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1.
西藏纳木错及邻区全新世气候与环境变化的地质记录   总被引:20,自引:1,他引:19  
综合分析了全新世期间内的多种与气候和环境变化密切相关的地质记录,结果表明该区全新世期间的气候变化可划分为3个阶段:1)约11.8~8.4kaBP期间,处于微温期和升温期,气候相对温和稍湿.2)8.4~4.0kaBP期间,为全新世气候最适宜时期或大暖期.该期间的平均气温可能比现今高约5℃,降水量比今多100~200mm.3)4.0kaBP以来,气候整体较为干冷.纳木错湖面发生持续下降,其最大下降幅度可达11.4m.冰川进退和湖面波动表明,该期间内的气候波动过程分别与新冰期和小冰期相对应,其中又各包含了3次明显的冷期,其中新冰期期间的最低年平均气温可达-6℃左右.约1970年以来,区域气候向暖湿方向转化,造成念青唐古拉山西布冰川后退约120~200m,纳木错湖面上涨了约2m.  相似文献   

2.
The authors investigated lacustrine chemical sediments on terrace-I of Dong Co-a salt lake in the interior of the northern Tibetan Plateau and firstly discovered borax and a complete sedimentary section with five pure mirabilite beds. According to the sedimentary characteristics of rhythmic layering, palaeotemperatures for the formation of the cold-phase mineral-mirabilite-at the profiles and 14C dating, the authors applied the theory and method of comparative salinology in the study of the history of the palaeoclimate and palaeoenvironment of Dong Co in the early and middle Holocene and drew the conclusion that the salt lake had experienced the following climatic evolution: the warm and moist stage (>8470 a BP and possibly to 10500 a BP)→cold and dry stage (8470-8170 a BP)→warm and moist stage (8170-7590 a BP)→stage of repeated climatic oscillations (7590-7400 a BP, alternation of three dry oscillations and three moist oscillations in a generally cold climatic background)→cold and dry stage (7400-6  相似文献   

3.
西藏扎布耶碳酸盐型盐湖卤水相化学研究   总被引:12,自引:0,他引:12  
中国盐湖资源丰富,且水化学类型齐全。西藏扎布耶盐湖位于西藏高原腹地,该湖卤水水化学类型为碳酸盐型,已处于盐湖演化晚期,是一个固液共存的盐湖矿床,具有很好的工业开发价值。笔者分别在15℃、25℃下对该卤水进行了等温蒸发实验,研究了在此两个温度下卤水中各元素富集行为和盐类矿物析出规律。并通过讨论其与国内外碳酸盐型和硫酸盐型锂盐湖的卤水蒸发路径和矿物析出异同,指出扎布耶盐湖具有其独特的卤水蒸发析盐路径。在本实验中低温有利于卤水中锂的富集,而高温有利于硼的富集,碳酸锂和钾盐交叉析出,低温时钾的矿物主要为钾石盐,高温时主要为钾芒硝,高温有利于获得高品位的碳酸锂混盐。  相似文献   

4.
西藏洞错全新世早中期盐湖沉积的古气候记录   总被引:9,自引:0,他引:9  
通过调查藏北高原腹地盐湖———洞错的Ⅰ阶地湖相化学沉积 ,发现硼砂及赋存 5层纯芒硝的完整沉积剖面。依据DZ0 1剖面的磁化率特征 ,结合韵律层的沉积学、盐类矿物学和14 C年代学 ,盐湖沉积物磁化率等恢复重建盐湖环境的替代性指标。指出洞错在全新世早、中期经历了潮湿温暖期(8470aBP ,可能至 10 5 0 0aBP± )→寒冷干旱期 (8470~ 8170aBP)→潮湿温暖期 (8170~ 75 90aBP)→气候频繁波动期 (75 90~ 740 0aBP ,寒冷大背景下三干三湿的气候演替 )→寒冷干旱期 (740 0~6 940aBP)→潮湿温和期 (6 940~ 6 6 2 0aBP)→寒冷干旱期 (6 6 2 0~ 6 410aBP)→温暖湿润时期(6 410aBP以后 ,可能至 330 0aBP)的演变过程。  相似文献   

5.
文章对内蒙古中部辉腾锡勒湖相沉积剖面及好鲁库风成砂-古土壤剖面全新世地层的沉积特征及~(14)C、OSL测年结果进行了综合论述,根据岩性特征及测年结果确定了全新统的底界。对内蒙古中部全新统沉积序列进行了系统分析,并将其划分为3段:全新统下部(开始于12.5~11.4 ka,结束于8.2~7.0 ka)辉腾锡勒为灰黑色黏土、粉砂质黏土,沉积特征指示由冲积相转变为湖相沉积,湖面开始上升;好鲁库沙丘主要为中粗砂,为风成砂堆积。全新统中部(开始于8.2~7.0 ka,结束于4.5~2.3 ka)辉腾锡勒为灰褐色粉砂质黏土,富含有机质及双壳和螺类化石,为典型湖泊相发育阶段;好鲁库沙丘发育黑色砂质古土壤,气候温暖湿润。全新统上部(开始于4.5~2.3 ka)辉腾锡勒为黏土质粉砂,含植物碎屑,为湖滨相沉积,指示湖泊开始退缩;好鲁库沙丘为灰黄色中粗砂,沙丘重新活化,气候干旱。  相似文献   

6.
刘瑾  王永  李廷栋  董进  江南  汤文坤 《古地理学报》2016,18(6):1044-1052
内蒙古中东部位于东亚夏季风过渡区,对气候变化响应敏感。广泛发育的湖泊沉积物提供了全新世以来的环境变化的理想材料。湖岸沉积物直接记录的古水位,与高分辨率的湖心钻孔记录相结合,有助于全面认识古气候的变化历史和湖面波动的定量重建。运用AMS14C测年和GPS、DEM及1︰5万地形图等相结合的方法确定了达里湖北侧湖岸堤的年代和高程,并结合湖岸堤剖面的沉积序列指示的湖面变化过程,重建了12.5 cal ka BP以来达里湖的波动历史。12.5 cal ka BP,达里湖湖面海拔高度约为1253,m,至12.3 cal ka BP湖面经历短暂上升,至海拔1266,m左右;之后湖面下降,至全新世早期(11.2 cal ka BP),水位降至1254,m左右;随后湖面开始逐步上升,10.7 cal ka BP湖面水位稳定在1274,m左右;全新世中期湖面继续上升至某一高度(至少在1291,m)后,于全新世晚期4.8 calka BP 湖面高度降至1279,m,并于4.6 cal ka BP湖面继续下降至1275,m的高度。通过对比湖心钻孔记录的湖泊波动历史以及区域湖泊沉积记录,认为达里湖的水位波动受东亚季风活动的影响,具有区域的一致性。达里湖的水位变化较区域内的其他湖泊更为强烈,认为除了受区域气候变化的影响外,达里湖全新世晚期的湖面下降可能还与区域内强烈的构造活动和西拉木伦河溯源侵蚀导致区域水系的改变有关。  相似文献   

7.
青藏高原气候变化在冰期-间冰期、千年、十年际和季节尺度上受亚洲季风和西风环流的交互影响,表现出显著的区域性特征。然而全新世以来青藏高原气候变化的机制还不甚清楚,主要原因之一是缺少指示意义明确的古气候代用指标。课题组近年来利用叶蜡氢同位素(δDwax)重建了高原东北部的青海湖、中北部的令戈错、中部的达则错、西部的班公错和阿翁错不同时间尺度的大气降水同位素记录,本文对上述工作进行总结,并结合青藏高原全新世以来已发表的其他地点的同位素和古水文记录,揭示全新世以来季风与西风对青藏高原不同区域气候变化的影响。结果表明:1)早全新世青海湖、令戈错、班公错和阿翁错4个湖泊均主要受夏季风影响,夏季风可以影响到青藏高原的大部分地区,此时夏季风在青藏高原的最北界限可能位于青海湖以北、克鲁克湖以南。2)中全新世青海湖、班公错和阿翁错受夏季风影响逐渐减弱;然而令戈错在7.0~4.5 ka水汽主要来源于西风环流。3)晚全新世青海湖和班公错受季风的影响进一步减弱;西风在3.5~1.7 ka和2.0~1.0 ka分别影响到高原中部的令戈错和达则错;晚全新世阿翁错受冰川融水补给影响降水同位素异常偏负。4)本研究表明在中晚全新世季风较弱的时期,西风能够深入到青藏高原内部地区,给高原内部地区带来冷湿的水汽。  相似文献   

8.
李卓仑  王乃昂  李育  程弘毅 《冰川冻土》2013,35(6):1481-1489
通过对花海古湖泊沉积剖面8.42~0.405 m沉积物样品的矿物和化学元素测定,分析了沉积物中盐类矿物含量及化学元素K/Na比值的变化情况,结合已有的年代地层结果,重建了花海古湖泊10.47~5.5 cal ka BP湖水盐度变化. 结果表明:花海湖泊全新世湖相沉积阶段中,除个别层位以硫酸盐类矿物沉积为主外,早全新世(10.47~8.87 cal ka BP)和中全新世(8.87~5.5 cal ka BP)均以碳酸盐盐类矿物沉积为主,并且早全新世时期K/Na高于中全新世时期,揭示了早全新世时期湖水盐度高于中全新世时期. 这一结果与该湖泊沉积过程所揭示的湖泊水位变化、粒度等揭示的有效湿度变化具有一致性,表明花海湖泊早、中全新世湖水盐度的高低可以指示其湖泊水位的变化,并间接反映了有效湿度的变化. 结合花海湖泊晚全新世湖泊萎缩、气候干旱的特点,该区域早、中、晚全新世气候干湿变化变化模式可以概况为早全新世降水增强、气候呈现由干向湿的转变,中全新世有效湿度最大,晚全新世气候干旱. 这种全新世气候干湿变化模式有别于西风区,亦与季风区不完全相同,呈现出了一种季风-西风过渡带全新世气候干湿变化的模式.  相似文献   

9.
通过新疆北天山东段巴里坤山北麓巴里坤湖及周缘地区7个剖面的沉积相带划分、OSL测年、粒度分析、磁化率测试,研究了全新世以来巴里坤湖区湖面积变化:14 000 a B.P.末次冰盛期晚期,东天山地区冰川发育,由于水体封存于巴里坤山冰川,导致巴里坤湖萎缩至1#剖面以北。8 000~4 000 a B.P.巴里坤山冰川融化,巴里坤湖扩张进入全新世以来最大湖期,湖泊扩张至1#剖面以南,面积达到600 km2。东天山地区温暖湿润的全新世适宜期为8 000~4 000 a B.P.。其后湖泊逐渐萎缩,4 000~2 000 a B.P.湖泊面积大约470 km2。2 000~1 000 a B.P.面积萎缩至380 km2。在1 500 a B.P.左右湖泊曾经基本干涸,在目前湖心地带出现泥坪沉积。其后巴里坤湖进入小湖期,湖泊面积在100 km2范围波动,时有扩张或干涸。全新世巴里坤湖水位变化主要受北半球夏季太阳辐射变化控制,具体表现在北半球冰盖由扩张转为融化背景下,全新世早期巴里坤山冰川发育和全新世中期的巴里坤湖冰川融水的注入扩张;巴里坤地区受东亚夏季风影响甚弱,西风环流带给的水量补充有限,全新世中晚期巴里坤地区向干旱环境发展。  相似文献   

10.
Long‐term fluctuations in lake‐water optical properties were examined using a Holocene sediment sequence and multi‐proxy palaeolimnological approach in Lake Einstaken, Nordaustlandet, Svalbard. UV‐absorbance of sedimentary cladoceran remains provided information on underwater UV exposure and changes in lake‐catchment coupling processes were inferred from sediment geochemistry. In addition, aquatic community succession was used as an indicator for lake‐water bio‐optical properties and a Holocene record of sun activity (sunspots) was utilized to evaluate long‐term solar forcing. The results indicated that the UV‐absorbance of cladoceran remains was highest (i.e. maximum UV‐induced pigmentation) for a short period during the early Holocene and for several millennia during the mid‐Holocene. Sun activity was high during these time intervals, probably impacting the UV intensities, but it is probable that the amount of UV‐attenuating compounds (e.g. dissolved organic carbon (DOC)) also significantly affected the underwater UV environment and were low during high UV exposure. Benthic autotrophic communities also responded to the millennial changes in lake‐water optical properties. UV‐resistant Nostoc cyanobacterial colonies were established during the mid‐Holocene, indicative of high underwater UV intensities, and Fontinalis mosses thrived during the early Holocene, indicating a highly transparent water column. The results further suggested that underwater UV exposure decreased during the late Holocene, which is probably attributable to increased DOC and decreased solar forcing. Owing to the location of Lake Einstaken and its catchment in the periglacial barren landscape of the polar desert, the fluctuations of bio‐optical lake‐water properties were apparently forced by postglacial environmental processes and Holocene climate development. These factors controlled sea shoreline proximity, water discharge, ice‐cover duration and littoral‐benthic primary production and further affected the underwater UV environment. Although the role of solar forcing cannot be underestimated, the current record emphasizes the role of climate‐mediated lake‐catchment interactions in impacting bio‐optical properties and UV exposure of high arctic aquatic systems.  相似文献   

11.
A pollen record from Huguangyan Maar Lake documents regional palaeovegetation and palaeoclimate changes in southern China over the last 30 000 years. Huguangyan Maar Lake is located close to the South China Sea (SCS) coastline and is influenced by the East Asian Monsoon (EAM). The pollen assemblages show a succession of vegetation and climate changes. During the Last Glaciation, 30–15.8 cal. ka BP, the Huguangyan area was dominated by subtropical evergreen‐deciduous forest with grassland surrounding the lake, indicating a colder and drier climate than today. During 15.8–11 cal. ka BP, the study area experienced several climatic fluctuations. From 11 to 2 cal. ka BP, the climate shifted to warmer and wetter conditions. After the Holocene Optimum in the early Holocene, the temperature and precipitation decreased. The sediment record of the last 2000 years cannot be used to interpret natural palaeoclimate changes due to the intense anthropogenic influences. Overall, however, the Huguangyan pollen archive highlights the rapid responses of subtropical vegetation to insolation changes in southern China.  相似文献   

12.
通过对中国西北干旱区石羊河流域民勤盆地三角城古湖泊沉积物有机质碳同位素组成(δ13Corg)分析,表明末次冰期与全新世时气候和植被有明显的差异,末次冰期δ13Corg总体偏轻(-30‰~-25‰),而全新世碳同位素组成则有较大的变化,在早全新世碳同位素组成有多次短期快速变重(-10‰左右)的变化,中全新世碳同位素组成总体偏重(-20‰~-10‰),晚全新世碳同位素组成偏轻(-25‰左右)。分析表明湖泊沉积物有机质碳同位素组成反映了陆生C3植物和湖泊内源水生植物变化的关系,末次冰期以来西北干旱区C4植物不发育,偏重的有机质碳同位素值与C4植物无关。从沉积物中有机质组分、元素等分析表明,末次冰期时主要以河流相沉积为主,湖泊中有机质主要来源于上游祁连山的陆生C3植物,有机碳含量较低,表明当时的上游的陆生植被不繁盛,区域气候较干冷;从全新世开始,三角城古湖泊开始形成,沉积物中碳同位素组成偏重的有机质主要来源于湖泊中的沉水植物,此时湖泊水体较大,湖泊生产力较高。而沉积物中有机质碳同位素组成偏轻时期的有机质主要来源于挺水植物、陆生C3植物,较低的有机碳含量说明该时期陆生植被不发育,气候较干冷,湖泊水体较小  相似文献   

13.
江汉平原沔城M1孔的沉积特征与古环境重建   总被引:6,自引:0,他引:6  
通过对江汉平原沔城M1孔湖泊沉积物进行沉积特征、粒度、14C年代、孢粉分析,重建了晚冰期以来该地区古环境、古气候演化的过程和序列:晚冰期后期有一扩张期,气候温湿并出现湖泊相沉积;晚冰期末期气候温凉偏干、河流环境;全新世初期(10-8.9kaBP),气候转向温湿;全新世大暖期(8.9-3.5kaBP),总体上气候温暖湿润,其中6.8-4.9kaBP是最宜期,4.9-4.8kaBP和4.4-4.2kaBP为两次降温事件,4.8kaBP积水湖盆开始形成,3.9-3.5kaBP为云梦泽鼎盛期;全新世晚期(3.5-1.7kaBP),气温较大暖期有所下降,其中3.5-2.5kaBP温凉偏湿,2.5-1.7kaBP较为温湿,湖泊较为稳定,1.7kaBP开始,云梦泽萎缩,钻孔所在位置出露水面。   相似文献   

14.
The paper reviews the work on paleolimnology in parts of the FSU over the last 40 years. It presents a short review of The History of the Lakes of the East European Plain, one of the books of the series The History of Lakes published by the Institute of Lake Research of the Russian Academy of Sciences. It describes the Late Pleistocene and Holocene history of these lakes based mainly on the study of lacustrine sediments. Amongst the samples Lake Nero near Moscow which is located near the marginal zone of the last glaciation, and includes records that go back as early as 190,000 BP. The main elements of lake evolution are shown in different territories: Byelorussia; Baltic countries; Karelia; and the Kola Peninsula. Special attention is given to palaeolimnological data because its use for Holocene and Late Pleistocene palaeoclimate reconstructions.  相似文献   

15.
关于长江中游洪灾问题的思考   总被引:2,自引:0,他引:2  
中国是一个水灾频发的国家 ,长江中游历来就是重灾区。 1998年的长江洪水是 1954年以来最大的一次全流域性洪水 ,高水位持续时间长 ,洪水量大 ,洪水遭遇情况恶劣是这次长江汛期的突出特点 ,由此造成的损失十分严重。导致长江中游洪灾的原因是众多的 ,其中气候异常是最直接的影响因素 ,但过度围湖垦殖与江湖关系失调亦是洪涝灾害日趋严重的一个重要原因。由于自然演变和人类活动的共同作用 ,长江中游河湖环境越来越不利于超额洪水的排泄。江汉湖群、洞庭湖和鄱阳湖面积缩小 ,容积减少 ,对河流水量的调蓄作用大大降低。同时荆江已演变为典型的弯曲河道 ,成为防洪的重点地段。荆江大堤的修建隔断了江湖联系 ,改变了中游河湖关系。所有这些因素都使得中游洪灾日益加重。为了实现区域可持续发展 ,迫切需要建立一套完善的抗洪减灾防御体系。  相似文献   

16.
Lake sediments from a closed basin in southern Patagonia (Argentina) provide a continental archive with which to reconstruct climate change and to test the interhemispheric synchroneity of abrupt events. High-resolution sub-bottom seismic profiles of Lago Cardiel indicate substantial lake-level changes since the late Pleistocene, which were identified and dated in a series of long piston cores. These data allow the reconstruction of the regional water balance at 49=" PSFT − BC "202S since the late glacial. The seismic stratigraphy reveals a dry late glacial climate with a desiccation of the basin around 11 220 yr BP (14C). Lake level rapidly increased by 135 m at the Holocene transition. Following the early Holocene highstand at + 55 m, lake level never dropped significantly below modern level. The palaeoclimate changes implied by the Lago Cardiel record are out-of-phase with those implied by records from tropical South America and demonstrate considerable latitudinal asynchroneity in the climate evolution of this continent.  相似文献   

17.
武汉东西湖区第四系钻孔的沉积环境及古气候变化   总被引:1,自引:0,他引:1  
以武汉市东西湖区第四系沉积物ZK25钻孔为例,通过AMS14C年代测定及其粒度与正构烷烃等环境代用指标分析,初步揭示了该孔第四纪沉积环境及晚更新世以来的古气候变化特征.结果显示,该区早更新世为河流沉积,至晚更新世出现河湖相交替沉积,较为干旱;进入全新世由于降雨增多而沉积了较厚的冲积层,随后变得冷干;全新世中期则变成稳定...  相似文献   

18.
Lake Ladoga in northwestern Russia is Europe's largest lake. The postglacial history of the Ladoga basin is for the first time documented continuously with high temporal resolution in the upper 13.3 m of a sediment core (Co1309) from the northwestern part of the lake. We applied a multiproxy approach including radiographic imaging, (bio‐)geochemical and granulometric analyses. Age control was established combining radiocarbon dating with varve chronology, the latter anchored to a correlated radiocarbon age from a lake close by. The age‐depth model reveals the onset of glacial varve sedimentation at 13 910±140 cal. a BP, when Lake Ladoga was part of the Baltic Ice Lake. Linear extrapolation of published retreat rates of the Scandinavian Ice Sheet provides a formation age of the Luga moraine close to Lake Ladoga's southern shore of 14.5–15.9 cal. ka BP, older than previously assumed. Varve sedimentation covers the Bølling/Allerød interstadial, the Younger Dryas stadial and the Early Holocene. Varve‐thickness variations, conjoined with grain‐size and geochemical variations, inform about the relative position of the Scandinavian Ice Sheet and the climate during the deglaciation phase. The upper limit of the varved succession marks the change from glaciolacustrine to normal lacustrine sedimentation and post‐dates the drainage of the Baltic Ice Lake as well as the formation of the Salpausselkä II moraine north of Lake Ladoga, by c. 250 years. The Holocene sediment record is divided into three periods in the following order: (i) a lower transition zone between the Holocene boundary and c. 9.5 cal. ka BP, characterized by mostly massive sediments with low organic content, (ii) a phase with increased organic content from c. 9.5 to 4.5 cal. ka BP corresponding to the Holocene Thermal Maximum, and (iii) a phase with relatively stable sedimentation in a lacustrine environment from c. 4.5 cal. ka BP until present.  相似文献   

19.
青海湖是我国最大的内陆湖盆,对气候变化十分敏感,而滩坝是青海湖滨浅湖带最为发育的沉积类型之一,其滩坝分布规律对晚更新世以来的古气候演化具有重要指示意义。在对青海湖一郎剑剖面进行实地考察的基础之上,对滩坝的分布规律及沉积特征进行精细解剖。通过分析总结前人相关测年数据,并与青海湖滩坝分布规律进行对比,发现青海湖湖平面升降对滩坝分布有明显的控制作用,建立了18 ka以来青海湖滩坝的演化过程,并将近18 ka以来青海湖湖平面升降史分为4个阶段:(1)更新世末温湿期,湖平面在海拔3 197~3 202 m附近波动;(2)全新世冷干期,湖平面近乎干涸;(3)全新世大暖期,湖平面处于全新世以来的最高值,约为3 212 m;(4)全新世凉湿期,湖平面回落到3 200 m附近,并在近2. 5 ka湖平面加速下降。在晚更新世和晚全新世时,湖平面在海拔3 202 m附近波动时间较长,在该海拔范围内,形成了规模较大的复合滩坝;在早全新世,青海湖平面最低,多发育风成黄土和潟湖沉积;在中全新世,湖平面最高,形成了距离现今湖平面最远的数列单体滩坝。  相似文献   

20.
The sediment succession of Lake Emanda in the Yana Highlands was investigated to reconstruct the regional late Quaternary climate and environmental history. Hydro-acoustic data obtained during a field campaign in 2017 show laminated sediments in the north-western and deepest (up to ̃15 m) part of the lake, where a ̃6-m-long sediment core (Co1412) was retrieved. The sediment core was studied with a multi-proxy approach including sedimentological and geochemical analyses. The chronology of Co1412 is based on 14C AMS dating on plant fragments from the upper 4.65 m and by extrapolation suggests a basal age of c. 57 cal. ka BP. Pronounced changes in the proxy data indicate that early Marine Isotope Stage (MIS) 3 was characterized by unstable environmental conditions associated with short-term temperature and/or precipitation variations. This interval was followed by progressively colder and likely drier conditions during mid-MIS 3. A lake-level decline between 32.0 and 19.1 cal. ka BP was presumably related to increased continentality and dry conditions peaking during the Last Glacial Maximum (LGM). A subsequent rise in lake level could accordingly have been the result of increased rainfall, probably in combination with seasonally high meltwater input. A milder or wetter Lateglacial climate increased lake productivity and vegetation growth, the latter stabilizing the catchment and reducing clastic input into the lake. The Bølling-Allerød warming, Younger Dryas cooling and Holocene Thermal Maximum (HTM) are indicated by distinct changes in the environment around Lake Emanda. Unstable, but similar-to-present-day climatic and environmental conditions have persisted since c. 5 cal. ka BP. The results emphasize the highly continental setting of the study site and therefore suggest that the climate at Lake Emanda was predominantly controlled by changes in summer insolation, global sea level, and the extent of ice sheets over Eurasia, which influenced atmospheric circulation patterns.  相似文献   

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