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1.
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   

2.
利用常规14C、加速器(AMS)方法对柴达木盆地察尔汗湖一典型古湖相沉积剖面系统测年,并对测年结果进行不同组分和不同实验室对比,确定该剖面发育于察尔汗古湖高湖面时期(39.7 ka B.P.~17.5 ka B.P.).通过对削面沉积物正构烷烃的系统分析,结果表明正构烷烃携带了重要的湖泊演化的环境和生物信息,其中nC2...  相似文献   

3.
柴达木察尔汗贝壳堤剖面Sr同位素及其环境意义   总被引:6,自引:0,他引:6  
根据对柴达木盆地察尔汗古湖贝壳堤剖面酸不溶组分和酸溶组分的提取及其87Sr/86Sr的测定,结合沉积物中Rb/Sr的变化,指出Sr同位素组成特征可有效指示源区化学风化和沉积区古环境变化;依据酸溶组分中盐度指标Sr/Ca, Sr/Ba值与Sr同位素组成曲线的对比分析,揭示酸溶组分Sr同位素可以较好的指示水体形成时的盐度。通过分析贝壳堤剖面化学风化和部分盐度变化过程,探讨了研究区晚更新世39.6~ 17.1 ka BP(未经校正的AMS 14C测年结果,全文同)湖泊高湖面的演化历史。  相似文献   

4.
柴达木贝壳堤剖面元素地球化学与环境演变   总被引:12,自引:7,他引:5       下载免费PDF全文
通过对柴达木盆地察尔汗古湖贝壳堤沉积物中酸溶与残留(酸不溶)组分中常、微量元素及其元素对的分析,并结合酸溶与残留组分中常、微量元素相关性对比,讨论了贝壳堤剖面元素地球化学指标和沉积环境之间的关系,指出酸溶组分中的常量、微量元素及其元素对可以作为湖泊和古气候演化良好的代用指标;残留组分中的元素及元素对与原岩及其风化程度紧密相关,因此,酸溶组分与残留组分中的常量和微量元素在对于环境响应模式存在一定差异,应该将二者分开研究以避免对元素所携带环境信号解译的偏差。根据元素地球化学指标重建了43.5~22.4cal.kaB.P.(39.7~17.5kaB.P.14C年代)柴达木盆地察尔汗古湖高湖面期间古气候与环境演变过程:43.5~31.7kaB.P.期间酸溶组分中元素含量总体较低,残留组分中元素含量相对较高,且湿润度值((Fe2O3+Al2O3)/(MgO+CaO),或H)处于高值段,而Ca/Mg,Fe/Mn和Rb/Sr则处于低值段,指示了温暖湿润的气候环境,古湖泊水体增加;其中37.8~31.7kaB.P.期间酸溶组分中元素含量多出现最低值,残留组分中元素含量富集,H值较高,而Ca/Mg,Fe/Mn和Rb/Sr此段均值最小,表明此时为环境的最适宜期,此期间降雨充沛,湖泊处于高湖面;在31.7~22.4kaB.P.期间酸溶组分中元素含量普遍较高,残留组分中元素含量相对富集,且Ca/Mg,Fe/Mn和Rb/Sr处于高值段波动,H值处在低值段,指示气候环境恶化,降水逐渐减少,古湖泊水体萎缩;在约22.4kaB.P.气候快速恶化,形成石盐结晶,高湖面历史结束。柴达木盆地该期高湖面及其演化过程可与腾格里沙漠和额济纳盆地-巴丹吉林沙漠高湖面记录进行对比,揭示了大范围气候变化的历史。  相似文献   

5.
利用气相色谱质谱联用仪(GC-MS)对青藏高原柴达木盆地察尔汗湖区贝壳堤剖面古湖相沉积物样品进行了系统地分析, 检测出系列脂肪酸酰胺与脂肪腈类含氮类脂物分子化石。并对其在古湖相沉积物中的分布特征作了详细描述。对它们综合研究认为, 早期成岩作用使来源于各种生物体的脂肪酸酰胺类分子化石部分地转化为脂肪腈类化合物。此外, 不饱和脂肪酸酰胺与饱和脂肪酸酰胺的含量比值在剖面上并没有呈现明显下降的趋势, 说明在降解过程中各种生物、物理及化学作用对它们不存在明显的选择性, 指示有机质在沉积过程中可能处于一个偏氧化的环境。本文首次报道这两类物质, 为更好地理解含氮类脂物分子化石在湖泊沉积物中的转化过程提供了一定的理论依据。  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   

7.
博斯腾湖湖泊沉积物光释光年代测量*   总被引:2,自引:0,他引:2  
使用光释光年代学的单片再生法测量了博斯腾湖沉积剖面中碳酸盐泥及粉砂质泥底部的浅湖相灰色粉细砂和风成沙的年龄,对剖面上部碳酸盐层中陆生植物残体进行了AMS 14 C测年。通过不同测片的等效剂量(De)值的分布状况评价了样品的晒褪程度,选择不随灵敏度校正后的自然释光信号变化的相对集中的等效剂量(De)值计算了样品的埋藏年龄。通过这些年龄结果的对比,发现石英矿物的OSL年龄和AMS 14 C年龄在地层上是一致的,表明尽管在浅湖相细砂中存在不完全晒褪,但根据相对较小而集中的De值计算得到的年龄结果是可靠的。这些年龄结果和地层资料揭示末次冰消期以来至早全新世,博斯腾湖处于无水干盆地向深水湖泊转化的浅水湖泊状态,现代深水博斯腾湖大约形成于距今8ka前后。  相似文献   

8.
柴达木盆地察尔汗贝壳堤剖面记录了约39.7~17.514CkaB.P.期间古湖泊高湖面扩张、收缩的演化历史。剖面中丰富的介形类,皆为我国东部山间盆地~平原区系与西部高原区系常见种。依据青海地区现代介形类分布调查,可知研究剖面高湖面发育期为淡水湖,其中高分异度介形类组合代表近静水的浅湖环境,单种或近单种土星介大量出现层位指示缓流水环境,大量原生双壳类共生可能指示静水、较深水环境。据地层中介形类分布,自下而上划分为7个组合-沉积环境带,分别为:①少量湖沼种出现(积水洼地形成带)——湖泊前期,②单种缓流水种连续出现(湖泊初始形成带)——高湖面初始形成期,③高分异度组合、介形类富集(浅水大湖带)——高湖面水深加大期,④中分异度组合、介形类少量出现(深湖带)——高湖面最盛期,⑤中分异度组合、介形类少量出现、双壳类连续富集(湖泊变浅带)——高湖面略下降期,⑥缓流水介形类繁盛、双壳类多少不等(湖泊水位下降带)——古湖泊退缩期和⑦介形类稀少带——古湖泊快速消亡期。贝壳堤剖面所见双壳类在现代介形类调查区域没有发现,它们在地层中的出现,进一步指示大体相当MIS3阶段时期柴达木盆地比现代更温暖的气候背景,降水条件好于现代。  相似文献   

9.
通过对内蒙古西部额济纳古湖小狐山剖面沉积物中总有机碳(TOC)、总氮(TN)和碳酸盐(CaCO3)含量的测定,分析了沉积物中有机碳来源和无机碳酸盐成因,结果表明在额济纳古湖相沉积物中TOC与TN含量呈同步变化规律TOC/TN(9.91~10.16)较稳定,其有机质为湖泊自生藻类和外源维管束植物共同提供。沉积物中有机质含量受温度、降雨量变化控制,当气候暖湿时,沉积物中有机碳含量高,气候冷干则有机碳含量低,因此,有机碳含量是所研究剖面气候温湿与干旱(冷)的有效环境指标。湖泊自生碳酸盐含量则由湖区有效湿度和生物量的共同控制,其稳定碳同位素指示有效湿度的大小。粒度,特别是小于2μm组分含量与水动力和搬运介质相关,其组分含量大于5%时为湖相沉积且随其含量增加指示水深加大。根据沉积物中有机碳、碳酸盐、无机碳同位素和粒度,并结合剖面岩相特征,探讨了研究区该时段(按剖面深度划分)气候变化和湖泊演化历史:  ?~38.15 14C kaB.P.(1039~949cm)湖区气候为冷干环境特征,风沙盛行;   38.15~31.73 14C  kaB.P.(949~780cm)气候环境逐步改善,降水量增加,湖泊开始发育并到达湖泊高水位阶段;   31.73~22.79  14C  kaB.P.(780~482cm)湖泊水位有所下降,气候有明显的波动,但仍维持在较高的水位上,湖区环境仍为暖湿气候;   22.79~17.37 14C  kaB.P.(482~304cm)气候开始变冷变干,湖区有效适度持续减小,湖泊退缩;   17.37~14.00 14C kaB.P.(304~178cm)湖泊退出研究点,区域有效湿度小,风沙盛行,存在短暂气候事件,造成暂时性流水;   14~4  14C kaB.P.(178~0cm)湖泊开始再度扩张、水位上升,湖水变淡,到该阶段的后期气候又一次发生转变,湖区再度成为干旱环境,有效湿度减小,湖泊开始萎缩、直至消失。  相似文献   

10.
前人在黄土—古土壤地层的14C年代学研究中,探讨了不同测年物质的可靠性,但不同物质组分获得的年代差异较大,这是由于选用的样品不符合定年条件,所以选择可靠的样品组分和有效的前处理方法显得尤为重要。对关中地区2万年以来黄土序列中有机质、花粉浓缩物和蜗牛化石进行了AMS14C年代学研究。运用现生蜗牛壳体的AMS14C测定来校正化石蜗牛的年龄,结合剖面中孢粉浓缩物、土壤有机质的AMS14C年代学对比研究,发现蜗牛化石壳体的文石可以提供较可靠的年代数据,为14C测年的可靠性研究提供了一种可能的途径。  相似文献   

11.
Shell bar, composed of abundant fossil shells of Corbicula fluminea müller and Corbicula largillierti philippi and located at the southeastern end (36°30′N, 96°12′E) of the paleolake Quarhan, is one of the most prominent features in the Qaidam basin. It is the highest site where such species of fossil shells have been found in the Late Pleistocene age. A 2.6-m-thick fresh profile was manually excavated to determine the formation ages and the scope of the high paleolake levels. Accelerator mass spectrometry (AMS), conventional radiocarbon dating, and sector inductively coupled plasma-mass spectroscopy 230Th methods were used to investigate the reliability and accuracy of dating results in different laboratories. Ages of various components (e.g. acid residual and acid soluble fraction of the organic matter) from the same sample were determined. Age differences of a variety of materials (e.g. organic matter, fossil shells, and salt crystals), and age differences at the same sampling position were evaluated. Dating shows that the AMS ages given by alkali residue and acid soluble fractions vary greatly, e.g., from 124.5 cm upwards. The dates given by the acid soluble fraction were normal. Down the column, the dates show a reverse pattern and those of alkali residues, especially the lower part of the section, show an unstable pattern. These imply that organic matter had been influenced by two separate processes. One possible explanation is that the alkali residual fraction most likely had been contaminated by dead carbon-bearing reworked material because the study section is located near the edge of the paleolake and could have been easily influenced by old eroded deposits. Another is that the acid soluble fraction could have been contaminated by upward-flowing groundwater containing soluble organic matter. The amount of this soluble organic material should be very small because the strongest age reversal is in the lower part, where the TOC content remains low, meaning that the change of soluble organic fraction alters neither TOC content nor the δ 13C dramatically. It is concluded that a uniform mega-paleolake developed in the Qaidam basin in the northeastern Tibetan plateau between 39.7 and 17.5 14C kaB.P. During the period when the high paleolake level of Qarhan was formed, the huge paleolake covered a vast area with dramatic lake level fluctuations. It is found that the ages determined may be influenced by either radioactive 14C variations of repeated deposition or content variations in the atmosphere. The ages given by fossil shells are 15–18 ka older than those given by organic matter. The large differences between the ages of fossil shells and organic matter might have resulted from the large water areas and huge water volume and the special location of the high-elevation Qaidam basin. This study also shows the reliability and accuracy of the 230Th dating method on the salt crystals but further study is needed to determine whether this method could be applied to the study area. __________ Translated from Quaternary Sciences, 2007, 27(4): 511–521 [译自: 第四纪研究]  相似文献   

12.
Late Pleistocene paleoclimatic variability on the northeastern Qinghai–Tibetan Plateau (NE QTP) was reconstructed using a chronology based on AMS 14C and 230Th dating results and a stable oxygen isotopic record. These are derived from lake carbonates in a 102-m-long Qarhan sediment core (ISL1A) collected from the eastern Qaidam Basin. Previous research indicates that the δ18O values of lacustrine carbonates are mainly controlled by the isotopic composition of lake water, which in turn is a function of regional P/E balance and the proportion of precipitation that is monsoon-derived on the NE QTP. Modern isotopic observations indicate that the δ18O values of lake carbonates in hyper-arid Qaidam Basin are more positive during the warm and wet period. Due to strong evaporation and continental effect in this basin, the positive δ18O values in the arid region indicate drier climatic conditions. Based on this interpretation and the δ18O record of fine-grained lake carbonates and dating results in ISL1A, the results imply that drier climatic conditions in the Qarhan region occurred in three intervals, around 90–80 ka, 52–38 ka and 10–9 ka, which could correspond to late MIS 5, middle MIS 3 and early Holocene, respectively. These three phases were almost coincided with low lake level periods of Gahai, Toson and Qinghai Lakes (to the east of Qarhan Lake) influenced by ASM on the orbital timescales. Meanwhile, there was an episode of relatively high δ18O value during late MIS 3, suggesting that relatively dry climatic condition in this period, rather than “a uniform Qarhan mega-paleolake” spanning the ∼44 to 22 ka period. These results insight into the understanding of “the Greatest Lake Period” on the QTP.  相似文献   

13.
本文采用多接收电感耦合等离子体质谱法(MC-ICP-MS),对柴达木盆地一里坪15YZK01钻孔中前336.2 m含石盐地层中的7个石膏样品进行230Th定年。依据年代-深度公式,获得S1-S4盐层的成盐年代分别为733.8~716.0 ka、581.9~573.8 ka、181.6~179.3 ka和158.0~154.2 ka;含芒硝粉砂地层的年代为171.6 ka。结合前人对一里坪表面盐壳的14C测年数据,证实一里坪表面盐层S5开始形成于末次冰期。15YZK01钻孔记录的成盐期与青藏高原第四纪冰期及构造运动存在一定的对应关系:石盐层S1对应于"昆黄运动"之后的望昆冰期,以及深海氧同位素第18阶段(MIS18);S2对应于大间冰期,但是该年代比较接近望昆冰期;S3和S4石盐层及含芒硝粉砂层对应于共和运动和倒数第二次冰期MIS6;S5石盐层开始形成的时代对应于末次冰期MIS2。同时,通过对柴达木盆地多个钻孔含盐地层的测年数据进行总结,证实中更新世以来青藏高原冰川活动与柴达木盆地盐类沉积存在着一定的对应关系。柴达木盆地西北部的成盐盆地中通常发于有倒数第二次冰期和末次冰期的石盐层;而盆地东南部的察尔汗盐湖区仅发现有末次冰期以来的石盐层。柴达木盆地成盐期受到青藏高原第四纪冰期和构造运动的影响,第四纪冰期中盐湖水源补给量的减少,是导致柴达木盆地成盐的重要驱动因素。  相似文献   

14.
The age framework of Qarhan Salt Lake in arid western China is still controversial due in part to (1) age discrepancy between conventional 14C and 230Th dating results, and (2) no AMS 14C ages of organic carbon from drilling cores in Qarhan Salt Lake were reported until now. In order to discuss these chronological problems, upper 54.50 m lacustrine sediments from a drilling core (ISL1A) recovered from Qarhan Salt Lake were dated based on 230Th and AMS 14C dating techniques. Results show that (1) AMS 14C ages of total organic carbon (TOC) from 4.65 to 30.29 m are almost in stratigraphic order and consistent with 230Th ages of halite in the corresponding layers; (2) AMS 14C ages of TOC from 30.29 to 54.50 m are younger with increasing depth. This phenomenon was also found in Shell Bar in the study area, suggesting that AMS 14C ages from upper 30.29 m are more reliable while those from lower 24.21 m in ISL1A may be underestimated; (3) 230Th ages of halite from lower 24 m lacustrine sediments are obviously older than AMS 14C ages of TOC in the corresponding layers, which results into different age framework of salt lake sediments in Qarhan Salt Lake; (4) if extrapolating these reliable AMS 14C ages in ISL1A, similar age framework with 230Th ages in this core confirms that 230Th ages are much close to the true ages of these sediments, which suggests that the forming timing of the bottom salt layer is ~50 ka.  相似文献   

15.
In this study, nineteen brine samples from the Qarhan Salt Lake (QSL) in western China were collected and analyzed for boron (B) and chlorine (Cl) concentrations, total dissolved solids (TDS), pH values and stable B isotopic compositions. The B concentrations and δ11B values of brines in the QSL range from 51.6 mg/L to 138.4 mg/L, and from +9.32‰ to +13.08‰, respectively. By comparison of B concentrations and TDS of brines in QSL with evaporation paths of brackish water, we found that B enrichment of brines primarily results from strong evaporation and concentration of Qarhan lake water. Combining with comparisons of B concentrations, TDS, pH values and δ11B values of brines, previously elemental ratios (K/Cl, Mg/Cl, Ca/Cl, B/Cl) and δ11B values of halite from a sediment core (ISL1A), we observe good correlations between B concentrations and TDS, TDS and pH values, pH and δ11B values of brines, which demonstrate that higher B concentrations and more positive δ11B values of halite indicate higher salinity of the Qarhan paleolake water as well as drier paleoclimatic conditions. Based on this interpretation of the δ11B values of halite in core ISL1A, higher salinity of the Qarhan paleolake occurred during two intervals, around 46–34 ka and 26–9 ka, which are almost coincident with the upper and lower halite-dominated salt layers in core ISL1A, drier climate phases documented from the δ18O record of carbonate in core ISL1A and the paleomoisture record in monsoonal central Asia, and a higher solar insolation at 30°N. These results demonstrate that the δ11B values of halite in the arid Qaidam Basin could be regarded as a new proxy for reconstructing the salinity record of paleolake water as well as paleoclimate conditions.  相似文献   

16.
柴西地区上干柴沟组上段(N12)烃源岩的沉积水体环境为咸水湖相。其烃源岩的有机质总体丰度不高;有机质类型主要有腐殖腐泥型和腐殖型,具体分布受烃源岩所处位置及沉积环境控制;有机质成熟度多为未成熟-低成熟;有机质的烃转化率较高,反映其大部分有机质已经进入生烃门限,少量已经进入生烃高峰期。其烃源岩具有咸化湖泊相未熟-低熟有机质生烃的特点,而其生烃机理很可能是藻类生物类脂物和细菌的早期成烃。柴西地区上干柴沟组上段(N12)烃源岩作为该区未熟-低熟石油主要源岩之一,具有非常大的勘探潜力。  相似文献   

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