成。在第三方面,有古老俯冲大洋壳物质参与之基性-超基性岩石具有高于地幔演化线的初始187Os/186Os比值。具有此种锇同位素成分特征的岩石包括大洋岛弧玄武岩(OIB)、洋中脊玄武岩(MORB)以及榴辉岩。①  相似文献   
272.
273.
塔里木盆地西部海相白垩系—第三系界线划分的研究   总被引:7,自引:0,他引:7  
郭宪璞 《地球科学》1990,15(3):325-335
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274.
For modelling isotopic variations in oils it is convenient to differentiate the effects of oil generation ( 100–150°C) from the effects of oil to gas cracking ( 150–180°C). During generation, δ13C of kerogen may increase by up to 1% due to release of isotopically light oil and gas, although most kerogens show little or no chan δ13C of the generated oil increases by between 0 and 1% (av. 0.5%) due to mixing of isotopically heavy oil with an initial isotopically light unbound fraction, possibly of bacterial origin. The change occurs mostly over the first 20% of generation. During oil to gas cracking, kinetic isotope effects become important and the effect on δ13C of the remaining oil can be modelled as a Rayleigh process. δ13C increases by 1.5% by 50% cracking. Insufficient data are available to calibrate the effects at higher levels of cracking, and modelling these variations is hindered by a lack of understanding of the mechanism of pyrobitumen formation. However, increases greater than about 4% are unlikely to be observed. With increasing maturity, the low molecular weight fractions become isotopically heavy faster than the high molecular weight fractions. As a result, any separation of the low molecular weight fraction into a gas phase (“condensate formation”) will produce an isotopic difference between oil and condensate that depends on maturity. In the early stages of generation the condensate may be up to 1% lighter than the remaining oil. With increasing maturity, this difference at first decreases and then increases in the opposite sense. By half way through oil to gas cracking the condensate may be 1.5% heavier than the residual liquid. More subtle rearrangement reactions may result in small, but significant, changes to the shape of the isotope “type-curves” when different oil fractions are compared.  相似文献   
275.
东秦岭地区钼矿床的铼-锇同位素年龄及其意义   总被引:28,自引:11,他引:28  
金属矿床的成矿年龄多年来一直是矿床地质工作者关注的问题之一。中国地质科学院岩矿测试技术研究所建立的铼-锇同位素定年实验室,为研究钼矿床的形成时代提供了新的手段。因辉钼矿是最主要的含铼矿物之一,且基本上不含普通锇,其中所含^187Os是由^187Re衰变而来,故放射成因^187Os的积累是矿物年龄及铼含量的函数。本文采用同位素稀释-等离子体质谱法,测定了东秦岭钼矿带中几个不同类型的大型钼矿床的Re-  相似文献   
276.
新疆西天山菁布拉克岩带基性-超基性岩的全岩εNd(t)约为-5.1-+6.4,87Sr/86Sr(t)约为0.7037-0.7094。幔源岩浆同化围岩和结晶分异联合作用(即AFC过程)可以解释这些岩石的Nd、Sr同位素组成。  相似文献   
277.
本文对扬子块体南缘构造侵位于板溪群(及相应地层)的皖南和赣东北晚元古代蛇绿岩进行了系统的元素和Sm-Nd同位素地球化学研究,结果表明两套蛇绿岩具有类似的元素地球化学特征,即二者的火山岩元素地球化学特征均类似于形成于弧后盆地构造环境的拉斑玄武岩。但是,两套蛇绿岩的Nd同位素组成明显不同。赣东北蛇绿岩具有相当均一的高εNd(T)值(+5.5±1.2),表明来源于一较亏损的上地幔源区,并且没有受到明显的较成熟地壳物质的混染。相反,皖南蛇绿岩的εNd(T)值低,并有较大的变化范围(+4.5──1.0),并和Sm/Nd、Nd、MgO、SiO2呈明显的二元混合相关关系,表明蛇绿岩是由亏损幔源岩浆(初始εNd(T)≈+5.5)在结晶分异过程中与地壳组分(初始εNd(T)≈-1)混合形成的。皖南和赣东北蛇绿岩的Nd同位素和元素地球化学特征以及该地区的同时代花岗岩和火山岩的时空分布特征,可以用华南和扬子元古宙陆-弧-陆碰撞模式来解释。大约在1.0Ga前,扬子和华南块体之间存在一多岛弧洋盆。大陆边缘岛弧和大洋岛弧在扬子块体南缘发育演化。皖南和赣东北蛇绿岩就是在大陆边缘盆地和弧间盆地演化过程中形成的洋壳构造侵位的碎片。该地区I型  相似文献   
278.
金川超镁铁质岩是金川铜镍硫化物矿床的赋存岩体.采自金川镍矿Ⅰ矿区露天矿第2期侵入岩体的样品其岩石类型主要为含二辉橄榄岩和二辉橄榄岩,见镍黄铁矿、磁黄铁矿、黄铁矿呈成条带状出现,表明其形成时低氧逸度的成岩环境。运用ICP—MS等离子质谱仪和MM5400稀有气体质谱仪分别对全岩样品的稀土元素、微量元素和包体稀有气体同位素进行测定后得到一些认识:金川超镁铁质岩的微量元素丰度与球粒陨石相比,变化曲线基本呈水平分布,但是地壳中高度亏损Cr,Ni元素含量较高,主要富集于超基性的辉石和橄榄石中,说明其成因类型具有明显的幔源特征。岩石中稀土元素总量较高,为轻稀土富集型.重稀土亏损。其中由深至浅稀土元素对La/Yb,Ce/Yb,La/Sm,(La/Sm)N的比值均基本呈现增大趋势.说明其中稀土元素分馏程度呈增大趋势,轻稀土的分馏尤为明显。超镁铁质岩的^3He/^4He值分布于0.847Ra~1.625Ra之间,虽远低于上地幔的^3He/^4He值.但仍存在地幔初始氦的踪迹。研究结果表明,该岩体在侵入过程中发生了明显的分异作用,并与地壳发生了的混染作用和热液交代作用.进一步证明了该岩体为上地幔局部熔融的超基性岩浆上侵形成的。  相似文献   
279.
The groundwater in headwater region is an important recharge source for the adjacent mountain-front plain. In order to reveal the relationship among precipitation, soil water and groundwater, from June to September in 2004, stable isotopes (deuterium and oxygen-18) in precipitation and soil waters at the depths of 10, 20, 30, 50, 70, 90, and 110 cm were analyzed at two sites covered by black locust (Robinia Pseudoacia L.) (Site A) and grass predominated by Themeda triandra (T. japonica (Willd.) Tanaka) and Bothriochloa ischaemum (B. ischaemum (L.) Keng) (Site B) in an experimental catchment at Taihang Mt., North China, respectively. The δ18O of precipitation in daily rain events shows large variations (−13.3 to −4.3‰) with a mean of 8.1‰. The δ18O and δ D of soil waters along profiles in two sites suggest that the influence of canopy cover was just up to 10 cm in top soil water. The soil water moved over the zero flux plane at 70 cm in-depth is expected to escape the evaporative effect at the end of September in both sites. The results show that the stable isotope, instead of tritium as tradition, can be used to trace the soil water behaviors based on the movement of isotopic peak along the vertical profiles in this semi-arid and semi-humid mountainous region. The infiltration depths of soil water in Taihang Mt. are 12 and 10 mm/day from June to September in 2004 in Site A and Site B, respectively. Tracing by stable isotope, recharge fluxes of soil water to local groundwater are of 3.8 and 3.2 mm/day in Site A and Site B, respectively. The results provide desirable information for assessment of local groundwater resources. An erratum to this article can be found at  相似文献   
280.
The Eoarchaean (>3,600 Ma) Itsaq Gneiss Complex of southern West Greenland is dominated by polyphase orthogneisses with a complex Archaean tectonothermal history. Some of the orthogneisses have c. 3,850 Ma zircons, and they vary from rare single phase metatonalites to more common complexly banded migmatites. This is due to heterogeneous strain, in situ anatexis and granitic veining superimposed during younger tectonothermal events. In the single-phase tonalites with c. 3,850 Ma zircon, oscillatory-zoned prismatic zircon is all 3,850 Ma old, but shows patchy ancient loss of radiogenic Pb. SHRIMP spot analyses and laser ablation ICP-MS depth profiling show that thin (usually < 10 μm) younger (3,660–3,590 Ma and Neoarchaean) shells of lower Th/U metamorphic zircon are present on these 3,850 Ma zircons. Several samples with this simple zircon population occur on islands near Akilia. In contrast, migmatites usually contain more complex zircon populations, with often more than one generation of igneous zircon present. Additional zircon dating of banded gneisses across the Complex shows that samples with c. 3,850 Ma igneous zircon are not just a phenomenon restricted to Akilia and adjacent islands. For example, migmatites from Itilleq (c. 65 km from Akilia) contain variable amounts of oscillatory-zoned 3,850 Ma and 3,650 Ma zircon, interpreted, respectively, as the rock age and the time of crustal melting under Eoarchaean metamorphism. With only 110–140 ppm Zr in the tonalites and likely magmatic temperatures of >850°C, zircon solubility–melt composition relationships show that they were only one-third saturated in zircon. Any zircon entrained in the precursor magmas would thus have been highly soluble. Combined with the cathodoluminesence imaging, this demonstrates that the c. 3,850 Ma oscillatory zoned zircon crystallised out of the melt and hence gives a magmatic age. Thus the rare well-preserved tonalites and palaeosome in migmatites testify that c. 3,850 Ma quartzo–feldspathic rocks are a widespread (but probably minor) component in the Itsaq Gneiss Complex. C. 3,850 Ma zircon with negative Eu anomalies (showing growth in felsic systems) also occurs as detrital grains in rare c. 3,800 Ma metaquartzites and as inherited grains in some 3,660 Ma granites (sensu stricto). These demonstrate that still more c. 3,850 Ma rocks were present, but were recycled into Eoarchaean sediments and crustally derived granites. The major and trace element characteristics (e.g. LREE enrichment, HREE depletion, low MgO) of the best-preserved c. 3,850 Ma rocks are typical of Archaean TTG suites, and thus argue for crust formation processes involving important contributions from melting of hydrated mafic crust to the earliest Archaean. Five c. 3,850 Ma tonalites were selected as the best preserved on the basis of field criteria and zircon petrology. Four of these samples have overlapping initial ɛNd (3,850 Ma) values from +2.9 to +3.6± 0.5, with the fourth having a slightly lower value of +0.6. These data provide additional evidence for a markedly LREE-depleted early terrestrial mantle reservoir. The role of c. 3,850 Ma crust should be considered in interpreting isotope signatures of the younger (3,800–3,600 Ma) rocks of the Itsaq Gneiss Complex. Electronic supplementary material The online version of this article (doi:) contains supplementary material, which is available to authorized users.  相似文献   
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