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1.
通过对青藏高原东北部共和盆地泥炭沉积的粒度与地球化学元素分析, 重建了区域全新世千年尺度的气候变化过程. 结果显示: 10.0~8.6 cal ka BP区域暖湿程度逐渐增加, 但在8.6~7.1 cal ka BP气候相对寒冷干燥, 7.1~3.8 cal ka BP 暖湿程度总体上为全新世最佳, 但也出现明显的气候波动, 3.8~0.5 cal ka BP气候向冷干方向发展, 0.5 cal ka BP以来气候又逐渐转向暖湿. 这一特征与中国东部季风区的气候变化有很好的一致性. 此外, 区域全新世气候变化过程中存在10次千年尺度的寒冷事件, 并与高原冰芯、 湖泊、 泥炭和风成沉积记录的古气候变化, 甚至与北半球高低纬度的气候变化都具有良好的可比性. 因此, 认为区域全新世气候变化具有"季风模式"与"千年尺度震荡"的双重特点.  相似文献   

2.
通过对共和盆地东部风成沉积的地球化学分析,并结合14C和OSL年代,重建了区域末次盛冰期以来气候变化过程。21 ka BP之前气候寒冷偏湿,21~15.82 ka BP为末次盛冰期(LastGlacial Maximum,LGM),气候极为寒冷干燥;15.82~9.5 ka BP气候转暖且偏干,其中14.5~13.6ka BP和11.9~9.5 ka BP气候明显冷干,分别为老仙女木时期(Oldest Dryas,OD)和新仙女木时期(Younger Dryas,YD),而15.82~14.5 ka BP和13.6~11.9 ka BP(BФlling-AllerФd暖期,B/A)相对温暖;9.5~7.2 ka BP暖湿程度明显提高,7.2~5.1 ka BP气候波动频繁,相对冷干和相对暖湿多次更替。5.1~2.7 ka BP暖湿程度基本稳定,之后气候趋于寒冷但湿度明显较大。这些气候变化过程与青藏高原大量的古气候信息记录具有良好的一致性,表明共和盆地气候变化与青藏高原气候变化的高度一致性。  相似文献   

3.
中晚全新世科尔沁沙地沉积物化学特征及其气候变化   总被引:1,自引:0,他引:1  
刘冰  靳鹤龄  孙忠 《沉积学报》2012,30(3):536-546
科尔沁沙地位于我国沙漠-黄土边界带和北方农牧交错带,深受东亚季风的影响,对全球气候变化反应非常敏感,是研究全球气候变化的理想区域。TL剖面磁化率、粒度和地球化学元素氧化物及其比值变化分析表明:中晚全新世研究区气候极不稳定,可以大致划分为:① 6.0~4.2 ka BP,气候暖湿,夏季风逐渐增强,并占据主导,冬季风较弱,与全新世大暖期对应,但存在百年尺度的气候波动,其中:6.0~5.6 ka BP,5.5~5.4 ka BP,4.9~4.7 ka BP,4.5~4.2 ka BP气候暖湿;5.6~5.5 ka BP,5.4~4.9 ka BP,4.7~4.5 ka BP气候相对冷干。② 4.2~1.3 ka BP,气候相对暖湿,与上一阶段相比夏季风有所减弱,其间也存在次一级波动,4.2~3.63 ka BP,3.57~3.4 ka BP气候相对干冷;3.63~3.57 ka BP,3.4~1.3 ka BP,气候相对暖湿。③ 1.3~0.65 ka BP以来,气候波动频繁,后期有向暖湿发展的趋势。这些气候变化与区域和全球变化具有良好的对应关系,反映该区气候变化与全球气候变化具有高度一致性。  相似文献   

4.
欧阳军  钟巍  薛积彬  郑琰明  马巧红  蔡颖 《地质学报》2010,84(12):1839-1853
南岭东部定南大湖盆地湖沼相沉积高分辨率记录揭示了16.0cal ka BP以来的水文变化过程。由于该盆地主要以降水补给为主,故其水文变化过程是该地区气候与环境变化的忠实反映。多气候代用指标揭示晚冰期以来的Oldest Dryas、Blling、Older Dryas、Allerd和Younger Dryas等短尺度气候快速变化事件。10.0~6.0cal ka BP期间,该地区降水最为丰沛,暗示了夏季风在该时期最强盛,但在约9.7~9.4cal ka BP和8.8~8.2calka BP前后出现过降水骤减事件;在6.0~3.0cal ka BP期间,研究区降水显著减少,夏季风势力明显减弱。大湖盆地全新世气候变化记录与我国低纬度区域近年来的研究记录具有很好的一致性,说明低纬地区全新世适宜期应在10.0~6.0cal ka BP期间。在全球气候变化对比上,大湖盆地降水减少时期大多对应于北大西洋深水流或温盐循环减弱时期,也对应于北大西洋浮冰砾高峰时期;早全新世(10.0~6.0cal ka BP)降水丰沛期对应于北大西洋深水流加强时期;表明北大西洋深水流变化所导致的高低纬地区热量差异与我国低纬季风区过去气候变化有某种遥相关。此外,大湖盆地晚冰期以来气候变化趋势与北半球夏季太阳辐射量变化趋势吻合。因此笔者认为东亚低纬季风区晚冰期以来气候变化机制与太阳辐射量变化、大洋温盐循环等有关。  相似文献   

5.
刘冰  靳鹤龄  孙忠 《冰川冻土》2012,34(2):403-410
青藏高原东北部共和盆地气候与环境变化文献分析认为:末次盛冰期(14 C年龄14ka BP或16cal ka BP之前)地层沉积主要为风成砂和黄土,冰缘地貌发育,气候寒冷干燥,植被可能为干旱荒漠或荒漠草原;末次冰消期(14 C年龄14ka BP或16 cal ka BP-Younger Dryas,缩写YD事件)地层发育古土壤,湖泊水位明显上升,并显著的捕捉到冷暖事件(Blling-Allerd,缩写B/A、YD)的信息,气候趋于温暖湿润,对应植被为荒漠草原;全新世8.5ka BP(14 C年龄)之前区域温度和湿度不同程度增加,湖泊水位较高,地层发育古土壤,植被为荒漠草原或干草原;8.5~7.0ka BP(14 C年龄)风成砂出现,古土壤发育中断,气候寒冷干燥,为全新世新冰期第一期;7.0~3.0ka BP(14 C年龄)古土壤显著发育,高水位湖面出现,水热组合达到全新世最佳,植被向干草原方向演化,但期间也存在千–百年尺度的冷事件(全新世新冰期第二期);3.0ka BP(14 C年龄)以来气候向温凉(寒冷)干燥方向发展.太阳辐射等外部因素变化并触发地球系统内部各个圈层之间相互作用是区域气候、环境变化的主要驱动力.同时,对研究现状进一步剖析,阐明其存在的问题,并提出气候、环境变化研究的发展方向.  相似文献   

6.
通过对沙漠-黄土过渡带杨桥畔全新世地层中20种微量元素的地球化学特征分析,结合年代学资料,探讨了该地区13.0ka B.P.以来的气候环境变化过程。研究表明,微量元素地层分布规律明显,化学成分具有很高地一致性,Cr、Cs、Co、Cu、Mn与I可作为衡量东亚夏季风强度的古气候替代性指标。根据主要微量元素演替所揭示的古气候变化特征,将该地区气候变化可划分为5个阶段:13.0~11.7ka B.P.气候干燥寒冷;11.7~10.0ka B.P.气候略温偏干;10.0~6.4ka B.P.气候温暖湿润;6.4~1.60ka B.P.偏冷干气候恶化期;1.6ka B.P.以来气候继续朝冷干方向发展,并且冷暖干湿交替频繁。通过与黄土、石笋等记录变化对比,发现杨桥畔地区全新世气候演化过程与全球气候环境的变化基本一致。  相似文献   

7.
基于内蒙古东南缘西拉木伦河上游刘家店河湖相剖面的粒度、磁化率、微量元素地球化学指标,重建该区35 ka BP以来的气候演化过程。结果表明,在MIS 3晚期(35.23~25.15ka BP)研究区气候条件总体温暖湿润,并伴有区域变干的趋势;MIS 2阶段(25.15~11.13 ka BP)气候整体寒冷干燥,但叠加有短暂回暖气候事件。剖面记录的末次盛冰期(LGM)出现于22.25~18.47 ka BP,此时气候极度干冷;MIS 2阶段叠加了两个短暂气候适宜期,分别出现于18.47~16.24 ka BP和14.72~11.13 ka BP。在11.13 ka BP前后研究区进入全新世,气候变得暖湿。刘家店剖面的气候记录与周边气候记录具有可对比性,揭示了区域上东亚夏季风进退具有一致性,并认为自MIS 3晚期以来东亚夏季风受北半球太阳辐射及冰量的共同驱动。此外,刘家店剖面记录揭示的千年尺度气候变化对典型气候事件具有一定的响应,推测这些千年尺度的季风强度变化可能与北大西洋经向翻转环流(AMOC)相关。  相似文献   

8.
对青藏高原北缘共和盆地沙珠玉河的尾闾湖达连海钻孔沉积柱(40.92 m)进行了~(14)C年代测定(10个控制点)和粘土矿物分析(按20cm/70 a间隔的分辨率)。沉积柱底部年龄为14.5 cal ka BP。根据沉积柱粘土矿物的类型、组合、比率指标综合分析,重建了共和盆地14.5 cal ka BP以来气候环境的演化历史。冰消期(14.5~10.0 cal ka BP)盆地气候总体特征表现为干冷,盆地物理风化强:早中全新世(10.0~5.0 cal ka BP)气候表现为温湿,盆地化学风化为主,气候最宜期发生在中全新世的6.0 cal ka BP前后;晚全新世(5.0~0.0 cal ka BP)气候表现为干冷,盆地物理风化盛行。末次冰消期以来,共和盆地粘土矿物记录的气候环境变化阶段与高原其它湖泊指标记录的阶段基本一致。共和盆地粘土矿物记录的气候环境兼有西风、季风模式的特征。  相似文献   

9.
黄河源区距今13万年来古气候演化   总被引:3,自引:1,他引:2  
综合分析黄河源区-青海玛多地区斗格涌盆地钻孔剖面的孢粉及易溶盐等气候代用指标,揭示了该区130ka B P以来的古气候演变规律。即:130.0-110.0ka B P寒冷干旱;110.0-82.0ka B P寒温较湿;82.0-10.4ka B P寒冷干旱;10.4ka B P至现代(即全新世)温湿冷干交替。全新世古气候又可划分为3期:早全新世升温期(10.4-7.5ka B P)(Anathermal);中全新世大暖期(7.5-3.5ka B P)(Megathermal);晚全新世降温期(3.5ka B P至今)(Katathermal)。本区古气候总的规律是:冷期长且比全球其它地方提前,暖期短且开始时期滞后。全新世以来气候波动具有千年尺度的振荡规律,晚全新世至今,气温有逐渐降低,湿度逐渐变干的趋势。   相似文献   

10.
大同盆地地处我国季风影响的北部边缘, 第四纪以来盆地内发育厚层的河湖相地层, 其上覆盖马兰黄土或全新世沉积, 蕴含着丰富的气候环境变迁信息, 是研究气候环境变化的理想场所. 在对盆地内地层考察的基础上, 对晚近地质时期河湖相与风成相互层沉积剖面的磁化率、粒度变化进行了分析. 结果表明: 220 ka BP以来大同盆地气候变化经历了中更新世(220~199 ka BP)暖湿期、中更新世(199~138 ka BP)干冷期、末次间冰期(138~71 ka BP)暖湿期、末次冰期(71~11 ka BP)干冷期、全新世(11 ka BP至今)频繁的干冷暖湿波动变化过程, 每个阶段仍有次一级的气候波动. 大同盆地这种气候变化与深海氧同位素以及我国北方萨拉乌苏河地区、岱海等地揭示的气候变化有很好的对应, 反映出本区气候变化是对全球冰期-间冰期气候波动的响应.  相似文献   

11.
The history of climate change and related driving mechanisms of the Gonghe Basin, northeastern Qinghai-Tibetan Plateau, China, was reconstructed in the Holocene epoch, based on the comprehensive analysis of multi-proxies consisting of magnetic susceptibility, grain size, and geochemical elements from eolian and peat deposits at different altitudes. The results indicate that Holocene climate change at different altitudes is both consistent and different: a synchronous record of an increased warm–humid phase (10.0–8.5 ka) and a cold phase around 8.2 ka in the Early Holocene; an optimal warm–humid condition in marginal mountains of the Gonghe Basin in the Mid-Holocene; and a gradual decline in temperature and humidity in the Late Holocene. The Gonghe Basin interior in the Mid-Holocene was relatively arid, with increased moisture in the Late Holocene. On this basis, we compared our results to the paleoclimatic record in the low-latitude Asian monsoonal region, which indicates that, in addition to the Asian summer monsoonal strength having influenced regional climate change, the upward and subsidence motion of airflow over the Qinghai-Tibetan Plateau induced by topographic conditions, evaporation, and the feedback effect by the substrate was also influential. The latter was especially important for spatial–temporal differences in Middle and Late Holocene climatic changes at different altitudes.  相似文献   

12.
共和盆地剖面第四纪孢粉组合特征及环境演化   总被引:5,自引:2,他引:3  
青藏高原东北缘共和盆地沉积了较厚的第四系,详细地记录了共和盆地第四纪环境变化。通过对共和盆地第四系沉积序列特征和孢粉组合特征的分析,结合热释光测年,本文较详细地研究了共和盆地第四纪以来的环境变迁,并将其分为两大阶段:早期为湖相沉积阶段(中更新世晚期~0.079Ma),气候相对温和。晚期为河流和风成沉积阶段(79.2ka~至今),气候相对干旱。早期阶段又可进一步划分为三个气候期和五个气候亚期。总体上,共和盆地自早更新世以来由偏湿气候逐渐转变为干旱气候,古植被由森林植被逐渐转化为森林草原型植被。其主要原因可能是早更新世以来青藏高原强烈隆升,改变了西南季风气候格局所致。   相似文献   

13.
德令哈盆地尕海湖DG03孔岩芯矿物组合与古环境变化   总被引:4,自引:2,他引:2  
对气候敏感区德令哈盆地尕海湖DG03孔岩芯的矿物学分析表明,DG03孔岩芯的矿物主要包括石英、斜长石、微斜长石、绿泥石、伊利石、方解石、文石、白云石、石膏及石盐等。岩芯记录了尕海湖约11 ka以来(AMS 14C年龄)的古环境变化。根据矿物、碳酸盐含量及岩性的变化,整个岩芯可划分为三个部分:Ⅰ. 约11 ka~10 ka BP,晚冰期末期;Ⅱ. 10 ka~4 ka BP,全新世早中期;Ⅲ.4 ka至今,全新世晚期。矿物组合表明,自晚冰期以来,尕海湖先后经历了湖泊演化的逆向和正向演化阶段,即尕海湖先后经历了晚冰期的干冷气候,早全新世的暖干气候,中全新世的暖湿气候以及晚全新世以来的逐渐干冷的气候。岩性分析还表明,尕海湖沉积环境复杂,存在多种微相沉积。  相似文献   

14.
With the analysis of the sources and formation mechanism of the clay minerals in the sediment core from the Dalianhai lake in the Gonghe Basin,northeastern Tibet-Qinghai Plateau,clay mineral composition proxies,grain-size and carbonate contents have been employed for high-resolution study in order to reconstruct East Asian Summer Monsoon (EASM) over the northeastern Tibet-Qinghai Plateau during the lastdeglacial.The study also extended to establish a relationship between vegetation cover changes and erosion during the last 14.5 ka with pollen record and clay mineral proxies.Smectite/kaolinite and smectite/(illite+chlorite) ratios allow us to assess hydrolysis conditions in lowlands and/or physical erosion process in highlands of the Gonghe Basin.Before 12.9 Cal ka BP,both mineralogical ratios show low values indicative of strong physical erosion in the basin with a dominant cold and dry phase.After 12.9 Cal ka BP,an increase in both mineralogical ratios indicates enhanced chemical weathering in the basin associated with a warm and humid climate.The beginning of Holocene is characterized by high smectite/(illite+chlorite) and smectite/kaolinite ratios that is synchronous as with deposition of many peat laminae,implying the best warm and humid conditions specifically between 8.0 to 5.5 Cal ka BP.The time interval after 5.0 Cai ka BP is characterized by a return to high physical erosion and low chemical weathering with dry climate conditions in the basin.Comparing variations of clay mineral assemblages with previous pollen results,we observe a rapid response in terms of chemical weathering and physical erosion intensity to a modification of the vegetation cover in the basin.  相似文献   

15.
This paper addresses the surface and Holocene aeolian deposits in the southeastern Mu Us Desert, N. China, systematically analysing the evolution of the geochemical characteristics of aeolian sand–palaeosol sequences and their environmental significance. Our results indicate that the geochemical components of the Holocene aeolian deposits and surface deposits had the similar material sources, sediment transport and deposition processes in the study region, which were dominated by SiO2, Al2O3, and Na2O. In the weathering process of the Jinjie (JJ) profile, the Na, K, and Si presented the slight leaching and migration in general, while the other elements were relatively accumulated. The Holocene aeolian deposits and surface deposits incurred weaker geochemical weathering under cold and dry conditions and were only weakly leached, which implies a relatively arid environment in the Holocene epoch and the modern era. The weathering degree was controlled by the regional temperature and precipitation, and was probably more sensitive to the precipitation changes. In the sedimentary profile, the geochemical parameters and migration of elements demonstrated that there have been several alternating warm–wet and cold–dry intervals in the Mu Us Desert in the Holocene epoch; there were relatively warm and wet conditions prior to 4.6 ka, and it has been cold and dry since then. Six millennial‐scale dry events were recorded during the Holocene, which were not only accordant with the history of palaeoclimatic changes in the different latitudes and archives of the Northern Hemisphere, but also correspond to the millennial‐scale variation of cosmic radiation and solar activity during that period. Copyright © 2015 John Wiley & Sons, Ltd.  相似文献   

16.
The northeastern Qinghai-Tibetan Plateau(QTP) of China is located at the triple junction of the Asian winter and summer monsoons and the westerlies, where paleoclimatic evolution has an important scientific significance for recognizing the spatial-temporal pattern of Asian monsoons in the past and predicting environmental change in the future. Nevertheless, the framework of the Holocene moisture variation and related mechanisms remain controversial, owing to complex hydroclimatic conditions triggered by the landform of the large mountain-arid basin. Here, we employed geochemical proxies from typical aeolian sand-palaeosol sequences in the Gonghe Basin, northeastern QTP, together with Optically Stimulated Luminescence(OSL) dating, to reconstruct the pattern of effective moisture variation and associated mechanisms in this region. Our results indicate that the regional effective moisture was at its lowest until 9–8 ka, and approached a maximum during 8–4/3 ka of the middle Holocene. Afterwards, the climate became relatively dry in general, but with a transient humid interval around 2–1 ka. Our geochemical evidence indicates that the dry early Holocene probably can be attributed to a strong winter monsoon forced by remnant ice sheet, combined with the high evaporation caused by solar insolation. Also, shifts of humid-dry are closely linked to the Asian summer monsoonal strength and therefore the balance of evaporation-precipitation in the middle and late Holocene. Thus, the pattern of the Holocene effective moisture variation is characterized as the ‘monsoon model' in a closed intermontane arid and semi-arid basin near the western Asian monsoonal limit.  相似文献   

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