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[2]
Loess in the Tian Shan and its implications for the development of the Gurbantunggut Desert and drying of northern Xinjiang[J]. FANG Xiaomin, SHI Zhentao, YANG Shengli, YAN Maodu, LI Jijun & JIANG Ping’anNational Laboratory of Western China’s Environmental Systems of Ministry of Education of China & Department of Geography, Lanzhou University, Lanzhou 730000, China;State Key Labor.Chinese Science Bulletin. 2002(16)
[3]
Sedimentary records of environmental evolution in the Sanmen Lake Basin and the Yellow River running through the Sanmenxia Gorge eastward into the sea[J]. 王苏民 ,蒋复初 ,田国强 ,薛滨 ,吴锡浩 ,张振克 ,童国榜.Science in China(Series D:Earth Sciences). 2002(07)
[4]
Loess in Kunlun Mountains and its implications on desert development and Tibetan Plateau uplift in west China[J]. 方小敏 ,李吉均 ,陈秀玲 ,安芷生 ,吕连清 ,蒋平安 ,杨胜利.Science in China(Series D:Earth Sciences). 2002(04)
[5]
The evolution of coupling of Asian winter monsoon and high latitude climate of Northern Hemisphere——Grain evidence from 8.1 Ma loess-red clay sequence on the Chinese central Loess Plateau[J]. 吕连清 ,方小敏 ,JosephA.Mason ,李吉均 ,安芷生.Science in China(Series D:Earth Sciences). 2001(S1)
[6]
Pleistocene magnetic susceptibility and paleomagnetism of the Tibetan loess and its implications on large climatic change events[J]. 颜茂都 ,方小敏 ,陈诗越 ,杨胜利 ,吕连清 ,李吉均 ,安芷生.Science in China(Series D:Earth Sciences). 2001(S1)