School of Earth System Science
Associate professor
fujun_yue@tju.edu.cn
Rm 319, Building No.16
Dr. Fu-Jun Yue is Associate Professor and master's supervisor of the School of Earth System Sciences, Tianjin University. Dr. Yue completed Ph.D. study at the University of Chinese Academy of Sciences (CAS) in 2013. Dr. Yue conducted post-doctoral research at the Institute of Geochemistry, CAS and the University of Glasgow in the United Kingdom from 2013 to 2019. In the past years, Dr. Yue’s research work involved the quality assessment of nitrogen loading in the seven major river basins in China and the identification of nutrient sources in aquatic system. In recent years, Dr. Yue had been mainly engaged in the water and soil environmental quality and environmental effects of rivers, lakes, and reservoir systems in the karst areas of southwest China. Until now, more than 80 academic papers have been published, including SCI 65 papers, of which the first and corresponding author were published in Top journals, e.g. Water Res, Sci Total Environ, Environ Pollut, J Hydrol, Agr Ecosyst Environ, Atmosph Environ with total citation more than 1700 and H index 25. More information at
Google Scholar: https://scholar.google.com/citations?user=hMQMBzgAAAAJ&hl=en
Researchgate: https://www.researchgate.net/profile/Fu_Jun_Yue
- Doctoral degree| University of Chinese Academy of Sciences| Geochemistry| 2013
- Bachelor’s Degree| Qufu Normal University| Chemistry| 2008
- Dr Yue focused on the biogeochemistry cycle of watershed and its ecological environment effect, using online sensor, isotope technology combined with field high-frequency sample analysis, water chemistry and GIS to understand the impact of environmental change and human activities.
- Guest Editor of Hydrological Processes
- Topic Editor of Water
- Member of EGU, Geochemical Society, The International Society of Limnology
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2019.3-Now
School of Earth System Science | Tianjin University | Associate Professor  -
2016.2-2019.2
School ofGeographical & Earth Sciences | University of Glasgow | Postdoctoral Research Associate  -
2014.12-2015.3
Department of Environmental Science & Technology | Tokyo Institute of Technology | Academic Visitor  -
2013.7-2016.1
 Institute of Geochemistry, Chinese Academy of Sciences | Post-doctoral Researcher 
- Papers
- [1] Yue Fu-Jun, Li Si-Liang, Waldron Susan, Oliver M. David, Chen Xi, Li Pan, Peng Tao, Liu Cong-Qiang. 2023. Source availability and hydrological connectivity determined nitrate-discharge relationships during rainfall events in karst catchment as revealed by high-frequency nitrate sensing. Water Research 231(9): 119616
- [2] Yue Fu-Jun, Li Si-Liang, Waldron Susan, Wang Zhong-Jun, Oliver M. David, Chen Xi, Liu Cong-Qiang. 2020. Rainfall and conduit drainage combine to accelerate nitrate loss from a karst agroecosystem: insights from stable isotope tracing and high-frequency nitrate sensing. Water Research 186: 116388.
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- [3] Yue Fu-Jun, Waldron Susan, Li Si-Liang, WangZhong-Jun, Zeng Jie, Xu Sen, Zhang Zhi-Cai, Oliver David M, 2019, Land use interacts with changes in catchment hydrology to generate chronic nitrate pollution in karst waters and strong seasonality in excess nitrate export, Science of The Total Environment, 696, doi.org/10.1016/j.scitotenv.2019.134062.
- [4] Chen-Yang Shou, Fu-Jun Yue*, Bin Zhou*, Xujin Fu, Zhuo-Ni Ma, Yao-Qi Gong, Sai-Nan Chen. 2024. Chronic increasing nitrogen and endogenous phosphorus release from sediment threaten to the water quality in a semi-humid region reservoir. Science of The Total Environment 931:172924.
- [5] Sai-Nan Chen, Yongmei Hou, Fu-Jun Yue*, Zhifeng Yan, Xiao-Long Liu, Si-Liang Li. 2024. Elucidation of the dominant factors influencing N2O emission in water-level fluctuation zones in a karst canyon reservoir, southwest China. Science of The Total Environment 923:171417.
- [6] Xinwei Ren, Fu-Jun Yue*, Jianhui Tang, Cai Li, Si-Liang Li*. 2024. Nitrate transformation and source tracking of rivers draining into the Bohai Sea using a multi-tracer approach combined with an optimized Bayesian stable isotope mixing model. Journal of Hazardous Materials, 463:132901.
- [7] Zhang Wen-Xi, Yue Fu-Jun*, Wang Yong, Li Yun*, Lang Yun-Chao, Li Si-Liang. 2023, Dynamic N transport and N2O emission during rainfall events in the coastal river, Science of The Total Environment 903:166206.
- [8] Zhang Ping, Wang Xiao-Dan*, Yue Fu-Jun*, Chen Sai-Nan, Liu Zi-Han, Lu Meng, Shi Zhi-Yu, 2023. Dynamic characteristics of nitrogen transport in various land use in a typical karst catchment during rainfall events, Environmental Earth Sciences 82(13):332.
- [9] Lu Meng, Yue Fu-Jun*, Wang Xiao-Dan*, Liu Zi-Han, Shi Zhi-Yu, Zhang Ping. 2023. Identify nitrogen transport paths and sources contribution in karst valley depression area using isotopic approach, Journal of Environmental Management, 33:117751.
- [10] Wang, Zhong-Jun; Yue Fu-Jun*; Wang, Yu-Chun; Qin, Cai-Qing; Ding, Hu; Xue, Li-Li; Li, Si-Liang. 2023. Soil nitrogen transformation in different land use and implications for karst soil nitrogen loss controlling. Catena, 225:107026.
- [11] Li Cai, Yue Fu-Jun*, Zhong Jun, Xu Sen, Li Si-Liang. 2023, Hydrological regulation of nitrate sources, transformation and transport pathway in a karstic river, Journal of Hydrology, 617:128998.
- [12] Wen Yanan, Xiao Min*, Chen Zhaochuan, Zhang Wenxi, Yue Fu-Jun*. 2023. Seasonal variations of dissolved organic matter in urban rivers of Northern China. Land, 12(2):273.
- [13] Lu Meng, Wang, Xiao-Dan, Yue Fu-Jun*, Liu Zi-Han, Shi Zhi-Yu, Zhang Ping. 2023. The effect of reservoir expansion from underground karst cave to surface reservoir on water quality in southwestern China, Environmen Sci Pollut Res, 30:24718-24728.
- [14] Li Cai, Yue, Fu-Jun*, Li, Si-Liang, Ge Jinfeng, Chen Sai-Nan, Qi Yulin. Land use as a major factor of riverine nitrate in a semi-arid farming-pastoral ecotone: new insights from multiple environmental tracers and molecular signatures of DOM, Frontiers in Environmental Science 10:1061857
- [15] Shou Chen-Yang, Tian Ye *,Zhou Bin, Fu Xu-Jin, Zhu Yun-Ji, Yue Fu-Jun*.the effect of rainfall on aquatic nitrogen and phosphorus in a semi-humid area catchment, Northern China, Int. J. Environ. Res. Public Health, 2022,19(17):10962.
- [16] 12. Wang, Xin-Chu, Yue, Fu-Jun*, Li, Si-Liang, Li, Xiao-Zheng, Lang, Yun-Chao, Hu, Jian, Ding, Hu and Liu, Cong-Qiang. 2022. Spatial variations in water chemical components in a coastal zone of northern China: Insights from environmental isotopes. Journal of Hydrology, 612: 128054.
- [17] Wang, Zhong-Jun; Yue,Fu-Jun*; Wang, Yu-Chun; Qin, Cai-Qing; Ding, Hu; Xue, Li-Li; Li, Si-Liang. 2022, The effect of heavy rainfall events on nitrogen patterns in agricultural surface and underground streams and the implications for karst water quality protection, Agricultural Water Management, 266: 107600
- [18] Wang Zhong-Jun, Yue Fu-Jun*, Lu Ji, Wang Yu-Chun, Qin Cai-Qing, Ding Hu, Xue Li-Li, Li Si-Liang. 2022, New insight into the response and transport of nitrate in karst groundwater to rainfall events, Science of The Total Environment,818:151727..
- [19] Xu Sen, Yue Fu-Jun, Li Si-Liang, Ding Hu, Xu Sheng, Lang Yun-Chao, Liu Cong-Qiang. 2021, Carbon and nitrogen isotope constraints on source and variation of particulate organic matter in high-latitude agricultural rivers, Northeast China. Journal of Cleaner Production, 321, 128974.
- [20] Zhang Ping, Yue Fu-Jun*, Wang Xiao-Dan*, Chen Sai-Nan, Li Xiao-Zheng, Liu Tao-Ze, Yang Cheng. 2021. Antecedent rainfall and land use controlling the fate of nitrogen in karst urban rivers, elucidated by an isotopic approach. Journal of Hydrology, 592: 125803.
- [21] Chen, Sai-Nan, Yue Fu-Jun*, Liu Xiao-Long, Zhong Jun, Yi Yuan-Bi, Wang Wan-Fa, Qi Yulin, Xiao Hua-Yun, Li Si-Liang. 2021. Seasonal variation of nitrogen biogeochemical processes constrained by nitrate dual isotopes in cascade reservoirs, Southwestern China. Environmental Science and Pollution Research. 28: 26617–26627
- [22] Sun, Qingqing, Yue Fu-Jun*, Chen Jingan, Wang Jingfu*, Li Yulin, Li Xiaozheng, Bhat Mohd A., Liu Jing, Li Siliang.2021, Nitrogen and Phosphorus Diffusion Fluxes: Insight from High-Resolution Technology and Hydrodynamic Modeling. Water, 13(22), DOI: 10.3390/w13223232
- [23] Han Zenglei, Xiao Min*, Yue Fu-Jun*, Yi Yuanbi, Mostofa KMG. 2021. Seasonal Variations of Dissolved Organic Matter by Fluorescent Analysis in a Typical River Catchment in Northern China. Water 13(4): 494.
- [24] Zeng Jie, Yue Fu-Jun*, Xiao Min, Wang Zhong Jun, Wu Qixin, Qin Cai-Qing. 2020. Dissolved organic carbon in rainwater from a karst agricultural area of Southwest China: Variations, sources, and wet deposition fluxes. Atmospheric Research 245: 105140.
- [25] Zeng Jie, Yue Fu-Jun*, Li Si-Liang, Wang Zhong-Jun, Wu Qixin, Qin Cai-Qing, Yan Ze-Long. 2020. Determining rainwater chemistry to reveal alkaline rain trend in Southwest China: Evidence from a frequent-rainy karst area with extensive agricultural production. Environmental Pollution 266: 115166.
- [26] Wang Zhong-Jun, Li Si-Liang*, Yue Fu-Jun*, Qin Cai-Qing, Buckerfield Sarah, Zeng Jie, 2020, Rainfall driven nitrate transport in agricultural karst surface river system: Insight from high resolution hydrochemistry and nitrate isotopes, Agriculture, Ecosystems & Environment, (291):106787. (2021 ESI High Cited))
- [27] Zeng Jie, Yue Fu-Jun*, Li Si-Liang, Wang Zhong-Jun, Qin Cai-Qing,Wu Qi-Xin, Xu,Sheng. 2020, Agriculture driven nitrogen wet deposition in a karst catchment in southwest China., Agriculture, Ecosystems & Environment, (294):106883.
- [28] Zeng Jie, Yue Fu-Jun*, Wang Zhong-Jun, Wu Qixin, Qin Cai-Qing, Li Si-Liang, 2019, Quantifying depression trapping effect on rainwater chemical composition during the rainy season in karst agricultural area, southwestern China, Atmospheric Environment, 218. (2020 ESI Hot paper)
- [29] Yue Fu-Jun, Li Si-Liang, Liu Cong-Qiang, Mostofa Khan M. G., Yoshida Naohiro, Toyoda Sakae, Wang Shi-Lu, Hattori Shohei, Liu Xiao-Long, 2018, Spatial variation of nitrogen cycling in a subtropical stratified impoundment in southwest China, elucidated by nitrous oxide isotopomer and nitrate isotopes, Inland Waters, 8(2), 186–195.
- [30] Yue Fu-Jun, Li Si-Liang, Liu Jing, Zhong Jun, 2018, Evaluation of Factors Driving Seasonal Nitrate Variations in Surface and Underground Systems of a Karst Catchment, Vadose Zone Journal, 17, (1).
- [31] Wang Zhong-Jun, Yue Fu-Jun*, Li Si-Liang*, Li Xiao-Dong, Wang Shi-Lu, Tao Fa-Xiang, 2018, Nitrate dynamics during impoundment and flood periods in a subtropical karst reservoir: Hongfeng Lake, Southwestern China, Environmental Science: Processes & Impacts, 20, 1736-1745.
- [32] Yue Fu-Jun, Li Si-Liang, Liu Cong-Qiang, Zhao Zhi-Qi, Ding Hu, 2017, Tracing nitrate sources with dual isotopes and long term monitoring of nitrogen species in the Yellow River, China, Scientific Reports, 7(1), 8537.
- [33] Wang Zhong-Jun, Yue Fu-Jun*, Zeng Jie, Li Si-Liang, 2017, The influence of urbanization on karst rivers based on nutrient concentration and nitrate dual isotopes: an example from southwestern China, Acta Geochimica, 36(3), 446-451.
- [34] Yue Fu-Jun, Li Si-Liang, Hu Jian, 2015, The contribution of nitrate sources in Liao Rivers, China, based on isotopic fractionation and Bayesian mixing model, Procedia Earth and Planetary Science, 13, 16-20.
- [35] Yue Fu-Jun, Li Si-Liang, Liu Cong-Qiang, Lang Yun-Chao, Ding Hu, 2015, Sources and transport of nitrate constrained by isotopic technique in a karst catchment: An example from Southwest China, Hydrological Processes, 29(8), 1883-1893.
- [36] Yue Fu-Jun, Liu Cong-Qiang, Li Si-Liang, Zhao Zhi-Qi, Liu Xiao-Long, Ding Hu, Liu Bao-Jian, Zhong Jun, 2014, Analysis of δ15N and δ18O to identify nitrate sources and transformations in Songhua River, Northeast China, Journal of Hydrology, 519 (Part A), 329-339.
- [37] Yue Fu-Jun, Li Si-Liang, Liu Cong-Qiang, Zhao Zhi-Qi, Hu Jian, 2013, Using dual isotopes to evaluate sources and transformation of nitrogen in the Liao River, Northeast China, Applied Geochemistry, 36, 1-9.
- [38] Yue Fu-Jun, Liu Xiao-Long, Zhu Zhao-Zhou, Li Jun, Wang Zhong-Liang, 2010, Using nitrogen isotopic approach to identify nitrate sources in waters of Tianjin, China, Bulletin of Environmental Contamination and Toxicology, 85(6), 562-567.
- [39] 简锐风,岳甫均*,朱兆洲,刘小龙,张璐瑶. 2023.环渤海滨海湿地重金属的时空变化及来源分析.中国环境科学, 43 (11)6025-6038.
- [40] 刘子涵,王晓丹,岳甫均*,陆萌,张平,时治宇. 2022. 典型喀斯特小流域水体碳、氮的影响因素研究.矿物岩石地球化学通报, 41(5):1061-1069.
- [41] 李肖正,岳甫均*,周滨,王欣楚,胡健,陈赛男,李思亮.渤海湾典型闸控入海河流水体N2O释放研究.中国环境科学.(EI)
- [42] 任奕蒙, 岳甫均*, 徐森, 陈赛男, 王忠军, 李思亮. 2019. 利用氮氧同位素解析赤水河流域水体硝酸盐来源及其时空变化特征. 地球与环境, 47(6):820-828.
- [43] 岳甫均,李思亮,刘丛强,安宁,蔡虹明.2012, 利用反硝化细菌法测试水体硝酸盐氮氧同位素, 生态学杂志, 31(08), 2152-2157.
- [44] 曾杰, 王忠军, 岳甫均*, 李思亮, 吴起鑫, 刘涛泽, 司霞莉, 2018, 喀斯特洼地湿沉降氮形态及硝酸盐同位素组成的垂向分布特征, 生态学杂志, 37(11), 3422-3429.
- [45] 司霞莉, 岳甫均*, 王忠军, 曾杰, 贾国栋, 钟君, 李思亮, 2018, 深水湖泊沉积物不同形态氮的生物地球化学特征——以百花湖为例, 生态学杂志, 37(3), 763-770.
- [46] Chin Yik Lin, Su Shiung Lam, Hijaz Kamal Hasnan, Fu-Jun Yue, Noer El Hidayah, Kayatri Govindaraju. 2024. Deconvolving geochemical micro-spatial variability of an unconsolidated aquifer through chemometric. Environmental Earth Sciences, 83:177.
- [47] Wanfa Wang, Si-Liang Li, Jun Zhong, Yuanbi Yi, Fu-Jun Yue, Zenglei Han, Qixin Wu, Ding He, Cong-Qiang Liu. 2024. Unraveling the factors influencing CO2 emissions from hydroelectric reservoirs in karst and non-karst regions: A comparative analysis. Water Research, 248:120893.
- [48] Shuo Wang, Tao Lyu, Shengjie Li, Zhuo Jiang, Zhengzhu Dang, Xianfang Zhu, Wei Hu, Fu-Jun Yue, Guodong Ji. 2024. Unignorable enzyme-specific isotope fractionation for nitrate source identification in aquatic ecosystem, Chemosphere, 348:140771.
- [49] Chen Dandan, Cheng Kuan, Liu Tongxu, Chen Guojun*, Kappler Andreas, Li Xiaomin, Zeng Raymond Jianxiong, Yang Yang, Yue Fujun, Hu Shiwen, Cao Fang, Li Fangbai. 2023. Novel Insight into Microbially Mediated Nitrate-Reducing Fe(II) Oxidation by Acidovorax sp. Strain BoFeN1 Using Dual N–O Isotope Fractionation. Environ. Sci. Technol. 57 (33): 12546–12555.
- [50] Wu, Yangyang, Jinli Yang, Siliang Li, Chunzi Guo, Xiaodong Yang, Yue Xu, Fujun Yue, Haijun Peng, Yinchuan Chen, Lei Gu, and et al. 2023. NDVI-Based Vegetation Dynamics and Their Responses to Climate Change and Human Activities from 2000 to 2020 in Miaoling Karst Mountain Area, SW China. Land 12(7): 1267.
- [51] Liu Hao, Zhang Zhicai, Chen Xi, Cheng Qinbo, Li Siliang, Yue Fujun, Peng Tao, Zhang Lin. 2023. Intra-event concentration–discharge relationships affected by hydrological connectivity in a karst catchment. Hydrological Processes, 37(4), e14880.
- [52] Zhang Jun, Wei Rongfei, Zerizghi Teklit, Wang Ziteng, Cui Meng, Du Chenjun, Yue Fujun, Guo Qingjun. 2023 Nitrate sources and transformations along the Yangtze river and its changes after strict environmental regulation. Journal of Hydrology, 617:129037.
- [53] Li Si-Liang, Liu Xin, Yue Fu-Jun, Yan Zhifang, Wang Tiejun Li Songjing, Liu Cong-Qiang. 2022. Nitrogen dynamics in the Critical Zones of China, Progress in Physical Geography, 46(6):869-888.
- [54] Ma Jifu, Li Si-Liang, Chen Yiping, Yue Fu-Jun, Shaheen Sabry M., Majrashi Ali, Ali Esmat F., Rinklebe Jorg, Luo Han, Zheng Qihui. Hazardous toxic metal(loid)s in top- and deep-soils during the transformation of aquaculture ponds restored to farmland. Science of The Total Environment 852:158569.
- [55] Wu Yangyang, Gu Lei, Li Siliang, Guo Chunzi, Yang Xiaodong, Xu Yue, Yue Fujun, Peng Haijun, Chen Yinchuan, Yang Jinli, Shi Zhenghua, Luo Guangjie. 2022, Responses of NDVI to Climate Change and LUCC along Large-Scale Transportation Projects in Fragile Karst Areas, SW China. Land, 11, 1771.
- [56] Qin Caiqing; Li Si-Liang*; Yu Guang-Hui; Bass Adrian M.; Yue Fu-Jun; Xu Sheng. 2022, Vertical variations of soil carbon under different land uses in a karst critical zone observatory (CZO), SW China. Geoderma, 412: 115741.
- [57] 刘鑫,李思亮,岳甫均,钟君,覃菜清,丁虎. 2022.喀斯特系统生物地球化学循环及对全球变化的响应, 中国岩溶, 41(3):465-476.
- [58] Xu Sen, Li, Siliang, Su Jing, Yue Fu-Jun, Zhong Jun, Chen Shuai. 2021. Oxidation of pyrite and reducing nitrogen fertilizer enhanced the carbon cycle by driving terrestrial chemical weathering." Science of the Total Environment 768: 144343.
- [59] Yang Xuemei, Yuan Jie, Yue Fu-Jun, Li Si-Liang, Wang Baoli, Mohinuzzaman Mohammad, Liu Yijun, Senesi Nicola, Lao Xinyu, Li Longlong, Liu Cong-Qiang, Ellam, Rob, Vione Davide, Mostofa, Khan, 2020. New insights into mechanisms of sunlight- and dark-mediated high-temperature accelerated diurnal production-degradation of fluorescent DOM in lake waters. Science of the Total Environment: 143377.
- [60] Xu Sen, Li Si-Liang*, Yue Fu-Jun, Udeshani Charitha, Chandrajith Rohana. 2021, Natural and Anthropogenic Controls of Groundwater Quality in Sri Lanka: Implications for Chronic Kidney Disease of Unknown Etiology (CKDu). Water,13(19).
- [61] Zhou Bin, Fu Xujin, Wu Ben, He Jia, Vog Rolf D., Yu, Dan, Yue Fu-Jun, Chai Man. 2021.Phosphorus Release from Sediments in a Raw Water Reservoir with Reduced Allochthonous Input.Water,13(14).
- [62] Zhang Ruochun, Qi Yulin, Ma Chao, Ge Jinfeng, Hu Qiaozhuan, Yue Fu-Jun, Li Si-Liang, Volmer Dietrich A. 2021. Characterization of Lignin Compounds at the Molecular Level: Mass Spectrometry Analysis and Raw Data Processing. Molecules 26(1): 178.
- [63] Ge Jinfeng, Ma Chao, Qi Yulin, Wang Xiaowei, Wang Wei, Hu Miao, Hu Qiaozhuan, Yi Yuan-Bi, Shi Dejun, Yue Fu-Jun, Li Si-Liang, Volmer Dietrich A. 2021. Quadrupole detection FT-ICR mass spectrometry offers deep profiling of residue oil: A systematic comparison of 2ω 7 Tesla versus 15 Tesla instruments. Analytical Science Advances 1-7, doi.org/10.1002/ansa.202000123.
- [64] 覃蔡清, 李思亮*, 岳甫均, 丁虎, 徐胜, 刘丛强. 2021. 喀斯特关键带溶解性碳的迁移转化过程及其对降雨事件的响应. 第四纪研究, 41(04),: 1128-1139.
- [65] Matiatos Ioannis,Wassenaar Leonard I., Monteiro Lucilena R.,Venkiteswaran Jason J.,Gooddy Daren C., Boeckx Pascal, Sacchi Elisa,Yue Fu-Jun, Michalski Greg, Alonso-Hernández Carlos, Biasi Christina, Bouchaou Lhoussaine, Edirisinghe Nandana V., Fadhullah Widad, Fianko, Joseph R., García-Moya, Alejandro Kazakis, Nerantzis, Li Si-Liang, Luu Minh T. N., Priyadarshanee Sakhila, Re Viviana, Rivera Diego S., Romanelli Asunción, Sanyal Prasanta, Tamooh Fredrick, Trinh Duc A.,Walters Wendell,Welti Nin
- [66] Qin Caiqing, Ding Hu, Li Si Liang, Yue Fu Jun, Zeng Jie. 2020. Hydrogeochemical Dynamics and Response of Karst Catchment to Rainstorms in a Critical Zone Observatory (CZO), Southwest China. Frontiers in Water 2: 577511.
- [67] Li Si-Liang, Xu Sen, Wang Tie-Jun, Yue Fu-Jun, Peng Tao, Zhong Jun, Wang Li-Chun, Chen Jin-An, Wang Shi-Jie, Chen Xi, Liu Cong-Qiang. 2020. Effects of agricultural activities coupled with karst structures on riverine biogeochemical cycles and environmental quality in the karst region. Agriculture Ecosystems & Environment 303: 107120.
- [68] Zhang Zhicai, Chen Xi, Li Siliang, Yue Fujun, Cheng Qinbo, Peng Tao, Soulsby Chris. 2020. Linking nitrate dynamics to water age in underground conduit flows in a karst catchment. Journal of Hydrology: 125699.
- [69] Le Cao, Shijie Wang, Tao Peng, Qianyun Cheng, Lin Zhang, Zhicai Zhang, Fu-Jun Yue, Alan E. Fryer. 2020. Monitoring of suspended sediment load and transport in an agroforestry watershed on a karst plateau, Southwest China. Agriculture Ecosystems & Environment, 299, 106976.
- [70] Le Cao, Shuang Liu, Shijie Wang, Qianyun Cheng, Alan E.Fryar , Lin Zhang, Zhicai Zhang, Fu-Jun Yue, Tao Peng. 2021. Factors controlling discharge-suspended sediment hysteresis in karst basins, southwest China: Implications for sediment management. Journal of Hydrology 594: 125792.
- [71] Jing Liu, Jun Zhong, Hu Ding, Fu‐Jun Yue, Cai Li, Sen Xu, Si‐Liang Li. 2020 Hydrological regulation of chemical weathering and dissolved inorganic carbon biogeochemical processes in a monsoonal river. Hydrological Processes. 2020, 34:2780–2792.
- [72] Zhicai Zhang, Xi Chen, Qinbo Cheng, Siliang Li, Fu-Jun Yue, Tao Peng, Susan Waldron, David M Oliver, Chris Soulsby. 2020. Coupled hydrological and biogeochemical modelling of nitrogen transport in the karst critical zone. Science of The Total Environment, 732, 138902.
- [73] Marc Peters, Qingjun Guo, Harald Strauss, Rongfei Wei, Siliang Li, Fu-Jun Yue. 2020. Seasonal effects on contamination characteristics of tap water from rural Beijing: A multiple isotope approach. Journal of Hydrology, 588, 125037.
- [74] Fadhullah Widad, Yaccob Nur Syahirah, Syakir M. I., Muhammad Syahidah Akmal, Yue Fu-Jun, Li Si-Liang. 2020, Nitrate sources and processes in the surface water of a tropical reservoir by stable isotopes and mixing model, Science of The Total Environment, (700):134517.
- [75] Qin, Caiqing, Li, Si-Liang, Waldron, Susan, Yue, Fu-Jun, Wang, Zhong-Jun, Zhong, Jun, Ding, Hu, Liu, Cong-Qiang, 2020, High-frequency monitoring reveals how hydrochemistry and dissolved carbon respond to rainstorms at a karstic critical zone, Southwestern China, Science of the Total Environment, (714):136833.
- [76] Li Cai, Li Si-Liang, Yue Fu-Jun, Liu Jing, ZhongJun, Yan Zhi-Feng, Zhang Ruo-Chun, Wang Zhong-Jun, Xu Sen. 2019, Identification of sources and transformations of nitrate in the Xijiang River using nitrate isotopes and Bayesian model, Science of The Total Environment, 646, 801-810. (2020,2021,2022 ESI Highly Cited)
- [77] Qin Cai-Qing, Li Si-Liang, Yue Fu-Jun, Xu Sheng, Ding Hu. 2019, Spatiotemporal variations of dissolved inorganic carbon and controlling factors in a small karstic catchment, Southwestern China, Earth Surface Processes and Landforms, (44)12:2423-2436.
- [78] Sophie M. Green, Jennifer A.J. Dungait, Chenglong Tu, Heather L. Buss, Nicole Sanderson, Simon J. Hawkes, Kaixiong Xing, Fujun Yue, Victoria L. Hussey, Jian Peng, Penny Johnes, Tim Barrows, Iain P. Hartley, Xianwei Song, Zihan Jiang, Jeroen Meersmans, Xinyu Zhang, Jing Tian, Xiuchen Wu, Hongyan Liu, Zhaoliang Song, Richard Evershed, Yang Gao and Timothy A. Quine, 2019, Soil functions and ecosystem services research in the Chinese karst Critical Zone, Chemical Geology, (527):119107.
- [79] Li Cai, Li Si-Liang, Yue Fu-Jun, He Shao-Neng, Shi Zong-Bo, Di Chong-Li, Liu Cong-Qiang., 2019, Nitrate sources and formation of rainwater constrained by nitrate isotopes in Southeast Asia: Example from Singapore, Chemosphere, (241):125024, doi.org/10.1016/j.chemosphere.2019.125024.
- [80] Marc Peters, Qing-Jun Guo, Harald Strauss, Rong-Fei Wei, Si-Liang Li, Fu-Jun Yue, 2019, Contamination patterns in river water from rural Beijing: A hydrochemical and multiple stable isotope study, Science of the Total Environment, 654, 226-236.
- [81] 颜泽龙, 韩晓昆, 岳甫均, 钟君, 王忠军, 曾杰, 李思亮. 2019. 西南喀斯特农业区大气降水化学及硫同位素组成特征. 地球与环境, 47(6):811-819.
- [82] Zhong Jun, Li Si-Liang, Cai Hong-Ming, Yue Fu-Jun, Tao Fa-Xiang, 2018, The Response of Carbon Geochemistry to Hydrological Events within an Urban River, Southwestern China, Geochemistry International, 56(5), 462-473.
- [83] Liu, Xiao-Long, Li Si-Liang, Wang Zhong-Liang, Wang Bao-Li, Han Gui-Lin, Wang Fu-Shun, Bai Li, Xiao Min, Yue Fu-Jun, Liu Cong-Qiang, 2018, Sources and key processes controlling particulate organic nitrogen in impounded river–reservoir systems on the Maotiao River, Southwest China, Inland Waters, 8(2), 167-175.
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- Funding
- [1] 2021.01-2024.12,Tracing the fate of nitrogenous gas by multi-isotopes in peak cluster depression karst catchment,PI,NSFC
- [2] 2023.01-2027.12,环渤海滨海地球关键带结构与过程的时空耦合机理。项目骨干,基金委重大项目,在研。
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- [3] 2020.01-2024.12, The influence of exogenous acid on carbonate weathering carbon sink,Co-PI,Chinese Academy of Sciences。
- [4] 2021.09-2025.08,环渤海滨海湿地水资源和水环境调查。项目骨干,科技部调查专项, 在研。
- [5] 2021.09-2022.09,引滦入津流域多通道入库污染通量研究项目 .主持,交通运输部天津水运工程科学研究所,结题。
- [6] 2016.02~2019.02,The riverine N dynamic cycle at reservoir bay influenced by Three Gorges Reservoir, China,PI,International Atomic Energy Agency (IAEA),Coordinated Research Project :Isotopes to Study Nitrogen Pollution and Eutrophication of Rivers and Lakes (F32007).
- [7] 2016.01~2018.12,The transmissive critical zone: understanding the karst hydrology-biogeochemical interface for sustainable management,Participant,Natural Environment Research Council, United Kingdom.
- [8] 2015.01~2017.12. The biogeochemical processes on water/soil interface and denitrification rate: evidence from δ15N & δ18O-NO3,PI,National Natural Science Foundation of China.
- [9] 2014. 05~2016. 01, The nitrate fate and its transformation in the lake water, PI, China Postdoctoral Science Foundation.