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1.
陆钧 《极地研究》1997,9(3):9-15
对南极普里兹湾NP93-2和NP95-1两柱样沉积硅藻进行了定量分析。两柱样分别可划分出3个和7个硅藻组合带。前者的优势种是Nitzschiacurta和Thalasiosiraantarctica,次优势种是N.kerguelensis和N.ritscheri;后者常见的优势种有N.kerguelensis,N.curta,Denticulopsisspp.和T.lentiginosa,常见的次优势种有Eucampiabablaustium,T.antarctica和T.gracilis。利用N.curta/N.kerguelensis比值并结合14C测年数据,可将15000年以来南极气候的变化划分出8个古气候带,其中完好地记录了Heinrich1事件、波令-阿德罗暖期、新仙女木冰期、全新世低温期等重大的气候变化事件,而南极的全新世低温期是首次报道。  相似文献   

2.
南极普里兹湾NP951柱样元素地层与古环境初步研究   总被引:3,自引:0,他引:3       下载免费PDF全文
古森昌  颜文 《极地研究》1997,9(2):33-39
对南极普里兹湾NP951柱样的元素地球化学特征及其古环境意义进行了研究。结果表明,本区沉积物在沉积过程中受冰盖消融、淡水涌入和陆源物质的影响较大;沉积物中SiO2、Al2O3、Fe2O3、CaO、MgO、P、S、Corg等元素组分较好地记录了由古气候变化而引起的物源改变,这些元素组分在地层中的分布规律与古海洋沉积环境及古气候变迁相一致;自晚更新世末期以来的气候大致可分为温暖期、寒冷期、高温期、转冷期和转暖期五个区段;在柱样的145cm(14.4kaB.P.)、85cm(10.3kaB.P.)和25cm(6.3kaB.P.)处出现了古气温的高值点,指示了气候的变化;85cm处元素含量的突变指示了异常事件的发生,该层位正好对应于哥德堡地球磁场漂移,全球气温突然变暖,标志着10.3kaB.P.以后南极地区进入了全新世。  相似文献   

3.
祁连山东段全新世与现代水热组合特征研究   总被引:6,自引:3,他引:6  
位于祁连山北麓的扁都口和哈溪记录了该地区的全新世气候变化。采用磁化率、有机碳含量和碳酸钙含量作为降水指标,其记录的水分变化与冰芯及其他记录的对比,显示了地区全新世水热组合变化的特征。传统的大暖期鼎盛阶段并非本研究的气候最宜期。5.2~4.0kaB.P。.本区的环境相当优越,是气候最宜期。4.0kaB.P.存在一次比3.0kaB.P.明显的气候恶化,地层和剖面记录突出。2.0~1.0kaB.P.是低  相似文献   

4.
晚冰期以来毛乌素沙漠环境特征的湖沼相沉积记录   总被引:24,自引:8,他引:16  
苏志珠  李小强 《中国沙漠》1999,19(2):104-109
毛乌素沙漠南缘靖边海则滩湖沼相沉积剖面,真实地记录了晚冰期以来东亚季风气候和沙漠演化历史。在地层沉积相划分和测年基础上,据地球化学元素和孢粉等气候指标分析表明,该区古气候变迁序列为:12kaBP前干燥寒冷;12~10kaBP气候转暖湿;10~8.5kaBP以温湿为主,在10~9.5kaBP出现YoungerDryas冷干事件;8.5~3.0kaBP温暖湿润;3.0kaBP后气候趋于半干旱与现代气候较接近。这种气候演化规律是受地球轨道因素影响,通过东亚冬夏季风的强弱变化来实现的  相似文献   

5.
东南极拉斯曼丘陵区的冰川作用   总被引:5,自引:0,他引:5  
拉斯曼丘陵在渐新世已被冰盖覆没,晚渐新世冰盖厚度最大,自中新世开始,冰盖逐渐减薄后退,但该丘陵仍为冰盖占据。更新世冰川作用规模不及第三纪。18kaB.P.该丘陵区覆冰厚度超过170m,冰盖前缘仅厚30m左右。冰盖后退出露其岩约在10.0kaB.P前后,自9.41-6.5kaB.P,冰川以2-3m/a的速率后退,岛屿区人武部出露,自6.5-5.0kaB.P,冰川后退速率砬为1.0-1.5m/a,丘陵  相似文献   

6.
浑善达克沙地全新世沉积特征与环境演变   总被引:44,自引:9,他引:44  
李森  孙武 《中国沙漠》1995,15(4):323-331
浑善达克沙地全新世沉积主要有风成砂-古土壤和河湖相-古土壤-风成砂沉积序列,其中保存了大量粒度,化学元素,孢粉及披毛犀化石等环境变化证据。据此可把全新世气候划分为8个旋迥,经历了升温波动期(10~7.1kaB.P.)、温暖期(7.1~3.2kaB.P.)和温干冷干频繁波动期(3.2kaB.P.至今)三个演变阶段。  相似文献   

7.
祁连山东段北麓近10ka来的气候变化初步研究   总被引:14,自引:4,他引:10  
邬光剑  潘保田 《中国沙漠》1998,18(3):193-200
磁化率、碳酸钙含量和有机碳含量可用作良好的气候指标,主要是反映了降水量的变化。祁连山东段北麓哈溪剖面研究表明,9560aB.P.时本区已进入全新世。大暖期是对温度而言,与气候适宜期是不同的概念,二者在时间上也不一定是同时的。本区的气候适宜期为6.8~3.6kaB.P.,气候最宜期为5.0~3.6kaB.P.,与其它记录有不同之处。在7.8~7.2kaB.P.和1.5~0.8kaB.P.间出现了“冷湿”的气候组合,这与传统的气候组合不同,但后一阶段的“冷湿”是有大量证据的。9.0~8.7kaB.P.间是全新世最干旱的时段,堆积了砂黄土。  相似文献   

8.
李栓科 《极地研究》1995,7(4):10-19
拉斯曼丘陵在渐新世已被冰盖覆没,晚渐新世冰盖厚度最大,自中新世开始,冰盖逐渐减薄后退,但该丘陵仍为冰盖占据。更新世冰川作用规模不及第三纪。18kaB.P.该丘陵区覆冰厚度超过170m,冰盖前缘仅增厚30m左右。冰盖后退出露基岩约在10.0kaB.P.前后,自9.41~6.5kaB.P.,冰川以2~3m/a的速率后退,岛屿区全部出露;自6.5~5.0kaB.P.,冰川后退速率减为1.0~1.5m/a,丘陵区裸露50%以上;约自5.0kaB.P.开始,丘陵区几乎全部出露,冰川冰盖范围与今基本相同。  相似文献   

9.
毛乌素沙地全新世地层化学元素特点及其古气候意义   总被引:13,自引:6,他引:13  
系统采集毛乌素沙地东、西部各一个全新世地层剖面样品作全量化学分析。根据景观地球化学特征的变化,推论一万年以来气候的变化过程:10.5—10ka,B.P.、6—50ka,B.P.、3.5ka,B.P.、2.5ka,B.P.和1.5—1ka,B.P.期间分别为化学风化较强,钠、钾淋失较多,而钙、镁、铝、铁、钛相对富集的相对湿润时期;夹于其间的则是化学风化较弱,钠钾相对富集,相对干燥的风化活动时期。  相似文献   

10.
塔克拉玛干沙漠腹地晚冰期以来的环境与气候变化   总被引:6,自引:1,他引:6  
通过对塔克拉玛干沙漠腹地地层剖面的沉积类型、孢粉、pH值、有机质、CaCO_3和地球化学气候指标C等分析,认为本区晚冰期以来一直处于荒漠环境,气候变化可划出四个阶段:13-10kaB.P.气候寒冷。温凉,干旱,湿度相对后期较大;10-8kaB.P.气候温暖干旱,湿度相对减小;8-3kaB.P.气候炎热干旱,湿度最小;3kaB.P.至今气候温暖干旱,湿度较前增大,气候及环境与今相似。  相似文献   

11.
EnvironmentalmagneticmeasurementsofmarinesedimentsfromAntarctica:implicationstopaleoclimatechangesduringthepast15kaHouHongmi...  相似文献   

12.
吴时国,罗又郎,王有强,陆钧,郑范,孙绍先Holoceneglacial-marinesedimentationinthePrydzBay,Antarctica¥WuShiguo;LuoYoulang;WangYouqiang;LuJun;Zheng...  相似文献   

13.
古森昌  颜文 《极地研究》1998,9(1):21-28
Apreliminarystudyontheelementstrataandpalaeoenvi┐ronmentofcoreNP95┐1fromthePrydzBay,AntarcticaGuSenchang(古森昌)andYanWen(颜文)Sou...  相似文献   

14.
NP93-2柱样采自南极普里兹湾陆架区域,具有明显的冰海沉积作用特征,受冰川和海洋共同作用。粒度参数、矿物组成、微体古生物和地球化学等资料揭示了该区12937a以来的沉积作用特征和沉积环境与气候变动的信息。大约在10ka,气候波动突然明显回暖,冰筏源碎屑物质增加,晚期还有一个短暂气候波动。  相似文献   

15.
Climate change in the northeastern United States has been inferred for the last deglaciation to middle Holocene (∼16,600 to 6000 calendar years ago) using multi-proxy data (total organic matter, total carbonate content, δ18 O calcite and δ13 C calcite) from a 5 m long sediment core from Seneca Lake, New York. Much of the regional postglacial warming occurred during the well-known Bolling and Allerod warm periods (∼14.5 to 13.0 ka), but climate amelioration in the northeastern United States preceded that in Greenland by ∼2000 years. An Oldest Dryas climate event (∼15.1 to 14.7 ka) is recognized in Seneca Lake as is a brief Older Dryas (∼14.1 ka) cold event. This latter cold event correlates with the regional expansion of glacial Lake Iroquois and global meltwater pulse IA. An increase in winter precipitation and a shorter growing season likely characterized the northeastern United States at this time. The Intra-Allerod Cold Period (∼13.2 ka) is also evident supporting an “Amphi-Atlantic Oscillation” at this time. The well-known Younger Dryas cold interval occurred in the northeastern United States between 12.9 and 11.6 ka, consistent with ice core data from Greenland. In the Seneca Lake record, however, the Younger Dryas appears as an asymmetric event characterized by an abrupt, high-amplitude beginning followed by a more gradual recovery. Compared to European records, the Younger Dryas in the northeastern United States was a relatively low-amplitude event. The largest amplitude and longest duration anomaly in the Seneca Lake record occurs after the Younger Dryas, between ∼11.6 and 10.3 ka. This “post-Younger Dryas climate interval” represents the last deglacial climate event prior to the start of the Holocene in the northeastern United States, but has not been recognized in Greenland or Europe. The early to middle Holocene in the northeastern United States was characterized by low-amplitude climate variability. A general warming trend during the Holocene Hypsithermal peaked at ∼9 ka coincident with maximum summer insolation controlled by orbital parameters. Millennial- to century-scale variability is also evident in the Holocene Seneca Lake record, including the well-known 8.2 ka cold event (as well as events at ∼7.1 and 6.6 ka). Hemispherical cooling during the Holocene Neoglacial in the northeastern United States began ∼5.5 ka in response to decreasing summer insolation.  相似文献   

16.
蔡慧梅 《极地研究》1996,8(4):62-70
本文材料系南极长城湾NG931柱状样品分析的介形类。共计11属21种,其中以Lox-oreticulatumfalax为占最优势组成分子,其次,Xestoleberiskerguelenensis,Xestoleberisspp.,Semicytheruraspp.和Australicytherepolylyca等也为该柱样中介形类的主要组成分子。根据资料分析,NG931柱样中介形类属种绝大部分为南极地区所出现的介形类动物群中的已知类型,它们之间有一定的相似性,推测其生境也有可能相近似。从介形类属种组成上看,应属滨岸-浅海的沉积环境  相似文献   

17.
Geochemical data and geophysical measurements from a 554-m ice-core from Taylor Dome, East Antarctica, provide the basis for climate reconstruction in the western Ross Embayment through the entire Wisconsinan and Holocene. In comparison with ice cores from central East and West Antarctica, Taylor Dome shows greater variance of temperature, snow accumulation, and aerosol concentrations, reflecting significant variability in atmospheric circulation and air mass moisture content. Extreme aridity during the last glacial maximum at Taylor Dome reflects both colder temperatures and a shift in atmospheric circulation patterns associated with the advance of the Ross Sea ice sheet and accounts for regional alpine glacier retreats and high lake levels in the Dry Valleys. Inferred relationships between spatial accumulation gradients and ice sheet configuration indicate that advance of the Ross Sea ice sheet began in late marine isotope stage 5 or early stage 4. Precise dating of the Taylor Dome core achieved by trace-gas correlation with central Greenland ice cores shows that abrupt deglacial warming at Taylor Dome was near-synchronous with the ∼14.6 ka warming in central Greenland and lags the general warming trend in other Antarctic ice cores by at least 3000 years. Deglacial warming was following by a warm interval and transient cooling between 14.6 and 11.7 ka, synchronous with the Bølling/Allerød warming and Younger Dryas cooling events in central Greenland, and out of phase with the Antarctic Cold Reversal recorded in the Byrd (West Antarctica) ice core. Rapid climate changes during marine isotope stages 4 and 3 at Taylor Dome are similar in character to, and may be in phase with, the Northern Hemisphere stadial–interstadial (Dansgaard–Oeschger) events. Results from Taylor Dome illustrate the importance of obtaining ice cores from multiple Antarctic sites, to provide wide spatial coverage of past climate and ice dynamics.  相似文献   

18.
对南京江北地区林峰桥剖面晚更新世末期以来的两个泥炭层有机碳同位素测定结果表明,上部泥炭层和下部泥炭层δ13C值皆较低(≤-23.79‰),部泥炭层的δ13C值明显高于下部泥炭层。结合其它研究可知,该区全新世大暖期稳定暖湿鼎盛阶段的校正年代约在8.2~7.0 ka B.P.,在此阶段前后,表现为持续时间相对较短的低温气候环境。12.8~12.1 cal.ka B.P. 该区气温高低波动频繁期。12.8~12.7 cal.ka B.P.和12.6~12.2 ka B.P.两时段气温较低;2.7~12.6 cal.ka B.P. 阶段气温较高。12.2~12.1 cal.ka B.P. 表现为Younger Dryas之后气候的迅速增暖,可视为该区全新世开始的标志。  相似文献   

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