首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到20条相似文献,搜索用时 156 毫秒
1.
硅藻广泛分布于湖泊沉积物中,其硅质骨骼的硅氧同位素组成(δ18O和δ30Si)通常可以记录当时水体的温度和同位素组成.近十年来,湖泊沉积物硅藻氧同位素组成(δ18Odia tom)被广泛用于指示湖区温度变化和水体氧同位素组成的变化.然而,迄今尚未见有对湖泊沉积物硅藻硅同位素的系统研究的报道.  相似文献   

2.
赛里木湖沉积物有机质变化特征及其环境信息   总被引:3,自引:0,他引:3  
在分析赛里木湖湖泊沉积物中氮含量(TN)、有机碳含量(TOC)及其碳同位素(δ~(13)C_(org))以及色素等指标的变化特征的基础上,结合沉积物中有机指标的环境意义的探讨,揭示了新疆赛里木湖湖泊沉积物中有机质所蕴含的环境信息.赛里木湖沉积物中总有机碳含量、总氮含量的变化反映了流域初级生产力的变化,沉积物色素变化是有机质保存条件的指标,间接指示了湖泊-流域水热配置环境.有机碳同位素(δ~(13)C_(org))反映了湖泊内外源的混合信息.结合有序样品聚类分析方法,可以将赛里木湖近代环境划分为四大发展阶段:1、各有机指标相对稳定;2、各有机指标明显波动;3、各有机指标显著增加;4、各有机指标快速增加.  相似文献   

3.
笔者在简略论述反映古气候、古环境的多种代用指标的基础上,讨论其在揭示地质灾害信息方面的意义,并分析从中提取地质灾害信息的方法和思路。认为在沉积物粒度判别基础上, 沉积物表现出的较低δ^18O值,较低δ13C值和较低碳酸盐含量以及较高的有机质含量特征可能指示了地质灾害方面的信息。  相似文献   

4.
自从Stuiver~([1])首次使用湖泊沉积物有机质碳同位素(δ~(13)Corg)恢复湖泊生产力变化以来,湖泊沉积物有机质碳同位素被广泛应用于古气候和古环境重建.  相似文献   

5.
对甘肃敦煌伊塘湖沉积物进行了野外钻探采样,采用光释光测年技术确定了沉积物的年代,测定了总有机碳含量(TOC)、碳氮比(TOC/TN)和有机质稳定碳同位素组成(δ13℃org)等环境代用指标.结果表明,23ka至今,湖区沉积物δ13℃org在-27.84‰~-22.86‰之间变化,可与TOC对比.干旱气候条件下湖泊沉积物的δ13℃org变化主要受到沉水植物和挺水植物含量变化的控制,生长于较深水的沉水植物δ13Corg值偏正,而生长于较浅水的挺水植物δ13℃org值偏负;另外,部分时期有外源陆生植物产生的有机质输入,影响沉积物的碳同位素值.总体上,干旱区湖相沉积物δ13Crg值可指示湖水面的变化、间接指示气候干湿变化.δ13Corg变化的时间序列显示出明显的冰期-间冰期变化,从末次盛冰期到全新世暖期可将伊塘湖的环境演化分为4个阶段:23~ 13ka是一个气候不稳定时期,整体呈冷干并且湖面水位偏低,但后期有转暖的趋势;13~9ka为冰期向全新世暖期的过渡阶段;9~5ka整体湖面水位偏高、气候暖湿,含有短时间的干事件;5ka至今有变干的趋势.23ka以来,伊塘湖区的湖泊环境演化受全球大气环流与水汽输送路径控制.  相似文献   

6.
通过对柴达木盆地察尔汗古湖贝壳堤剖面沉积物、生物壳体碳酸盐同位素及沉积物碳酸盐含量等多项指标的分析,探讨了贝壳堤剖面记录39.6~17.1kaB.P.(未校正14 C测年,下同)期间碳酸盐和贝壳化石碳氧稳定同位素的特征和相关关系,指出壳体化石及沉积物碳酸盐的碳氧同位素是湖泊水体温度和盐度的反映,其中δ18 O对温度的指示意义更敏感,是湖泊和古气候演化很好的代用指标。根据这些指标重建的古气候与环境变化显示,在39.6~35.5kaB.P.期间,柴达木盆地处于温暖湿润期,周围山地降水增加,盆地内湖泊发育;自35.5kaB.P.开始,气候较前期更加湿润,是湖泊发育的最佳期;22.1kaB.P.以后,气候逐步转入较温暖的干燥期,湖泊开始萎缩、退化;末期17.1kaB.P.气候环境急剧恶化,形成石盐结晶,湖泊高湖面演化史结束。  相似文献   

7.
通过对柴达木盆地察尔汗古湖贝壳堤剖面沉积物中总有机碳、有机质碳同位素及碳酸盐含量、碳氧同位素的分析, 并结合粒度数据, 将研究剖面所记录的古湖泊环境演化过程划分为5个阶段.其中254 (连续古湖泊沉积开始与第八层底部) ~210cm (距今39.7~35.8ka BP之间) 为湖泊发育期.210~185cm (距今35.8~33.6ka BP之间), 185~112cm (距今33.6~27.2ka BP之间) : TOC、CaCO3含量较高、δ18 O值偏正, δ13 Corg偏负, Mz值较低, 反映了当时温度较高, 湖水水位较高; 而112~55cm (距今27.2~22.3ka BP之间) 和55~0cm (距今22.3~17.5ka BP之间) : TOC、CaCO3含量较低、δ18 O值偏负, δ13 Corg偏正, Mz值较高, 表明了温度相对较低(但气候仍较温暖), 湖水水位较低, 湖泊处于退缩时期.其间分别在距今32.2~32.4ka BP、30.4~29.8ka BP和28.4~27.2ka BP出现了3次较大的退缩过程, 约22ka BP出现了一次气候突变.贝壳堤剖面揭示在39.7~18.5 14C ka BP之间柴达木盆地气候较温暖湿润, 形成高湖面.从18.2ka BP开始, 湖泊进入退缩阶段.到17.5ka BP快速形成盐壳, 高湖面持续历史结束.   相似文献   

8.
青海湖沉积物生物硅的环境意义初步研究   总被引:1,自引:0,他引:1  
湖泊沉积物中生物硅含量的变化已经被广泛应用于评价湖泊生产力和古气候变化研究,但大型湖泊不同位置生物硅含量的时空变化及其与环境要素之间的关系仍缺乏详细的现代过程研究.通过对青海湖不同位置表层沉积样品的生物硅含量测定,建立其空间分布模式及最近数百年生物硅含量的时间序列.结果表明,青海湖表层沉积物生物硅含量变化范围是1.75%~2.98%,平均值为2.25%.与世界其他湖泊相比,青海湖生物硅含量处于相对较低水平,可能与其特殊的地理位置和气候条件有关.青海湖生物硅含量的空间分布规律与沉积物质量堆积速率以及陆源组分含量(如SiO2)相反,而与化学/生物沉积组分(如CaCO3)含量的空间分布规律大体一致,说明生物硅的空间分布受到陆源碎屑物质的"稀释效应"影响.时间序列上,生物硅含量与SiO2含量呈相反变化趋势,与指示降雨量变化的C/N比值也是反相变化,说明生物硅含量在时间序列上也受与气候条件密切相关的陆源输入的影响.青海湖湖心低沉积速率区域的生物硅指标具有指示古气候变化的潜力.  相似文献   

9.
基于内蒙古河套盆地山前兵房沟湖相层剖面沉积物的粒度记录,结合~(14)C和光释光年代学测试,对比分析沉积物粒度敏感粒级及频率曲线特征,反演了河套古大湖150ka以来的湖泊水位变化。研究结果表明,河套古大湖水位变化经历了4个阶段:(1)初始形成阶段(150~130ka),河套古大湖处于浅湖环境,沉积物粒度由粗变细,湖泊处于水位上升期;(2)发展阶段(130~54ka),早期湖水面较高,处于深水环境,晚期沉积物粒度逐渐变粗,湖泊水位有所下降;(3)萎缩阶段(54~18ka),湖泊水位快速下降,细粒沉积物含量减少,中粗粒沉积物含量增大,湖泊水位迅速下降;(4)消亡阶段(18ka至今),由于山前活动断裂影响,阴山快速隆升,湖泊急剧萎缩,湖相层顶部被山间冲洪积物覆盖。控制河套古大湖湖泊水位变化的主要因素是构造运动和气候环境突变。  相似文献   

10.
通过对达则错沉积岩心有机质碳同位素(δ13C)和碳氮比(C/N)的分析,结合岩心浮游生物记录、营养盐记录以及温度和降水记录,探讨了过去一千年达则错沉积物有机质δ13C的气候环境指示意义.结果表明,达则错沉积物有机质主要以湖泊自生的水生生物碎屑混合物为主;过去一千年,达则错在受人类活动显著影响之前,气候变化是影响沉积物有机质δ13C形成的主要因素,在1050~1200 AD和1450~1650 AD气候寒冷干燥时段有机质δ13C值显著偏重,反之则相反;过去150年,湖泊沉积物有机质δ13C显著偏重,主要受人类活动导致湖泊营养盐浓度变化影响.本研究还表明对于营养结构较为单一,且西藏拟溞为绝对优势动物物种的半对流型湖泊,应用C/N值判断湖泊有机质来源是不可靠的,需要综合湖泊地理背景谨慎判断.   相似文献   

11.
中世纪暖期前后我国雷洲半岛地区的古气候变化   总被引:1,自引:0,他引:1  
本文对位于雷洲半岛湖光岩玛珥湖湖沉积物进行了年代学(137Cs、AMS 14C)及总碳(TC)、氮(TN)、无机碳(IC)的分析。对于湖光岩玛珥湖这一热带地区封闭湖泊而言,无机碳含量的变化可能受降水量-蒸发量控制。有机碳、氮的变化可能反映了湖泊生产率及营养状况的变化。在热带地区,湖水温度变化不大,温度可能不是藻类生长的主要控制因素,降水量的增加及湖泊营养物质的变化可能是有机碳、氮含量增加的主要原因。碳酸盐含量的高值期对应于有机碳、氮的低值阶段。1400a来碳酸盐含量有两个高值阶段,分别为AD 880~1260和AD 670~760.这两个高值阶段可能也是干旱期。湖光岩玛珥湖地球化学指标所揭示的干旱期与安徽龙感湖硅藻和孢粉的研究结果有较好的对应性,可能表明我国南部地区中世纪暖期可能存在一个干旱期。   相似文献   

12.
We studied the dissolved silica cycle in the water column of the North basin of Lake Lugano, Switzerland/Italy. Lake Lugano is a meromictic, eutrophic lake, permanently stratified below 100-m depth. A one-box model was used to calculate a silica mass-balance over 1993, based on various lake measurements, such as sediment traps, sediment cores, water analysis and biota countings. We found that the North basin of Lake Lugano is at steady state as far as dissolved silica is concerned. The primary source of dissolved silica in the lake is river input (about 80%), with diffusion from bottom sediments and groundwater input also playing a role. Atmospheric input is negligible. The main export of dissolved silica occurs via biogenic uptake by diatoms and final burial of their frustules in the bottom sediment. Loss of dissolved silica through the lake outflow only represents 15% of the total output. Of the total amount of Si exported to the lake bottom through diatom sinking, less than 20% is re-supplied to the surface water by diffusion. Thus, the lake acts as an important permanent sink for silica. The long residence time of dissolved silica in the lake (7 years) is related to the strong physical stratification of the lake. Only about 10% of the standing stock are available to phytoplankton uptake.  相似文献   

13.
A sediment core from Chuna Lake (Kola Peninsula, northwest Russia) was studied for pollen, diatoms and sediment chemistry in order to infer post‐glacial environmental changes and to investigate responses of the lake ecosystem to these changes. The past pH and dissolved organic carbon (DOC) of the lake were inferred using diatom‐based transfer functions. Between 9000 and 4200 cal. yr BP, slow natural acidification and major changes in the diatom flora occurred in Chuna Lake. These correlated with changes in regional pollen, the arrival of trees in the catchment, changes in erosion, sediment organic content and DOC. During the past 4200 yr diatom‐based proxies showed no clear response to changes in vegetation and erosion, as autochthonous ecological processes became more important than external climate influences during the late Holocene. The pollen stratigraphy reflects the major climate patterns of the central Kola Peninsula during the Holocene, i.e. a climate optimum between 9000 and 5400/5000 cal. yr BP when climate was warm and dry, and gradual climate cooling and an increase in moisture during the past 5400/5000 yr. This agrees with the occurrence of the north–south humidity gradient in Fennoscandia during the Holocene. Copyright © 2002 John Wiley & Sons, Ltd.  相似文献   

14.
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   

15.
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   

16.
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   

17.
The oxygen isotope composition of diatom silica (δ18Odiatom) is increasingly being used to reconstruct climate from marine and lacustrine sedimentary archives. Although diatoms are assumed to precipitate their frustule in isotopic equilibrium with their surrounding water, it is unclear whether internal processes of a given species affect the fractionation of oxygen between the water and the diatom. We present δ18Odiatom data from two diatom size fractions (3–38 and >38 µm) characterized by different species in a sediment core from Heart Lake, Alaska. Differences in δ18Odiatom between the two size fractions varies from 0 to 1.2‰, with a mean offset of 0.01‰ (n = 20). Fourier transform infrared spectroscopy confirms our samples consist of pure biogenic silica (SiO2) and δ18Odiatom trends are not driven by contamination. The maximum offset is outside the range of error, but the mean is within analytical error of the technique (± 1.06‰), demonstrating no discernible species‐dependent fractionation in δ18Odiatom. We conclude that lacustrine δ18Odiatom measurements offer a reliable and valuable method for reconstructing δ18Owater. Considering the presence of small offsets in our two records, we advise interpreting shifts in δ18Odiatom only where the magnitude of change is greater than the combined analytical error.  相似文献   

18.
通过对云南泸沽湖高分辨率沉积指标序列(硅藻、枝角类和孢粉)的对比分析,初步揭示了水生生物(硅藻、枝角类和水生孢粉)对末次冰盛期期间气候变化的快速响应过程.结果表明,硅藻群落组成首先响应末次冰盛期时期的开始变冷,枝角类滞后,水生孢粉则表现为渐进的响应过程.然而,泸沽湖沉积硅藻记录对末次冰期以来的短时间尺度气候快速变化的Heinrich和新仙女木事件并未有响应,揭示气候事件判别的准确性取决于指标直接响应气候的特征以及多指标的综合对比.综合西南季风区云南不同海拔湖泊沉积记录(硅藻、孢粉、摇蚊等)获得的2万年以来数据及序列表明,末次冰期千年尺度的气候突变事件( Heinrich 1、 B?lling/Aller?d暖期和新仙女木YD冷事件)在整个西南季风系统中都有反映,且气候事件变化区间及幅度存在区域差异,其根本原因是受不同气候系统、复杂地形(青藏高原)的制约.  相似文献   

19.
An empirical calibration for the oxygen isotope fractionation between biogenic silica and water was determined for diatom frustules sampled from living diatom communities in the Jemez Mountains of northern New Mexico, USA. Over a temperature range from 5.1 to 37.8 °C, the silica-water fractionation is defined by the equation 1000 ln α(silica-water) = 2.39(±0.13) × 106T−2 + 4.23(±1.49). This relationship is in close agreement with other published silica-water fractionation factors for laboratory cultured diatom samples; however, it is as much as 8‰ lower than equilibrium quartz-water fractionations and 3-4‰ lower than observed silica-water fractionations in diatomaceous silica collected from sediment traps and sediment cores. There are three possible explanations for the disparate silica-water fractionation factors observed in diatom silica: (1) silica does not precipitate in equilibrium with ambient water, (2) silica does precipitate in equilibrium with ambient water, but the silica-water fractionation factor for diatom silica is considerably less than the equilibrium fractionation factor for quartz-water, or (3) silica precipitation is influenced by a ‘vital’ effect, where the δ18O value of the water inside the diatom cell walls is lower than the δ18O values of ambient water.Post-mortem loss of organic material results in an alteration or ‘maturation’ of diatom silica in which silica reequilibrates with a silica-water fractionation closer to the equilibrium quartz-water fractionation. Alteration is likely to occur rapidly after the diatom frustule loses its organic coating, either as it settles through the water column or at the sediment-water interface; δ18O values recorded by paleo-diatom silica therefore do not record growing conditions but more likely record conditions at the sediment-water interface. In the case of lacustrine environments, where the bottom water remains at a nearly constant 4 °C, the reequilibration of diatom silica with bottom conditions could reduce or remove the conflating effects of temperature on δ18O values recorded by paleo-diatom silica and provide direct information on the δ18O value of the lake water.  相似文献   

20.
This article presents a new comprehensive assessment of the Holocene hydrological variability of Lake Ladoga, northwest Russia. The reconstruction is based on oxygen isotopes of lacustrine diatom silica (δ18Odiatom) preserved in sediment core Co 1309, and is complemented by a diatom assemblage analysis and a survey of modern isotope hydrology. The data indicate that Lake Ladoga has existed as a freshwater reservoir since at least 10.8 cal. ka BP. The δ18Odiatom values range from +29.8 to +35.0‰, and relatively higher δ18Odiatom values around +34.7‰ between c. 7.1 and 5.7 cal. ka BP are considered to reflect the Holocene Thermal Maximum. A continuous depletion in δ18Odiatom since c. 6.1 cal. ka BP accelerates after c. 4 cal. ka BP, indicating Middle to Late Holocene cooling that culminates during the interval 0.8–0.2 cal. ka BP, corresponding to the Little Ice Age. Lake‐level rises result in lower δ18Odiatom values, whereas lower lake levels cause higher δ18Odiatom values. The diatom isotope record gives an indication for a rather early opening of the Neva River outflow at c. 4.4–4.0 cal. ka BP. Generally, overall high δ18Odiatom values around +33.5‰ characterize a persistent evaporative lake system throughout the Holocene. As the Lake Ladoga δ18Odiatom record is roughly in line with the 60°N summer insolation, a linkage to broader‐scale climate change is likely.  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号