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[1]赵 慧,刘伟龙,王小丹,等.不同水分条件下藏北盐化沼泽湿地土壤碳氮的分布[J].山地学报,2014,(04):431.
ZHAO Hui,LIU Weilong,WANG Xiaodan,et al.Distribution of Soil Carbon and Nitrogen under Different Water Conditionsin Alpine Salty Wetlands, Northern Tibet Plateau[J].Mountain Research,2014,(04):431.
[2]肖碧微,周 伟,唐 伟,等.藏北高原重点生态功能区人口迁移趋势及对城镇化格局影响[J].山地学报,2014,(04):497.
XIAO Biwei,ZHOU Wei,TANG Wei,et al.Migration Trends and Effect on Urbanization of Key Ecological Functional Areas of the Northern Tibetan Plateau[J].Mountain Research,2014,(04):497.
[3]李光莹,虎啸天,李希来,等.黄河源玛沁地区高寒草地植物固土护坡的力学效应[J].山地学报,2014,(05):550.
LI Guangying,HU Xiaotian,LI Xilai,et al.Mechanical Effects of Alpine Grassland Plants in Slope Protection in Maqin County of the Source Area of the Yellow River[J].Mountain Research,2014,(04):550.
[4]林永崇,冯金良,张继峰,等.藏北高原安多地区高山草甸土的母质成因及其成土模式[J].山地学报,2012,(06):709.
LIN Yongchong,FENG Jinliang,ZHANG Jifeng,et al.Origin of Parent Materials and Pedogensis for Alpine Meadow Soils in Amdo,Northern Tibetan Plateau[J].Mountain Research,2012,(04):709.
[5]杨梅学,姚檀栋,何元庆,等.藏北高原D110点土壤温度的极值分析[J].山地学报,1999,(03):16.
[6]杨梅学,姚檀栋,小池俊雄.藏北高原土壤温度分布的纬向效应和高度效应[J].山地学报,1999,(04):329.
[7]杨梅学,姚檀栋,ToshioKOIKE.藏北高原土壤温度的变化特征[J].山地学报,2000,(01):13.
[8]董玉祥.藏北高原土地沙漠化现状及其驱动机制[J].山地学报,2001,(05):385.
[9]曾永年,马正龙,冯兆东,等.高寒草地沙漠化土地固碳潜力分析——以黄河源区为例[J].山地学报,2009,(06):671.
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