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1.
在干旱气候背景下常常有风尘物质的释放和传输,风尘沉积被认为是干旱环境变化良好的地质记录。在亚洲中部和中国北方,大面积的干旱区被沙漠戈壁覆盖,这些地区是粉尘物质的重要源地,释放的风尘物质影响局地和区域环境,并通过参与生物地球化学循环等影响更大空间尺度的气候变化。因此,亚洲中部干旱气候的形成和演化以及发展趋势一直受到重视。长期以来,关于晚新生代亚洲中部干旱气候发展的驱动机制至少有两种解释:一是青藏高原的隆升控制着亚洲中部的干旱化过程,随着高原的阶段性隆升亚洲干旱气候逐步增强;二是晚新生代全球变冷直接驱动着亚洲变干,全球变冷是主导因素。中国黄土高原及其周边地区堆积的黄土-红粘土序列是指示亚洲干旱化过程良好的地质记录,通过对新获得的风尘堆积记录的分析,发现在晚新生代中国风尘堆积的时空演化与全球变冷有较好的对应,全球变冷可以促使亚洲中部干旱气候发展并加强粉尘活动,而青藏高原隆升的幅度和时间还不清楚,进而认为是全球变冷而不是青藏高原隆升直接驱动亚洲内陆的阶段性变干。基于这些结果,我们认为以前关于青藏高原隆升影响全球气候的结论可能高估了青藏高原在地球环境演化中的作用,关于高原隆升直接驱动亚洲干旱化的结论还需要检验。  相似文献   

2.
亚洲内陆干旱区是连接赤道和中高纬地区的过渡地带,也是西风气候和季风气候的相互作用区,其形成演化与青藏高原的隆起和全球变化等因素密切相关.因此,揭示其干旱化过程和趋势具有重大的理论和现实意义.文章对来自柴达木盆地察汗斯拉图干盐湖的深钻SG-1孔沉积物进行了初步的碳酸盐碳氧同位素测试与分析,结果清晰地指示了柴达木盆地自1.0Ma以来的持续干旱化及约0.6Ma以来的加速干旱化过程,我们认为1.0Ma以来的持续干旱化可能是全球气候变化和构造活动共同作用的结果,而约0.6Ma以来的加速干旱化可能是昆黄运动所导致的高原北部强烈隆升和区域环流系统变化或强化所造成的.  相似文献   

3.
程宇龙  万世明 《沉积学报》2023,(6):1714-1738
【意义】海洋表层初级生产力及其生物泵过程是海洋碳循环的关键环节。日本海作为西北太平洋一个主要的边缘海,其晚新生代古生产力演化与区域构造/火山活动、东亚季风/西风、洋流演变、全球气候和海平面变化等密切相关,是探寻地球系统科学的极佳窗口。【进展和结论】得益于一系列国际大洋钻探计划(DSDP 31、ODP 127/128和IODP 346)等航次的相关研究,有关日本海古海洋演化,尤其是古生产力演化重建方面取得了许多重要认识。日本海古生产力的常用代用指标包括沉积物的微量元素组成、生物标志物、生源组分含量及同位素组成、微体古生物化石种属特征等。在地质时间尺度,日本海表层初级生产力主要取决于浮游生物必需的主要营养盐(氮、磷和硅)和微量营养盐(铁、锰、钴、锌、铜等),而日本海的营养盐主要通过风尘输入、火山活动、表层和深层洋流携带过来。在构造时间尺度,日本海古生产力的长期演化及其驱动机制(如风尘、火山铁肥和洋流贡献)尚不清楚,区域构造演化与海道开合、全球气候和海平面变化、火山活动及亚洲风尘输入演化等可能是关键驱动因素。在轨道—千年尺度,日本海沉积了深—浅色的韵律层,表层生产力大体表现出冰期降低而间冰期...  相似文献   

4.
晚新生代黄土高原风尘堆积与粉尘源区干旱化问题   总被引:4,自引:0,他引:4  
基于黄土高原风尘堆积的岩性和磁性地层研究 ,计算了晚新生代黄土高原风尘堆积速率变化 ,并与深海沉积记录的粉尘通量变化对比 ,初步探讨了海陆风尘沉积记录的晚新生代亚洲内陆粉尘源区的干旱化过程 ,揭示出自 4 5MaB P 以来粉尘源区干燥度的逐级增加 ,尤其是在 3 6 2 6MaB P 时段黄土高原风尘沉积速率和ODP885 / 886孔粉尘通量的显著增加 ,暗示可能由于青藏高原在此时段加速隆升所造成的亚洲内陆粉尘源区干燥度的急剧加强。  相似文献   

5.
哈尔滨黄土位于欧亚黄土带最东端,是研究气候干旱化的理想载体,对于重建松嫩平原气候干旱化历史及完善亚洲内陆干旱化东进进程具有重要意义。然而,松嫩平原干旱化的相关研究相当薄弱,黄土与区域构造—气候—水系演化之间的耦合关系尚未明确。对哈尔滨黄土—古土壤序列进行了沉积学特征分析以及粒度、磁化率、总有机碳和Sr-Nd同位素组成测试,结合粒度端元和小波分析,对松嫩平原气候干旱化历史及驱动机制进行研究。结果表明:受高纬度寒冷气候影响,哈尔滨黄土—古土壤序列的沉积特征与其他地区存在显著差异,潜育化的沉积环境是古土壤层磁化率呈现低值的主控因素;哈尔滨黄土堆积的出现指示了松嫩平原干旱化和松嫩沙地的发育始于~460 ka;黄土大于63 μm以及EM3端元组分共同指示了380 ka和300 ka两次明显的干旱化加剧和沙地扩张事件;TOC和Sr同位素指标揭示了这种干旱化加剧的现象一直持续到180 ka。此后,松嫩平原的气候逐渐趋于暖湿。研究显示,全球气候变冷(冰量的扩增)—区域构造(松辽分水岭隆起)—水系演化(松辽水系的变迁)共同驱动了松嫩平原气候干旱化。上述认识对松嫩平原的生态与社会经济的可持续发展具有重要意义。  相似文献   

6.
大洋沉积物中的风尘记录良好地揭示了风尘源区干旱化过程和季风强度变化。以位于西太平洋采薇海山附近的柱状沉积物(MABC19孔)为研究对象,在基于地磁场相对古强度对比获取年代框架的基础上,从沉积物粒度组分和磁学参数中提取研究区~80ka以来风尘物质的记录。沉积物高矫顽力磁性矿物参数结果指示,研究区风尘输入量自~80ka以来总体呈逐渐增加趋势,在MIS3/MIS2转换阶段风尘输入量增加明显,揭示了风尘源区古气候条件的转变。通过碎屑沉积物粒径—标准偏差方法提取代表风尘输入的敏感组分,其平均粒径记录了东亚冬季风强度在MIS3/MIS2转换阶段显著增大,该记录与黄土地区风尘记录指示的东亚冬季风强度变化在MIS3阶段高度一致,在其余时段存在着差异,初步推测这是由于高空风尘输送机制的海、陆差异所致。  相似文献   

7.
保存在陆地、海洋和冰芯中的风尘沉积物与粉尘源区的干旱化历史、过去大气环流模式及其强度的演化密切相关,因而,直接的海陆风尘记录对比一直是古气候研究中的热点.为了获得对亚洲粉尘源区的干旱化波动和东亚季风演化的全面认识,较高分辨率地提取了北太平洋ODP 885站深海沉积物中的风尘组分,进而估算了晚上新世-早更新世时段北太平洋中部的风尘通量变化.结果表明,亚洲内陆粉尘源区的干燥度具有大时间尺度的变化特征,在2.7Ma左右急剧增加,随后在2.7~1.5Ma时段逐渐减小,自1.5Ma开始又逐渐增加.此外,在2.7~0.9Ma时段,粉尘源区经历了多次显著的轨道时间尺度上的干湿波动.通过对北太平洋和黄土高原的风尘记录的直接对比,发现在距今约2.7Ma,东亚地区的古环境发生了显著的变动,表现为亚洲内陆干旱化的加剧和大幅度冬、夏季风环流的盛行.然而,自2.7Ma开始,尤其是1.5Ma以后,由于北太平洋和黄土高原与亚洲粉尘源区的距离不同,两地的风尘通量所揭示的干旱化趋势和变化幅度存有明显差异.北太平洋远离亚洲内陆,其风尘通量变化基本不受粉尘源区范围变化的影响,因而更能反映源区干燥度的变化.相反,黄土高原由于距离粉尘源区较近,风尘通量的变化可能同时受到粉尘源区干燥度和范围的变化以及携带粉尘的风动力强度变化的影响.显然,海洋和陆地古气候记录的直接对比,可为深入认识过去气候变化提供新的思路.  相似文献   

8.
对甘肃酉峰晚第三纪红土标准剖面的研究揭示出,该区红土下部(6.2MaB.P.前)是红化的土壤物质与其它物质一起经水流搬运(坡积作用为主)再堆积的产物;中部(6.2~3.4MaB.P.)未发现再搬运的痕迹,是风尘堆积经风化和频繁地下水位波动作用所形成,不具明显的土壤发生学层次,其中的碳酸盐富积层不是成壤碳酸盐,而与地下水作用密切相关;上部(34~2.6MaB.P.)是典型的风尘堆积-土壤序列。由于中国西北和中亚干旱区的存在是黄河中游风尘堆积的前提条件,该区风尘物质的堆积起始于6.2MaB.P.前后标志着源区干旱化的加剧,并已达到相当高的程度。对整个序列的分析表明,源区干旱化程度在6.2~5.4MaB.P.期间较高,此后降低,在3.4MaB.P.和2.6MaB.P.又两次显著增强。上述历史与北极冰盖的起源和演化历史具有高度的一致性,若干重大转变与青藏高原隆升也有时代上的耦合性。本文认为,北极冰盖的形成演化和高原隆升都是中国西北和中亚地区干旱化发展的重要驱动因素,二者对西伯利亚高压的形成和发展的影响及高原对暖湿气流的阻挡可能是导致于旱化的重要途径。  相似文献   

9.
对甘肃酉峰晚第三纪红土标准剖面的研究揭示出,该区红土下部(6.2MaB.P.前)是红化的土壤物质与其它物质一起经水流搬运(坡积作用为主)再堆积的产物;中部(6.2~3.4MaB.P.)未发现再搬运的痕迹,是风尘堆积经风化和频繁地下水位波动作用所形成,不具明显的土壤发生学层次,其中的碳酸盐富积层不是成壤碳酸盐,而与地下水作用密切相关;上部(34~2.6MaB.P.)是典型的风尘堆积-土壤序列。由于中国西北和中亚干旱区的存在是黄河中游风尘堆积的前提条件,该区风尘物质的堆积起始于6.2MaB.P.前后标志着源区干旱化的加剧,并已达到相当高的程度。对整个序列的分析表明,源区干旱化程度在6.2~5.4MaB.P.期间较高,此后降低,在3.4MaB.P.和2.6MaB.P.又两次显著增强。上述历史与北极冰盖的起源和演化历史具有高度的一致性,若干重大转变与青藏高原隆升也有时代上的耦合性。本文认为,北极冰盖的形成演化和高原隆升都是中国西北和中亚地区干旱化发展的重要驱动因素,二者对西伯利亚高压的形成和发展的影响及高原对暖湿气流的阻挡可能是导致于旱化的重要途径。  相似文献   

10.
极地海冰的研究及其在气候变化中的作用   总被引:4,自引:2,他引:2  
极地海冰作为全球气候系统的一个重要组成部分,通过影响大洋表面的辐射平衡、物质平衡、能量平衡以及大洋温、盐流的形成和循环而影响全球气候变化.从最初研究极地海冰的强度和承载力到目前海/冰/气相互作用全球气候耦合模型的建立,使海冰变化和全球气候变化紧密结合起来.这些研究领域主要有:海冰及其表层雪的物理特性和过程、海冰区域生态特征、海冰区与气候相关的反照率和物质平衡研究以及海冰气候耦合模型等大的领域.模拟显示,21世纪因为全球变暖,南北极海冰都将减少.海冰和全球气候系统其它要素之间的相互作用问题、极地海冰的厚度季节性区域性分布问题、极地海冰边界及范围变化趋势问题、生消关键过程及其影响因素问题、冰间湖的作用以及海气相互作用等将是未来重要的研究方向.  相似文献   

11.
青海可可西里地区第四纪冰川与环境演化   总被引:11,自引:2,他引:11  
李世杰  李树德 《冰川冻土》1992,14(4):316-324
  相似文献   

12.
M.Kuhle把青藏高原外缘山地的山麓泥石洪流堆积误认为冰碛,推算出高原上末次冰期雪线普遍比今降低1100-1500m,已低于高原平均高度,以此推断在青藏高原形成了统一大冰盖。本文根据中国学者大量的研究事实和确凿的冰川作用遗迹,重建冰期雪线分布高度,提出了“分散的山地冰川”的观点,并从古气候学和高原构造隆升等方面分析了原因,以此论证了“大冰盖说”的主观性。  相似文献   

13.
关于晚新生代准1.2Ma周期构造气候旋回   总被引:8,自引:2,他引:6  
构造气候旋回的理论要点是构造作用驱动气候变化,因而不同于Milankovitch冰期气候旋回,但两者又都是受地球轨道要素控制的。本文主要根据青藏高原和黄土高原的晚新生代地质记录,以磁性地层为时间标尺,以黄道倾斜(ε)最大变幅位置为模式年龄,划分最近8Ma的准1.2Ma周期构造气候旋回的主旋回层,即MTC7、MTC6、MTC5、MTC4、MTC3、MTC2、MTC1、MTC0,它们的界线年龄分别为7.3、6.1、4.9、3.7、2.5、1.3和0.2MaBP。在此基础上,分析了青藏高原构造隆升和黄土高原风尘沉积各自显示的准1.2Ma周期的演变特征,表明它们之间具有构造驱动气候的因果关系。文中还探讨了最近7.3MaBP的古环境变迁,获得了有关晚新生代东亚季风形成演变和环境分异是在轨道气候旋回背景下受构造气候旋回控制的新认识。   相似文献   

14.
The northeastern Tibetan Plateau is located at the convergence of the Asian winter and summer monsoons and westerlies; thus, this area has witnessed historic climate changes.The Xunhua basin is an intermontane basin on the northeastern margin of the Tibetan Plateau.The basin contains more than 2000 m of Cenozoic fluvial–lacustrine sediments, recording a long history of climate and environmental changes.We collected the mid-Miocene sediments from the Xunhua basin and used palynological methods to discuss the relationship between aridification in the interior of Asia, global cooling, and uplift of the Tibetan Plateau.Based on the palynological analysis of the Xigou section, Xunhua basin, the palynological diagram is subdivided into three pollen zones and past vegetation and climate are reconstructed.Zone I, Ephedripites–Nitraridites–Chenopodipollis–Quercoidites(14.0–12.5 Ma), represents mixed shrub–steppe vegetation with a dry and cold climate.In zone II, Pinaceae–Betulaepollenites–Ephedripites–Chenopodipollis–Graminidites(12.5–8.0 Ma), the vegetation and climate conditions improved, even though the vegetation was still dominated by shrub–steppe taxa.Zone III, Ephedripites–Nitrariadites–Chenopodipollis(8.0–5.0 Ma), represents desert steppe vegetation with drier and colder climate.The palynological records suggest that shrub–steppe dominated the whole Xigou section and the content gradually increased, implying a protracted aridification process, although there was an obvious climate improvement during 12.5–8.0 Ma.The aridification in the Xunhua basin and surrounding mountains during 14.0–12.5 Ma was probably related to global cooling induced by the rapid expansion of the East Antarctic ice-sheets and the relatively higher evaporation rate.During the 12.5–8.0 Ma period, although topographic changes(uplift of Jishi Shan) decreased precipitation and strengthened aridification in the Xunhua basin on leeward slopes, the improved vegetation and climate conditions were probably controlled by the decrease in evaporation rates as a result of continuous cooling.From 8.0 to 5.0 Ma, the rapid development of the desert steppe can be attributed to global cooling and uplift of the Tibetan Plateau.  相似文献   

15.
Matthias Kuhle   《Tectonophysics》2007,445(1-2):116
Since 1973 new data were obtained on the maximum extent of glaciation in High Asia. Evidence for an ice sheet covering Tibet during the Last Glacial Period means a radical rethinking about glaciation in the Northern Hemisphere. The ice sheet's subtropical latitude, vast size (2.4 million km2) and high elevation (6000 m asl) are supposed to have resulted in a substantial, albedo-induced cooling of the Earth's atmosphere and the disruption of summer monsoon circulation. Moraines were found to reach down to 460 m asl on the southern flank of the Himalayas and to 2300 m asl on the northern slope of the Tibetan Plateau, in the Qilian Shan region. On the northern slopes of the Karakoram, Aghil and Kuen-Lun mountains, moraines occur as far down as 1900 m asl. In southern Tibet radiographic analyses of erratics suggest a former ice thickness of at least 1200 m. Glacial polish and roches moutonnées in the Himalayas and Karakoram suggest former glaciers as thick as 1200–2700 m. On the basis of this evidence, a 1100–1600 m lower equilibrium line (ELA) has been reconstructed, resulting in an ice sheet of 2.4 million km2, covering almost all of Tibet. Radiometric ages, obtained by different methods, classify this glaciation as isotope stage 3–2 in age (Würmian = last glacial period). With the help of 13 climate measuring stations, radiation- and radiation balance measurements have been carried out between 3800 and 6650 m asl in Tibet. They indicate that the subtropical global radiation reaches its highest energies on the High Plateau, thus making Tibet today's most important heating surface of the atmosphere. At glacial times 70% of those energies were reflected into space by the snow and firn of the 2.4 million km2 extended glacier area covering the upland. As a result, 32% of the entire global cooling during the ice ages, determined by the albedo, were brought about by this area — now the most significant cooling surface. The uplift of Tibet to a high altitude about 2.75 Ma ago, coincides with the commencement of the Quaternary Ice Ages. When the Plateau was lifted above the snowline (= ELA) and glaciated, this cooling effect gave rise to the global depression of the snowline and to the first Ice Age. The interglacial periods are explained by the glacial-isostatic lowering of Tibet by 650 m, having the effect that the initial Tibet ice – which had evoked the build-up of the much more extended lowland ices – could completely melt away in a period of positive radiation anomalies. The next ice age begins, when – because of the glacial-isostatic reverse uplift – the surface of the Plateau has again reached the snowline. This explains, why the orbital variations (Milankovic-theory) could only have a modifying effect on the Quaternary climate dynamic, but were not primarily time-giving: as long as Tibet does not glaciate automatically by rising above the snowline, the depression in temperature is not sufficient for initiating a worldwide ice age; if Tibet is glaciated, but not yet lowered isostatically, a warming-up by 4 °C might be able to cause an important loss in surface but no deglaciation, so that its cooling effect remains in a maximum intensity. Only a glaciation of the Plateau lowered by isostasy, can be removed through a sufficiently strong warming phase, so that interglacial climate conditions are prevailing until a renewed uplift of Tibet sets in up to the altitude of glaciation.An average ice thickness for all of Tibet of approximately 1000 m would imply that 2.2 million km3 of water were stored in the Tibetan ice sheet. This would correspond to a lowering in sea level of about 5.4 m.  相似文献   

16.
《International Geology Review》2012,54(14):1861-1876
Currently mechanisms for the onset of the widespread aeolian dust accumulation in the Chinese Loess Plateau since 8–7 Ma remain elusive. In this study, we compile 11 records of climate (14–7 Ma) and tectonic activity of the Tibetan Plateau and its adjacent areas (15–6 Ma). The results suggest that strong tectonic activity in the northeastern Tibetan Plateau has produced massive debris and dust, which was deposited in the piedmont basins and reworked by weathering and fluviolacustrine erosion. At the same time, global cooling and uplift of the Tibetan Plateau over the period of 14–7 Ma intensified the East Asian winter monsoon and westerly winds (westerlies) while weakening the Asian summer monsoon, which led to the spread of dry land vegetation and aridification in interior China. Sediments in the piedmont basins were then exposed in the aridity and transported by the westerlies to the Chinese Loess Plateau and the North Pacific. We suggest that tectonic activity in the northeastern Tibetan Plateau and shifting global climate together triggered the widespread aeolian dust accumulation in the Chinese Loess Plateau and the North Pacific since 8–7 Ma.  相似文献   

17.
本文首先对玉龙山东麓不同海拔高度现代表土样品有机碳同位素组成进行研究,探讨土壤碳同位素组成与海拔高度的关系,然后对0.5~0.7MaB.P.以来3期古土壤样品的有机碳同位素组成进行了测定.结果表明,现代表土的有机碳同位素组成与海拔高度之间存在良好的相关性,应是植被随海拔高度变化的反映;不同年龄的古土壤虽然目前均出露于地表,但其深部碳同位素组成存在显著差异,表明古土壤有机质中仍可能包含了过去植被的信息.根据上述结果对青藏高原0.5~0.7MaB.P.以来的隆升幅度进行尝试性估算,得到的隆升幅度约为800m.这个结果与我们过去根据古土壤的估算是基本一致的.  相似文献   

18.
中更新世全球最大冰期与中国沙漠扩张   总被引:10,自引:1,他引:10  
位于青藏高原和西北干旱区交界带的沙沟黄土剖面, 详细记录了0.8 Ma BP以来东亚季风系统和沙漠演化的历史. L6黄土层中, 中值粒径和砂粒含量表明当时冬季风极端强盛, 沙漠大规模扩张, 其范围仅次于末次冰期最盛期. 在0.6~0.7 Ma BP以前(即深海氧同位素MIS16阶段), 北半球高纬度大陆冰盖大规模扩展, 全球冰量达到最大, 并且西伯利亚冰盖的扩展, 还使得西伯利亚高压增强; 同时, 青藏高原上也发育了最大规模的冰川, 从而强化了西风和东亚冬季风. 其结果造成了中国季风边缘区的沙漠扩张. 虽然全球冰量和青藏高原是影响沙漠演化的重要因素, 但在不同的时段其机制可能有所不同, 也不能忽略其它因素的影响.  相似文献   

19.
青藏高原的冰碛层与环境   总被引:11,自引:2,他引:11  
最近3.4 Ma青藏高原尤其是南部可见七套冰碛层(自新至老M0—M6),M1—M6上对应发育古土壤MS0—MS5,除M0和MS0外,形成于六次冰期和五次间冰期。通过与黄土高原对比,除M6外,可用黄土-古土壤序列确定它们的年代。分别以M0—M5上的古土壤为标志,算出高原于1.56—1.23 Ma B.P.、平均高程约2500m开始整体隆升、经历时约0.4 Ma的三个阶段,在0.075 MaB.P.已升到4300m,上升速率从2.0、2.5、2.8增至8.7 mm/a,导致冰期雪线升高,冰进范围缩小。冰期和季风气候变化及阶段性隆升共同决定了高原的环境变迁。  相似文献   

20.
Minimal and maximal models of Late Pleistocene Glaciation on the Tibetan Plateau are considered. The large ice sheet models indicate that disintegration of the ice sheet could have contributed up to 7 mm/yr of present vertical uplift and 2 mm/yr of horizontal extension. The former value can account for more than 50% of the observed uplift in central Tibet. The peak free-air gravity anomaly arising from the deglaciation would be around −5.4 mGal. In contrast, the smaller ice sheet models do not contribute significantly to the signals of present uplift and gravity anomalies. Modern geodetic measurements therefore have the potential to constrain the Late Pleistocene glaciation of the Tibetan Plateau. Assuming a large ice sheet over the Tibetan Plateau, the disintegration can contribute up to 6 m of eustatic sea-level rise.  相似文献   

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