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中山大学环境科学与工程学院导师教师师资介绍简介-曹英杰

本站小编 Free考研考试/2021-05-19


基本情况
曹英杰,男,副教授,博士生导师。
主要从事同位素水文学及同位素生物地球化学循环研究,并负责学院环境及生态系统元素循环示踪平台建设,示踪平台仪器设备配备齐全,涵盖质谱(包括同位素质谱)、色谱、能谱及光谱分析子平台。
目前主要开拓方向为同位素有机地球化学及传统同位素的非传统应用,欢迎相关方向学生及科研人员加入课题组开展研究工作。
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联系方式
广州市番禺区大学城外环东路132号,中山大学环境科学与工程学院,环境科学系,510006
E-mail:caoyingj@mail.sysu.edu.cn
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教育经历
2001.09-2005.07 吉林大学 水文与水资源工程 工学学士
2005.09-2008.07 河海大学 水文学及水资源 工学硕士
2008.09-2012.07 中国科学院地理科学与资源研究所 自然地理 理学博士
2009.10-2013.09 日本千叶大学 绿地环境 农学博士
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工作经历
2010.10-2015.02 日本农研机构农村工学研究所 助理研究员
2013.10-2015.02 日本千叶大学 园艺学研究科 博士研究员
2015.02-至今 中山大学,环境科学与工程学院,讲师,副教授
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讲授课程
本科课程:环境统计学、地理信息系统、水环境数学模型、地下水污染与调查方法
研究生课程:水环境污染与修复、水文地球化学基础
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研究方向
同位素水文学、同位素生物地球化学、地下水污染与修复
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科研项目
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?? 主持项目(年份排序):
(1)国家自然科学基金-面上项目,粤港澳大湾区城镇化河流氮素来源解析及迁移转化研究:基于多相多形态氮同位素示踪的探索,2021-2024,主持
(2)国家重点研发计划,有色金属矿区地下水污染防控技术体系,子任务“有色金属矿区地下水迁移通道与重金属污染过程识别”,2020-2023,主持
(3)广东省自然科学基金-面上项目,基于三维荧光光谱及同位素技术的桉树种植流域溶解性有机物输出特征和来源解析,2019-2020,主持
(4)广东省科技计划项目,VOCs及石油类化合物场地污染原位ORC加速微生物修复技术研发与应用,子课题“土壤气抽提VOCs色谱在线分析技术研发”,2018-2019,主持
(5)国家重点研发计划,海水抽水蓄能电站前瞻技术研究-海水抽水蓄能电站环境影响评估与生态修复关键技术,子任务“海水抽水蓄能电站地下水渗漏监测预警”,2017-2021,主持
(6)国家自然科学基金-青年基金,基于CFCs及多同位素示踪技术的城乡交错带地下水硝酸盐污染源解析及迁移转化规律研究,2016-2018,主持
(7)果树种植区土壤水硝态氮运移规律研究,日本千叶大学院科学与技术协会(AGSST)年轻研究者研究助成经费,2012-2013,主持
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?? 参与项目(年份排序):
(1)国家自然科学基金-面上项目,珠江三角洲集约型农业区河畔湿地土壤地下水中磷的迁移转化规律及其影响因素,2019-2023,第一参与人
(2)国家自然科学基金-面上项目,高通量氮输入对红树林生态系统主要组分与典型过程的影响研究,2018-2021,第四参与人
(3)国家自然科学基金-面上项目,干旱区绿洲与荒漠植被蒸散发及其组分定量遥感反演研究,2017-2020,第二参与人
(4)国家自然科学基金-青年基金,珠江口近岸海域无机氮的来源与输送途径研究,2017-2019,第一参与人
(5)国家自然科学基金-面上项目,桉树种植对流域水循环及氮循环的作用机理及其长期影响研究,2015-2018,第二参与人
(6)日本农林水产省委托项目,农林水产对气候变化的响应对策及相关技术措施研究(農林水産分野における地球温暖化対策のための緩和及び適用技術の開発),2006年-2009年,主要参与人
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代表论著
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英文论文:
Li, L., Zhang, Y.*, Wang, J., Lu, S., Cao, Y., Tang, C., Yan, Z. and Zheng, L. (2020) History traces of HCHs and DDTs by groundwater dating and their behaviours and ecological risk in northeast China. Chemosphere 257, 127212.
Li, X., Yao, H., Yu, Y., Cao, Y. and Tang, C*. (2020) Greenhouse gases in an urban river: trend, isotopic evidence for underlying processes, and the impact of in-river structures. Journal of Hydrology 591.
Sun, H., He, Z., Zhang, M., Yen, L., Cao, Y., Hu, Z., Peng, Y*. and Lee, S.Y. (2020) Spatial variation of soil properties impacted by aquaculture effluent in a small-scale mangrove. Marine Pollution Bulletin 160, 111511.
Xuan, Y., Tang, C., Liu, G. and Cao, Y*. (2020) Carbon and nitrogen isotopic records of effects of urbanization and hydrology on particulate and sedimentary organic matter in the highly urbanized Pearl River Delta, China. Journal of Hydrology 591, 125565.
Cao Y, Xuan Y, Tang C* et al. Temporary and net sinks of atmospheric CO2 due to chemical weathering in subtropical catchment with mixing carbonate and silicate lithology. Biogeoscience, 2020
Li, X., C. Tang, and Y. Cao* et al., A multiple isotope (H, O, N, C and S) approach to elucidate the hydrochemical evolution of shallow groundwater in a rapidly urbanized area of the Pearl River Delta, China. Science of The Total Environment, 2020: p. 137930.
Xuan, Y., C. Tang, and Y. Cao*, Mechanisms of nitrate accumulation in highly urbanized rivers: evidence from multi-isotopes in the Pearl River Delta, China. Journal of Hydrology, 2020: p. 124924.
Xuan, Y., Y. Cao, C. Tang* et al., Changes in dissolved inorganic carbon in river water due to urbanization revealed by hydrochemistry and carbon isotope in the Pearl River Delta, China. Environmental Science and Pollution Research, 2020.
Wen, J., Tang, C., Cao, Y.*, Li, X., 2020. Understanding the inorganic carbon transport and carbon dioxide evasion in groundwater with multiple sulfate sources during different seasons using isotope records. The Science of the total environment, 710: 134480.
Wu, M., He Z., Fung, S., Cao Y. Guan, D.*, Peng, Y.*, Lee, S., 2020. Species choice in mangrove reforestation may influence the quantity and quality of long-term carbon sequestration and storage. The Science of the total environment, 714: 136742-136742.
Xuan, Y., Tang, C., Cao, Y.*, Li, R., Jiang, T., 2019. Isotopic evidence for seasonal and long-term C and N cycling in a subtropical basin of southern China. Journal of Hydrology: 123926.
Li X., Tang, C., Cao, Y.*, Li, X., 2019. Carbon, nitrogen, and sulfur isotopic features and the associated geochemical processes in a coastal aquifer system of Pearl River Delta, China. Journal of Hydrology, (moderate revision)
Wen, J., Tang, C., Cao, Y.*, Li, X., Chen, Q., 2019. Assessment of trace metals in an aquifer with river-groundwater interaction: The influence of colloidal redistribution and porous matrix change on the migration of metals. Chemosphere, 223: 588-598
Li, R. Tang, C., Li, X., Jiang T., Shi Y., Cao, Y.*, 2019. Reconstructing the historical pollution levels and ecological risks over the past sixty years in sediments of the Beijiang River, South China. Science of The Total Environment, 649: 448-460.
Cai, Y., Cao, Y., Tang, C.*, 2019. Evidence for the Primary Role of Phytoplankton on Nitrogen Cycle in a Subtropical Reservoir: Reflected by the Stable Isotope Ratios of Particulate Nitrogen and Total Dissolved Nitrogen. Frontiers In Microbiology, 10.
Wen, J., Tang, C., Cao, Y.*, Li, X., Chen, Q., 2018. Hydrochemical evolution of groundwater in a riparian zone affected by acid mine drainage (AMD), South China: the role of river–groundwater interactions and groundwater residence time. Environmental Earth Sciences, 77(24): 794.
Li, R., Tang, C., Cao, Y.*, Jiang, T., Chen, J., 2018. The distribution and partitioning of trace metals (Pb, Cd, Cu, and Zn) and metalloid (As) in the Beijiang River. Environmental Monitoring and Assessment, 190(7): 399.
Pan, M., Wu, Z., Tang, C.,Guo, K., Cao, Y., Fang, J.*, 2018. Emerging investigators series: comparative study of naproxen degradation by the UV/chlorine and the UV/H2O2 advanced oxidation processes. Environmental Science: Water Research & Technology, 4(9): 1219-1230.
Li, X., Tang, C.*, Han, Z., Cao, Y., 2016. Hydrochemical characteristic and interaction process of surface and groundwater in mid-lower reach of Hanjiang River, China. Environmental Earth Sciences, 75(5): 418.
Jiang, T., Zhong M.*, Cao Y., Zou L., Lin B., Zhu A., 2016. Simulation of Water Quality under Different Reservoir Regulation Scenarios in the Tidal River. Water Resources Management, 30(10): 1-15.
Cao, Y., Tang, C.*, Cao, G., Wang, X., 2016. Hydrochemical zoning: natural and anthropogenic origins of the major elements in the surface water of Taizi River Basin, Northeast China. Environmental Earth Sciences, 75(9): 1-14.
Cao, Y., Tang, C.*, Song, X., Liu, C., Zhang, Y., 2016. Identifying the hydrochemical characteristics of rivers and groundwater by multivariate statistical analysis in the Sanjiang Plain, China. Applied Water Science, 6(2): 169-178.
Cao, Y., Tang, C.*, Han, Z., Yoko, S., Li, X., 2016. Interpreting the seasonal and long-term trend of nitrate in both groundwater and spring water in a typical headwater wetland with well-defined groundwater flow pathways. Water Science and Technology: Water Supply, 16(5): 1327-1338.
Cao, Y., Tang, C.*, Song, X., Liu, C., 2015. Major ion chemistry, chemical weathering and CO2 consumption in the Songhua River basin, Northeast China. Environmental Earth Sciences, 73(11): 7505-7516.
Han, Z., Tang C.*, Piao J., Lin X., Cao Y., et al., 2014. Application of chlorofluorocarbons (CFCs) to estimate the groundwater age at a headwater wetland in Ichikawa City, Chiba Prefecture, Japan. Applied Water Science, 4(3): 291-302.
Li, X., Tang, C.*, Han, Z., Cao, Y., Zhang, C., 2013. Relation between nitrous oxide production in wetland and groundwater: a case study in the headwater wetland. Paddy and Water Environment, 11(1-4): 521-529.
Li, X., Tang, C.*, Han, Z., Piao J., Cao Y., Zhang C., 2013. Spatial and seasonal variation of dissolved nitrous oxide in wetland groundwater. Environment and Pollution, 3(1): p21.
Cao, Y., Tang, C.*, Song, X., Liu, C., Zhang, Y., 2013. Residence time as a key for comprehensive assessment of the relationship between changing land use and nitrates in regional groundwater systems. Environmental Science: Processes & Impacts, 15(4): 876-885.
Cao, Y., Tang, C.*, Song, X., Liu, C., Zhang, Y., 2012. Characteristics of nitrate in major rivers and aquifers of the Sanjiang Plain, China. Journal of Environmental Monitoring, 14(10): 2624-2633.
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中文论文:
谢林环, 江涛*, 曹英杰, 黎坤, 唐常源 (2020) 东江下游大气降水氢氧同位素特征及水汽来源. 中山大学学报(自然科学版) 59(01), 86-95.
唐常源,王书琰,曹英杰*,崔静思 (2020) 桉树林和天然次生林土壤溶解性有机质的荧关特性研究. 安全与环境学报 20(2), 763-772.
李龙, 唐常源*, 曹英杰 (2020) 亚热带地区常绿阔叶林SPAC系统水分的氢氧稳定同位素特征. 应用生态学报, 1-12.
江涛, 林伟稳, 曹英杰*, 黎坤, 禤映雪, 李睿, 陈建耀 (2020) 梅江流域清凉山水库沉积物重金属污染、生态风险评价及来源解析. 环境科学, 1-15.
陈炳禄, 朱磊, 刘广立*, 唐常源, 王志刚, 汤德福, 曹英杰, 卢耀斌, 赵兴国 (2020) 咸水淋洗对广东大万山岛土壤理化性质影响的研究. 安全与环境学报 20(02), 729-734.
蔡阳扬, 唐常源*, 曹英杰 (2020) 亚热带联和水库理化因子及浮游植物分布特征. 中山大学学报(自然科学版) 59(03), 59-72.
杨露娜, 唐常源, 李杏*, 曹英杰, 潘泽文, 2019. 深圳再生水补水河流溶解N2O空间分布和产生机制. 环境科学研究: 1-11.
常伊梅林, 唐常源, 李杏*, 李锐, 曹英杰, 2019. 矿山废水灌溉区农田土壤N2O的产生及释放机制研究. 中国生态农业学报(中英文), 27(01): 1-10.
谢林环,江涛*,曹英杰*,张得胜,黎坤,唐常源. 2019. 城镇化流域降水径流氢氧同位素特征及洪水径流分割. 地理学报,73卷
禤映雪, 唐常源*, 曹英杰, 江涛, 黎坤, 李锐, 2018. 北江流域水化学时空变化及化学风化特征. 环境科学研究, 31(06): 1078-1087.
谢林环, 江涛*, 李锐, 唐常源, 陈建耀, 曹英杰, 刘小波, 曾红平, 2017. 飞来峡水库氮磷营养盐形态及分布特征. 中山大学学报(自然科学版), 56(5): 112-118.
刘小莽, 郑红星*, 刘昌明, 曹英杰, 2009. 海河流域潜在蒸散发的气候敏感性分析. 资源科学, 31(09): 1470-1476.
刘昌明, 曹英杰, 2009. 我国水污染状况及其对人类健康的影响与主要对策. 科学对社会的影响(02): 16-22.
甄黎, 周从直, 束龙仓*, 曹英杰, 耿海涛, 2008. 海岛淡水透镜体演变规律的室内模拟实验. 吉林大学学报(地球科学版)(01): 81-85.
束龙仓*, 周从直, 甄黎, 曹英杰, 2008. 珊瑚砂含水介质水理性质的实验室测定. 河海大学学报(自然科学版)(03): 330-332.
荣丽杉, 束龙仓*, 刘佩贵, 曹英杰, 2008. 地下水生态系统服务功能价值评估——以鄂尔多斯沙漠高原生态系统为例, 第六届中国水论坛学术研讨会, 中国四川成都, pp. 4.
温忠辉, 曹英杰, 2007. 开采量不确定条件下数值模拟结果的可靠性分析. 吉林大学学报(地球科学版)(02): 239-242.
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