Journal of Geographical Sciences >
Desert-steppe migration on the Loess Plateau at about 450 kaBP
Received date: 2004-09-10
Revised date: 2004-11-22
Online published: 2005-03-25
Supported by
State Key Discipline Project of Shaanxi Normal University, No.SNNUHG04007; Key Project of the Educational Ministry, No.01JAZJD770014
According to the field investigation, observation by an electronic microscope and x-ray identification and chemical analysis, desert-steppe migration in the Loess Plateau at about 450 kaBP was studied. The data show that gypsum illuvial horizon indicating the desert-steppe environment developed in the early stage of the formation of the fifth layer loess in Shaoling tableland in Chang'an and Bailu tableland in Xi'an of Shaanxi are situated in the southern Loess Plateau. This indicates that remarkable drying occurred, a large-scope migration of desert steppe took place toward south and the climate zone migrated 5 degrees in latitude to south which is the largest migration range indicated by geochemical indexes. The desert-steppe and more wild environment distributed widely on the Loess Plateau at that time. The development of gypsum also indicates that the climate changed at 450 kaBP from monsoon climate to nonmonsoon climate in the Loess Plateau, and the region was not affected by summer monsoon and was in the cold and dry environment of nonmonsoon climate. Annual mean precipitation was about 200 mm, 400 mm less at that time than at present.
Key words: null
ZHAO Jingbo . Desert-steppe migration on the Loess Plateau at about 450 kaBP[J]. Journal of Geographical Sciences, 2005 , 15(1) : 115 -122 . DOI: 10.1360/gs050114
[1] Allen B D, Anderson R Y, 1993. Evidence from western North America for rapid shifts in climate during the last glacial maximum. Science, 260: 1920-1923.
[2] An Z S, Wei L Y, Lu Y C, 1985. A preliminary study of soil stratigraphy in Luochuan loess profile. Quaternary Sciences, 6(1): 166-173. (in Chinese)
[3] An Z S, Kukla G J, Porter S C, 1991. Magnetic susceptibility evidence of monsoon variation on the Loess Plateau of central China during the last 130000 years. Quaternary Research, 36: 29-36.
[4] Barbara A M, 1995. Paleorainfall reconstructions from pedogenic magnetic susceptibility variation in the Chinese loess and paleosol. Quaternary Research, 44(3): 383-391.
[5] Bond G, Heinrich H, Broecker N S et al., 1992. Evidence for massive discharge of icebergs into North Atlantic Ocean during the last glacial period. Nature, 360: 245-249.
[6] Ding Z L, Rutter N W, Sun J M et al., 2000. Re-arrangement of atmospheric circulation at about 2.6 Ma over northern China: evidence from grain size records of loess-paleosol and red clay sequences. Quaternary Science Reviews, 19: 547-558.
[7] Fink J, Kukla G J, 1997. Pleistocene climate in Central Europe: at least 17 interglacials after the Oldurai event. Quaternary Research, 7: 363-371.
[8] Flint R F, 1971. Glacial and Quaternary Geology. New York: Wiley, 60-90.
[9] Guo Z T, Fedoroff N, 1992. A discussion on salinization paleosol and its climatic significance. Quaternary Sciences, 12 (2): 107-117. (in Chinese)
[10] Guo Z T, Liu D S, Fedoroff N et al., 1998. Climate extremes in loess of China coupled with the strength of deep-water formation in the North Atlantic. Global and Planetary Change, 18: 113-128.
[11] Guo Z T, Willam F, Ruddiman W F et al., 2002. Onset of Asian desertification by 22 Myr ago inferred from loess deposits in China. Nature, 416: 159-163.
[12] Heinrich H, 1988. Origin and consequence of cyclic ice rafting in the northeast Atlantic Ocean during past 130000 years. Quaternary Research, 29: 142-152.
[13] Hoven S A, Rea D K, Pisias N G et al., 1989. A direct link between the China loess and 18O records: aeolian flux to the North Pacific. Nature, 349: 142-152.
[14] Huang C C, 2000. Evolution of Environment. Beijing: Science Press, 91-95 (in Chinese)
[15] Hughen K A, 1996. Rapid climate changes in the tropical Atlantic region during the last deglaciation. Nature, 380: 51-54.
[16] Kemp R A, Derbyshire E, Meng X M, 1995. Pedosedimentary reconstruction of a thick loess-paleosol sequence near Lanzhou in north-central China. Quaternary Research, 43: 30-45.
[17] Kohfeld K E, Harrison S P, 2003. Glacial-interglacial changes in dust deposition on the Chinese Loess Plateau. Quaternary Science Review, 22: 1859-1878.
[18] Kukla G J, Hell F, Liu X M et al., 1988. Pleistocene climates in China dated by magnetic susceptibility. Geology, 16: 811-814.
[19] Lei X Y, You L P, 1997. Loess-paleosol sequences and paleoenvironment change in Late Pleistocene in the Guanzhong Plain. Geological Review, 43(5): 555-560. (in Chinese)
[20] Li T J, Wang Y, Zheng Y S, 1983. Soil Geography. Beijing: Higher Education Press, 169-187. (in Chinese)
[21] Liu D S, 1997. Quaternary environment. Beijing: Science Press, 340-345. (in Chinese)
[22] Porter S C, An Z S, 1995. Correlation between climate events in the North Atlantic and China during the last glaciation. Nature, 375: 305-308.
[23] Porter C, 2001. Chinese loess record of monsoon climate during the last glacial-interglacial cycle. Earth Science Review, 54: 115-128.
[24] Ruddiman W F, 1989. Pleistocene evolution: northern ice sheets and Northern Atlantic Ocean. Paleooceanography, 4: 453-462.
[25] Sun D H, An Z S, Wu X H et al., 1996. Summer monsoon evolution since 150 ka in the Loess Plateau. Science in China (Series D), 26(5): 417-422. (in Chinese)
[26] Sun J Z, Zhao J B, 1991. Quaternary in the Loess Plateau. Beijing: Science Press, 154-184. (in Chinese)
[27] Wang W H, 1990. The Climate in Inner Mongolia. Beijing: China Meteorological Press, 50-60. (in Chinese)
[28] Xiong Y, Li Q K, 1987. Chinese Soil. Beijing: Science Press, 137-162. (in Chinese)
[29] Xiao J L, Porter C, 1995. Grain size of quartz as an indicator of winter monsoon strength on the Loess Plateau of central China during the last 130,000 yr. Quaternary Research, 43: 22-29.
[30] Zhao J B, Huang C C, 1999. Environment change of Late Pleistocene in the Loess Plateau. Scientia Geographica Sinica, 19(6): 565-569. (in Chinese)
[31] Zhao J B, 2000. Essence of the loess forming process and environment. Arid Land Geography, 23(4): 315-319. (in Chinese)
[32] Zhao J B, 2001. Paleosol and migration of climatic zone about 500 ka BP in the Loess Plateau of Shaanxi province. Acta Geographica Sinica, 56(3): 323-331. (in Chinese)
[33] Zhao J B, 2002. Illuvial theory and environment evolution in the Loess Plateau. Beijing: Science Press, 45-69. (in Chinese)
[34] Zhao J B, 2003. Paleoenvironmental significance of a paleosol complex in Chinese loess. Soil Science, 168: 63-72.
[35] Zhao J B, 2004. The new basic theory on Quaternary environmental research. Journal of Geographical Sciences, 14(2): 242-250.
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