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基于XRF岩心扫描的中国西部湖泊沉积物元素地球化学特征
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  • 英文篇名:ELEMENT GEOCHEMISTRY OF LAKE DEPOSITS MEASURED BY X-RAY FLUORESCENCECORE SCANNER IN NORTHWEST CHINA
  • 作者:张晓楠 ; 张灿 ; 吴铎 ; 周爱锋
  • 英文作者:ZHANG Xiaonan;ZHANG Can;WU Duo;ZHOU Aifeng;Key Laboratory of Western China's Environmental Systems,MOE;Research School of Arid Environment and Climate Change,Lanzhou University;
  • 关键词:湖泊沉积物 ; 元素地球化学特征 ; 多元统计分析 ; XRF岩心扫描分析
  • 英文关键词:lake sediments;;elemental geochemistry;;multivariate statistical analysis methods;;X-ray Fluorescence(XRF)core scanner analysis
  • 中文刊名:HYDZ
  • 英文刊名:Marine Geology & Quaternary Geology
  • 机构:兰州大学西部环境教育部重点实验室,兰州大学西部环境与气候变化研究院;
  • 出版日期:2015-02-28
  • 出版单位:海洋地质与第四纪地质
  • 年:2015
  • 期:v.35;No.153
  • 基金:国家重点基础研究发展计划项目(2010CB950202,2012CB956102);; 国家自然科学基金项目(41130102,41271221)
  • 语种:中文;
  • 页:HYDZ201501025
  • 页数:12
  • CN:01
  • ISSN:37-1117/P
  • 分类号:167-178
摘要
对我国西部地区典型山地、高原及荒漠绿洲湖泊沉积物岩心采用高分辨率XRF元素扫描进行地球化学元素测试。挑选其中XRF信号强度较高且信号相对稳定的Al、Si、Cl、K、Ca、Ti、Mn、Fe、Rb、Sr、Y、Zr等元素进行聚类分析、因子分析和相关分析等多元统计分析,结果表明:湖泊元素组成与区域环境和湖泊类型密切相关;在我国西部湖泊中,沉积物元素组成主要以湖泊流水补给所带来的Al、Si、K、Ti、Rb等外源碎屑元素为主,外源碎屑元素的含量和组成受流域基岩状况、风化状况、植被覆盖程度以及以降水为主导的流域侵蚀作用强弱的控制,可用来指示流域降水量和相应的生态环境状况;Ca、Sr等强烈迁移元素的变化受湖泊水位、湖泊水化学特征和湖泊类型影响,可用来指示湖泊水文特征。
        Element contents aere measured with high resolution X-ray Fluorescence(XRF)core scanner for the sediments taken from some typical mountain lakes,plateau lakes and oasis lakes in Northwest China.The elements with high and stable XRF intensities are analyzed with multivariate statistic methods,including cluster analysis,factor analysis and correlation analysis.The results of the analysis indicate that the composition of elements in lake sediments is highly related to the regional environment and types of lakes.Exogenous detrital elements brought into lakes by water,such as Al,Si,K,Ti and Rb,are the dominant elements in lake sediments,and the intensities and types of those elements depend upon bedrocks,weathering condition,vegetation coverage and watershed erosion,which are related with the precipitation in drainage basins.The intensities of elements Ca,Sr are related to lake level,water chemistry and lake types,Therefore,they could indicate the hydrological dynamics of lakes.
引文
[1]成艾颖,余俊清,张丽莎,等.XRF岩心扫描分析方法及其在湖泊沉积研究中的应用[J].盐湖研究,2010,18(02):7-13.[CHENG Aiying,YU Junqing,ZHANG Lisha,et al.XRF Core Scanning and applications on lake sediments[J].Journal of Salt Lake Research,2010,18(02):7-13.]
    [2]陈敬安,万国江,陈振楼,等.洱海沉积物化学元素与古气候演化[J].地球化学,1999,28(06):562-570.[CHEN Jing′an,WAN Guojiang,CHEN Zhenlou,et al.Chemical elements in sediments of Lake Erhai and palaeoclimate evolution[J].Geochimica,1999,28(06):562-570.]
    [3]Jin Z D,Wang S M,Shen J,et al.Chemical weathering since the Little Ice Age recorded in lake sediments:A high-resolution proxy of past climate[J].Earth Surface Processes and Landforms.2001,26(7):775.
    [4]王苏民,张振克.中国湖泊沉积与环境演变研究的新进展[J].科学通报,1999,44(06):579-587.[WANG Sumin,ZHANG Zhenke.New progress of lake sediments and environmental changes research in China[J].Chinese Science Bulletin,1999,44(06):579-587.]
    [5]张宏亮,李世杰,于守兵,等.青藏高原全新世环境变化的兹格塘错元素地球化学沉积记录[J].山地学报,2009,27(02):248-256.[ZHANG Hongliang,LI Shijie,YU Shoubing,et al.Holocene environmental change record derived from elements in the sediment core of Zigetang Lake,Tibetan Plateau[J].Journal of Mountain Science,2009,27(02):248-256.]
    [6]李徐生,韩志勇,杨达源,等.镇江下蜀黄土的稀土元素地球化学特征研究[J].土壤学报,2006,43(01):1-7.[LI Xusheng,HAN Zhiyong,YANG Dayuan,et al.Ree geochemistry of Xiashu Loess in Zhenjiang,Jiangsu Province[J].Acta Pedologica Sinica,2006,43(01):1-7.]
    [7]郑光膺,陈昌明.湖泊沉积学原理[M].北京:科学出版社,1992:60-198.[ZHENG Guangying,CHEN Changming.Principles of Lake Sedimentology[M].Beijing.Science Press,1992:60-198.]
    [8]牟世勇,贺永忠,朱勋,等.西藏改则西北部喀湖错把拉湖区13kaBP以来的湖泊沉积与环境演化[J].地质通报,2007(01):94-99.[MOU Shiyong,HE Yongzhong,ZHU Xun,et al.Lake deposits and environmental evolution of the Bala lake area,Kahu Co,northwestern Gêrzê,Tibet,China,since 13kaBP[J].Geological Bulletin of China,2007(01):94-99.]
    [9]姚政权,刘焱光,王昆山,等.日本海末次冰期千年尺度古环境变化的地球化学记录[J].矿物岩石地球化学通报,2010,29(02):119-126.[YAO Zhengquan,LIU Yanguang,WANG Kunshan,et al.Millennialscale paleoenvironment change during the Last Glacial Period recorded by geochemical variations in the Japan Sea[J].Bulletin of Mineralogy,Petrology and Geochemistry,2010,29(02):119-126.]
    [10]成艾颖,余俊清,张丽莎,等.托素湖岩心XRF元素扫描分析及多元统计方法的应用[J].盐湖研究,2011,19(01):20-25.[CHENG Aiying,YU Junqing,ZHANG Lisha,et al.Analysis of Toson Lake XRF core scanning and application of multivariate statistical methods[J].Journal of Salt Lake Research,2011,19(01):20-25.]
    [11]马宝林,王琪.青海湖现代沉积物的元素分布特征[J].沉积学报,1997,15(03):122-127.[MA Baolin,WANG Qi.Distribution characteristics of elements in modern sediments of Qinghai lake[J].Acta Sedimentologica Sinica,1997,15(03):122-127.]
    [12]Dellwig O,Hinrichs J,Hild A,et al.Changing sedimentation in tidal flat sediments of the southern North Sea from the Holocene to the present:ageochemical approach[J].Journal of Sea Research,2000,44(3-4):195-208.
    [13]陈志华,石学法,王相芹.南黄海表层沉积物碳酸盐及Ca、Sr、Ba分布特征[J].海洋地质与第四纪地质,2000,20(04):9-16.[CHEN Zhihua,SHI Xuefa,WANG Xiangqin.Distribution characteristics of carbonate as well as Ca,Sr and Ba in the surface sediments in the South Yellow Sea[J].Marine Geology and Quaternary Geology,2000,20(04):9-16.]
    [14]罗超,彭子成,刘卫国,等.新仙女木事件在罗布泊湖相沉积物中的记录[J].地球科学(中国地质大学学报),2008,33(02):190-196.[LUO Chao,PENG Zicheng,LIU Weiguo,et al.Evidence from the lacustrine sediments of Lop-Nur Lake,Northwest China for the Younger Dryas Event[J].Earth Science(Journal of China University of Geosciences),2008,33(02):190-196.]
    [15]刘子亭,余俊清,张保华,等.烧失量分析在湖泊沉积与环境变化研究中的应用[J].盐湖研究,2006,14(02):67-72.[LIU Ziting,YU Junqing,ZHANG Baohua,et al.Application of Loss on ignition to the study of lake sediments and environmental changes[J].Journal of Salt Lake Research,2006,14(02):67-72.]
    [16]赵俊青,夏斌,纪友亮,等.湖相碳酸盐岩高精度层序地层学探析[J].沉积学报,2005,23(04):646-656.[ZHAO Junqing,XIA Bin,JI Youliang,et al.Analysis of the high resolution sequence of lacuatrine carbonate[J].Acta Sedimentologica Sinica,2005,23(04):646-656.]
    [17]Morellón M,Valero-Garcés B,Vegas-Vilarrúbia T,et al.Lateglacial and Holocene palaeohydrology in the western Mediterranean region:The Lake Estanya record(NE Spain)[J].Quaternary Science Reviews,2009,28(25-26):2582-2599.
    [18]Metcalfe S E,Jones M D,Davies S J,et al.Climate variability over the last two millennia in the North American Monsoon region,recorded in laminated lake sediments from Laguna de Juanacatlan,Mexico[J].The Holocene,2010,20(8):1195-1206.
    [19]Cuven S,Francus P,Lamoureux S F.Estimation of grain size variability with micro X-ray fluorescence in laminated lacustrine sediments,Cape Bounty,Canadian High Arctic[J].Journal of Paleolimnology,2010,44(3):803-817.
    [20]Morell,N M,Valero-Garc,et al.Climate changes and human activities recorded in the sediments of Lake Estanya(NE Spain)during the Medieval Warm Period and Little Ice Age[J].Science China(Earth Sciences),2011,46(3):423-452.
    [21]Kylander M E,Ampel L,Wohlfarth B,et al.High-resolution X-ray fluorescence core scanning analysis of Les Echets(France)sedimentary sequence:new insights from chemical proxies[J].Journal of Quaternary Science,2011,26(1):109-117.
    [22]Jansen J H F,Gaast S J V D,B.Koster A J V.CORTEX,a shipboard XRF-scanner for element analyses in split sediment cores[J].Marine Geology,1998,151:143-153.
    [23]Francus P,Lamb H,Nakagawa T,et al.The potential of high-resolution X-ray fluorescence core scanning:Applications in paleolimnology[J].PAGES News,2009,17(3):93-96.
    [24]Loring D H,Asmund G.Geochemical factors controlling accumulation of major and trace elements in Greenland coastland fjord sediments[J].Environmental Geology,1996,28(1):2-11.
    [25]Hu G,Jin Z D,Zhang F.Constraints of authigenic carbonates on trace elements(Sr,Mg)of lacustrine ostracod shells in paleoenvironment reconstruction and its mechanism[J].Science in China Series D:Earth Sciences,2008,51(5):654-664.
    [26]Kirilova E P,Hardenbroek M,Heiri O,et al.500years of trophic-state history of a hypertrophic Dutch dike-breach lake[J].Journal of Paleolimnology,2009,43(4):829-842.
    [27]Ziegler M,Jilbert T,de Lange G J,et al.Bromine counts from XRF scanning as an estimate of the marine organic carbon content of sediment cores[J].Geochemistry Geophysics Geosystems,2008,9(Q05009):1525-2027.
    [28]Ziegler M,Lourens L J,Tuenter E,et al.High Arabian Sea productivity conditions during MIS 13-odd monsoon event or intensified overturning circulation at the end of the Mid-Pleistocene transition?[J].Climate of the Past,2010,6(1):63-76.
    [29]Tian J,Xie X,Ma W T,et al.X-ray fluorescence core scanning records of chemical weathering and monsoon evolution over the past 5 Myr in the southern South China Sea[J].Paleoceanography,2011,26(4):A2045.
    [30]Massa C,Bichet V,Gauthier,et al.A 2 500year record of natural and anthropogenic soil erosion in South Greenland[J].Quaternary Science Reviews,2012,32:119-130.
    [31]Jin Z D,Yu J M,Chen H X,et al.The influence and chronological uncertainties of the 8.2ka cooling event on continental climate records in China[J].The Holocene,2007,17(7):1041-1050.
    [32]Sabatier P,Dezileau L,Colin C,et al.7 000years of paleostorm activity in the NW Mediterranean Sea in response to Holocene climate events[J].Quaternary Research,2012,77(1):1-11.
    [33]雷国良,张虎才,常凤琴,等.湖泊沉积物XRF元素连续扫描与常规ICP-OES分析结果的对比及校正——以兹格塘错为例[J].湖泊科学,2011,23(02):287-294.[LEI Guoliang,ZHANG Hucai,CHANG Fengqin,et al.Comparison and correction of element measurements in lacustrine sedmients using X-ray fluorescence corescanning with ICP-OES method:A case study of Zigetang Co[J].Journal of Lake Sciences,2011,23(02):287-294.]
    [34]田文倩.原位X射线荧光扫描分析方法学实验研究[D].中国地质大学(北京),2012.[TIAN Wenqian.An experiment research on the methodology of in situ X-ray flourescene scanning analysis[D].China University of Geosciences(Beijing),2012.]
    [35]田文倩,黄永健,王成善.沉积岩原位XRF扫描分析定量化研究[C]//中国矿物岩石地球化学学会第14届学术年会论文摘要专辑.中国江苏南京:高校地质学报,2013.[TIAN Wenqian,HUANG Yongjian,WANG Chengshan.Quantitative research of sedimentary rocks in situ X-ray flourescene scanning analysis[C]//Nanjing,Jiangsu:Geological Journal of China Universities,2013.]
    [36]Rothwell R G,Rack F R.New techniques in sediment core analysis:an introduction[C]//In:Rothwell R G(Ed.).New Techniques in Sediment Core Analysis.London:Special Publications.Geological Society,2006,267(1):1-29.
    [37]Richter T O,Van der Gaast S J,Koster B,et al.The Avaatech XRF Core Scanner:technical description and applications to NE Atlantic sediments[C]//In:Rothwell R G(Ed.).New Techniques in Sediment Core Analysis.London:Special Publications.Geological Society,2006,267(1):39-50.
    [38]Tjallingii R,Rhl U,Klling M,et al.Influence of the water content on X-ray fluorescence core-scanning measurements in soft marine sediments[J].Geochemistry,Geophysics,Geosystems,2007,8(2):1525-2027.
    [39]Weltje G J,Tjallingii R.Calibration of XRF core scanners for quantitative geochemical logging of sediment cores:Theory and application[J].Earth and Planetary Science Letters,2008,274(3-4):423-438.
    [40]Lwemark L,Chen H F,Yang T N,et al.Normalizing XRF-scanner data:A cautionary note on the interpretation of high-resolution records from organic-rich lakes[J].Journal of Asian Earth Sciences,2011,40(6):1250-1256.
    [41]Kido Y,Koshikawa T,Tada R.Rapid and quantitative major element analysis method for wet fine-grained sediments using an XRF microscanner[J].Marine Geology,2006,229(3-4):209-225.
    [42]杨守业,李从先.元素地球化学特征的多元统计方法研究──长江与黄河沉积物元素地球化学研究[J].矿物岩石,1999,19(01):65-69.[YANG Shouye,LI Congxian.Multiple statistic of element geochemical characteristics——element geochemical study on the Changjing and Huanghe sediments[J].J.Mineral Petrol,1999,19(01):65-69.]
    [43]王国平,刘景双.向海湿地元素地球化学特征与高分辨沉积记录[J].地理科学,2003,23(02):208-212.[WANG Guoping,LIU Jingshuang.Characteristics of element geochemistry and high-resolution sedimentation records in Xianghai wetlands[J].Scientia Geographica Sinica,2003,23(02):208-212.]
    [44]Giralt S,Moreno A,Bao R,et al.A statistical approach to disentangle environmental forcings in a lacustrine record:the Lago Chungarácase(Chilean Altiplano)[J].Journal of Paleolimnology,2007,40(1):195-215.
    [45]郑景云,尹云鹤,李炳元.中国气候区划新方案[J].地理学报,2010,65(01):3-12.[ZHENG Jingyun,YIN Yunhe,LI Bingyuan.A new scheme for climate regionalization in China[J].Acta Geographic Sinica,2010,65(01):3-12.]
    [46]强明瑞,陈发虎,张家武,等.2ka来苏干湖沉积碳酸盐稳定同位素记录的气候变化[J].科学通报,2005(13):1385-1393.[QIANG Mingrui,CHEN Fahu,ZHANG Jiawu,et al.Climatic changes documented by stable isotopes of sedimentary carbonate in Lake Sugan,northeastern Tibetan Plateau of China,since 2kaBP[J].Chinese Science Bulletin,2005(13):1385-1393.]
    [47]朱延龙,韩昆,王芳.青海湖流域气候变化特点及水文生态响应[J].中国水利水电科学研究院学报,2012(04):260-266.[ZHU Yanlong,HAN Kun,WANG Fang.Climate change and responses of hydro-ecology in Qinghai Lake Watershed[J].Journal of China Institute of Water Resources and Hydropower Research,2012(04):260-266.]
    [48]吴敬禄,马龙,曾海鳌.乌伦古湖水量与水质变化特征及其环境效应[J].自然资源学报,2013(05):844-853.[WU Jinglu,MA Long,CENG Hai′ao.Water quantity and quality change of Ulungur Lake and its environmental effects[J].Journal of Nature Resources,2013(05):844-853.]
    [49]谢贵娟,张建平,汤祥明,等.博斯腾湖水质现状(2010—2011年)及近50年来演变趋势[J].湖泊科学,2011(06):837-846.[XIE Guijuan,ZHANG Jianping,TANG Xiangming,et al.Spatio-temporal heterogeneity of water quality(2010—2011)and succession patcerns in Lake Bosten during the past50years[J].Journal of Lake Sciences,2011(06):837-846.]
    [50]刘婷,胡宝清.基于聚类分析的复杂网络中的社团探测[J].复杂系统与复杂性科学,2007(01):28-35.[LIU Ting,HU Baoqing.Detecting community in complex networks using cluster analysis[J].Complex Systems and Complexity Science,2007(01):28-35.]
    [51]胡雷芳.五种常用系统聚类分析方法及其比较[J].浙江统计,2007(04):11-13.[HU Leifang.Five kinds of hierarchical cluster analysis[J].Zhejiang Statistics,2007(04):11-13.]
    [52]李天斌.宁夏天景山奥陶系马家沟组、米钵山组常量、微量元素聚类分析成果解释[J].岩相古地理,1999,19(02):23-30.[LI Tianbin.The geological interpretation on the results of cluster analysis of major and trace elements from the Ordovician Majiagou and Miboshan Formations in the Tianjing mountain area,Ningxia[J].Sedimentary Facies and Palaeogeography,1999,19(02):23-30.]
    [53]余光明,张哨楠,王成善.西藏地区侏罗、白垩及第三系地层泥质岩的微量元素聚类分析成果解释[J].岩相古地理,1990(05):1-7.[YU Guangming,ZHANG Shaonan,WANG Chengshan.Geological interpertation on the results of cluster analysis of tace elements from argillaceous rocks in the Jurassic,Cretaceous and Tertiary strata in Xizang[J].Lithofacies Paleogeography,1990(05):1-7.]
    [54]陈建徽,陈发虎,张恩楼,等.柴达木盆地苏干湖年纹层岩心摇蚊记录的过去1 000年干旱区湿度变化及其意义[J].科学通报,2009,54(20):3127-3135.[CHEN Jianhui,CHEN Fahu,ZHANG Enlou,et al.A 1 000-year chironomid-based salinity reconstruction from varved sediments of Sugan Lake,Qaidam Basin,arid Northwest China,and its palaeoclimatic significance[J].Chinese Science Bulletin,2009(20):3127-3135.]
    [55]张恩楼,沈吉,王苏民,等.近0.9ka来青海湖湖水盐度的定量恢复[J].科学通报,2004,49(07):697-701.[ZHANG Enlou,SHEN Ji,WANG Sumin,et al.Quantitative reconstruction of the paleosalinity at Qinghai Lake in the past 900years[J].Chinese Science Bulletin,2004,49(07):697-701.]

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