(1)Huawu Wu, Jinglu Wu, Jing Li, et al. Spatial variations of hydrochemistry and stable isotopes in mountainous river water from the Central Asian headwaters of the Tajikistan Pamirs. Catena, 2020, 193: 104639.
(2)Huawu Wu, Guoqin Zhao, Xiaoyan Li, et al. Identifying water sources used by alpine riparian plants in a restoration zone of Qinghai-Tibet Plateau: Evidence from stable isotopes. Science of the Total Environment, 2019, 697:134092.
(3)Huawu Wu, Jinglu Wu, Fan Song, et al. Spatial distribution and controlling factors of surface water stable isotope values (δ18O and δ2H) across Kazakhstan, Central Asia. Science of the Total Environment, 2019, 678: 53-61.
(4)Huawu Wu, Xiaoyan Li, Jianming Zhang, et al. Stable isotopes of atmospheric water vapor and precipitation in the northeast Qinghai-Tibetan Plateau. Hydrological Processes, 2019,33(23): 2997-3009.
(5) Huawu Wu, Jinglu Wu, Kadyrbek Sakiev, et al. Spatial and temporal variability of stable isotopes (δ18O & δ2H) in surface waters of arid, mountainous Central Asia. Hydrological Processes, 2019, 33(12): 1658-1669.
(6) Huawu Wu, Xiaoyan Li, Jing Li, et al. Age-related water uptake patterns of alpine plantation shrubs in reforestation region of Qinghai–Tibetan Plateau based on stable isotopes. Ecohydrology, 2019, 12(1): e2049.
(7)Huawu Wu, Jing Li, Cicheng Zhang, et al. Determining root water uptake of two alpine crops in a rainfed cropland in the Qinghai Lake watershed: First assessment using stable isotopes analysis. Field Crops Research, 2018, 215: 113-121.
(8) Huawu Wu, Jing Li, Song Fan, et al. Spatial and temporal patterns of stable water isotopes along the Yangtze River during two drought years. Hydrological Processes, 2018, 32(1): 4-16.
(9) Huawu Wu, Li Jing, Xiaoyan Li, et al. Contrasting response of coexisting plant’s water-use patterns to experimental precipitation manipulation in an alpine grassland community of Qinghai Lake watershed, China. PloS one, 2018, 13(4), e0194242.
(10) Huawu Wu, Xiaoyan Li, Bin He, et al. Characterizing the Qinghai Lake watershed using oxygen-18 and deuterium stable isotopes. Journal of Great Lakes Research, 2017, 43(3): 33-42.
(11) Haixia Zhang, Huawu Wu*, Jing Li, et al. Spatial-temporal variability of throughfall in a subtropical deciduous forest from the hilly regions of eastern China. Journal of Mountain Science, 2019, 16(8): 1788-1801.
(12) Kaiyan Zhao, Huawu Wu*, Wen Chen, et al. Impacts of landscapes on water quality in a typical headwater catchment, Southeastern China. Sustainability, 2020, 12(2): 721.
(13)吴华武,李小雁,蒋志云,等.基于δD和δ18O的青海湖流域芨芨草水分利用来源变化研究.生态学报,2015,12(24):8174-8183.
(14)吴华武,章新平,李小雁,等.湘江流域中下游长沙地区不同水体中δD和δ18O的变化.地理科学,2014,34(4):488-495.
(15)吴华武,李小雁,赵国琴,等.青海湖流域降水和河水中δD和δ18O变化特征.自然资源学报,2014,29(9):1552-1564.
(16)吴华武,章新平,关华德,等.不同水汽来源对长沙地区降水中δD、δ18O影响.自然资源学报,2012,27(8):1404-1414.
(17)吴华武,章新平,孙广禄,等.湖南长沙地区大气降水中稳定同位素特征变化.长江流域资源与环境,2012,21(5):540-546.
(18)吴华武,章新平,孙广禄,等.长江流域大气降水中δ18O的变化特征与水汽来源.气象与环境学报,2011,27( 5) : 07-12.
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