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1.
The record of the biogenic silica flux (BSF, g cm−2(103yr)−1) in Lake Biwa reflects changes in diatom productivity in the lake and provides information regarding changes in paleoclimatic conditions. The BSF record of Lake Biwa demonstrates five periods over the past ca. 145,000 yr when the BSF values were significantly greater than 7.5 g cm−2(103yr)−1, and five intervals when they were lower. The data imply that paleoclimatic conditions were warmer and wetter from ca. 123,000 to 115,000, 103,000 to 95,000, 88,000 to 72,000, 57,000 to 32,000 yr B.P., and around ca. 6000 yr B.P. when the BSF values were greater, and relatively dry and cold from ca. 141,000 to 123,000 yr B.P. and during intervals between two of the five warm and wet episodes when the BSF values were lower. Time series of the BSF record can be correlated with the record of biogenic silica content in Lake Baikal and the marine oxygen isotope stages 1 through 6. Furthermore, the BSF values varied with much higher amplitude during the last interglaciation than during the last glaciation, probably implying that the diatom productivity in Lake Biwa was likewise more variable and had a larger range under interglacial conditions than under glacial conditions.  相似文献   
2.
全新世呼伦湖区植被和气候变化的孢粉记录   总被引:2,自引:1,他引:1  
文章详细分析了内蒙古呼伦湖HL06岩芯沉积的孢粉组合,基于AMS 14C年代标尺,恢复了全新世湖区植被演变过程;并根据我国北方和蒙古表土孢粉数据和气象资料,建立了孢粉-气候参数转换函数,定量重建了呼伦湖区降水和气温的变化历史.结果表明,11000~8000aB.P.,湖区植被以蒿、藜占优,为干草原景观,气候暖干;8000~6400aB.P.,湖区禾本植物扩张,山地桦林发育,降水显著增加,气温逐渐降低;6400~4400aB.P.,湖区早生草本植物增加,降水减少,气温继续下降;4400~3350aB.P.,耐旱藜科植物大量生长,湖区荒漠化,气候极端干旱;3350~2050aB.P.,湖区草原植被有所恢复,降水略有增加,气温有所回升;2050~1000aB.P.,湖区蒿属植物减少,山地松林发育,气温降至全新世最低;最近1000年,藜科、禾本科等伴人植物大量出现,反映出人类活动对湖区自然环境的影响.全新世呼伦湖区气温变化在轨道尺度上受控于北半球太阳辐射量的变化,而在亚轨道尺度上可能与东亚夏季风强度有关.距今8000年前湖区降水较弱可能因为早全新世北半球高纬残存冰盖抑制了东亚季风雨带的北上,季风降水的千年-百年尺度波动与热带西太平洋海气相互作用密切相关.  相似文献   
3.
青海湖的地质构造前景及形成演化   总被引:2,自引:0,他引:2       下载免费PDF全文
青海湖地区位于3个构造单元及多条深断裂的交汇部位,结构复杂,强度较弱。上新世出现断陷,中更新世成湖。湖盆可划分为3个地垒和3个次级断陷盆地。其形成和演化受中祁连南缘大断裂带、宗务隆山-青海南山大断裂带和黑马河-达晶大带重新活动及其它NWW,NW,NNW,SN,NE抽断裂的活动及伴随的差异隆升所控制,与青藏高原的隆升演化有密切关系,尤其是可能与青藏高原发生后造山伸展作用有关的应力场转变造成的负反转构  相似文献   
4.
A sediment core from Hulun Lake, Inner Mongolia was analyzed for species assemblages and shell chemistry of ostracodes to investigate changes in the hydrology and climate of the East Asian summer monsoon margin during the Holocene. Darwinula stevensoni was abundant, Ilyocypris spp. scarce, littoral ostracodes absent and Mg/Ca, Sr/Ca and δ18O were low 11,100 to 8300 yr ago, indicating high lake levels and cool/fresh waters. Darwinula stevensoni declined largely, Ilyocypris spp. throve, littoral ostracodes were rare and chemical indicators remained in low values 8300 to 6200 yr ago, suggesting that the lake continued high stands but water became warm. The lake then contracted and water became cool/brackish 6200 to 4300 yr ago. Littoral ostracodes flourished 4300 to 3350 yr ago, marking the lowest lake levels of the entire Holocene. The lake level recovered and water salinity decreased 3350 to 1900 yr ago. From 1900 to 500 yr ago, the lake maintained the preceding status albeit lowered stands and increased salinities 1100 to 800 yr ago. During the recent 500 yr, the lake expanded and water salinity decreased. The data imply that the East Asian summer monsoon did not intensify until 8300 yr ago and weakened dramatically 4300 to 3350 yr ago.  相似文献   
5.
A large number of lacustrine sedimentary records indicate that global warming is the main factor leading to significant changes in diatom communities in lakes of the northern hemisphere.However,due to the intensification of human activities since 1850,some scholars have emphasized that the increasing lake trophic level may be the main reason for the changes in diatom communities.The debate is ongoing.In order to avoid falling into the complex relationship between diatom changes and the seasonal cycle that characterizes lakes in mid and high latitudes,we chose a lake located at a low latitude,where the relationship between diatoms and temperature is not indirect but direct.The diatom record spans the past ca.100 years and reveals that the abundance of Aulacoseira granulata increased from 1900 until 1985, replacing the previously dominant Aulacoseira ambigua.These changes are in agreement with the increasing trend in global temperature.Since 1985,the percentages of the small-celled Discostella stelligera and the benthic diatom Navicula heimansioides have increased,while Aulacoseira granulata has decreased.This latest shift is caused by further global warming.We conclude that warming is the main factor leading to changing diatom communities in Douhu Lake.  相似文献   
6.
Studies of the vegetation response to abrupt climatic events may provide valuable insights into assessing the impacts of such events under future global warming scenarios. Here we present a detailed record of regional vegetation change based on high-resolution pollen records for the intervals 9000–7000 and 5000–3000 cal a bp from the Hulun Lake region of north-eastern China. Our aims were to determine the regional expression of the 8.2- and 4.2-ka events in north-eastern China, especially their effects on vegetation composition. The results show that the response of the vegetation of the Hulun Lake region to the climatic cooling of the 8.2-ka event was relatively minor; however, the 4.2-ka event, which resulted in climatic aridification, resulted in pronounced vegetation degradation. We suggest that the specific characteristics of the 8.2- and 4.2-ka events, together with their duration and the regional climatic background on an orbital time scale, were the main factors responsible for the contrasting vegetation responses. The strengthening and northward shift of the Intertropical Convergence Zone (ITCZ) tended to offset the cooling effect of the 8.2-ka event on regional vegetation in the mid–high latitudes of East Asia; in contrast, the decrease in summer insolation in the Northern Hemisphere and the southward shift of the ITCZ may have intensified the drought effect of the 4.2-ka event in East Asia and the associated vegetation degradation. Under future global warming scenarios, both extreme cooling events and extreme drought events may cause a deterioration of the ecological environment; however, the resulting regional vegetation responses may be substantially different.  相似文献   
7.
最近20年位于东亚夏季风北部边缘的我国北方半干旱区遭遇更为频繁、更为严重的干旱事件。然而,有关该区域过去不同时间尺度气候干旱事件的特征及机制仍知之甚少。文章详细分析了内蒙古中东部达里湖DL04岩芯上部6.5 m沉积物中< 38 μm碳酸盐的Ca和Mg含量、δ^18O和δ^13C值以及全样有机质TOC和TN含量、TOC/TN(C/N)比值,基于高精度的AMS^14C年代标尺,恢复了最近6000年(日历年)湖区的水文、气候变化详细过程。结果表明:达里湖< 38 μm碳酸盐主要为湖泊水体沉淀的内生方解石,其Ca和Mg含量、δ^18O和δ^13C值增大反映湖水蒸发量超过补给水量,进而指示湖区干旱事件。TOC和TN含量减少以及C/N比值减小总体反映地表径流减弱引起的陆生有机质入湖减少以及湖泊初始生产率下降。达里湖沉积内生碳酸盐和有机质地球化学数据表明,在6000~5300 cal.a B.P.、3200~2800 cal.a B.P.、1650~1150 cal.a B.P.和650~300 cal.a B.P.,流域地表径流显著减弱、湖面显著降低、湖泊生产率显著下降、湖区气候显著变干、东亚夏季风显著减弱。最近6000年东亚夏季风显著减弱事件在定年误差范围内与北大西洋冰漂碎屑事件一致,而与热带西太平洋海表温度变化和太阳活动变化相关性较差,表明千、百年尺度东亚夏季风突变主要受控于北半球高纬气候变冷。  相似文献   
8.
玛珥湖与纹泥年代学   总被引:22,自引:4,他引:22  
火山活动是影响全球变化的重要因素之一,玛珥湖和纹泥年代学是近年来古气候研究的新领域。玛珥湖由于其独特的封闭性及其物化条件,使之成为古环境变迁信息的理想载体。纹泥年代学是高分辨率研究过去全球变化的重要手段。玛珥湖的现存状态可以分为空型、湖型、沼泽型和干枯型。纹泥是某些玛珥湖中比较常见的一种沉积构造,它的形成需要一种精细的平衡。硅藻作为纹泥的一个重要组成部分,对光量、温度和各种无机盐反应敏锐,具有重要的古环境意义。能否制作完好的沉积物薄片是纹泥年代学成功与否的关键,本文对纹泥年代学的具体操作方法做了扼要介绍。中国有广泛的火山分布,其中不乏玛洱湖的存在,对之进行详细研究,不仅可以获得可与黄土、冰芯和深海岩芯相媲美的古气候序列,而且可以解决古气候学中某些难题。  相似文献   
9.
青海湖的地质构造背景及形成演化   总被引:12,自引:0,他引:12       下载免费PDF全文
青海湖地区位于 3个构造单元及多条深断裂的交汇部位 ,结构复杂 ,强度较弱。上新世出现断陷 ,中更新世成湖。湖盆可划分为 3个地垒和 3个次级断陷盆地。其形成和演化受中祁连南缘大断裂带、宗务隆山 -青海南山大断裂带和黑马河 -达日大断裂带重新活动及其它NWW ,NW ,NNW ,SN ,NE向断裂的活动及伴随的差异隆升所控制 ,与青藏高原的隆升演化有密切关系 ,尤其是可能与青藏高原发生后造山伸展作用有关的应力场转变造成的负反转构造有重要关系。中中新世夷平面形成以来的新构造活动和青海湖的形成演化具明显的脉动性。中中新世以来的新构造活动可分为 5个阶段 ,青海湖形成演化过程可大致分为 9期  相似文献   
10.
Reconstructing the spatial patterns of regional climate and vegetation during specific intervals in the past is important for assessing the possible responses of the ecological environment under future global warming scenarios. In this study, we reconstructed the history of regional vegetation and climate based on six radiocarbon-dated pollen records from the North China Plain. Combining the results with existing pollen records, we reconstruct the paleoenvironment of the North China Plain during the Last Glacial Maximum(LGM) and the Holocene Climatic Optimum(HCO). The results show that changes in the regional vegetation since the LGM were primarily determined by climatic conditions, the geomorphic landscape and by human activity.During the LGM, the climate was cold and dry; mixed broadleaf-coniferous forest and deciduous-evergreen broadleaf forest developed in the southern mountains, and cold-resistant coniferous forest and mixed broadleaf-coniferous forest were present in the northern mountains. The forest cover was relatively low, with mesophytic and hygrophilous meadow occupying the southern part of the plain, and temperate grassland and desert steppe were distributed in the north; Chenopodiaceae-dominated halophytes grew on the exposed continental shelf of the Bohai Sea and Yellow Sea. During the HCO, the climate was warm and wet;deciduous broadleaf forest and deciduous-evergreen broadleaf forest, with subtropical species, developed in the southern mountains, and deciduous broadleaf forest with thermophilic species was present in northern mountains. Although the degree of forest cover was greater than during the LGM, the vegetation of the plain area was still dominated by herbs, while halophytes had migrated inland due to sea level rise. In addition, the expansion of human activities, especially the intensification of cultivation,had a significant influence on the natural vegetation. Our results provide data and a scientific basis for paleoclimate modelling and regional carbon cycle assessment in north China, with implications for predicting changes in the ecological environment under future global warming scenarios.  相似文献   
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