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1.
通过对渤海莱州湾GK138、GK111及GK95孔的255个沉积物样品中的有孔虫定量统计分析,共鉴定出底栖有孔虫15属32种。根据底栖有孔虫的丰度和分异度等分布特征和AMS14 C和光释光(OSL)测年结果,揭示晚第四纪以来研究区共发育3套海相地层,分别是中更新世晚期的第三海相层、晚更新世的第二海相层和全新世的第一海相层,通过与全球海面变化曲线对比,发现其与MIS7、MIS5和MIS1阶段的高海面有良好的对应关系。样品的Q型聚类及主成分分析划分出3组代表不同沉积环境的有孔虫化石组合,第Ⅲ化石组合带为中更新世晚期海侵的产物,为河口-滨岸浅海环境。第Ⅱ化石组合为晚更新世海侵的产物,为潮间带-潮下带沉积环境,第Ⅰ化石组合带为潮上带-潮间带沉积环境。海相地层顶、底板高程和厚度的分析结果显示中更新世晚期至晚更新世期间发生过不同期次、不同强度的构造活动,而进入全新世以后构造活动相对减弱。  相似文献   

2.
对渤海莱州湾南岸央子镇YZ1钻孔取微体古生物样品18个,通过分析鉴定和地层对比,以及对微体古生物化石进行属种、丰度和分异度分析,共划分出4个化石组合层段。根据化石组合特征分析认为:第Ⅰ、第Ⅱ微体化石组合为全新世海侵的产物。第Ⅰ组合代表了海进序列,沉积环境为潮上带—潮间带;第Ⅱ组合为海退序列,沉积环境为潮间带—潮下带。第Ⅲ、第Ⅳ组合分别是晚更新世2次海侵的产物。第Ⅲ组合为晚更新世末期海侵的产物,海侵规模较大,沉积环境为滨海潮坪—潮间带;第Ⅳ组合海侵规模较小,陆相因素增大,沉积环境为河口—滨岸带或者为海陆交互相。  相似文献   

3.
商志文  李建芬  姜兴钰  李琰  王宏 《地质学报》2020,94(8):2433-2445
大凌河河口地区LZK06孔40m以浅岩心的沉积学、古生物学和年代学等综合研究以及该地区LZK02- 04钻孔资料,揭示了研究区中更新世晚期以来经历了两次海侵- 海退旋回,依次形成了中更新世晚期湖相/河流相 SymbolnB@ 晚更新世海相- 湖相/河流相 SymbolnB@ 全新世海相- 河流相地层。全新世早中期由于物源供给很少,研究区处于长达约10ka的饥饿滞留相沉积环境,平均沉积速率仅约0. 02~0. 05cm/a。全新世晚期约1500a cal BP以来,由于人类活动导致水土流失,河流输砂量增加,研究区开始了快速加积过程,平均沉积速率约0. 9~1. 2cm/a,下辽河平原被快速充填,开始成陆。与全球海面变化时空分布特征的对比,推断辽东湾的第II海相层发育于MIS 5- MIS 3早期,第I海相层发育于MIS 1阶段高海面时期。晚更新世以来频繁的海面升降是辽东湾泥质海岸带地层和环境演化的主要控制因素。  相似文献   

4.
苏州澄湖SC1孔晚更新世晚期以来的古环境演变研究   总被引:1,自引:1,他引:0  
史凯 《现代地质》2010,24(2):214-220
通过对苏州澄湖SC1孔沉积物的粒度、磁化率、孢粉和有孔虫等的实验分析,并结合沉积物的岩性构造特征以及AMS 14C测年数据,探讨了晚更新世晚期以来苏州澄湖地区的气候波动特征以及海侵、海退沉积巡回序列。研究发现该区域气候与世界气候波动性一致,具有温暖湿润-冷而略干-温暖湿润-暖热潮湿-温凉略干-温暖湿润的波动变化特征;晚更新世晚期以来具有两个海相沉积地层,一为晚更新世晚期海侵(约为34 kaBP),另一为全新世中期海侵((6 955±50)aBP);整个剖面缺失硬粘土层,与之对应的则是两海相地层之间的泥砂互层;沉积环境经历了晚更新世晚期海侵期河床、河漫滩相-末次冰期干冷期河流湖沼相-全新世早期河口湾亚相-全新世中期滨浅海相-全新世晚期淡水湖沼相的演变过程。  相似文献   

5.
福建沿岸晚更新世地层中微体古生物化石较为缺乏,极大限制了对该区晚第四纪海侵过程的深入研究。针对这一问题,本研究以闽北2个海湾内的第四纪钻孔为研究对象,通过有孔虫化石以及沉积成因的地球化学元素(Sr/Ba、Mn/Fe)分析,结合三沙湾表层沉积物相应指标,探讨沉积成因的地球化学元素指示海侵地层的可行性。结果显示,2个海湾钻孔的晚第四纪地层中均发育3套疑似海相深灰色黏土层,其中开放海湾霞浦湾钻孔底部黏土层中缺失有孔虫,半封闭海湾三沙湾钻孔中有孔虫仅出现于顶部黏土层中。这3层黏土层的Sr/ Ba值远大于1,和现代潮滩—河口湾体系相近,且出现的海相沟鞭藻和自生黄铁矿为典型的海相地层特征。基于已有的OSL和AMS14C年龄框架,这3层海侵层分别对应于MIS5、MIS3和MIS1期,Sr/Ba和Mn/Fe均值从MIS5到MIS1期不断增大,结合现代潮滩-河口湾体系指标,表明从MIS5到MIS1期海侵强度的增加。由此可见,沉积成因地球化学元素指标可以有效辨识闽北海湾晚更新世海侵地层,这将有助于进一步了解该区晚第四纪海侵过程及其控制因素。  相似文献   

6.
渤海湾西岸晚第四纪海相地层划分及地质意义   总被引:5,自引:0,他引:5  
BT113孔和BT114孔是位于渤海湾西岸地区的2个80 m全取心钻孔。通过对钻孔岩心的岩性、沉积构造及生物组合等特征分析,结合AMS14C和OSL(光释光)测年结果,揭示中更新世晚期以来本地区主要发育3个海相地层:自下而上为中更新统上部的第三海相地层(简称“海三”)、上更新统的第二海相地层(简称“海二”)和全新统的第一海相地层(简称“海一”),指示中更新世晚期以来研究区发生的3次主要海面波动。与全球海面变化曲线对比,海三,海二和海一分别发育于MIS(深海氧同位素阶段)7、MIS5和MIS1的高海面时期,说明渤海湾西岸中更新晚期以来地层记录的海面变化趋势与全球变化一致。与前人的传统认识不同,认为受全球海面及渤海海峡地貌共同影响,MIS3时期研究区并未发生大范围海侵。通过多个钻孔的对比分析,3个海相地层在渤海湾西岸地区的分布较广,具有良好的可对比性,不同钻孔之间同一海相地层的高程和厚度的较大差异指示本地区在晚更新世期间发生较强的差异性沉降活动。  相似文献   

7.
渤海湾牡蛎礁平原中部兴坨剖面全新世地质环境变迁   总被引:9,自引:8,他引:9  
渤海湾牡蛎礁平原中部兴坨剖面的有孔虫组合划分为5种沉积环境7个带(亚环境),从下向上依次为晚更新世陆相(Ⅶ带)、早全新世海陆过渡相(Ⅵ带:沿海低地与潮间带)、中晚全新世海相(Ⅴ带:潮下带-浅海,Ⅳ带:低潮线附近)、晚全新世海陆过渡相(Ⅲ带:开放潮间带,Ⅱ带:渴湖)和河流泛滥相(Ⅰ带:古土壤及洪积层)。^14C确定了全新世底泥炭始于9486 cal BP,Ⅳ带始于约4696 cal BP。Ⅱ带所处的渴湖环境,从约4000 cal BP直至隋唐温暖期之前,历时约2700年。隋唐暖期古土壤发育向南东减弱至逐渐消失,说明在比兴坨更靠近渤海湾的地方,潟湖持续的时间更长。广泛存在的潟湖,是牡蛎礁平原晚全新世的重要地貌景观。  相似文献   

8.
对现代黄河三角洲地区YRD-1101孔上部岩心开展粒度分析,并结合AMS14C和光释光(OSL)年代学测试结果、沉积特征、微体古生物鉴定及周边钻孔对比,建立了MIS5期以来的地层框架,揭示出该地区主要经历了3个阶段的沉积环境演化过程:(1)晚更新世—早全新世河流与海相交替沉积,其中MIS5c阶段海侵水动力环境中等,MIS3期海侵水动力环境较弱,MIS2期河流沉积水动力较强;(2)全新世滨、浅海沉积环境,动力环境整体较强,相对比较稳定;(3)1855年至今形成的黄河三角洲沉积,水动力强度较弱到中等。海平面变化和构造沉降是影响研究区晚更新世以来沉积演化的主要因素,此外,黄河带来的大量泥沙对海侵强度也有显著影响。  相似文献   

9.
浙南沿海地区晚更新世顶部(Q_3~3)的陆相地层,岩性以灰黄色粘土质粉砂、粉细砂为主,未见到微体化石,仅含较多的植物碎屑。全新世地层存在两个微体古生物化石层,第二化石层属全新世早期~中期(Q_4~(1 2))的地层。岩性以青灰色粘土为主,微体化石很丰富,为浅海相沉积。第一化石层则属全新世晚期(Q_4~3)地层。岩性以黄灰、黄褐色粉砂质粘土为主,微体化石比较丰富,为海陆过渡相至滨海相沉积。第二化石层比第一化石层海侵程度强,而同一化石层相比,南部又以北部海相性大。  相似文献   

10.
梅西  张训华  李日辉 《地质论评》2013,59(6):1024-1034
底栖有孔虫和粒度分析结果表明,南黄海北部DLC70 3孔(36°38′15″ N,123°32′56″ E,水深7200 m)7120 m长的柱状样保存了130 ka以来的沉积记录。依据349个样品的底栖有孔虫丰度和特征种的分布,结合岩性粒度变化,可识别9个底栖有孔虫组合,对应5个海相层和4个陆相至过渡相层;结合AMS14C和OSL测年数据建立了钻孔晚更新世以来的年代地层,可以与南黄海其他钻孔的地层进行对比。应用属种组合和不同生态种的丰度变化,探讨了研究区末次间冰期以来的古环境变化,认为海平面频繁波动是该地区不同成因类型地层从陆相、潮间、滨岸、滨海、近岸浅海、到浅海反复演替的关键。孔段2040~2780 m(MIS3早期)和5500~7120 m(MIS5e)的底栖有孔虫优势种是 Buccella frigida和Protelphidium tuberculatum,代表了与目前相似的冷涡边缘的冷水环境,指示南黄海古冷水团在MIS5e和MIS3早期高海平面时期已经存在。  相似文献   

11.
This paper reports the first results of a study of 11 isotope systems (3He/4He, 40Ar/36Ar, 34S/32S, 65Cu/63Cu, 62Ni/60Ni, 87Sr/86Sr, 143Nd/144Nd, 206–208Pb/204Pb, Hf–Nd, U–Pb, and Re–Os) in the rocks and ores of the Cu–Ni–PGE deposits of the Norilsk ore district. Almost all the results were obtained at the Center of Isotopic Research of the Karpinskii All-Russia Research Institute of Geology. The use of a number of independent genetic isotopic signatures and comprehensive isotopic knowledge provided a methodic basis for the interpretation of approximately 5000 isotopic analyses of various elements. The presence of materials from two sources, crust and mantle, was detected in the composition of the rocks and ores. The contribution of the crustal source is especially significant in the paleofluids (gas–liquid microinclusions) of the ore-forming medium. Crustal solutions were probably a transport medium during ore formation. Air argon is dominant in the ores, which indicates a connection between the paleofluids and the atmosphere. This suggests intense groundwater circulation during the crystallization of ore minerals. The age of the rocks and ores of the Norilsk deposits was determined. The stage of orebody formation is restricted to a narrow age interval of 250 ± 10 Ma. An isotopic criterion was proposed for the ore-bearing potential of mafic intrusions in the Norilsk–Taimyr region. It includes several interrelated isotopic ratios of various elements: He, Ar, S, and others.  相似文献   

12.
最新的流行病学研究表明,空气中较高浓度的悬浮细颗粒可能对人类的健康有不利的影响。根据该项研究显示,由于心脏病、慢性呼吸问题和肺功能指标恶化而导致死亡率的升高与细尘粒子有关。这些研究结果已经促使欧盟于1999年4月出台了限制空气中二氧化硫、二氧化氮、氧化氮、铅和颗粒物含量的法案(1999/30/EC),对各项指标包括对可吸入PM10颗粒的浓度提出了新的限制性指标。PM10颗粒是指可以通过预分级器分离采集的气体动力学直径小于10μm的细颗粒。目前研究的兴趣重点逐步偏向PM2.5这些更细微颗粒物,PM2.5这种颗粒物对健康有明显的不利影响。在欧盟指令2008/50/EC中,对PM10和PM2.5都提  相似文献   

13.
Komatiites are mantle-derived ultramafic volcanic rocks. Komatiites have been discovered in several States of India, notably in Karnataka. Studies on the distribution of trace-elements in the komatiites of India are very few. This paper proposes a simple, accurate, precise, rapid, and non-destructive wavelength-dispersive x-ray fluorescence (WDXRF) spectrometric technique for determining Sc, V, Cr, Co, Ni, Cu, Zn, Rb, Sr, Y, Zr, Nb, Ba, Pb, and Th in komatiites, and discusses the accuracy, precision, limits of detection, x-ray spectral-line interferences, inter-element effects, speed, advantages, and limitations of the technique. The accuracy of the technique is excellent (within 3%) for Sc, V, Cr, Co, Ni, Cu, Zn, Rb, Sr, Zr, Nb, Ba, Pb, and Th and very good (within 4%) for Y. The precision is also excellent (within 3%) for Sc, V, Cr, Co, Ni, Cu, Zn, Rb, Sr, Y, Zr, Nb, Ba, Pb, and Th. The limits of detection are: 1 ppm for Sc and V; 2 ppm for Cr, Co, and Ni; 3 ppm for Cu, Zn, Rb, and Sr; 4 ppm for Y and Zr; 6 ppm for Nb; 10 ppm for Ba; 13 ppm for Pb; and 14 ppm for Th. The time taken for determining Sc, V, Cr, Co, Ni, Cu, Zn, Rb, Sr, Y, Zr, Nb, Ba, Pb, and Th in a batch of 24 samples of komatiites, for a replication of four analyses per sample, by one operator, using a manual WDXRF spectrometer, is only 60 hours.  相似文献   

14.
Most sulfide-rich magmatic Ni-Cu-(PGE) deposits form in dynamic magmatic systems by partial melting S-bearing wall rocks with variable degrees of assimilation of miscible silicate and volatile components, and generation of barren to weakly-mineralized immiscible Fe sulfide xenomelts into which Ni-Cu-Co-PGE partition from the magma. Some exceptionally-thick magmatic Cr deposits may form by partial melting oxide-bearing wall rocks with variable degrees of assimilation of the miscible silicate and volatile components, and generation of barren Fe ± Ti oxide xenocrysts into which Cr-Mg-V ± Ti partition from the magma. The products of these processes are variably preserved as skarns, residues, xenoliths, xenocrysts, xenomelts, and xenovolatiles, which play important to critical roles in ore genesis, transport, localization, and/or modification. Incorporation of barren xenoliths/autoliths may induce small amounts of sulfide/chromite to segregate, but incorporation of sulfide xenomelts or oxide xenocrysts with dynamic upgrading of metal tenors (PGE > Cu > Ni > Co and Cr > V > Ti, respectively) is required to make significant ore deposits. Silicate xenomelts are only rarely preserved, but will be variably depleted in chalcophile and ferrous metals. Less dense felsic xenoliths may aid upward sulfide transport by increasing the effective viscosity and decreasing the bulk density of the magma. Denser mafic or metamorphosed xenoliths may also increase the effective viscosity of the magma, but may aid downward sulfide transport by increasing the bulk density of the magma. Sulfide wets olivine, so olivine xenocrysts may act as filter beds to collect advected finely dispersed sulfide droplets, but other silicates and xenoliths may not be wetted by sulfides. Xenovolatiles may retard settling of – or in some cases float – dense sulfide droplets. Reactions of sulfide melts with felsic country rocks may generate Fe-rich skarns that may allow sulfide melts to fractionate to more extreme Cu-Ni-rich compositions. Xenoliths, xenocrysts, xenomelts, and xenovolatiles are more likely to be preserved in cooler basaltic magmas than in hotter komatiitic magmas, and are more likely to be preserved in less dynamic (less turbulent) systems/domain/phases than in more dynamic (more turbulent) systems/domains/phases. Massive to semi-massive Ni-Cu-PGE and Cr mineralization and xenoliths are often localized within footwall embayments, dilations/jogs in dikes, throats of magma conduits, and the horizontal segments of dike-chonolith and dike-sill complexes, which represent fluid dynamic traps for both ascending and descending sulfides/oxides. If skarns, residues, xenoliths, xenocrysts, xenomelts, and/or xenovolatiles are present, they provide important constraints on ore genesis and they are valuable exploration indicators, but they must be included in elemental and isotopic mass balance calculations.  相似文献   

15.
《Applied Geochemistry》2001,16(2):137-159
Five hundred and ninety-eight samples of terrestrial moss (Hylocomium splendens and Pleurozium schreberi) collected from a 188,000 km2 area of the central Barents region (NE Norway, N Finland, NW Russia) were analysed by ICP-AES and ICP-MS. Analytical results for Al, B, Ba, Ca, K, La, Mg, Mn, Na, P, Rb, Si, Sr, Th, U and Y concentrations are reported here. Graphical methods of data analysis, such as geochemical maps, cumulative frequency diagrams, boxplots and scatterplots, are used to interpret the origin of the patterns for these elements. None of the elements reported here are emitted in significant amounts from the smelting industry on the Kola Peninsula. Despite the conventional view that moss chemistry reflects atmospheric element input, the nature of the underlying mineral substrate (regolith or bedrock) is found to have a considerable influence on moss composition for several elements. This influence of the chemistry of the mineral substrate can take place in a variety of ways. (1) It can be completely natural, reflecting the ability of higher plants to take up elements from deep soil horizons and shed them with litterfall onto the surface. (2) It can result from naturally increased soil dust input where vegetation is scarce due to harsh climatic conditions for instance. Alternatively, substrate influence can be enhanced by human activity, such as open-cast mining, creation of ‘technogenic deserts’, or handling, transport and storage of ore and ore products, all of which magnify the natural elemental flux from bedrock to ground vegetation. Seaspray is another natural process affecting moss composition in the area (Mg, Na), and this is most visible in the Norwegian part of the study area. Presence or absence of some plant species, e.g., lichens, seems to influence moss chemistry. This is shown by the low concentrations of B or K in moss on the Finnish and Norwegian side of the (fenced) border with Russia, contrasting with high concentrations on the other side (intensive reindeer husbandry west of the border has selectively depleted the lichen population).  相似文献   

16.
The Kuskokwim River at Bethel, Alaska, drains a major mercury-antimony metallogenic province in its upper reaches and tributaries. Bethel (population 4000) is situated on the Kuskokwim floodplain and also draws its water supply from wells located in river-deposited sediment. A boring through overbank and floodplain sediment has provided material to establish a baseline datum for sediment-hosted heavy metals. Mercury (total), arsenic, antimony, and selenium contents were determined; aluminum was also determined and used as normalizing factor. The contents of the heavy metals were relatively constant with depth and do not reflect any potential enrichment from upstream contaminant sources.  相似文献   

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19.
《Chemical Geology》2007,236(1-2):13-26
We examined the coprecipitation behavior of Ti, Mo, Sn and Sb in Ca–Al–Mg fluorides under two different fluoride forming conditions: at < 70 °C in an ultrasonic bath (denoted as the ultrasonic method) and at 245 °C using a Teflon bomb (denoted as the bomb method). In the ultrasonic method, small amounts of Ti, Mo and Sn coprecipitation were observed with 100% Ca and 100% Mg fluorides. No coprecipitation of Ti, Mo, Sn and Sb in Ca–Al–Mg fluorides occurred when the sample was decomposed by the bomb method except for 100% Ca fluoride. Based on our coprecipitation observations, we have developed a simultaneous determination method for B, Ti, Zr, Nb, Mo, Sn, Sb, Hf and Ta by Q-pole type ICP-MS (ICP-QMS) and sector field type ICP-MS (ICP-SFMS). 9–50 mg of samples with Zr–Mo–Sn–Sb–Hf spikes were decomposed by HF using the bomb method and the ultrasonic method with B spike. The sample was then evaporated and re-dissolved into 0.5 mol l 1 HF, followed by the removal of fluorides by centrifuging. B, Zr, Mo, Sn, Sb and Hf were measured by ID method. Nb and Ta were measured by the ID-internal standardization method, based on Nb/Mo and Ta/Mo ratios using ICP-QMS, for which pseudo-FI was developed and applied. When 100% recovery yields of Zr and Hf are expected, Nb/Zr and Ta/Hf ratios may also be used. Ti was determined by the ID-internal standardization method, based on the Ti/Nb ratio from ICP-SFMS. Only 0.053 ml sample solution was required for measurement of all 9 elements. Dilution factors of ≤ 340 were aspirated without matrix effects. To demonstrate the applicability of our method, 4 carbonaceous chondrites (Ivuna, Orgueil, Cold Bokkeveld and Allende) as well as GSJ and USGS silicate reference materials of basalts, andesites and peridotites were analyzed. Our analytical results are consistent with previous studies, and the mean reproducibility of each element is 1.0–4.6% for basalts and andesites, and 6.7–11% for peridotites except for TiO2.  相似文献   

20.
The Samchampi-Samteran alkaline igneous complex (SAC) is a near circular, plug-like body approximately 12 km2 area and is emplaced into the Precambrian gneissic terrain of the Karbi Anglong district of Assam. The host rocks, which are exposed in immediate vicinity of the intrusion, comprise granite gneiss, migmatite, granodiorite, amphibolite, pegmatite and quartz veins. The SAC is composed of a wide variety of lithologies identified as syenitic fenite, magnetite ± perovskite ± apatite rock, alkali pyroxenite, ijolite-melteigite, carbonatite, nepheline syenite with leucocratic and mesocratic variants, phonolite, volcanic tuff, phosphatic rock and chert breccia. The magnetite ± perovskite ± apatite rock was generated as a cumulus phase owing to the partitioning of Ti, Fe at a shallow level magma chamber (not evolved DI = O1). The highly alkaline hydrous fluid activity indicated by the presence of strongly alkalic minerals in carbonatites and associated alkaline rocks suggests that the composition of original melt was more alkalic than those now found and represent a silica undersaturated ultramafic rock of carbonated olivine-poor nephelinite which splits with falling temperature into two immiscible fractions—one ultimately crystallises as alkali pyroxenite/ijolite and the other as carbonatite. The spatial distribution of varied lithotypes of SAC and their genetic relationships suggests that the silicate and carbonate melts, produced through liquid immiscibility, during ascent generated into an array of lithotypes and also reaction with the country rocks by alkali emanations produced fenitic aureoles (nephelinisation process). Isotopic studies (δ18O and δ13C) on carbonatites of Samchampi have indicated that the δ13C of the source magma is related to contamination from recycled carbon.  相似文献   

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