代表性论文 1.Liu G, Wu X, Zhao L, Wu T, Hu G, Li R, Qiao Y, Wu X. 2021a. Soil water content in permafrost regions exhibited smaller interannual changes than non-permafrost regions during 1986–2016 on the Qinghai-Tibetan Plateau. Catena 207, 105668. 2.Liu, G., Wu, T., Hu, G., Wu, X. and Li, W. 2021b. Permafrost existence is closely associated with soil organic matter preservation: Evidence from relationships among environmental factors and soil carbon in a permafrost boundary area. Catena 196, 104894. 3.Liu, G., Zhang, X., Wu, T., Wu, X., Smoak, J.M., Li, X., Ji, G., Xu, H., Ma, X., Li, H., Yue, G., Ding, Y., Zhao, L. and Wu, X. 2019. Seasonal changes in labile organic matter as a function of environmental factors in a relict permafrost region on the Qinghai-Tibetan Plateau. Catena 180, 194-202. 4.Liu, G., Liu, Z., Smoak, J.M. and Gu, B. 2015. The dynamics of cladoceran assemblages in response to eutrophication and planktivorous fish introduction in Lake Chenghai, a plateau saline lake. Quaternary International 355, 188-193. 5. Ma, X.,Liu, G., Wu, X., Smoak, J.M., Ye, L., Xu, H., Zhao, L. and Ding, Y. 2018. Influence of land cover on riverine dissolved organic carbon concentrations and export in the Three Rivers Headwater Region of the Qinghai-Tibetan Plateau. Science of The Total Environment 630, 314-322. 通讯作者 6.Liu, G., Liu, Z., Gu, B., Smoak, J.M. and Zhang, Z. 2014. How important are trophic state, macrophyte and fish population effects on cladoceran community? A study in Lake Erhai. Hydrobiologia 736(1), 189-204. 7.Liu, G., Liu, Z., Chen, F., Zhang, Z., Gu, B. and Smoak, J.M. 2012. Response of the cladoceran community to eutrophication, fish introductions and degradation of the macrophyte vegetation in Lake Dianchi, a large, shallow plateau lake in southwestern China. Limnology 14(2), 159-166. 8.Liu, G., Liu, Z., Li, Y., Chen, F., Gu, B. and Smoak, J.M. 2008. Effects of fish introduction and eutrophication on the cladoceran community in Lake Fuxian, a deep oligotrophic lake in southwest China. Journal of Paleolimnology 42(3), 427-435. 9.刘桂民,张博,王莉,吴晓东.2022a.全球和我国多年冻土分布范围和实际面积研究进展.地球科学.doi:10.3799/dqkx.2022.083. 10.毛楠,刘桂民,李莉莎,李小明,张博,徐海燕,吴晓东.2022b.祁连山多年冻土区甲烷通量与甲烷微生物群落组成的关系地球科学47(2),557-567. 11.毛楠,刘桂民,李莉莎,李小明,张博,徐海燕,吴晓东.2021a.祁连山多年冻土区甲烷排放通量及其影响因素.生态学杂志40(6),1745-1752. 12.吴小丽,刘桂民,李新星,纪庚好,李莉莎,毛楠,徐海燕,吴晓东.2021b.青藏高原多年冻土和季节性冻土区土壤水分变化.水文41(1),73-78. 13.吴小丽,刘桂民,李新星,纪庚好,李莉莎,毛楠,徐海燕,吴晓东.2021c.CCI多传感器组合土壤水分产品在青藏高原不同地区的适用性.土壤53(2),429-438. 14.李新星,刘桂民,吴小丽,纪庚好,李莉莎,毛楠,徐海燕,吴晓东.2020a.马衔山不同海拔土壤碳、氮、磷含量及生态化学计量特征.生态学杂志39(3),758-765. 15.李新星,刘桂民,吴小丽,纪庚好,李莉莎,毛楠,徐海燕,吴晓东.2020b.青藏高原东北部热融滑塌区土壤碳氮磷含量.环境科学与技术43(01),37-44. 16.张晓兰,刘桂民,李新星,吴小丽,徐海燕,纪庚好,李莉莎,吴晓东.2019a.青藏高原北麓河地区荒漠草原土壤细菌对热融滑塌的响应.冰川冻土41(4),977-985. 17.张晓兰,刘桂民,徐海燕,李新星,吴小丽,纪庚好,李莉莎,吴晓东.2019b.热融滑塌对青藏高原北麓河荒漠草原土壤细菌群落的影响.应用与环境生物学报25(6),1135-1142. 18.马小亮,刘桂民,吴晓东,徐海燕,叶琳琳,张晓兰.2018a.三江源高寒草甸下溪流溶解性有机碳的季节性输移特征.长江流域资源与环境27(10),2387-23. 19.马小亮,刘桂民,吴晓东,徐海燕,叶琳琳,张晓兰,白炜.2018b.青藏高原多年冻土区典型植被下河流溶解性有机碳的生物可利用性研究.环境科学39(5),2086-2094. 20.马小亮,吴晓东,叶琳琳,徐海燕,白炜,胡广录,刘桂民.2018c.青藏高原腹地不同植被下河流溶解性有机碳特征.环境科学与技术41(9),79-84. 21.李红琴,徐海燕,马小亮,胡广录,吴晓东,刘桂民.2017.马衔山多年冻土与季节冻土区土壤微生物量及酶活性的季节动态.冰川冻土39(2),421-428. 22.邢晓红,刘桂民,李红琴,胡广录.2016.哈思山地区泉水成因及其氢氧稳定同位素特征探讨.水文36(2),46-50. 23.刘桂民,陈非洲,刘正文.太湖枝角类微化石的初步研究.2008.湖泊科学20(4),470-476. 24.刘桂民,王根绪.2004.我国干旱区生态需水若干问题评述.冰川冻土26(5), 650-656. |