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1.
泥炭地作为环境变化的敏感带,成为当前环境气候研究的热点之一.植硅体的抗腐蚀、耐高温、个体小、产量高的特点为第四纪环境变迁的研究提供了有效途径.相比孢粉分析而言,植硅体在提高分辨率和恢复局部区域环境方面体现了其优越性.对泥炭沉积中的植硅体进行了分析,初步证实植硅体对重建泥炭地古环境变迁模式起着重要的作用,对提高古气候变化的分辨率有很大的帮助.  相似文献   

2.
了解不同区域表土植硅体组合特征及其对气候环境的响应过程,是利用植硅体指标恢复古植被和古气候的基础。本文通过对河北坝上地区103块表土植硅体的分析鉴定,共统计出棒型、尖型、帽型、鞍型、哑铃型、齿型、块状、扁平状、扇型、三棱柱型、锥骨状、导管型、弓型和特殊型14种植硅体类型,其中植硅体类型主要以棒型和尖型为主,而短细胞植硅体的含量较少。通过研究区相对暖湿区、暖干区、冷湿区和冷干区的表土植硅体组合特征对比发现,在相对较冷的区域棒型量含量较高,在相对较暖的区域扇型、扁平状和鞍型含量较高,在相对较湿的区域尖型含量较高,在相对暖湿的区域块状含量较高,在相对冷湿的区域齿型含量较高,这表明研究区表土植硅体组合特征对气候环境响应较为敏感。本研究成果可为重建坝上地区古植被和古气候提供基础资料。  相似文献   

3.
东北地区泥炭表层沉积中植硅体分布特征   总被引:2,自引:0,他引:2  
表土沉积物中的植硅体分析是了解第四纪沉积物中植硅体组成的重要途径,也是重建第四纪古环境的基础。对东北地区跨越3个气候带、6个地区的41处泥炭地表土中的植硅体进行提取,鉴定出东北泥炭表土中主要发育哑铃型、扇型、鞍型、方型、长方型、梯型、尖型、帽型、齿型、棒型和其它等11种植硅体类型。分析显示,它们的分布与纬度、地形和温热条件具有明显关系,即哑铃型、鞍型、扇型、方型、长方型和梯型植硅体随纬度和海拔较高而含量较小,其余类型反之;较高温度条件对应扇型、哑铃型植硅体含量较高,较高湿度对应扇型植硅体含量较高。  相似文献   

4.
长白山区湿地表土植硅体特征及其环境意义*   总被引:1,自引:0,他引:1       下载免费PDF全文
湿地在全球环境变化中扮演着十分重要的角色,湿地表土中的植硅体分析是恢复第四纪古环境的重要途径。文中选取长白山区的桦南到哈尼一线的6处湿地表土,并采用PCA和CA分析植硅体组合的环境指示意义,结果显示:温度因子是造成长白山不同湿地表土植硅体组合差异的第1环境因子,且植硅体的种类和含量与采样点上覆植被、湿度与海拔等环境条件都存在相关性。结合方差分析和植硅体大小变化趋势分析曲线可以看出,不同表土中符合方差分析条件的植硅体类型的大小随着温度的升高而增大。总体来看,长白山区6处湿地中,植硅体类型基本相同,但温暖指数和植硅体的大小差异较显著,说明植硅体大小及其组合对温度都有较敏感的响应。  相似文献   

5.
对敦化北部山地205 cm深泥炭剖面中的植硅体进行提取、鉴定和分析,结合AMS14C测年,重建研究区近2 ka的古气候环境过程,探讨其变化规律及影响因素。植硅体组合、有序聚类和植硅体指数变化趋势显示,研究区泥炭沼泽经历了4个显著阶段:即45-680 A.D.暖湿阶段;680-1340 A.D.温暖偏干阶段;1340-1870 A.D.由干转湿的寒冷阶段;1870-2017 A.D.转暖、干湿波动阶段。其中,680-1225 A.D.对应中世纪暖期(MWP),1340-1870 A.D.对应小冰期(LIA)。在此气候变化背景下,泥炭沼泽发展经历了由缓慢逐渐加快的过程。对比太阳辐射和太阳活动的变化、石笋δ18O序列、重建的东北地区古温度以及Niño3.4重建曲线,泥炭剖面的植硅体分析显示MWP和LIA期间的古气候过程受到太阳活动、太阳辐射、季风环流和ENSO(El Niño-Southern Oscillation)的控制。  相似文献   

6.
通过对中国图们江河口湖沼沉积剖面的植硅体组合的分析,划分出该剖面自17.1~2.247 kaB.P.期间的6个植硅体组合带,分别对应冷干-凉湿-冷干-凉湿-温暖-温湿的气候阶段.将分析结果与本剖面Na、K、Ba、Cu、Pb、Fe、Mn分析相对比,发现植硅体对气候湿润程度的反映不如Na、K、Fe敏感,但是比其它指标,如泥炭地发育程度对湿润度的反映,要灵敏得多.区域对比发现,本剖面的植硅体古气候过程存在着区域上的良好响应,对全球变化与区域响应研究起着积极作用.  相似文献   

7.
长白山泥炭湿地主要植物植硅体形态特征研究   总被引:3,自引:1,他引:2       下载免费PDF全文
对长白山地区常见的泥炭地25个属31个种植物进行了植硅体形态鉴定统计,共发现植硅体类型15种,它们分别是硅化气孔、棒型、扇型、板型、硅质突起、尖型、导管型、帽型、齿型、哑铃型、鞍型、多边帽型、毛发型等。除禾本科和莎草科、菊科部分植物植硅体含量高外,木贼科、堇菜科、茜草科、蓼科等部分植物植硅体的含量也较高。禾本科植物的短细胞植硅体对植物分类有意义,但可能因采样环境和种类差异等原因,长白山泥炭湿地禾本科植物的植硅体在形态和数量上都与其他区域同类研究结果有所差异,如禾本科早熟禾亚科的菵草中新发现了含量丰富的枕木型植硅体,黍亚科的荩草和水稗中还发现少量帽型植硅体; 另外菊科兴安一枝黄花和齿苞风毛菊含有大量的特殊的尖形植硅体。硅化气孔宽度大小可指示环境湿度状况,对硅化气孔的数量和大小的深入研究将对古环境和古CO2浓度的恢复有一定帮助。长白山泥炭湿地植物的植硅体与植物的分类关系密切,湿地植物植硅体中硅质突起、棒型、哑铃型和尖型植硅体特征组合代表湿冷组合,本研究中的5块泥炭湿地植硅体的组合特征受纬度变化影响不明显。  相似文献   

8.
植硅体研究及其应用的讨论   总被引:11,自引:0,他引:11  
植硅体是填充于高等植物细胞组织中的非晶质含水二氧化硅颗粒,记录了它所起源的植物细胞的特征,可以在土层或沉积物中很好地保存下来。通过植硅体的形态鉴定和确定组合带,可以恢复古植被、讨论植物群落演替,推断第四纪古气候环境及其变迁,指导地层划分对比。结合数学方法可以进一步计算出各种古环境气候的参数值,从而用以研究气候波动和发现气候事件,进行全球对比研究。在考古学、土壤学、农学和医学等领域,植硅体也得到了广泛的应用。  相似文献   

9.
对位于甘肃省平凉县大寨村的平凉剖面(0–142 cm)进行年代测试、孢粉及植硅体分析。从孢粉角度反映8.50 Ka BP气候经历了冷干—凉干—偏凉偏湿—凉干—偏凉偏湿—偏凉偏干的变化过程。从植硅体的角度经历了凉湿—暖湿—暖湿(具有变冷的趋势)—凉湿—偏凉偏干的变化过程。选取含量较高且具有典型环境指示意义的四种科属孢粉(云杉属、松属、禾本科、蒿属)与四种类型植硅体(扇型、长方型、棒型、尖型)进行对比,结果表明:孢粉记录的气候与植硅体记录的气候特征总体趋势相同,但存在一定的差异。孢粉含量较为丰富的气候带与植硅体气候带有很好的对应关系,反映的气候类型较为准确;当孢粉带中其他花粉含量很少,仅含有较多传播能力强、不具代表性的花粉(如松属)时,孢粉指示的气候环境准确性较低。而植硅体样品在整个黄土剖面中含量都较高,反应的气候特征较为准确,因而在孢粉含量较少的黄土高原,相较于孢粉而言,植硅体是较为有效的古气候研究手段。  相似文献   

10.
沉积地层中古气候参数的多层次性以及解释过程中的人为性使古气候重建结果带有一定的误差。采用Morlet一维连续小波变换对敦化盆地吉祥和榆树剖面中植硅体记录的古气候参数进行时频分析,探讨植硅体反演的古气候变化过程。结果表明,吉祥剖面在频率域尺度a≥30时的小波变换系数波谱及能量变化与榆树剖面在a≥20时存在相似性,且均具有6个不同能量聚集区域,因此把敦化盆地晚全新世以来的古气候变迁分为6个阶段:公元前730年以前为温暖降温期;公元前730—公元前205年为温和湿润并逐渐变凉时期;公元前205—公元255年为温暖时期;公元255—525年为降温变冷时期;公元525—1220年为温暖湿润时期;公元1220年以来进入气候波动比较频繁时期。Morlet一维连续小波变换可以有效处理古气候信息的叠加,减小人为性分析带来的误差,在古气候分析中具有很大应用潜力。  相似文献   

11.
位于沈阳市东部和西部的2个钻孔剖面均有晚更新世晚期泥炭发育。14C测年结果表明:东部钻孔泥炭层形成于玉木亚间冰期晚期,西部泥炭层形成于玉木亚间冰期结束之后。孢粉分析结果表明:东部钻孔剖面中的泥炭以暖温带落叶阔叶植物花粉为主,指示温暖湿润的气候环境;西部钻孔剖面中的泥炭以温带草本被子植物花粉为主,山地针、阔叶植物花粉为辅,指示温干偏湿的气候环境。定量古气候分析结果表明,玉木亚间冰期晚期沈阳地区与现今气候相当;玉木亚间冰期结束之后,沈阳地区的气候比现在稍冷。  相似文献   

12.
《煤田地质与勘探》2021,49(5):190-199
The Cretaceous is a typical period for studying the greenhouse climate and the earth system interactions, and the world's most extensive terrestrial strata are mainly in East Asia, especially in China. Continental sediments can effectively reflect the paleo-climate change, but the previous studies of the Late Cretaceous paleo-climate, based on the combined characteristics of continental climate-sensitive sediments, were barely found in China. To obtain the Late Cretaceous paleo-climate characteristics of China, the distribution characteristics of different continental climate-sensitive sediment types in the early, middle and Late Cretaceous in China were studied in detail. According to the distribution and combination characteristics and types of continental climate-sensitive sediments, seven climate types can be divided: 1) warm-humid and warm-dry climate; 2) hot and dry climate; 3) hot-dry and arid climate; 4) hot-dry and semiarid climate; 5) hot-dry and hot-wet climate; 6) hot-dry and warm-humid climate; 7) hot-dry and warm-dry climate. The results show that in the early Late Cretaceous, the hot and dry climate was the most widespread, followed by warm-humid and warm-dry climate, but the climate was drier than the paleo-climate of the previous study of Early Cretaceous. Hot and dry climate zone became wider in the Coniacian and Maastrichtian; furthermore, it covered Xinjiang to the east of China from east to west after the Santonian Period. The hot-dry and semiarid climate zone was nearly latitudinally distributed from the northwest to the southeast and it shows a further increase in aridification. Global geological events, paleogeographic features and regional tectonic evolution had significant impacts on the paleoclimate of China in the Late Cretaceous, such as global eruptive events of volcanoes led to the temperature increase in China in the early Late Cretaceous; coastal mountain ranges in southeastern China led to the drying of the Late Cretaceous climate in southern China; Xuefeng Mountains, Wuling Mountains, Nanling Mountains and Tai-hang Mountains were the dividing line between the hot and dry climate zone and hot-dry and arid climate zone in the early Late Cretaceous, and Altun Mountains were the dividing line between the southeastern section of the hot and dry climate zone in western China in the middle Late Cretaceous.  相似文献   

13.
气候变化是影响全球泥炭沼泽分布和演化的最重要的因子之一,而泥炭地由于自身的特点成为过去气候变化的良好地质档案。在介绍泥炭沉积过程及不同类型的泥炭沼泽的发育特点基础上,从过去气候变化的常用泥炭记录和泥炭地碳记录等方面总结了国际上针对泥炭地反演气候变化研究的若干重要进展,重点剖析了泥炭腐殖化度、植物残体、有壳变形虫、生物标志化合物、同位素和孢粉等泥炭地过去气候变化重建的代用指标的适用范围和优缺点,同时也分析了泥炭地碳累积和碳循环等热点研究问题。最后从泥炭地作为过去气候变化的记录档案、泥炭地对现在气候变化的响应与反馈及在泥炭地进行现场气候变化监测与实验等方面对泥炭地与气候变化研究进行了展望。  相似文献   

14.
35000 aBP以来四川洪雅的孢粉记录与气候变化   总被引:1,自引:0,他引:1  
运用古气候参数方法对四川洪雅GMH剖面进行孢粉分析,结合定年数据,分析出本区自晚更新世晚期以来的植被变化和气候变化并与我国南方石笋记录等进行对比分析。研究表明:从大约35670 aBP以来,四川洪雅地区总体经历了暖湿—温润—凉干—温润—冷干—温湿—凉润—暖湿—温润的气候变化过程,其间多有反复;GMH剖面孢粉记录与我国南方石笋记录在古气候变化的大趋势上基本一致,对H3、H2、H1、YD等气候事件反映明显;E带(21100-17000 aBP)对应的降温减湿期较石笋记录提前出现与研究区位于第一、二级阶梯过渡地带、山前台地的地貌特征有关;对比发现I带中的温干气候期(约2150aBP前后)具有一定的区域性意义。   相似文献   

15.
In 2008, the very extensive tropical peats were estimated to be about 182 million ha spanning South America, Asia and Africa. About 20.3%(36.9 million ha) of this area exist in Asia. Peats are classified based on their degree of decomposition, namely Fibrists, Hemists, Saprists and Folists. This makes them different in characteristics. The activities of microorganisms vary in different types of peat due to, for example, the sapric layer of well humified peat can provide water and food to microorganisms during heat stress. In another scenario, deeper peat is older and typically has lower levels of labile carbon to provide substrate for microbes compared to surface peat. A complete understanding of the microbial communities in different layers of peat is essential as microorganisms play major roles in peat decomposition and are important to ecosystem processes. These peats are a very important global carbon(C)store or reserve and could severely impact climate change if not managed well. Peatlands can store as much as 40 to 90 Gt C. Mis-management of peats could severely impact the environment particularly the emission of carbon into the atmosphere. For instance, clearing of peatlands using fire has been reported to release an estimated 88 t C ha~(-1) to the atmosphere. There are several factors which influence the environmental consequences of tropical peat especially in relation to climate change. The main influences are:(i) changes in temperature,(ii) changes in precipitation or rainfall,(iii) changes in atmospheric composition, and(iv) fire and haze. This paper is a brief review on these four influences in relation to climate change. It is apparent from the brief review that there is a need for continued short and long-term research to better understand tropical peats and how they affect our climate. This will hopefully provide the basis for predicting better what could happen under various scenarios.  相似文献   

16.
依据沉积环境控制烃源岩发育理论,研究了琼东南盆地崖北凹陷崖城组煤系烃源岩的发育环境及主控因素,并建立了研究区崖城组煤系烃源岩的发育模式。崖城组煤系烃源岩主要形成于半咸水、还原-弱还原的扇三角洲平原河道间泥炭沼泽环境和半咸水、弱还原-弱氧化的潮坪潮上带-潮间带泥炭沼泽环境。沉积环境、古气候条件、相对海平面变化以及古构造控制煤系烃源岩的发育,其中沉积环境控制着煤系烃源岩中有机质类型、有机质丰度、显微组分及煤层的厚度,古气候条件提供了煤系烃源岩发育的物质基础,相对海平面变化影响着煤系烃源岩的展布及保存条件,古构造则是聚煤盆地形成、演化的主要控制因素。崖城组煤系烃源岩有两种发育模式,一是在扇三角洲平原河道间泥炭沼泽环境中水体的还原性起主导作用,二是在潮坪潮上带-潮间带泥炭沼泽中高生物生产率起主导作用。  相似文献   

17.
陈戴生  刘武生  贾立城 《铀矿地质》2011,(6):321-326,344
文章在分析我国中新生代古气候演化的基础上,指出早侏罗世、中侏罗世及早白垩世、晚白垩世是我国盆地砂岩型铀矿形成的有利古气候期,并在盆地中形成了相应的赋矿层位;建立了我国中新生代产铀盆地3种古气候演化系列;探讨了近代气候对盆地铀成矿的控制作用。  相似文献   

18.
Peat humification analysis is a widely used palaeoclimate proxy. However, recent studies combining humification with other proxies of mire surface wetness have identified inconsistencies between the records. We illustrate this inconsistency by comparing humification records with plant macrofossil profiles in three ombrotrophic bogs. Peat humification is a measure for organic decay and reflects changing palaeohydrological conditions and former vegetation composition. The resulting signal is considered to be a derived response to climate. However, even minor changes in the botanical composition of the peat may have a significant influence on humification measurements. The implications of this for palaeoclimate studies are discussed. The assumption that climate has been the major influence on variations in humification rests on the botanical composition being relatively homogeneous throughout the peat profile, and is therefore questionable. Consideration should be given to developing species-specific measures of humification and to testing the assumption that the major influence on peat humification is the surface wetness of the bog (and therefore climate).  相似文献   

19.
Just like contemporary sediments, peat itself is a good repository of information about climate change, the effects of volcanic activity on climate change have been truly recorded in peat, since it is a major archive of volcanic eruption incidents. A section of sand was identified as tephra from the Jinchuan peat, Jilin Province, China, for the grains look like slag with surface bubbles and pits, characterized by high porosity, and loose structure with irregular edges and corners. According to the peat characteristics of uniform deposition, the tephra was dated at 2002–1976 a B.P. by way of linear interpolation, so the time of volcanic eruption was 15 B.C.–26 A.D. (the calibrated age). While the geochemical characteristics of tephra in this study are quite the same as those of tephra from the Jinlongdingzi volcano at Longgang and from alkaline basaltic magma, with the contents of SiO2<55%, and the similar contents to Al2O3 and Fe, but the contents of Na2O>K2O. We speculated that the tephra in this study came from the Longgang volcano group. Compared with 11 recorded volcanic eruption events as shown on the carbon and oxygen isotope curves of the Jinchuan peat cellulose, it is obviously seen that adjacent or large-scale volcanic eruptions are precisely corresponding to the minimum temperature and humidity. It seems that these volcanic eruptions indeed affected the local climate, leading to the drop of regional temperature and humidity. As a result, there was prevailing a cold and dry climate there, and all these changes can be well recorded in peat. So the comparison of volcanic eruption events with information about climate change developed from peat, can provide strong evidence for the impact of volcanism on climate change.  相似文献   

20.
Improved regional and interregional stratigraphic correlations of Pennsylvanian strata permit comparisons of vegetational changes in Euramerican coal swamps. The coal-swamp vegetation is known directly from in situ coal-ball peat deposits from more than 65 coals in the United States and Europe. Interpretations of coal-swamp floras on the basis of coal-ball peat studies are extended to broader regional and stratigraphic patterns by use of coal palynology. Objectives of the quantitative analyses of the vegetation in relation to coal are to determine the botanical constituents at the peat stage and their environmental implications for plant growth and peat accumulation. Morphological and paleoecological analyses provide a basis for deducing freshwater regimes of coal swamps.Changes in composition of Pennsylvanian coal-swamp vegetation are quire similar from one paralic coal region to another and show synchrony that is attributable to climate. Paleobotany and paleogeography of the Euramerican province indicate a moist tropical paleoclimate. Rainfall, runoff and evapotranspiration were the variable climatic controls in the distribution of coal-swamp vegetation, peat accumulation and coal resources. In relative terms of climatic wetness the Pennsylvanian Period is divisible into five intervals, which include two relatively drier intervals that developed during the Lower-Middle and Middle-Upper Pennsylvanian transitions. The climate during Early Pennsylvanian time was moderately wet and the median in moisture availability. Early Middle Pennsylvanian was drier, probably seasonally dry-wet; late Middle Pennsylvanian was the wettest in the Midcontinent; early Late Pennsylvanian was the driest; and late Late Pennsylvanian was probably the wettest in the Dunkard Basin. The five climatic intervals represent a general means of dividing coal resources within each region into groups with similar botanical constituents and environments of peat accumulation. Regional differences in basinal geology and climate were significant variables, but the synchronous control of paleoclimate was of primary importance.  相似文献   

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