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1.
呼伦湖湿地气候变化及其对水环境的影响   总被引:11,自引:0,他引:11  
利用呼伦湖湿地所在地区的气象站1961—2005年的气温、降水和蒸发量资料及呼伦湖区域1959—2006年的水体面积、水位深度、水质状况等资料,分析了气候变化及其对水环境的影响.结果表明:呼伦湖地区近45 a来的气候变化呈现气温升高、降水减少、蒸发量增大的暖干化趋势,其空间变化具有较好的一致性,地形是影响气候空间变化的主要因子;呼伦湖地区气候暖干化是造成水资源短缺和水环境恶化及周边地区生态环境荒漠化等问题的重要原因;显著的气候暖干化加速了湖水水面积减少、水位下降和水环境恶化.  相似文献   

2.
Pollen and diatom assemblages, and peat stratigraphies, from a coastal wetland on the northern shore of Lake Erie were used to analyze water level and climatic changes since the middle Holocene and their effects on wetland plant communities. Peat deposition began 4700 cal yr B.P. during the Nipissing II transgression, which was driven by isostatic rebound. At that time, a diatom-rich wild rice marsh existed at the site. Water level dropped at the end of the Nipissing rise at least 2 m within 200 yr, leading to the development of shallower-water plant communities and an environment too dry for most diatoms to persist. The sharp decline in water level was probably driven primarily by outlet incision, but climate likely played some role. The paleoecological records provide evidence for post-Nipissing century-scale transgressions occurring around 2300, 1160, 700 and 450 cal yr B.P. The chronology for these transgressions correlates with other studies from the region and implies climatic forcing. Peat inception in shallow sloughs across part of the study area around 700 cal yr B.P. coincides with the Little Ice Age. These records, considered alongside others from the region, suggest that the Little Ice Age may have resulted in a wetter climate across the eastern Great Lakes region.  相似文献   

3.
基于2013~2018年Landsat8-OLI 9个时相的遥感数据,采用湿地三类分级系统,以决策树分类法提取不同时间的湿地类型,结果表明:2013-2018年东洞庭湖湖泊草洲、泥滩地和水域面积呈现动态变化,其中草洲面积平均714km2、泥滩地面积平均81km2、水域面积平均502km2;湖区草洲和水体面积占比大,且此消彼长,草洲面积平均占比55.1%,水域面积平均占比38.7%,泥滩地面积最少平均占比仅6.2%;水位变化是湖区草洲出露面积的主控因素,随水位升高,草洲出露面积逐渐减小,且在典型高低水位下草洲空间分布差异明显,高水位下主要分布在南部柴下洲和北部藕池河一带地形较高区域,而低水位条件下湖区大部分草洲面积分布广泛,其面积占湖区总面积的74%。成果进一步验证了东洞庭湖不同水情下的湿地景观格局。  相似文献   

4.
新疆乌勇布拉克盐湖的形成及硝酸钾矿床特征   总被引:2,自引:0,他引:2  
黄铁栋 《新疆地质》2005,23(1):36-40
详细论述乌勇布拉克盐湖的沉积的全过程,并将其划分成3个阶段,每阶段沉积物都有自己的特点,但总体趋势是由机械沉积过渡到化学沉积,通过蒸发试验和“干盐湖”理论进一步确定钾硝石矿产牛在当代干盐湖向沙下湖转化阶段.乌勇布拉克盐湖固相、液相KNO3矿体特征具有代表性,对其他盐湖钾盐找矿有指导意义.  相似文献   

5.
Climate impacts on coastal and estuarine systems take many forms and are dependent on the local conditions, including those set by humans. We use a biocomplexity framework to provide a perspective of the consequences of climate change for coastal wetland ecogeomorphology. We concentrate on three dimensions of climate change affects on ecogeomorphology: sea level rise, changes in storm frequency and intensity, and changes in freshwater, sediment, and nutrient inputs. While sea level rise, storms, sedimentation, and changing freshwater input can directly impact coastal and estuarine wetlands, biological processes can modify these physical impacts. Geomorphological changes to coastal and estuarine ecosystems can induce complex outcomes for the biota that are not themselves intuitively obvious because they are mediated by networks of biological interactions. Human impacts on wetlands occur at all scales. At the global scale, humans are altering climate at rapid rates compared to the historical and recent geological record. Climate change can disrupt ecological systems if it occurs at characteristic time scales shorter than ecological system response and causes alterations in ecological function that foster changes in structure or alter functional interactions. Many coastal wetlands can adjust to predicted climate change, but human impacts, in combination with climate change, will significantly affect coastal wetland ecosystems. Management for climate change must strike a balance between that which allows pulsing of materials and energy to the ecosystems and promotes ecosystem goods and services, while protecting human structures and activities. Science-based management depends on a multi-scale understanding of these biocomplex wetland systems. Causation is often associated with multiple factors, considerable variability, feedbacks, and interferences. The impacts of climate change can be detected through monitoring and assessment of historical or geological records. Attribution can be inferred through these in conjunction with experimentation and modeling. A significant challenge to allow wise management of coastal wetlands is to develop observing systems that act at appropriate scales to detect global climate change and its effects in the context of the various local and smaller scale effects.  相似文献   

6.
通过对狮子潭柱状沉积物的放射性定年、地球化学与硅藻分析,反演桂林会仙岩溶湿地全新世的古湖沼演替,与其响应的气候变迁与人类活动记录。放射性210Pb、14C定年结果显示该湖在6 400 cal BP开始有湖积物保存,在2 700 cal BP—公元1943年间有沉积间断事件,且于公元1943年再度沉积。在6400—5 200 cal BP,高比例的浮游型硅藻反映高水位状态,可对应到气候暖湿的中国全新世大暖期鼎盛期。在5 200—2 700 cal BP,沉积物内稀酸可溶相Ca、Mg、Sr浓度降低,Mg/Ca、Sr/Ca值明显增加,且浮游型硅藻几乎消失,显示当时湖泊水位显著降低,气候逐渐变干。在公元1943年沉积物再度沉积,可能与战争造成人口迁徙与废耕有关。自公元1973年以来,硅藻壳片大量堆积,反映人类过度活动造成藻华的现象。湖泊沉积物内硅藻组成及沉积物的地球化学特征能够很好地反演古气候、环境变迁。  相似文献   

7.
黄河源区高寒植被主要特征初探   总被引:3,自引:2,他引:1  
位于青藏高原东北部多年冻土与季节冻土交错带的黄河源区高寒生态环境及其变化一直备受关注. 气候变暖、冻土退化条件下,为了解黄河源区不同冻土区植被状况,在源区布设了4个场地:查拉坪(CLP,源区南部连续低温多年冻土区);扎陵湖南岸(ZLH,源区中南部岛状多年冻土区);麻多乡(MDX,源区西部的不连续多年冻土区);鄂陵湖北岸(ELH,源区中北部季节冻土区). 结合植被调查和场地监测,分析了源区各冻土区植被的差异. 结果显示:总体上低温多年冻土区植被盖度、多样性指数高,表现为连续多年冻土区(查拉坪)>不连续多年冻土区(麻多乡)>季节冻土区(鄂陵湖北岸),其中岛状多年冻土区(扎陵湖南岸)例外,该场地平均盖度最低,多样性指数介于查拉坪和麻多乡之间,局部植被退化较严重. 均匀度指数均表现为扎陵湖南岸最高,查拉坪次之. 地上生物量调查结果显示:查拉坪>麻多乡>扎陵湖南岸>鄂陵湖北岸,且鄂陵湖北岸出现指示植被退化的植物. 尽管黄河源区高寒植被研究为理解冻土退化条件下的生态环境变化提供了一些基础数据,评估气候变化和冻土退化的生态和水文效应需要更系统的调查和监测研究.  相似文献   

8.
以卧龙湖湿地的基本概况和有关监测资料为基础,对卧龙湖湿地的历史演变规律以及1975~2004年湖水位观测数据和调查资料进行分析,研究近29年来卧龙湖水位的变化趋势和水位下降的成因.运用水量平衡计算方法,得出气候、水文等自然因素和人为因素是导致近30年来入湖水量减少和水位下降的根本原因.  相似文献   

9.
Reconstructing the environmental and hydrological response to millennial-scale fluctuations of climate-sensitive areas of mid-latitudes is crucial to understanding the Late Pleistocene climate in terrestrial inland regions. We use sedimentological and geochemical proxies (e.g. lithology, gain size, loss-on-ignition, soluble salts, X-ray fluorescence elements) from Balikun Lake in the eastern Tienshan Mountains, to elucidate variations in sedimentation, water chemistry and watershed weathering intensity of the Late Pleistocene interval (~20−60 ka). The record documents high-frequency oscillations and alternating hydrological patterns on (multi-) millennial timescales. Balikun Lake changes from nearly fresh to brackish and finally to hypersaline conditions during MIS3. The warm and wet climate during the early MIS3 facilitated regional vegetation and bioproductivity. Halite sedimentation took place from the middle to late MIS3, indicating a gradual drying trend. This reduced the lake area and vegetation cover, as well as weakened the chemical weathering rates of the watershed. These new interpretations challenge the idea of climate amelioration with the highest lake level and wettest conditions prevailing in the arid areas of north-west China during the late MIS3, indicating a possible westerlies-dominated Late Pleistocene climate in these areas. The evolution of the palaeohydrological regime and climate change in the Balikun Basin correlated well with the millennial-scale high-latitude Atlantic climate superimposed on the Northern Hemisphere summer insolation.  相似文献   

10.
Cores and outcrops from the southern shore of Lake Biel were studied to reconstruct the nearshore environment of the lake between ca. 12000 and 5000 yr BP. Core correlations were established by lithostratigraphical and pollen analytical correlations. From the Allerød to the Preboreal time quiet hydrodynamic conditions favoured the deposition of lake marl in the littoral zone and peat on the shore. Between the Preboreal(?) and the Atlantic the littoral zone shows a higher hydrodynamic environment with allochthonous material, whereas peat and clay layers are recorded from the shore. During the Older Atlantic severe erosional episodes caused the erosion of Boreal, Preboreal and Younger Atlantic layers. The previously described long hiatus between the Allerød and the Boreal time can now be connected with these erosional episodes. From Younger Atlantic to Subboreal time the littoral zone displays quiet conditions again with sedimentation of lake marl. On the basis of these results a lake level curve for Lake Biel is proposed: high lake level stands can be traced during the Allerød, Boreal, Older Atlantic and Younger Atlantic biozones; low lake level stands are found during the Allerød, Younger Dryas, Preboreal and Older Atlantic biozones.  相似文献   

11.
岱海沉积记录的季风/干旱过渡区全新世适宜期特征*   总被引:4,自引:27,他引:4       下载免费PDF全文
岱海两支岩芯独立的高分辨率代用指标序列揭示了季风/干旱过渡区全新世适宜期的气候环境特征。研究表明,在约7.9~3.5kaB.P.期间,岱海流域出现植被繁盛、生产力相对增强和降水丰富的状况,显示气候条件相当适宜;而在约10.0~7.6kaB.P. 期间,流域气候以相对干燥为特征。这与早先认为的岱海流域全新世初期为适宜期,且降水丰富的结果明显不同。比较岱海与鄂尔多斯-内蒙古高原中部其他湖沼记录,季风/干旱过渡区的气候适宜期基本集中在约8~3kaB.P.的全新世中期,尽管各记录在适宜期的起止时间、表现特征上存在一些差异。这些差异的产生,一方面可能体现了不同的局地地形、植被、水文条件等对区域水热条件的不同反馈,另一方面则可能暗示不同的沉积序列、测年材料之间难以进行精细的对比。沉积序列的连续性、稳定性及高分辨率、测年材料的适用性是进行全新世气候、环境特征研究的前提。  相似文献   

12.
黄旗海湖泊沉积记录的早中全新世大湖期环境的差异性   总被引:2,自引:0,他引:2  
内蒙古黄旗海H6剖面揭示了最近间冰期古湖泊涨缩的一个完整旋回。基于OSL年代、粒度并结合沉积物地球化学等数据,分析了黄旗海在早、中全新世(约(11.4±1.1~6.7±0.7)ka)大湖期指标记录特点与环境意义。研究认为黄旗海全新世大湖期可分为三个阶段:1)(11.4±1.1~9.3±0.9) ka BP,半深水环境、湖水盐度低、流域存在有利于化学风化的湿润气候条件;2)(9.3±0.9~7.7±0.7) ka BP,湖水变浅、湖泊萎缩、湖泊盐度升高,流域可能存在不利于化学风化的干燥气候;3)(7.7±0.7~6.7±0.7) ka BP,大湖期结束,指标记录存在剧烈波动,揭示气候具有宽幅震荡特征。同时,研究初步认为Mn/Li比值可以作为流域化学风化的指标指示。  相似文献   

13.
祁连山区多年冻土空间分布模拟   总被引:1,自引:1,他引:0  
祁连山区位于青藏高原东北边缘,是亚洲水塔重要的组成部分,多年冻土的变化对生态系统和水资源平衡有着重要影响。基于青藏高原第二次综合科学考察、道路勘察钻孔点以及前人所获得的多年冻土下界资料,回归得出祁连山区多年冻土下界统计模型,借助ArcGIS平台在DEM数据的支持下,模拟出祁连山区多年冻土空间分布图。结果表明:祁连山区多年冻土分布的下界具有良好的地带性规律,表现为随经纬度增加而降低的规律;祁连山区多年冻土在空间分布上呈现出以哈拉湖为中心向四周扩散的分布格局;祁连山区总面积约为16.90×104 km2,其中多年冻土面积约为8.03×104 km2,占总面积约47.51%。多年冻土区与季节冻土区之间存在着有不连续多年冻土分布的过渡区,过渡区面积约1.43×104 km2,占总面积约8.46%。  相似文献   

14.
The Late Pleistocene stratigraphy from the Severnaya Dvina‐Vychegda region of northwestern Russia is revised based on investigations of new localities, revisiting earlier localities, introduction of about 110 new OSL dates and burial depth corrections of earlier published OSL dates, in addition to six new radiocarbon dates. Most of the OSL samples studied here are from fluvial and subaquaeous sediments, which we found to be well bleached. Six chronostratigraphical units and their sedimentary environment are described, with the oldest unit consisting of pre‐Eemian glacial beds. For the first time, Early Weichselian sediments are documented from the region and a fluvial environment with some vegetation and permafrost conditions is suggested to have persisted from the end of the Eemian until at least about 92 ka ago. The period in which a Middle Weichselian White Sea Lake could have existed is constrained to 67?62 ka, but as the lake level never reached the thresholds of the drainage basin, the lake probably existed only for a short interval within this time‐span. Blocking and reversal of fluvial drainage started again around 21?20 ka ago when the Fennoscandian Ice Sheet advanced into the area, reaching its maximum 17?15 ka ago. At that time, an ice‐dammed lake reached its maximum water level, which was around 135 m above present sea level. Drainage of the lake started shortly after 15 ka ago, and the lake was emptied within 700 years. Severe periglacial conditions, with permafrost and aeolian activity, prevailed in the area until about 10.7 ka.  相似文献   

15.
Macroscopic plant remains, pollen, insect and mollusc fossils recovered from a cut bank on the Red River in North Dakota, USA, provide evidence that an extensive wetland occupied the southern basin of Lake Agassiz from 10 230 to 9900 14C yr BP. Marsh‐dwelling plants and invertebrates had colonised the surface of a prograding delta during the low‐water Moorhead Phase of Lake Agassiz. A species of Salix (willow) was abundant along distributary channels, and stands of Populus tremuloides (aspen), Ulmus sp. (elm), Betula sp. (birch), and Picea sp. (spruce) grew on the better‐drained sand bars and beach ridges. Most of the species of plants, insects, and molluscs represented as fossils are within their existing geographic ranges. Based on a few species with more northerly distributions, mean summer temperature may have been about 1–2°C lower than the present day. No change in species composition occurred in the transition from the Younger Dryas to Preboreal. At the time that the wetland existed, Lake Agassiz was draining either eastward to the North Atlantic Ocean or northwestward to the Arctic Ocean. The wetland was drowned during the Emerson Phase transgression that resulted in meltwater draining southward to the Gulf of Mexico after 9900 14C yr BP. Copyright © 2005 John Wiley & Sons, Ltd.  相似文献   

16.
高永刚  赵慧颖  李翀  宋卫士  孟军 《冰川冻土》2012,34(6):1310-1318
利用1961-2005年呼伦湖湿地的气象及水文资料, 基于水量平衡方程, 以湿地各年水量盈亏累积量(∑ΔW)为因子, 建立了呼伦湖湿地水域面积和水位高程的消长对气象及水文因子协同作用的响应模型, 分析了湿地水域面积和水位高程的消长对影响因子的响应特征.结果表明:呼伦湖湿地消长对气象及水文因子的年代际变化有很好的响应.年平均气温每增加1 ℃, 湿地水域面积和水位高程分别减少134.5 km2和93.44 cm; 年降水量每增加10 mm, 二者分别增加10.2 km2和7.1 cm; 年蒸发量每增加10 mm, 二者分别减少1.1 km2和0.9 cm; 年径流量每增加1×108m3, 二者分别增加4.8 km2和3.3 cm. 年平均气温的升高和年降水量的减少变化对湿地消减的贡献率分别为13.6%和86.4%, 当前降水量的变化在湿地消长中占主导作用.如果不考虑人类活动的影响, 根据未来较低排放(SRES-B2)情景下气候预测, 初步估算2040、 2070和2100年湿地水域面积将分别减少275.8 km2、 442.8 km2和583.6 km2, 水位高程分别下降191.6 cm、 307.6 cm和405.4 cm, 未来气温的变化在湿地消长中占主导作用.呼伦湖湿地在未来暖干化趋势下, 湿地水资源短缺加剧, 湿地水域面积萎缩和水位高程下降将加快.  相似文献   

17.
Late Quaternary sediments in a permafrost environment recovered from the Elgygytgyn Impact Crater were studied to determine regional palaeoenvironmental variability and infer past water-level changes of the crater lake. Stratigraphic analysis of a 5 m long permafrost core is based on various lithological (grain size, total organic carbon, magnetic susceptibility) and hydrochemical (oxygen isotope composition, major cation content) properties and pore ice content. The results show that alluvial sediments accumulated on top of cryogenically weathered volcanic rock. Changes in the hydrochemical properties reflect different stages of cryogenic weathering. The lithological characteristics mark the transition from an erosive site to a site with accumulation. This environmental change is linked to a relative lake level highstand at >13 000 yr BP, when a shoreline bar was formed leading to slope sedimentation. Lake level dropped by 4 m during the Holocene.  相似文献   

18.
中国冻土地下水研究现状与进展综述   总被引:6,自引:5,他引:1  
叶仁政  常娟 《冰川冻土》2019,41(1):183-196
冻土地下水系统不仅在寒区水文循环中扮演着重要的角色,同时也在寒区水文过程和地表过程及其科学研究中起到了集蓄、融冻和泄流等至关重要的作用。近几十年随着全球气候变暖及人类活动(寒区工程量)的增加,冻土退化趋势显著,这一过程改变了寒区的水文地质条件,导致地下水动态特征发生显著变化,从而引起一系列的生态环境变化。近些年,诸多学者通过构建水热耦合模型来研究冻土地下水的运动机理、分布状况和季节动态,促进了寒区地下水理论知识的发展,推动了寒区水文地质知识体系的进步。本文主要针对目前我国多年冻土区地下水的研究现状进行了分析、整理、归纳,为进一步研究气候变化下地下水系统的发展与演变,以及对生态环境的影响提供参考依据。  相似文献   

19.
青海湖近20年水域变化及湖岸演变遥感监测研究   总被引:14,自引:0,他引:14       下载免费PDF全文
近年来,由于气候条件的变化,青海湖水位呈下降趋势,水域面积逐年缩小。选用1986年至2005 年的美国Landsat-5卫星图像数据对青海湖地区进行长达20年的跟踪监测研究结果表明,2004年青海湖水域面积比1986年缩小了约80 km2,与1989年相比,水域面积缩小了129 km2;水域面积最大和最小的年份分别是 1989年和2001年,面积相差135 km2。在过去20年间,青海湖水域面积的变化有2个明显的特征,第一,整体上呈现出十分明显的下降趋势;第二,年度变化呈现了在整体下降的同时又有短期小幅回升的现象,回升时间不超过2年。湖岸线年度变化遥感监测资料表明,青海湖湖岸线的年度推进量在40-200 m之间。在与青海省及湖区同期气象资料的分析对比后发现,湖区水域面积与地表蒸发量、气温以及地表温度的年度变化呈负相关, 且变化的趋势有较好的一致性。  相似文献   

20.
青藏高原可可西里盐湖水位上涨趋势及溃决风险分析   总被引:1,自引:1,他引:0  
2011年位于可可西里腹地的卓乃湖溃决引起的盐湖水位上涨和面积增大趋势仍在快速发展。遥感资料显示,卓乃湖溃决后,盐湖面积持续增加,从2012年的134.1 km2一直持续增大到2018年的197.5 km2,尤其是2016-2018年增加较快,面积增加了42.0 km2,即平均每年增加14.0 km2。水位监测数据显示,2016年5月20日至2018年11月11日期间,盐湖水位共上升了8.241 m,年平均上升2.747 m。目前盐湖的面积仅比模拟的溢出面积小19.3~21.1 km2;湖泊水位仅比分水岭最低处低4.09 m。按照2016-2018年面积和水位变化趋势,预计盐湖将在未来1~2年内可能发生溢水溃决。研究表明:近年来区域降水增加、卓乃湖溃决后地下水释放、上游湖泊出水口可能存在侵蚀扩大导致湖水继续向下输送等原因是导致盐湖水位持续上涨和面积快速增大的主要原因。利用水库溃坝预测分析模型,对盐湖溢水溃决冲沟形成时洪峰流量预测表明,盐湖溢水溃决时将形成巨大的洪峰流量,洪水将对青藏公路、青藏铁路和兰西拉光缆等造成危害,建议尽快开展盐湖潜在的湖水外溢途径地质条件调查,并设计防治措施。  相似文献   

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