Grain-size distribution patterns of lacustrine sediments of Qarhan area and its environmental significance
AN Fu-yuan1,2,MA Hai-zhou1,WEI Hai?cheng1,FAN Qi-shun1,Han Wen-xia1
(1 Key Laboratory of Salt Lake Resources and Chemistry, Qinghai Institute of Salt Lakes,Chinese Academy of Sciences,Xining 810008, Qinghai,China; 2 Graduate University of Chinese Academy of Sciences,Beijing 100049,China)
AN Fu-yuan,MA Hai-zhou,WEI Hai-cheng,FAN Qi-shun,Han Wen-xia. Grain-size distribution patterns of lacustrine sediments of Qarhan area and its environmental significance[J]., 2013, 36(2): 212-220.
1.SUN D H,BLOEMENDAL J,REA D K,et al. Bimodal grain-size distribution of Chinese loess,and its palaeoclimatic implications[J]. Catena,2004,55:325-340.
2.SUN D H,BLOEMENDAL J,REA D K,et al. Grain-size distribution function of polymodal sediments in hydraulic and aeolian environments,and numerical partitioning of the sedimentary components[J]. Sedimentary Geology,2002,152:263-277.
3.FAN M J,SONG C H,DETTMAN D L,et al. Intensification of the Asian winter monsoon after 7.4 Ma:Grain-size evidence from the Linxia Basin,northeastern Tibetan Plateau,13.1 Ma to 4.3 Ma[J]. Earth and Planetary Science Letters,2006,248:186-197.
4.JIANG H C,DING Z L. Eolian grain-size signature of the Sikouzi lacustrine sediments(Chinese Loess Plateau):Implications for Neogene evolution of the East Asian winter monsoon[J]. Geological Society of America Bulletin,2010,122:843-854.
5.MORENO A,CACHO I,CANALS M,et al. Saharan dust transport and high-latitude glacial climatic variability:the Alboran Sea record[J]. Quaternary Research,2002,58:318-328.
6.LIN X Q,DONG H L,YANG X D,et al. Late Holocene forcing of the Asian winter and summer monsoon as evidenced by proxy records from the northern Qinghai-Tibetan Plateau[J]. Earth and Planetary Science Letters,2009,280:276 - 284.
11.KAPP P,P ELLETIER J D,ROHRMANN A,et al. Wind erosion in the Qaidam basin,central Asia:Implications for tectonics,paleoclimate,and the source of the Loess Plateau[J]. Geological Society of America Today,2011,21:4-10.
12.CHEN K Z,BOWLER J M. Preliminary study on sedimentary characteristics and evolution of palaeoclimate of Qarhan Salt Lake in Qaidam Basin[J]. Scientia Sinica (Series B),1985,28:1218-1231.
13.CHEN K Z,BOWLER J M. Late Pleistocene evolution of salt lakes in the Qaidam Basin,Qinghai Province,China[J]. Palaeogeography,Palaeoclimatology,Palaeoecology,1986,54:87-104.
17.QIANG M,LANG L,WANG Z. Do fine-grained components of loess indicate westerlies:Insights from observations of dust storm deposits at Lenghu (Qaidam Basin,China)[J]. Journal of Arid Environments,2010,74:1232-1239.
21.MIOUSSE L,BHIRY N,LAVOIE,M. Isolation and water-level fluctuations of Lake Kachishayoot,northern Quebec,Canada[J].Quaternary Research,2003,60:149-161.
23.REA D K,SNOECKX H,JOSEPH L H. Late Cenozoic eolian deposition in the north Pacific:Asian drying,Tibetan uplift,and cooling of the Northern Hemisphere[J]. Paleoceanography,1998,13:215-224.
27.FAN Q S,LAI Z P,LONG H,et al. OSL chronology for lacustrine sediments recording high stands of Gahai Lake in Qaidam Basin,northeastern Qinghai-Tibetan Plateau[J]. Quaternary Geochronology,2010,5:452-457.
28.侯献华,郑绵平,杨振京,等. 柴达木盆地大浪滩130 ka BP以来的孢粉组合与古气候[J]. 干旱区地理,2011,34(2):243- 351.
29.LIU X J,LAI Z P,FAN Q S,et al. Timing for high lake level of Qinghai Lake in the Qinghai-Tibetan Plateau since the Last Interglaciation based on quartz OSL dating[J]. Quaternary Geochronology,2010,5:218-222.
30.施雅风,姚檀栋. 中低纬度MIS 3b(54-44 ka BP)冷期与冰川前进[J]. 冰川冻土,2002,24(2):1-9.
31.OWEN L A,FINKEL R C,MA H Z,et al. Late Quaternary landscape evolution in the Kunlun Mountains and Qaidam Basin,Northern Tibet:A framework for examining the links between glaciation,lake level changes and alluvial fan formation[J]. Quaternary International,2010,154-155:73-86.