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1.
通过对江西沟风成沉积剖面的地球化学分析,并结合OSL年代、粒度和磁化率数据,探讨了末次冰消期以来青海湖南岸气候的演变。剖面常量元素氧化物含量呈SiO_2Al_2O_3CaOFe_2O_3MgOK_2ONa_2O变化特征,常量元素氧化物及化学元素综合参数与地层有较好的对应性。不同的环境指标对气候变化的敏感性不同,总体上看,地球化学元素的敏感性高,全新世以来粒度和磁化率的变幅较小,即使在全新世大暖期,其值变化都很小。地球化学元素记录所反映的气候变化过程如下。Ⅰ.末次冰消期~12 ka BP,13.2 ka BP前总体上呈相对温暖状态,可能受B/A暖期的影响,13.2~12 ka BP气候不断向干冷方向发展,寒冷程度不断加剧并在12 ka BP达到最强,可能反映出12 ka BP左右的新仙女木事件;Ⅱ.12~9 ka BP,气候呈波动回升状态,暖湿程度呈增加趋势,表现出温凉的气候变化特征;Ⅲ.9~4.5 ka BP,气候温暖湿润,与全新世大暖期相对应,该阶段水热组合达到最佳,但存在阶段性的变化;Ⅳ.4.5~2 ka BP,气候总体向冷干方向转变,3 ka BP前变化幅度较小,气候较温暖湿润,3~2 ka BP气候凉偏干。  相似文献   

2.
共和盆地末次冰消期以来的植被和环境演变   总被引:10,自引:1,他引:9  
程波  陈发虎  张家武 《地理学报》2010,65(11):1336-1344
在青藏高原共和盆地中的内陆湖泊--达连海获取40.92 m长的湖泊岩芯(DLH钻孔),选用植物残体作为测年材料,利用AMS14C测年技术建立可靠的地层年代序列,对岩芯进行孢粉分析,重建该地末次冰消期以来的古植被和古环境。末次冰消期以来达连海周围山地在14.8~12.9Cal ka BP和9.4~3.9 Cal ka BP时段曾发育森林,气候较湿润,达连海附近盆地发育的荒漠草原盖度增加或演化为草原;在15.8~14.8 Cal ka BP、12.9~9.4 Cal ka BP 和3.9~1.4 Cal ka BP 时段该地气候比较干旱,依据干旱的程度周围山地森林退化或消失,盆地内发育盖度较低的荒漠草原或草原化荒漠。1.4 Cal ka BP以来湿度有所增加,发育草原植被类型。依据植被的演替历史推断该地气候的变化历程是15.8~14.8 Cal ka BP 干旱,14.8~12.9 Cal ka BP 湿润,12.9~9.4 Cal ka BP干旱,9.4~3.9 Cal ka BP湿润,3.9~1.4 Cal ka BP干旱,1.4~0 Cal ka BP湿润。达连海的孢粉记录与附近青海湖的孢粉结果对比,发现两地植被发育基本一致。末次冰消期Bølling-Allerød 时期,山地森林发育;新仙女木事件发生时森林萎缩;全新世中期两地针叶林发育达到鼎盛,之后逐渐减少至消失。早全新世达连海森林扩张的时间滞后于青海湖,主要与两地森林树种的不同和植被演替的时间差异有关。该区森林发育的全盛时期在中全新世,这与石笋记录到的亚洲季风强盛时期在早全新世不相一致,可能与植被复杂的响应机制有关。  相似文献   

3.
选用甘青地区达连海、青海湖、苏家湾、大地湾4个典型高分辨率的钻孔资料进行对比分析,阐明了该地区末次冰消期以来气候变化规律与主要气候事件,初步探讨了该地区植被纬向时空演化规律。结果显示末次冰消期大致开始于15.2~14.6 ka BP之间,冰消期期间该地区气候表现为冷暖波动频繁,气候不稳定,植被类型由东向西为草原-荒漠化草原。全新世早期阶段10.4~8.2 ka BP气候表现为温干,植被类型由东向西为疏林草原-草原。全新世中期8.2~4.3 ka BP气候温暖湿润,植被发育良好,由东向西出现森林-森林草原植被。4.3 ka BP以后该地区气候总体向凉干方向发展,3.9~3.4 ka BP期间陇中地区气候波动较显著,植被类型草原-森林草原交替出现。晚全新世后期2.3~0 ka BP气候冷干,从东到西发育草原-荒漠化草原植被。  相似文献   

4.
位于青藏高原东北缘的共和盆地处于亚洲冬、夏季风和西风环流作用交替控制的干旱-半干旱区,盆地中分布着大面积的沙漠,是重建过去气候的重要载体。前人对共和盆地25个风成剖面的102个OSL年代结果进行分析,得出晚更新世以来共和盆地的风沙活动在各个时期都有发生,黄土堆积主要是更新世末期到早全新世,古土壤主要是晚全新世发育的, 但其测年工作缺乏高密度光释光测年检验。通过对共和盆地西南部的羊曲剖面进行系统的高密度光释光年代学研究发现,羊曲剖面主要是末次冰消期沉积的,9.6-7.1 ka风沙活动迅速减弱,7.1-2 ka存在明显的沉积间断,说明基于单个剖面进行环境演变重建需谨慎。结合盆地内已发表OSL年代结果,末次冰消期以来,风沙活动在共和盆地一直存在,其最强烈时期是14-10 ka左右,黄土主要是末次冰消期14-10 ka沉积的,古土壤发育主要集中在3-2 ka和6-4 ka,此外在9-8 ka也有发育。  相似文献   

5.
基于光释光测年的共和盆地风沙活动历史研究   总被引:1,自引:0,他引:1       下载免费PDF全文
位于青藏高原东北缘的共和盆地处于亚洲冬、夏季风和西风环流作用交替控制的干旱—半干旱区,盆地中分布着大面积的沙漠,是重建过去气候的重要载体。就前人对共和盆地25个风成剖面的102个光释光(OSL)年代结果进行分析,总结出晚更新世以来共和盆地的风沙活动在各个时期都有发生,黄土堆积主要是更新世末期到早全新世,古土壤主要是晚全新世发育的,但其测年工作缺乏高密度光释光测年检验。通过对共和盆地西南部的羊曲剖面进行系统的高密度光释光年代学研究发现,羊曲剖面主要是末次冰消期沉积的,9.6~7.1 ka风沙活动迅速减弱,7.1~2 ka存在明显的沉积间断,说明基于单个剖面进行环境演变重建需谨慎。结合盆地内已发表OSL年代结果,末次冰消期以来,风沙活动在共和盆地一直存在,其最强烈时期是14~10 ka左右,黄土主要是末次冰消期14~10 ka沉积的,古土壤发育主要集中在3~2 ka和6~4 ka,此外在9~8 ka也有发育。  相似文献   

6.
大同盆地第四纪以来发育了厚层的河湖相,上覆马兰黄土或全新统,蕴含着丰富的过去气候变化信息。以地层测年数据建立年代框架,结合地层磁化率、粒度测试资料,主要以常量化学元素为气候代用指标,对气候变化进行分析。结果表明:(1)地层沉积物中常量化学元素含量的平均值SiO_2>Al_2O_3>CaO>Na_2O>Fe_2O_3>K_2O>MgO,沉积相不同元素含量存在明显差异,反映出元素聚集时气候环境存在差异。(2)220ka BP以来大同盆地气候变化经历了中更新世220~199ka BP暖湿期、中更新世199~138ka BP干燥寒冷期、末次间冰期138~71ka BP温暖湿润期、末次冰期71~11ka BP寒冷干燥期、全新世11ka BP至今的暖湿冷干交替频繁波动期,在每个时段仍存在次一级的气候波动。(3)这种气候变化过程与纬度位置大体相近的中国北方萨拉乌苏河流域、内蒙古岱海地区有着相似的气候变化过程,反映出本区气候变化是全球气候变化所导致的东亚冬夏季风势力互为消长的区域响应。  相似文献   

7.
黄河首曲是世界高海拔地区生物多样性丰富和生态变化敏感的地区,其环境演变过程如何响应区域气候变化具有重要的科学意义。针对该区末次冰消期以来气候环境重建结果的分歧,以目前已发表的多载体记录为基础,独立集成区域气候变化的框架性过程和地表环境演变历史,进而探讨两者的相互关系。结果表明:(1)该区在13~6 ka气温和湿度持续增加,10~6 ka为气候最优期,6 ka以后气温和湿度逐渐下降,气候变冷变干。(2)18~11 ka地表过程以河湖相过程为主,风沙活动非常弱;11~8 ka河湖沉积过程减弱,风沙活动增强;8~3 ka古土壤大规模发育;3 ka以来广泛发育草甸土。(3)区域地表环境变化过程与气候变化之间存在非同步变化,6 ka以前气候变化对区域地表过程呈正向驱动,6 ka以后对区域地表过程呈负向驱动。基于现代和晚全新世草甸土壤粒度的比较,发现草甸土壤的发育是气候变冷变干背景下风成物质不断加积的产物,进一步暗示区域土壤发育与气候变化间的复杂关系。  相似文献   

8.
古湖岸堤是湖泊湖面变化的地貌学证据,通过古湖岸堤沉积年代学研究可重建地质时期湖泊演化历史。青藏高原内陆湖泊众多,保存了大量的第四纪时期古湖岸堤,是研究过去湖泊演化和气候变化信息的重要载体。对青藏高原班戈错盐湖北岸和东岸的低位连续古湖岸堤开展了地貌调查和光释光年代学研究。结果表明班戈错自末次冰消期(13. 5±1. 2 ka BP)以来,湖面整体呈波动下降过程,期间出现了4期湖面稳定阶段,分别在末次冰消期(13. 5±1. 2~11. 2±1. 0 ka BP)、全新世早中期(10. 1±0. 8~6. 5±0. 5 ka BP)、全新世后期(4. 2±0. 4~3. 1±0. 2 ka BP)以及全新世晚期(1. 7±0. 1~1. 2±0. 1 ka BP)。全新世晚期约1. 7 ka BP以后湖面迅速退缩,湖泊蒸发浓缩进入盐湖阶段。在末次冰消期班戈错高湖面形成主要与北半球太阳辐射强度增加引起气温升高,导致区域冰雪融水量增加相关,而在全新世湖面变化主要受印度季风强度变化控制。  相似文献   

9.
青藏高原海拔4000 m区域人类活动的新证据   总被引:2,自引:0,他引:2  
青藏高原早期人类活动对于研究人类对极端环境响应与适应至关重要,4000 m海拔区域是人类向高原腹地迁移与扩散的关键。下大武1号遗址(XDW1)发现了11290±69 cal. a BP人类活动遗留的灰烬层,及其年代主要集中在11.2 cal. ka BP的细石叶、石片等石制品,是目前青藏高原4000 m海拔区域发现的最早的人类活动证据之一,说明在全新世伊始,人类就已经登上了海拔4000 m的青藏高原主体。据此推测人类在高原东北部扩张的时空演变过程,末次冰消期人类在海拔3000~4000 m高原东北缘青海湖盆地、共和盆地等区域活动,全新世初期扩张至4000 m海拔高原主体,全新世大暖期向高原腹地深入;上述3个人类活动阶段与末次冰消期环境的改善、全新世伊始的气候迅速转暖和全新世暖期盛期的到来等重大气候变化阶段密切相关。  相似文献   

10.
末次冰消期是全球气候与环境出现较大变化的时段,其间发生了一系列气候突变事件,在全球不同地区以不同方式回应着这些事件的变化过程。综述了末次冰消期以来青藏高原高寒干旱区、西北干旱区、云贵高原湿润区以及东部平原地区的湖泊沉积记录的古气候演化特征,探讨了气候变化的驱动机制,并提出未来该研究领域亟待深入开展的工作,包括拓展高分辨率湖泊沉积记录的气候演化时间序列研究,提升学科交叉和与其他地质记录的对比研究,加强中国第四纪湖泊数据库和全球气候变化研究,以及加强水汽来源示踪研究。  相似文献   

11.
通过分析河西走廊花海古湖泊沉积物中的盐类矿物组成,结合年代序列,重建了花海晚冰期以来湖泊演化过程及其对气候变化的响应。结果表明:晚冰期及新仙女木时期,花海湖泊以芒硝沉积为主,属硫酸盐型湖泊,湖水的盐度较高且周期性波动频繁;全新世早期(10.47 cal ka BP以前),湖泊以洪泛堆积和风成沉积为主,揭示了湖泊萎缩、甚至干涸;全新世早期至全新世中期(10.47~8.87 cal ka BP)盐类矿物以碳酸盐沉积为主,为碳酸盐型湖泊,湖水淡化,湖泊水位开始逐渐回升;全新世中期(8.87~5.50 cal ka BP)盐类矿物呈现一定的波动变化,其中,8.8 cal ka BP 时期盐类矿物以硫酸盐沉积为主,湖泊由碳酸盐型转化为硫酸盐型,湖水咸化,盐度升高;随后盐类矿物以碳酸盐沉积为主,湖泊由硫酸盐型转化为碳酸盐型,湖水盐度降低、湖泊扩张;全新世中晚期(5.50 cal ka BP以来)出现沉积间断,表明中晚全新世时期湖泊逐渐萎缩。在全新世期间,花海湖泊千年尺度演化过程揭示了该区域气候干湿状况受亚洲季风和西风共同控制的影响。  相似文献   

12.
青藏高原扎布耶盐湖晚全新世气候环境演化   总被引:7,自引:1,他引:6  
青藏高原晚全新世气候变化具有不稳定性.在高原中部扎布耶盐湖边缘取得158.5cm沉积物,通过年代、孢粉、介形虫、粘土矿物、地球化学等多种环境指标,给出了湖区3.8cal. ka BP以来的气候环境演化.孢粉中草本花粉占绝对优势,其中又以蒿属为主,植被类型为水分条件稍好些的半荒漠化草原.粘土矿物主要是伊利石和绿泥石,伊/蒙混层矿物少量,说明湖区风化作用主要是物理风化.(Ca Mg)/CO2-3摩尔比值为0.22~0.96,小于1,CO2-3与Na 结合形成大量钠碳酸盐矿物如单斜钠钙石、氯碳钠镁石、水碱等.硼砂的出现说明湖区沉积环境稳定,但3.8~1.99 cal. ka BP硼等元素和碳酸盐含量变化幅度较大,湖区气候寒冷干燥,但冷暖干湿波动频繁.3.4~3.34 cal. ka BP介形虫壳大多破碎,说明此阶段水动力条件强,水体不稳定.1.99 cal. ka BP至今,气候相对温暖潮湿,波动较少.太阳辐射和西南季风强度的变化是造成气候变化的主要原因,冰川冻土对寒冷气候的放大作用也是湖区气候变化的一个重要原因.  相似文献   

13.
Modern climate research has shown that the Asian summer monsoon water vapor transport is limited to the eastern part of the Qilian Mountains. On the Holocene millennial-scale, whether the northwest boundary of the summer monsoon varies according to climate change is a key scientific issue. Yanchi Lake is located in the northern Qilian Mountains and the middle of the Hexi Corridor, where the modern climate is less affected by the Asian summer monsoon. It is a key research area for examining the long-term variations of the Asian summer monsoon. Paleoclimatic data, including AMS ^14C dates of pollen concentrates and bulk organic carbon, lithology, grain-size, mineral composition and geochemical proxies were acquired from sediments of Yanchi Lake. The chronological results show that the lower part of the lacustrine section is formed mainly in the Late Glacial and early Holocene period, while the proxies' data indicate the lake expansion is associated with high content of mineral salts. The middle part of this section is formed during the transitional period of the early and middle Holocene. Affected by the reworking effect, the pollen concentrates AMS^14C dates from the middle part of the section are generally older than those from the lower part. Since the mid-Holocene, Yanchi Lake retreated significantly and the deposition rate dropped obvi- ously. The Yanchi Lake record is consistent with the Late Glacial and Holocene lake records in the Qinghai-Tibet Plateau and the climatic records in typical monsoon domain, which indicate the lake expansion and the strong Asian summer monsoon during the Late Glacial and early Holocene. The long-term monsoonal pattern is different from the lake evolution in Central Asia on the Holocene millennial-scale. This study proves the monsoon impacts on the northwestern margin of the summer monsoon, and also proves the fact that the northern boundary of the summer monsoon moves according to millennial-scale climate change.  相似文献   

14.
本文根据天池考察,并采集坝体上下层的堆积物,与山崩,滑坡,冰碛,泥石流,雪崩崖麓堆积物进行比较,就天池地区的自然环境,天池成因争论的实质和天池坝形成的古地理环境提出一些看法。  相似文献   

15.
El’gygytgyn Crater Lake, NE Siberia was investigated for sedimentological proxies for regional climate change with a focus on the past 65 ka. Sedimentological parameters assessed relative to magnetic susceptibility include stratigraphy, grain size, clay mineralogy and crystallinity. Earlier work suggests that intervals of high susceptibility in these sediments are coincident with warmer (interglacial-like) conditions and well-mixed oxygenated bottom waters. In contrast, low susceptibility intervals correlate with cold (glacial-like) conditions when perennial ice-cover resulted in anoxia and the dissolution of magnetic carrier minerals. The core stratigraphy contains both well-laminated to non-laminated sequences. Reduced oxygen and lack of water column mixing preserved laminated sequences in the core. A bioturbation index based upon these laminated and non- laminated sequences co-varies with total organic carbon (TOC) and magnetic susceptibility. Clay mineral assemblages include illite, highly inter-stratified illite/smectite, and chlorite. Under warm or hydrolyzing conditions on the landscape around the lake, chlorite weathers easily and illite/smectite abundance increase, which produces an inverse relationship in the relative abundance of these clays. Trends in relative abundance show distinct down-core changes that correlate with shifts in susceptibility. The mean grain-size (6.92 μm) is in the silt-size fraction, with few grains larger than 65 μm. Terrigenous input to the lake comes from over 50 streams that are filtered through storm berms, which limits clastic deposition into the lake system. The sedimentation rate and terrigenous input grain-size is reduced during glacial intervals. Measurements of particle-size distribution indicate that the magnetic susceptibility fluctuations are not related to grain size. Lake El’gygytgyn’s magnetic susceptibility and clay mineralogy preserves regional shifts in climate including many globally recognized␣events like the Younger Dryas and Bolling/Allerod. The sedimentary deposits reflect the climatic transitions starting with MIS4 through the Holocene transition. This work represents the first extensive sedimentological study of limnic sediment proxies of this age from Chukotka (Fig. 1). This is the tenth in a series of eleven papers published in this special issue dedicated to initial studies of El'gygytgyn Crater Lake and its catchment in NE Russia. Julie Brigham-Grette, Martin Melles, Pavel Minyuk were guest editors of this special issue.  相似文献   

16.
刘向军 《盐湖研究》2018,26(2):16-26
青海湖是国内最大的内陆湖泊,位于青藏高原东北缘,因其处在东亚夏季风、印度季风和西风带的交替控制区域,对气候变化十分敏感,成为古环境变化研究的热点地区。有关青海湖的形成演化、环境变化和水文变化的研究也存在多种观点。本研究再分析了青海湖已报道的古环境指标和气候模式模拟的夏季、冬季温度和降水变化,力图更加全面地理解青海湖全新世以来的古环境变化。研究发现早全新世11~8 ka夏季降水量和表面蒸发量较大,冬季降水稀少,湖泊水位只有十余米深,使得青海湖周边风沙活动频繁。并且,早全新世的气候不稳定,经历了频繁和较大幅度的波动。全新世气候适宜期出现在8~6 ka,古环境指标指示这一时期为温暖湿润的气候环境,湖盆内植被以森林草原为主,湖泊水位不断上升。青海湖地区的夏季降水自6 ka开始减少,然而冬季降水增加,同时夏季温度和蒸发量减少,使得湖区植被组成由森林草原向高山草甸转变,湖区大范围形成古土壤。湖区古环境条件在晚全新世距今1.5 ka开始恶化,冬季和夏季降水同时减少,湖泊水位下降,风沙活动再次加强。  相似文献   

17.
The 18 papers in this Special Issue of the Journal of Paleolimnology report new records of Holocene environmental and climate change from Arctic lake sediment. At least 15 distinct physical, chemical, and biological properties were analyzed at lakes located across the North American Arctic and subarctic, and northwestern Europe. The studies are notable for their multi-proxy approach (eight present data for at least five different proxies), and for the high quality of their geochronological control. Three of the studies analyzed sediment from more than one lake to test the influence of contrasting physiographic settings on the response of proxies to the same climate forcing. The sedimentary sequences analyzed in seven studies extend beyond 11.5?cal?ka, providing evidence for pronounced climate shifts that took place during the late-glacial period. Two-thirds extend beyond 8?cal?ka; many of these records were interpreted in terms of the shift in temperature and moisture that occurred during the transition from the warm early to middle Holocene to the cooler late Holocene. These records contribute to the growing network of sites that is needed to reconstruct the spatial pattern of this pronounced paleoclimate transition, and to address how ocean-atmospheric circulation changed with the mean?state of climate.  相似文献   

18.
Paleoenvironmental history in the monsoonal margin in the northeast Tibetan Pla-teau provides important clue to the regional climate. Previous researches have been limited by either poor chronology or low resolution. Here we present a high-resolution pollen record from a 40.92-m-long sediment core (DLH) taken from Dalianhai, a terminal lake situated in the Gonghe Basin, the northeast Tibetan Plateau for reconstructing the vegetation and climate history since the last deglacial on the basis of a chronology controlled by 10 AMS 14C dates on plant remains preserved in the core sediments. The pollen assemblages in DLH core can be partitioned into 6 pollen zones and each zone is mainly characterized by the growth and decline of tree or herb pollen percentage. During the periods of 14.8-12.9 ka and 9.4-3.9 ka, the subalpine arboreal and local herbaceous pollen increased, indicating the subalpine forest developed in the surrounding mountains and a desert steppe or typical steppe developed in Gonghe Basin under a relatively moister climate. During the periods of 15.8-14.8 ka, 12.9-9.4 ka and 3.9-1.4 ka, the forest shrank or disappeared according to different degrees of aridity, and the desert steppe degraded to a more arid steppe desert in the basin, indicating a dry climate. After 1.4 ka, vegetation type around Dalianhai was mainly dominated by steppe suggested by increased Artemisia. Our results suggested the climate history in this region was dry from 15.8-14.8 ka, humid from 14.8-12.9 ka and dry from 12.9-9.4 ka, after which the climate was humid during 9.4-3.9 ka, followed by dry conditions during 3.9-1.4 ka and humid conditions in the last 1.4 ka. The change of pollen percentage and the evolution of palaeovegetation in Dalianhai since the last deglacial were similar to those recorded in Qinghai Lake. The forest expanded in the mountains around Dalianhai during the B?l-ling-Aller?d period, shrank during the Younger Dryas and the early Holocene, then it devel-oped and reached its maximum in the mid-Holocene. During the late Holocene, the vegetation began to shrink till disappearance. However, the timing of forest expansion in the Holocene lagged behind that of Qinghai Lake, and this spatial heterogeneity was probably caused by the different forest species between these two places. The maximum of forest development in the mid-Holocene was inconsistent with the period of stronger summer monsoon in the early Holocene indicated by stalagmite records, the reason might be related to the complexity of vegetation response to a large-scale climatic change.  相似文献   

19.
以14C测年为基础,构建了天湖山泥炭剖面的年代序列,通过对研究区泥炭腐殖化度与有机质的分析研究,发现两者呈现出很好的相关性,共同记录了研究区约9.5kaBP以来的气候变化,可划分出3个主要阶段:1)早期(9.5 ka BP-6.3 ka BP)泥炭腐殖化度最低,指示气候湿热,其中7.9ka BP-6.3kaBP为整个剖面腐殖化度最低值阶段,可能为研究区全新世气候最适宜期(全新世大暖期)阶段;2)中期(6.3 ka BP~2.8 ka BP)泥炭腐殖化度较低,指示气候温凉湿润;3)晚期(2.8 ka BP以来),泥炭腐殖化度偏高,波动较大,指示气候温凉偏于.利用redfit红色噪声谱分析发现,有机质含量变化时间序列中存在948a、268a、342a的准周期,反映了中低纬度亚热带季风区气候变化对太阳活动的响应.  相似文献   

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