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1.
本文通过对长江三角洲北翼东台地区ZKA02孔岩石地层、磁性地层、生物地层和年代学数据的分析研究,结合区内其他钻孔的对比,确定了该孔第四纪年代地层序列。结果表明:该孔第四系底界埋深297.36 m,地质年龄为2.58 Ma,置于松山/高斯极性时(M/G)分界处;中、下更新统界线埋深168.97 m,与布容/松山极性时界线(B/M)吻合,时代为0.78 Ma;中、上更新统界线埋深98.90 m,上更新统底部与本钻孔MIS5底部大致相当,时代为120 ka BP;上更新统与全新统界线埋深11.08m,年龄约为12kaBP,深海氧同位素I阶段(MIS1)与末次盛冰期(LGM)界面为全新统底界。本孔的微体古生物分析进一步揭示了3层海相沉积层,分别对应MIS5 (74—128 ka)、MIS3 (24—60 ka)、MIS1(现在—12ka)。该结果较好地印证了中国东部沿海地区晚更新世以来发育的3次大规模海侵事件,同时也为本地区晚更新世以来的地层划分提供了必要的数据支撑。  相似文献   

2.
丰台—野鸡坨断裂为唐山地区主要断裂之一,西侧为鸦鸿桥凹陷,东侧为唐山凸起,断裂两侧第四系厚度之差巨大。本文依据该断层两侧钻孔对其第四纪以来活动性进行初步的探讨。通过对丰台—野鸡坨断裂上下两盘PZK14和PZK20孔磁性地层学研究,并结合钻孔岩石地层,及浅部光释光和14C测年结果,建立第四纪地层格架。结果表明:两孔底部“泥包砾”为新近纪沉积;PZK14孔下更新统底界埋深为387 m,中更新统底界埋深为114 m,上更新统底界埋深为71 m,全新统底界埋深为6 m;PZK20孔下更新统底界埋深为155 m,中更新统底界埋深为73 m,上更新统底界为36 m,无全新世地层。丰台—野鸡坨断裂活动在早更新世时表现为逐渐增强的特点,活动速率由早期的5.4 cm/ka增加到13.9 cm/ka。中更新世断裂活动基本处于停滞状态,活动速率为1.0 cm/ka。晚更新世以后,断裂重新活动,且更加剧烈,活动速率达到了54.5 cm/ka。  相似文献   

3.
对北京平原区南部大兴榆垡镇420m 深的PGZ01孔岩心进行了岩石地层、磁性地层、14C测年、介形类组合和孢粉组合研究。结果表明:(1)Matuyama(松山)/Gauss(高斯)和Brunhes(布容)/Matuyama(松山)极性界线分别位于280m和78.35m处,钻孔底部已经进入Gauss正极性带;取280m处Matuyama/Gauss极性界线作为第四系下限,显示可能的永定河泥石流-冲积扇在第四纪之前即到达了北京平原南部,但是华北平原上新统标志岩石地层单元--厚层棕红色黏土在Olduvai(奥尔都维)极性亚带之上即已出现。(2)结合AMS14C测年,尝试将约60m以上地层的氧化-还原状况,与对古季风影响反映灵敏的沿海平原钻孔同样深度地层进行对比,继而确定上更新统和全新统的底界深度分别位于56.60m和18.95m。(3)MIS5(海洋同位素阶段)以来的特征沉积物,与沿海平原钻孔地层有很好的可比性,同时也有8~4ka期间史前大洪水的影响。本研究为廊(坊)固(安)凹陷西北边缘区第四纪地层划分对比、古地理环境演化、活动断裂以及区域差异构造沉降研究,提供了重要的年代地层格架,对理解晚更新世以来古季风变化的环境效应有重要的启迪。  相似文献   

4.
内蒙古托克托湖相地层时代讨论   总被引:1,自引:1,他引:0  
采用岩性描述以及OSL和ESR测年方法,研究内蒙古托克托台地郝家窑剖面和郝家窑钻孔的地层时代。研究表明,郝家窑剖面出露地层厚度47.0 m,湖相层顶部的年龄约为距今100 ka,剖面底部的年龄约为距今150 ka。郝家窑钻孔岩性大致分3段:0~12.77 m为棕黄色粉砂质黏土、黏土质粉砂,OSL年龄为距今120~40 ka,应属晚更新世马兰黄土;12.77~72.23 m为淡黄绿、灰褐色粉、细砂层和粉砂质黏土,湖相沉积层,OSL年龄约为距今400~100 ka,属上更新统—下更新统;72.23~118.45 m为棕红色粉砂质黏土层夹钙质层,属受流水影响的风成黄土,ESR年龄为距今476~990 ka,对应于中更新统离石黄土。托克托湖相层的时代与萨拉乌苏河流域经典的萨拉乌苏组(距今75~150 ka)有较大差距,似乎不宜归入萨拉乌苏组,建议暂称为托克托组。  相似文献   

5.
【研究目的】为了规范雄安新区工程地质层组划分,构建三维工程地质结构模型,更好地进行工程地质与岩土工程资料交流与利用。【研究方法】本文以雄安新区工程地质调查资料为基础,阐述了雄安新区第四纪地层特征,进行了工程地质分区,划分了100 m以浅地层工程地质层组,分析了各层组的空间分布规律及其工程特性;构建了三维工程地质结构模型,探讨了其在城市规划建设中的应用。【研究结果】雄安新区全新世地层底板埋深一般7~16 m,晚更新世地层底板埋深一般50~60 m,中更新世地层底板埋深一般70~80 m,早更新世地层底板埋深约140~190 m;可将雄安新区工程地质区划分为冲积—洪积平原工程地质亚区、冲积—湖积平原工程地质亚区和冲积平原工程地质亚区;100 m深度范围内地层可划分18个工程地质层组,其中(1)~(4)层为全新统(Qh),(5)~I1层为上更新统(Qp3),I2~I5层为中更新统(Qp2),I6~I8层为下更新统(Qp1),构建了研究区三维...  相似文献   

6.
基于河北平原廊固凹陷东北部ACX03孔(深300.0 m)浅部14C年龄和磁性地层,建立钻孔第四纪地层格架,依据ACX03孔岩心沉积物、测井曲线和微体古生物特征划分沉积层段并分析沉积环境。研究结果表明: ACX03孔B/M(布容/松山)、M/G(松山/高斯)极性界线分别位于83.8 m、220.2 m,孔底年龄约3.2 Ma,划分13个沉积层段。上新统(220.2~300.0 m)为河道、河漫滩夹湖泊沉积,下更新统(85.2~220.2 m)为河道、湖泊、河漫滩沉积,中更新统(61.5~85.2 m)为分支河道夹河漫滩及河间洼地—湖沼沉积,上更新统(23.2~61.5 m)为河漫滩、分支河道沉积,全新统(0~23.2 m)为泛滥平原、河曲—牛轭湖沉积。对比ACX03孔与邻近钻孔第四纪地层认为,河北平原廊坊—固安一带早更新世差异性沉降最强,之后一直到全新世越来越弱。  相似文献   

7.
渭河宝鸡段阶地共分为5级,第四纪地层自下更新统至全新统均有出露。五级阶地形成于早更新世中晚期,距今约130万年;四级阶地形成于早更新世晚期,距今约85万年;三级阶地形成于早更新世中期,距今约55万年;二级阶地形成于中更新世晚期—晚更新世早期,距今约15~11万年;一级阶地形成于全新世早期,距今约0.8万年。  相似文献   

8.
通过对唐山市复兴路十中旧址钻孔更新统上部和全新统部分的60 m岩芯的沉积物及92件孢粉样品的分析, 建立了4个组合带, 总结了唐山地区晚更新世以来的植被演替和气候变化: (1)孢粉带Ⅰ, 以针阔混交林-草原为主, 气候温暖湿润; (2)孢粉带Ⅱ, 以疏林草原为主, 气候寒冷干旱, 为晚更新世以来环境最为恶劣的时期; (3)孢粉带Ⅲa, 植被为针阔混交林-草原, 气候温暖湿润; (4)孢粉带Ⅲb, 发育暗针叶林-草原, 气候寒冷湿润; (5)孢粉带Ⅲc, 植被为疏林草原, 气候寒冷略干; (6)孢粉带Ⅳ, 发育针阔混交森林, 气候温暖湿润, 为晚更新世以来水热条件最佳的时期。通过与邻区及全球冰芯、深海沉积研究成果的对比分析, 探讨了华北平原晚更新世以来的气候变化特点: MIS3的温湿条件显著优于MIS2和MIS4, 达到间冰期气候, 与MIS5相似, 局部地区甚至超过MIS1; MIS2不是一个持续干冷的过程, 而是一个由湿冷逐渐转向干冷的过程。此成果对探讨华北平原第四纪地层划分、对比和气候演化提供了科学依据。  相似文献   

9.
通过对西藏定结盆地湖相沉积的野外地质调查和实测剖面,对分布于盆地内的第四纪湖相地层进行了详细的研究和划分,重新厘定了该区中更新世-晚更新世的岩石地层单元,确立了生物地层和年代地层序列.首次建立了该区第四纪中更新世-晚更新世湖相地层单位——定结群(Qp2-3D).定结群是由中更新统叶如藏布组(Qp21γ)和上更新统麻加组(Qp31m)2个组组成.为青藏高原湖泊演化、气候变化、古地理变迁的研究,以及第四纪地层的划分与对比等都提供了新资料.  相似文献   

10.
东辛2-4井钻取岩芯0—530.1m,明化镇组上段的上亚段至平原组划分为18个层,其中,下更新统平原组一段(简称平一段)的底作为第四系下界;同时进行了古地磁研究,测定出布容、松山、高斯和吉尔伯特等4个极性时。由于天文地层研究的需要,对90年代古地磁的年龄与"国际地层表"(2004)对比,作了相应调整,确定井深242.5m处的年龄为781ka,274.5m处的为2581ka,452.0m处的为3596ka和529.5m处的为4493ka,井深242.5m和452.0m这两个界线的年龄值作为天文地层计时的标定。研究大致分为两步:①以磁化强度(MI)数值曲线的频谱和小波分析,选定平原组一段102.4m周期和明化镇组上段68.36m周期分别对应于天文偏心率404ka旋回,求出了堆积速率为0.1584mm/a和0.1692mm/a及其他各层位的年龄:井深274.5m处上新统明上(上)亚段顶界的年龄为2546ka,平一段底界的年龄是970ka,不整合的延续时间大约为1.6Myr。②推测明上(上)亚段顶2546—1806ka期间可能沉积了129m地层;而在1806—908ka期间,由于构造活动上升,把原沉积又剥蚀掉了,形成井深274.5m处的一个大的不整合面,对储层孔隙的扩张和压实有重要影响,成为最后二次烃源物质的卸载和封堵。  相似文献   

11.
Сharoitite consists of gem-quality mineral charoite and subordinate quartz, aegirine, K-feldspar, tinaksite, canasite, and some other minerals. This rock type is known only from one locality in the world associated with the Early Cretaceous (131.3 ± 2.4 Ma, K–Ar age) Malyy Murun syenite massif, Siberia, Russia. Although charoitite mineralogy is well known, there is disagreement whether it reflects metasomatic or magmatic activity. In order to understand when the charoitites formed we attempted to date it by 40Ar/39Ar incremental step-heating and laser ablation techniques. Our results show that the fibrous structure of water-bearing charoite does not retain radiogenic argon. Laser ablation 40Ar/39Ar for K-feldspar and tinaksite from the charoitite yielded several age clusters even from the same mineral grain. The oldest cluster of 134.1 ± 2.9 Ma for the K-feldspar agrees with the age of the Malyy Murun syenites. The youngest age of 113.3 ± 3.4 Ma for charoitite K-feldspar overlaps with the youngest of published K–Ar ages (112 ± 5 Ma) for one K-feldspar sample of the Malyy Murun syenite. Tinaksite is characterized by a similar spread of ages (from 133.0 ± 3 Ma to 115.7 ± 4.3 Ma) within a single grain. We suggest that charoitites originated due to the interaction of metasomatic agents derived from the Malyy Murun magma and country rocks. Timing of magma emplacement and charoitite crystallization is reflected by the older cluster of ages, whereas the younger ages are due to a secondary process.  相似文献   

12.
Cosmogenic nuclide concentrations measured on abandoned fan surfaces along the Mojave section of the San Andreas Fault suggest that sediment is generated, transported, and removed from the fans on the order of 30-40 kyr. We measured in situ produced cosmogenic 10Be, and in some cases 26Al, in boulders (n = 15), surface sediment (n = 15), and one depth profile (n = 9). Nuclide concentrations in surface sediments and boulders underestimate fan ages, suggesting that 10Be accumulation is largely controlled by the geomorphic processes that operate on the surfaces of the fans and not by their ages.Field observations, grain-size distribution, and cosmogenic nuclide data suggest that over time, boulders weather into grus and the bar sediments diffuse into the adjacent swales. As fans grow older the relief between bars and swales decreases, the sediment transport rate from bars to swales decreases, and the surface processes that erode the fan become uniform over the entire fan surface. The nuclide data therefore suggest that, over time, the difference in 10Be concentration between bars and swales increases to a maximum until the topographic relief between bars and swales is minimized, resulting in a common surface lowering rate and common 10Be concentrations across the fan. During this phase, the entire fan is lowered homogeneously at a rate of 10-15 mm kyr−1.  相似文献   

13.
Reliable dating is an essential element of palaeoseismological studies, yet whilst a suite of geochronological methods can now provide late Quaternary age control it remains very difficult to date modern events (i.e., those occurring within the last 150 years). This is significant because the starting point for many palaeoseismological investigations is a modern surface-rupturing event, whose geological effects need to be disentangled in trench stratigraphies from palaeoseismic ruptures. Two dating methods which, in combination, can provide robust dating control in recently deposited sediments are the 210Pb and 137Cs dating methods. Here, we test the applicability of using 210Pb and 137Cs to date colluvial sediments exposed in three trenches excavated across an earthquake fault—the Eliki fault, Gulf of Corinth, Greece—which ruptured in an earthquake in 1861. The 210Pb and 137Cs profiles observed in these colluvial sequences are relatively erratic due to the mixed nature of the sediments, i.e., their deposition in an environment where the supply of slope sediments is driven by seasonal rainfall, causing non-uniform sediment accretion and sediment reworking. In one trench, however, 210Pb dating, corroborated by 137Cs dating, indicates that a proposed post-1861 surface colluvial unit has been deposited over the period 1950 AD–present (at a rate of ca. 9 mm/year), and overlies a significantly older unit (>120 years old). The dating control provided here by 210Pb and 137Cs dating corroborates the published interpretation of the trench stratigraphy, and refines the 14C-based estimated dates for the upper unit. At two other trenches 210Pb and 137Cs dating only provided minimum ages (based on the presence or absence of 210Pbexcess and 137Cs). Such approximate ages, however, may still useful in corroborating interpretations made using the trench stratigraphy, or, at sites which have long earthquake recurrence intervals, determining which earthquake event was responsible for a particular bed offset.  相似文献   

14.
林木森  彭松柏  乔卫涛 《岩石学报》2017,33(10):3137-3146
腾冲芒棒地区广泛发育新近纪以来的火山岩,本文首次对该区粗面安山岩进行的高精度40Ar/39Ar同位素定年,其坪年龄分别为2.1±0.1Ma和2.0±0.1Ma,代表其喷溢时代为早更新世。岩石地球化学特征研究显示,粗面安山岩属高钾钙碱性系列,富集大离子亲石元素、亏损高场强元素,具有弧火山岩与大陆板内火山岩的双重属性,推测其形成于后造山环境。综合研究表明,腾冲地块更新世火山岩的形成与印度-欧亚板块俯冲-碰撞造山隆升后的伸展垮塌、富集地幔部分熔融作用密切相关,而印支陆块向东南逃逸以及腾冲弧形走滑断裂带(龙川江断裂带、大盈江断裂带)的活化促使了该期火山岩的喷发与侵位。  相似文献   

15.

The 40Ar/39Ar dating of alteration muscovite from the Peak Au mine in the Early Devonian Cobar Basin, New South Wales, has distinguished two major episodes of mineralization. Veined (Pb‐Zn‐Cu‐Au) mineralization was broadly synchronous with cleavage formation during the post‐inversion, shortening deformation of the basin sedimentary rocks, and replacive Ag‐Pb‐Zn mineralization significantly postdates the latter event. Veined base metals (Pb‐Zn‐Cu) and Au associated with silicification were coeval with three stages of cleavage formation (D1, D2 and D3) after basin inversion. The Cu‐Au phase of mineralization at the Peak Au mine which was broadly contemporaneous with the culmination of the cleavage‐forming events (D3) and with the local development of high‐strain zones occurred at 401.5 ± 1.0 Ma (40Ar/39Ar on muscovite). This date is essentially coeval with known fossil constraints on the age of basin formation, and indicates that basin inversion and deformation rapidly followed sedimentation. In contrast, replacive Ag‐Pb‐Zn mineralization occurred at 384.0 ± 1.4 Ma (40Ar/39Ar on muscovite) during an extended period of relaxation characterized by normal faulting (D4) which followed the shortening deformation. This mineralization was associated with desilicification and chlorite‐muscovite replacement assemblages which cross‐cut the cleavages, and which may have been broadly contemporaneous with the deposition of part of the Mulga Downs Group which unconformably overlies the Cobar Supergroup. Rhyolite exposed in the core of the Peak Au mine largely contains inherited zircons that range in age from ~430–1500 Ma. A few euhedral zircons have an age of ~430 Ma and this is interpreted as a maximum date for the rock. Zircons from a syn‐D3 chlorite‐muscovite replacement zone within the deposit have 206Pb/238U ages of ~410–650 Ma and are apparently inherited.  相似文献   

16.
Natural calcite from Kuerle, Xinjiang, China, shows orange-red fluorescence when exposed to short-wave ultraviolet (UV) light (Hg 253.7 nm). Photoluminescence (PL) emission and excitation spectra of the calcite are observed at room temperature in detail. The PL emission spectrum under 208 nm excitation consists of three bands: two UV bands at 325 and 355 nm and an orange-red band at 620 nm. The three bands are ascribed to Pb2+, Ce3+ and Mn2+, respectively, as activators. The Pb2+ excitation band is observed at 243 nm, and the Ce3+ excitation band at 295 nm. The Pb2+ excitation band is also observed by monitoring the Ce3+ fluorescence, and the Pb2+ and Ce3+ excitation bands, in addition to six Mn2+ excitation bands, are also observed by monitoring the Mn2+ fluorescence. These indicate that four types of the energy transfer can occur in calcite through the following processes: (1) Pb2+ → Ce3+, (2) Pb2+ → Mn2+, (3) Ce3+ → Mn2+ and (4) Pb2+ → Ce3+ → Mn2+.  相似文献   

17.
At the Sandpiper gold deposit in the Tanami region of northern Australia sericite is intimately intergrown with arsenopyrite in gold-bearing quartz veins and breccias, suggesting sericite crystallisation synchronous with gold-bearing fluid flow. This ore-stage sericite yields a 40Ar/39Ar plateau age of 1785 ± 32 Ma (2σ including both analytical and systematic uncertainties). Recalculation using revised and more precise values for the 40K decay constants and the age of the Fish Canyon Sanidine standard shifts the age to 1794 ±12 Ma (2σ including all known uncertainties). Given the possibility of post-mineralisation isotopic resetting this age can be conservatively interpreted as a minimum constraint on the timing of gold deposition although, given local geological relationships and estimates for the argon retentivity of white mica, we consider complete isotopic resetting to be unlikely. The preferred interpretation is, therefore, that the sericite 40Ar/39Ar age indicates the timing of gold mineralisation. Thesericite age accords with a limited dataset of 207Pb/206Pb xenotime ages of ca 1800 Ma from other gold deposits in the Tanami region, interpreted as mineralisation ages. The agreement between independently derived ages from several gold deposits lends support for a widespread gold-mineralising event at ca 1800 Ma in the Tanami region.  相似文献   

18.
40Ar-39Ar analyses of one alkali pyroxenite whole rock and two phlogopite separates of calcite carbonatites from the Sung Valley carbonatite-alkaline complex, which is believed to be a part of the Rajmahal-Bengal-Sylhet (RBS) flood basalt province, yielded indistinguishable plateau ages of 108.8 ± 2.0Ma, 106.4 ± 1.3Ma and 107.5 ± 1.4Ma, respectively. The weighted mean of these ages, 107.2 ± 0.8 Ma, is the time of emplacement of this complex. This implies that Sung Valley complex and probably other such complexes in the Assam-Meghalaya Plateau postdate the main flood basalt event (i.e., the eruption of tholeiites) in the RBS province by ∼10Ma.  相似文献   

19.
河北承德铁马哈叭沁超贫铁矿床的成因与成矿时代   总被引:4,自引:1,他引:3  
河北承德一带基性-超基性岩中的超贫铁矿石(全铁TFe含量<20%)资源在河北的铁精矿产量中占有重要地位,其中以铁马哈叭沁超贫铁矿床贡献最大。本研究以铁马哈叭沁岩体中的超贫铁矿石即钒钛磁铁矿化的角闪石岩中的角闪石为研究对象,通过电子探针分析和40Ar/39Ar测年,结合野外地质特征,探讨了超贫铁矿床的成矿时代及矿床成因。野外和岩相学特征表明,铁马哈叭沁超贫铁矿床为岩浆晚期分异型铁矿床。电子探针分析表明,角闪石岩中角闪石主量元素变化范围较小,具有富Ca、富Mg、富Na、贫K的特征,属于韭闪石和镁绿钙闪石。角闪石成因矿物学研究表明,角闪石岩主要为幔源成因,并受到了地壳物质的混染。角闪石岩中角闪石单矿物的40Ar/39Ar年龄为379~401 Ma,表明成岩成矿时代为泥盆纪,形成于白乃庙岛弧与华北克拉通北缘发生弧-陆碰撞后的伸展阶段。  相似文献   

20.
柴北缘锡铁山榴辉岩退变质成因角闪石40Ar/39Ar年代学研究   总被引:2,自引:2,他引:0  
采用激光阶段加热40Ar/39Ar技术,对柴达木盆地北缘锡铁山榴辉岩退变质作用形成的榴闪岩和斜长角闪岩之角闪石进行了定年分析。09NQ44Amp来自榴闪岩,各阶段表观年龄(以现代空气氩40Ar/36Ar比值295.5扣除非放射性成因40Ar)构成了单调下降的阶梯状年龄谱。在反等时线图解上,2~4阶段数据点和5~18阶段数据点分别构成了两条等时线,等时年龄分别为427.6±10Ma和425.1±2.6Ma,对应的初始40Ar/36Ar比值则分别为435.2±6.1和705.3±13。角闪石09NQ43Amp来自榴辉岩强烈退变质作用形成的斜长角闪岩,40Ar/39Ar阶段加热分析也获得单调下降的年龄谱,在反等时线图解上其数据点3~6阶段和7~16阶段分别构成了两条等时线,等时年龄分别为418.9±2.9Ma和418.1±2.1Ma,对应的初始40Ar/36Ar比值则分别为493.7±2.8和685.8±34.3。等时线截距值高于现代大气40Ar/36Ar比值,表明角闪石中含过剩40Ar。同时,由低温和中-高温阶段加热数据点分别构成两条等时年龄基本一致,截距值却明显不同的等时线,表明在角闪石热力学性质不同的源区,存在两期明显不同且未混合的初始捕获Ar组分。等时年龄425~418Ma代表的是锡铁山榴辉岩角闪岩相退变质作用发生的时间。等时线图解法虽然有效的校正了角闪石中的过剩40Ar,但仅根据表观年龄图谱和等时线图谱还无法清晰判断过剩40Ar在角闪石中的赋存状态,有待进一步探讨。  相似文献   

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