Zhao, T., Liu, W., Xu, Z., Sun, H., Zhou, X., Zhou, L., Zhang, J., Zhang, X., Jiang, H., Liu, T., 2019. The influence of carbonate precipitation on riverine magnesium isotope signals: new constrains from Jinsha River Basin, Southeast Tibetan Plateau. Geochimica et Cosmochimica Acta 248, 172-184.Liu, W., Xu, Z., Sun, H., Zhao, T., Shi, C., Liu, T., 2018. Geochemistry of the dissolved loads during high-flow season of rivers in the southeastern coastal region of China: anthropogenic impact on chemical weathering and carbon sequestration. Biogeosciences 15, 4955-4971.Jiang, H., Liu, W., Zhao, T., Sun, H., Xu, Z., 2018. Water geochemistry of rivers draining karst-dominated regions, Guangxi province, South China: Implications for chemical weathering and role of sulfuric acid. Journal of Asian Earth Sciences 163, 152-162.Sun, H., Han, J., Li, D., Lu, X., Zhang, H., Zhao, W., 2017. Organic carbon transport in the Songhua River, NE China: Influence of land use. Hydrological Processes 31, 2062-2075.Sun, H., Han, J., Zhang, S., Lu, X., 2015. Carbon isotopic evidence for transformation of DIC to POC in the lower Xijiang River, SE China. Quaternary International 380-381, 288-296.Ran, L., Lu, X., Sun, H., Han, J., Yu, R., 2015. Chemical denudation in the Yellow River and its geomorphological implications. Geomorphology 231, 83-93.Ran, L., Lu, X., Richey, J., Sun, H., Han, J., Yu, R., Liao, S., Yi, Q., 2015. Long-term spatial and temporal variation of CO2 partial pressure in the Yellow River, China. Biogeosciences 12, 921-932.Ran, L., Lu, X.X., Yang, H., Li, L., Yu, R., Sun, H., Han, J., 2015. CO2 outgassing from the Yellow River network and its implications for riverine carbon cycle. Journal of Geophysical Research: Biogeosciences 120, 1334-1347.Ran, L., Lu, X., Sun, H., Han, J., Li, R., Zhang, J., 2013. Spatial and seasonal variability of organic carbon transport in the Yellow River, China. Journal of Hydrology 498, 76-88.Zhang, S., Lu, X.X., Sun, H., Han, J., 2011. Modeling catchment controls on organic carbon fluxes in a meso-scale mountainous river (Luodingjiang), China. Quaternary International 244, 296-303.Sun, H., Han, J., Lu, X., Zhang, S., Li, D., 2010. An assessment of the riverine carbon flux of the Xijiang River during the past 50 years. Quaternary International 226, 38-43.Sun, H., Han, J., Li, D., Zhang, S., Lu, X., 2010. Chemical weathering inferred from riverine water chemistry in the lower Xijiang basin, South China. Science of the Total Environment 408, 4749-4760.Zhang, S., Lu, X.X., Sun, H., Han, J., Higgitt, D.L., 2009. Geochemical characteristics and fluxes of organic carbon in a human-disturbed mountainous river (the Luodingjiang River) of the Zhujiang (Pearl River), China. Science of the Total Environment 407, 815-825.Zhang, S., Lu, X.X., Sun, H., Han, J., Higgitt, D.L., 2009. Major ion chemistry and dissolved inorganic carbon cycling in a human-disturbed mountainous river (the Luodingjiang River) of the Zhujiang (Pearl River), China. Science of the Total Environment 407, 2796-2807.Sun, H., Han, J., Lu, X., Zhang, S., 2008. Modeling the relations between riverine DIC and environmental factors in the lower Xijiang of the Pearl River, China. Quaternary International 186, 65-78.Zhang, S., Lu, X.X., Higgitt, D.L., Chen, C.T.A., Han, J., Sun, H., 2008. Recent changes of water discharge and sediment load in the Zhujiang (Pearl River) Basin, China. Global & Planetary Change 60, 365-380.Chen, H.H., Han, J.T., Ding, Z.L., Sun, H.G., Guo, Z.F., 2008. Chronological dating and tectonic implications of late Cenozoic volcanic rocks and lacustrine sequence in Oiyug Basin of southern Tibet. Science in China 51, 275-283.Sun, H.G., Han, J.T., Zhang, S.R., Lu, X.X., 2007. The impacts of 05.6 extreme flood event on riverine carbon fluxes in Xijiang River. Chinese Science Bulletin 52, 805-812.Zhang, S.R., Lu, X.X., Higgitt, D.L., Chen, C.T.A., Sun, H.G., Han, J.T., 2007. Water chemistry of the Zhujiang (Pearl River): natural processes and anthropogenic influences. Journal of Geophysical Research, 112(F1), F01011. Journal of Geophysical Research Atmospheres 112, 137-161.班凤梅,谭明,韩晋仙,翟艳峰,赵旭红,孙会国,2019. 北京石花洞疏松-致密型石笋微层形成机理. 科学通报 64, doi:10.1360/N972019-00137李冬伟, 汉景泰, 孙会国, 李东, 庞忠和, 崔琳琳, 王旭, 曹蕴宁, 刘卫国, 2015. 长白山-贝加尔湖断面水生植物正构烷烃及其氢同位素与环境水的分馏关系. 科学通报 35, 2774-2783.李东, 汉景泰, 孙会国, 董明, 富永红, 2010. 硅藻提纯方法新进展:小个体硅藻纯化的实验技术. 第四纪研究 30, 623-624.孙会国, 2007. 东北地区河流碳输出通量与流域侵蚀研究, in: 刘嘉麒 (Ed.), 东北地区有关水土资源配置、生态与环境保护和可持续发展的若干战略问题研究(自然历史卷: 东北地区自然环境历史演变与人类活动的影响研究). 科学出版社, 北京, pp. 496-510.陈贺海, 汉景泰, 丁仲礼, 孙会国, 郭正府, 2007. 藏南乌郁盆地晚新生代沉积序列的时代及其区域构造意义. 中国科学:地球科学 37, 1617-1624孙会国, 汉景泰, 张淑荣, 吕喜玺, 2006. "05-06"西江特大洪水对河流碳输出通量的影响. 科学通报 51, 2773-2779. |