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1.
渤海湾西岸全新世沉积速率对河流供给的响应   总被引:2,自引:1,他引:1  
渤海湾西岸由北向南获取了3个钻孔,以全新世海相岩心为研究对象,采用AMS14C(Accelerator Mass Spectrometry14C,加速器质谱14C)测年方法建立年代框架并计算平均沉积速率,结合沉积物粒度组成及沿岸古河流三角洲发育历史,探讨了沉积速率对沿岸河流供给变化的时空响应。结果表明,早全新世—中全新世初期(11~6ka),渤海湾西岸整体沉积速率偏低,仅0.03~0.07cm/a,沉积物粒度较粗;中全新世6.43~4.97ka cal BP期间,NP3孔平均沉积速率为0.60~0.93cm/a,高于同期沿岸南部的CH110孔和BT113孔。沉积物组成以粉砂为主,粘土含量低,向上逐渐变粗,具三角洲反粒序特征。该时段的高沉积速率系渤海湾西北岸对潮白河、永定河及滦河沉积物供给的响应;中全新世晚期3.68~2.67ka cal BP期间,BT113孔沉积速率为0.27~1.4cm/a,高于同期沿岸北部CH110孔和NP3孔,沉积物组成以粉砂为主,粘土含量较NP3孔高,向上逐渐变粗,具三角洲反粒序特征。该时段的高沉积速率系渤海湾西岸南部对黄河沉积物供给的响应;晚全新世2.29~0.24ka cal BP期间,沿岸中部CH110孔沉积速率为0.55~0.91cm/a,高于同期沿岸南部的BT113孔和北部的NP3孔,该高沉积速率为渤海湾西岸中部对黄河和海河供给沉积的先后响应。  相似文献   

2.
晚更新世以来渤海南部莱州湾发生了3次重要海侵-海退事件及沉积演化过程,渤海南部多源河流三角洲对莱州湾沉积环境改变作用明显。本文选择莱州湾剖面进行沉积地层对比,结合调查资料和测试数据,初步建立莱州湾沉积地层格架,分析晚更新世以来莱州湾沉积演化过程。研究发现,渤海南部中小河流与黄河泥沙为莱州湾沉积物的共同物质来源,二者在不同阶段分别对莱州湾沉积演化起主导作用。提出本区沉积地层具有分期性、分段性和相关性规律。在124.6~72.0 ka B.P.,60.0~24.4 ka B.P.和10.2~4.0 ka B.P.出现过3次暖湿期,分别对应沧州海侵、献县海侵和黄骅海侵,主要发育滨浅海相沉积,向南退积为三角洲/潮坪—河流沉积;由陆向海,短源河流沉积贡献降低,黄河沉积贡献增加。在72.0~60.0 ka B.P.和24.4~10.2 ka B.P.出现2次冷干期,分别对应玉木早冰期和玉木晚冰期,河流相发育,三角洲进积。受海陆交互作用影响,晚更新世以来渤海南部莱州湾大致经历了浅海相—三角洲—潮坪—浅海相—三角洲—陆相的沉积演化。  相似文献   

3.
根据辽河三角洲LZK03孔岩心的地层、孢粉、~(14)C测年及粒度分析结果,重建了该孔全新世以来的沉积环境演变历史,划分了4个时期:1湖沼期,地层埋深22.70~18.35m,晚更新世晚期约8000cal BP,起始时间早于全新世底界年龄,一直持续到全新世海侵到达该地区;2海侵期,18.35~13.55m,8000~3000cal BP,全新世海侵(辽东湾命名为盘山海侵)于8000cal BP到达该地区,湖沼发育结束,随着海侵向陆扩展,形成了海相潮坪沉积;3海退期,13.55~7.50m,约3000cal BP开始海退,河流携带的泥砂成为主要物源;4盐沼期,7.50~0m,500cal BP时海水已退至LZK03孔向海一侧,经常暴露于地表的氧化环境使盐沼沉积呈黄棕色,被高潮海水淹浸的时间减少。  相似文献   

4.
珠江三角洲中部大鳌平原晚第四纪古生物记录及环境演化   总被引:1,自引:0,他引:1  
珠江三角洲是中国最主要的三角洲之一,人口密集,在未来极易受到海平面上升的影响,因此该地区的海平面变化研究尤为重要.有孔虫、介形类等微体动物是半咸水中最重要的生物类群,对海平面变化非常敏感,虽然已有许多涉及研究区微体化石的研究,但该地区微体化石定量分析还未开展,详细的古环境演化过程亦有待阐明.本文利用取自珠江三角洲中部大鳌子平原的5个钻孔的岩芯进行分析,对其中PRD05和PRD04钻孔进行详细的微体动物群定量分析和宏体动物群分析,结合各钻孔沉积学及磁化率特征及其他3个钻孔测年样品的微体、宏体动物群分析,讨论了珠江三角洲中部的环境演化过程.微体动物根据已有水深分布资料,划为两种类型分别代表近岸和远岸两种类型,借以讨论海平面变化.结果显示,珠江三角洲中部晚第四纪的古环境由钻孔中从下到上7个层位的划分体现为3个沉积阶段:1)低地沉积阶段(14340cal.aB.P.前),包括基岩及其风化层(层位A),末次冰期前和期间的河流沉积环境(层位B);2)全新世海侵阶段(14340 ~ 2860cal.aB.P.),包括障壁后沉积(层位C,14340 ~6480cal.aB.P.)和河口湾沉积(层位D,6480~ 2860cal.aB.P.);3)高地沉积阶段(2860cal.aB.P.至今),包括砂坝环境(层位E,2860 ~230cal.aB.P.)和三角洲平原沉积(层位F,230cal.aB.P.至今).其中全新世海侵阶段的河口湾沉积,主要由微体动物群特征反映了更高分辨率的环境演化,包括全新世伊始的快速海侵(D1亚层);海侵速率降低(D2亚层);海平面显著上升(D3亚层);海平面范围最大(D4亚层),海平面最高(约5700cal.aB.P.);海平面快速降低(D5亚层);小规模海平面波动(D6亚层).  相似文献   

5.
通过对安徽巢湖西岸杭埠河入口三角洲地区CH孔岩芯湖泊相沉积物的色度、磁化率及地球化学等古环境代用指标的分析与研究,揭示了巢湖地区早全新世时期(11.7~7.5cal.kaBP)的极端气候事件。研究表明:研究区11.7~7.5cal.kaBP期间沉积环境极不稳定,气候波动明显,并分别约在7.8cal.kaBP,8.6cal.kaBP,9.4cal.kaBP,10.5cal.kaBP,11.4cal.kaBP出现5次显著的冷干气候事件,且以8.6cal.kaBP与11.4cal.kaBP表现最为强烈,与我国冰芯、石笋及湖泊沉积物所记录的早全新世冷事件具有可比性,反映了巢湖湖泊沉积物对我国早全新世北半球中纬度地区的季风气候有明显的响应,这将为我国北半球早全新世气候波动的机理研究提供佐证。  相似文献   

6.
珠江三角洲中部钻孔PRD20和PRD17晚第四纪以来的沉积记录较为完整,尤其是晚更新世海侵记录良好。以其为研究对象,对两孔的有孔虫微体动物群记录和沉积特征进行了分析和对比,并结合前人研究成果,重建珠江三角洲晚更新世以来的古环境演变,并着重分析了晚更新世海侵事件。约44500 cal a BP以前,研究区为河流环境,发育河道砂砾沉积。约44500—21300 cal a BP,发生晚更新世海侵,形成溺谷型河口湾,两孔沉积物中有孔虫的垂直分布记录了水体条件发生的多次变化,可辨识出2次海侵海退次级旋回;其中PRD20孔中有孔虫以滨岸广盐型占绝对优势,PRD17孔中以滨岸广盐型为主、海相—半咸水型有孔虫占有一定比例,表明研究区位于溺谷湾中径流与潮流共同作用的区域,且PRD20孔受径流影响更大。约21300 cal a BP后,受末次冰盛期海退影响,研究区暴露于地表遭受风化剥蚀,风化产物在PRD20孔表现为1层褐红色砂砾,在PRD17孔表现为1层花斑黏土。约8000 cal a BP,海平面回升导致河水滞留形成沼泽环境,PRD20孔发育1层泥炭层。约8000—5500 cal a BP,PRD20孔发育受径流影响较大的河口湾湾头沉积,仅在全新世海侵最盛时含有少量有孔虫记录。约5500 cal a BP后,研究区发育三角洲平原沉积。受构造抬升影响,PRD17孔地势较高,于约4700 cal a BP才开始重新接受沉积,零星出现潮水搬运而来的有孔虫。  相似文献   

7.
受晚更新世以来海侵影响,渤海西南内陆第四系浅层经历了复杂的海陆交替演化。利用4口钻孔取芯井和88口静力触探井资料,采用现代测试技术和地层对比的方法对渤海西南内陆广饶地区第四系浅层进行沉积学综合研究。广饶地区地表以下30 m内,南部以风成黄土沉积为主,北部自上而下发育两期海相层,在研究区称为第一、第二海侵层,分别是10~4 ka B.P.的黄骅海侵层和40~28 ka B.P.的献县海侵层。黄土沉积于晚更新世玉木冰期,在研究区南部以17 m为界划分为大站组和羊栏河组(未见底)。晚更新世以来发生两期海侵事件(黄骅海侵、献县海侵),在海侵范围最大时到达广饶地区,先后对冰期沉积黄土层侵蚀改造,形成了“上超型海蚀黄土”的海侵演化模式。根据海侵与黄土沉积演化所对应的古气候变迁,将研究区晚更新世以来气候演变划分为6个期次:干冷期、温暖湿润期、干冷偏凉期、温暖期、潮湿湿润期和现代气候期,对应不同的沉积演化特征。  相似文献   

8.
黄海和渤海沉积物 210Pb活度的分布特征   总被引:3,自引:1,他引:2  
利用α多道能谱仪测定了黄海和渤海海域 58个表层沉积物样品的 210Pb活度,探讨了黄海和渤海表层沉积物中 210Pb活度的空间分布特征.渤海中部、北黄海中部泥质沉积区和南黄海中部泥质沉积区是 210Pb活度的高值区.渤海湾内、莱州湾内及北黄海西南部沿岸海域则是 210Pb活度的低值区.黄海和渤海海区 210Pb的富集、分布特征受到研究海区水动力条件和沉积物粒级的制约.根据位于黄海和渤海泥质沉积区的 3个岩芯 210Pb活度的垂直分布资料,并结合 2个站位所取岩芯的 210Pb活度的垂直分布资料,探讨了 210Pb活度的垂直分布与沉积环境之间的关系.黄海和渤海 210Pb活度呈现高值的泥质沉积区,其 210Pb活度随岩芯深度衰减的垂直分布很有规律且沉积速率较低,由此可以反映泥质沉积区稳定的沉积环境.  相似文献   

9.
对黄河三角洲ZK1孔粒度、岩性、微体古生物组合和14C年代进行了分析,探讨了研究区晚第四纪以来的沉积层序演化历史及其古环境意义。黄河三角洲的ZK1孔共发育三个海侵层,自下而上为深海氧同位素3期(MIS3)的第Ⅲ海侵层和第Ⅱ海侵层以及氧同位素1期(MIS1)的第Ⅰ海侵层,指示自氧同位素4期(MIS4)以来研究区共发生三次主要海平面波动。这三次海平面波动分别对应于渤海海侵、献县海侵和黄骅海侵。根据沉积记录信息,ZK1孔可分辨第Ⅰ海侵层的河口三角洲相(5.63~14.04 m)和滨岸浅海相(14.04~20.62 m),第Ⅱ海侵层的滨岸浅海相(39.52~49.57 m)和河口三角洲相(49.57~ 51.52 m),第Ⅲ海侵层的滨岸浅海相(76.00~83.63 m)和潮滩相(83.63~92.70 m),均以特征的微体古生物组合和沉积相为标志。结合前人研究,阐明了本区自晚第四纪以来的海平面变化及沉积环境演变历史。  相似文献   

10.
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   

11.
《China Geology》2019,2(1):16-25
There are three transgression-regression events and evolutions of the sedimentary environment by sea level changes since the Pleistocene in the southern section of the Bohai Sea, China. It is obvious that a multi-source fluvial delta sedimentary system may be more dominant in a sedimentary environment. Based on previous research and survey or historical data, we carried out studies on the division of sedimentary units, sedimentary facies analysis and strata division and comparison, which aim to establish the sedimentary stratigraph of Laizhou Bay. We focus on the sedimentary procession of the Laizhou Bay since the early Late Pleistocene. It can be divided into two glacial periods and three interglacial periods, corresponding to two regression and three transgression events in Laizhou Bay since Late Pleistocene. In 124.6–72.0 ka BP, 60.0–24.4 ka BP and 10.2–4.0 ka BP, three times warm-wet periods occurred, respectively corresponding to the Cangzhou transgression, Xianxian transgression, and Huanghua transgression. In 72.0–60.0 ka BP and 24.4–10.2 ka BP, two dry and cold periods, it was the continental sedimentary environment, corresponding to Wurm early glacier and Wurm late glacier. The results show: (1) Sediments have the characteristics of phase and stage under the terrestrial input of the Yellow River and middle-small rivers in the southern section of the Bohai Sea. (2) PI moved towards coastal in Cangzhou transgression strata in early Late Pleistocene. PI moved northward from land in Xianxian transgression strata in the late Pleistocene. PI moved further north in the Huanghua transgression strata in Holocene. (3) During the regressive period, the land source input increased and the estuarine or lagoon sedimentation developed, which manifested as progradational superposition. (4) During the transgressive period, it mainly developed shallow coastal sediment and transitionally formed regressive deposition to the south in delta/tidal flat deposition.©2019 China Geology Editorial Office.  相似文献   

12.
渤海湾西岸BT113孔35ka以来的沉积环境演化与海陆作用   总被引:1,自引:0,他引:1  
根据渤海湾西岸有孔虫和介形虫与年代学(AMS14C和OSL测年)研究,将该段岩心自下而上划分为6个沉积单元(U1—U6),它们依次形成于晚更新世的河流及全新世的潮滩、浅海、前三角洲、三角洲前缘和三角洲平原沉积环境,结束于约35 ka的U1单元的陆相环境,证实晚更新世低海面时渤海湾西岸未受海水影响。U1和U2单元之间,存在历时约27 ka的沉积间断(35~8.5 ka cal BP),研究区因此缺失早全新世沉积。U2单元的潮滩环境指示全新世海侵于8.5 ka cal BP到达渤海湾西岸,当时相对海平面为-16.7 m。U3单元为浅海环境,约6 ka cal BP时相对海平面上升到-6.8~-1.8 m。8.5~6 ka cal BP期间的海面上升速率是0.4~0.6 cm/a,可能与MWP1C事件有关。U4—U5单元,转为三角洲环境,沉积速率增大,反映自3.7 ka cal BP河流输入影响加强,约1.3 ka cal BP时成陆,形成U6单元。晚更新世35 ka以来的陆海环境演化,总体上是对气候变化控制下的海面变化的响应。  相似文献   

13.
以渤海湾西岸现代岸线附近的NP3、CH110和BT113三个钻孔全新世岩心为研究对象,采用沉积岩石学、AMS 14C(accelerator mass spectrometry 14C,加速器质谱14C)测年、微体生物聚类分析等方法精细判别沉积相,重建渤海湾西岸全新世沉积演化历史,并利用微体生物组合分带对水深变化的指示,定量讨论全新世相对海面变化。结果表明:渤海湾西岸全新世受海陆交互作用影响,经历了沼泽-潮滩-浅海-前三角洲-三角洲前缘-三角洲平原环境的演化过程。全新世初始阶段,研究区中部和北部发育沼泽环境,南部未见沉积,与上更新统河流相沉积呈不整合接触。全新世早期,研究区潮滩环境发育。潮滩层厚度约1 m,历时数百至1千余年。至7000 cal BP前后水深增大,研究区进入浅海环境。约6000 cal BP,沿岸南北两端先后进入三角洲过渡环境,中部三角洲环境约开始于1500 cal BP。渤海湾西岸地区全新世的环境演化同时记录了该地区的相对海面变化:约10000 cal BP前后,渤海湾相对海平面已接近21.3~20.4 m。约8000 cal BP,相对海平面介于18.6~17.0 m。约6000 cal BP时相对海平面低于6.8 m,5000~1000 cal BP,相对海平面高于-2.5 m,1000~800 cal BP,相对海平面介于-1.3~-0.4 m。8000~5000 cal BP时,相对海面上升约15.0 m,上升速率达5 m/1 ka。  相似文献   

14.
Sedimentary sequences in the Subei Basin are complex and have been affected by interactions between the ocean and rivers since the Late Pliocene, including the Yellow River, Huaihe River, and the Yangtze River. This sedimentary evolution, in particular the timing of Pleistocene transgressions, has long been a matter of controversy owing to the lack of precise chronological evidence. The aim of this study is to explore the evolution of the sedimentary environment throughout the past 3.00 Ma in this region on the basis of a comprehensive analysis of particle size and foraminifera and ostracods collected in the TZK9 core from the Subei Basin combined with geochronological studies of magnetostratigraphy, AMS14C and optically stimulated luminescence(OSL). The results show that fluvial facies in the sedimentary environment from 3.00 to 1.01 Ma. There were fluvial facies and reflects six sea-level high stands from 1.01 to 0.25 Ma. The study area was affected by four large-scale transgressions since 0.25 Ma. The four marine sedimentary layers known as DU7(buried at 48–52 m), DU5(buried at 35–41 m), DU3(buried at 16–23 m), and DU1(buried at 2–4 m) are recorded in the MIS7(210–250 ka), MIS5, MIS3, and Holocene, respectively. The magnitude of the DU5 transgression was identical to that of the DU3 transgression, both were larger than the DU7 transgression, and the DU1 transgression was the weakest. The variation of transgression strength reflects the influence of global changes in sea level, tectonic subsidence, shell ridges, and sand dams. In the TZK9 core, we found evidence of seven sea-level high stands from the Early–Middle Pleistocene, and the first one caused by regional rapid subsidence and could be traced back to 0.83-0.84 Ma. The sea-level high stands and the age of the first one recorded above was different from other cores in eastern China, this was caused by the lack of absolute age control and the differences in paleotopography during this period. This study reconstructs sedimentary evolution, determines the transgression and its age, establishes the chronology since the Late Pliocene, and provides a scientific framework for further paleoenvironmental and tectonic studies. The results of this study highlight the important role that local tectonics and global sea level play in the sedimentary evolution and transgressions that have occurred in the western Subei Basin.  相似文献   

15.
This study deals with the relationship between sea-level changes and paleoclimatic fluctuations based on the analysis of stratigraphy, grain sizes, palynology, and radiometric dating of the Yellow River delta since the Late Pleistocene. Evidence from the sedimentary record, grain sizes, and pollen provides a paleoenvironmental history of the Late Pleistocene from the boreholes of the delta. Based on a combination of grain-size analysis with lithological studies, marine deposit units contain the intervals of 13.85–16.9, 18.5–19.69, 27.9–34.8, 36.4–37.2, 48.4–51.6, and 54.1–55.9 m, and transitional facies units contain the intervals of 10.25–13.85, 16.9–18.5, 19.69–27.9, 34.8–36.4, 37.2–48.4, 51.6–54.1, and 55.9–60 m, compared with fluvial(terrestrial facies) deposit units(3.36–10.25 m). Based on pollen analysis and pollen assemblages, there were three warm-wet periods from 9.1–0.16 ka BP, 16.1–60 ka BP, and 90.1–94.6 ka BP From the top to the bottom of the borehole, the paleoclimate has an evident fluctuation: warm and moist(Holocene Optimum) —cool and dry(Younger Dryas Event)—mild semi cool—cool and dry—warm and moist. There were three warm-wet periods from 9.1–0.16 ka BP, 16.1–60 ka BP, and 90.1–94.6 ka BP, corresponding to the Holocene Optimum stage, MIS 3, and MIS 5, respectively. The warm period allowed monsoonal evergreen and broadleaved deciduous forests that corresponded to Holocene hypsithermal climatic conditions and the Late Pleistocene climatic Optimum. Three warm-wet periods occurred in marine deposit units from 9.1–0.16 ka BP, 60.1–16.1 ka BP, and 94.6–90.1 ka BP. These periods correspond to the Cangzhou transgression, Xianxian transgression, and Huanghua transgression, respectively. From 90.1–60.1 ka BP, 17.5–9.1 ka BP, and 0. 16 ka BP–1855 AD, three dry and cold phases are recognized. The phases indicate the fluvial(flood plain) sedimentary environment, corresponding to cooler and mild dry periods based on palynological results and grain-size distribution.  相似文献   

16.
新乡位于豫西北山地与豫东平原过渡位置,黄河冲积扇的不断发展以及第四纪早期的新构造运动对该区第四纪沉积过程产生影响。通过对新乡多个钻孔岩心进行系统性描述、年龄测试、沉积相分析以及钻孔地层间对比分析,结果显示:黄河冲积扇的发展及黄河主河道的南北向迁移,是研究区第四纪沉积过程的重要影响因素,研究区第四纪沉积相以河流相为主,横向上对比良好;多个场地的钻孔揭示研究区全新统厚度约10 m,平均年龄95 ka左右;更新统上部厚度约69 m,平均年龄129 ka左右;更新统中部厚度约55 m,平均年龄小于829 ka;更新统下部未见底。在第四纪早期,黄河冲积扇主河道在研究区西侧,尚未发育到新乡地区,对该区的影响较小,以细粒的泛滥平原沉积物为主;第四纪中期,黄河冲积扇快速向东部发展,河道迁移至研究区北东侧,沉积了明显的河流相,砂体厚度明显增加;第四纪中晚期,基本继承前期的河流相沉积,随着河道南迁,砂体含量有所下降。受到新构造运动的影响,新乡地区第四纪地层北东部出现沉积间断,并且局部地区出现差异沉降,北东侧地势高于南西侧。  相似文献   

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