基本情況

曹英傑,男,副教授,博士生導師。

主要從事同位素水文學及同位素生物地球化學循環研究,并負責學院環境及生态系統元素循環示蹤平台建設,示蹤平台儀器設備配備齊全,涵蓋質譜(包括同位素質譜)、色譜、能譜及光譜分析子平台。

目前主要開拓方向為同位素有機地球化學及傳統同位素的非傳統應用,歡迎相關方向學生及科研人員加入課題組開展研究工作。

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聯系方式

廣州市番禺區大學城外環東路132号,太阳集团1088vip,環境科學系,510006

E-mail:caoyingj@mail.sysu.edu.cn

 

教育經曆

2001.09-2005.07 吉林大學 水文與水資源工程 工學學士

2005.09-2008.07 河海大學 水文學及水資源 工學碩士

2008.09-2012.07 中國科學院地理科學與資源研究所 自然地理 理學博士

2009.10-2013.09 日本千葉大學 綠地環境 農學博士

 

工作經曆

2010.10-2015.02 日本農研機構農村工學研究所 助理研究員

2013.10-2015.02 日本千葉大學 園藝學研究科 博士研究員

2015.02-至今 太阳集团app首页,太阳集团1088vip,講師,副教授

 

講授課程

本科課程:環境統計學、地理信息系統、水環境數學模型、地下水污染與調查方法

研究生課程:水環境污染與修複、水文地球化學基礎

 

研究方向

同位素水文學、同位素生物地球化學、地下水污染與修複

 

科研項目

 

   主持項目(年份排序):

(1)國家自然科學基金-面上項目,粵港澳大灣區城鎮化河流氮素來源解析及遷移轉化研究:基于多相多形态氮同位素示蹤的探索,2021-2024,主持

(2)國家重點研發計劃,有色金屬礦區地下水污染防控技術體系,子任務“有色金屬礦區地下水遷移通道與重金屬污染過程識别”,2020-2023,主持

(3)廣東省自然科學基金-面上項目,基于三維熒光光譜及同位素技術的桉樹種植流域溶解性有機物輸出特征和來源解析,2019-2020,主持

(4)廣東省科技計劃項目,VOCs及石油類化合物場地污染原位ORC加速微生物修複技術研發與應用,子課題“土壤氣抽提VOCs色譜在線分析技術研發”,2018-2019,主持

(5)國家重點研發計劃,海水抽水蓄能電站前瞻技術研究-海水抽水蓄能電站環境影響評估與生态修複關鍵技術,子任務“海水抽水蓄能電站地下水滲漏監測預警”,2017-2021,主持

(6)國家自然科學基金-青年基金,基于CFCs及多同位素示蹤技術的城鄉交錯帶地下水硝酸鹽污染源解析及遷移轉化規律研究,2016-2018,主持

(7)果樹種植區土壤水硝态氮運移規律研究,日本千葉大學院科學與技術協會(AGSST)年輕研究者研究助成經費,2012-2013,主持

 

   參與項目(年份排序):

(1)國家自然科學基金-面上項目,珠江三角洲集約型農業區河畔濕地土壤地下水中磷的遷移轉化規律及其影響因素,2019-2023,第一參與人

(2)國家自然科學基金-面上項目,高通量氮輸入對紅樹林生态系統主要組分與典型過程的影響研究,2018-2021,第四參與人

(3)國家自然科學基金-面上項目,幹旱區綠洲與荒漠植被蒸散發及其組分定量遙感反演研究,2017-2020,第二參與人

(4)國家自然科學基金-青年基金,珠江口近岸海域無機氮的來源與輸送途徑研究,2017-2019,第一參與人

(5)國家自然科學基金-面上項目,桉樹種植對流域水循環及氮循環的作用機理及其長期影響研究,2015-2018,第二參與人

(6)日本農林水産省委托項目,農林水産對氣候變化的響應對策及相關技術措施研究(農林水産分野における地球溫暖化対策のための緩和及び適用技術の開発),2006年-2009年,主要參與人

 

代表論著

 

英文論文:

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.

 

中文論文:

謝林環, 江濤*, 曹英傑, 黎坤, 唐常源 (2020) 東江下遊大氣降水氫氧同位素特征及水汽來源. 太阳集团app首页學報(自然科學版) 59(01), 86-95.

唐常源,王書琰,曹英傑*,崔靜思 (2020) 桉樹林和天然次生林土壤溶解性有機質的熒關特性研究. 安全與環境學報 20(2), 763-772.

李龍, 唐常源*, 曹英傑 (2020) 亞熱帶地區常綠闊葉林SPAC系統水分的氫氧穩定同位素特征. 應用生态學報, 1-12.

江濤, 林偉穩, 曹英傑*, 黎坤, 禤映雪, 李睿, 陳建耀 (2020) 梅江流域清涼山水庫沉積物重金屬污染、生态風險評價及來源解析. 環境科學, 1-15.

陳炳祿, 朱磊, 劉廣立*, 唐常源, 王志剛, 湯德福, 曹英傑, 盧耀斌, 趙興國 (2020) 鹹水淋洗對廣東大萬山島土壤理化性質影響的研究. 安全與環境學報 20(02), 729-734.

蔡陽揚, 唐常源*, 曹英傑 (2020) 亞熱帶聯和水庫理化因子及浮遊植物分布特征. 太阳集团app首页學報(自然科學版) 59(03), 59-72.

楊露娜, 唐常源, 李杏*, 曹英傑, 潘澤文, 2019. 深圳再生水補水河流溶解N2O空間分布和産生機制. 環境科學研究: 1-11.

常伊梅林, 唐常源, 李杏*, 李銳, 曹英傑, 2019. 礦山廢水灌溉區農田土壤N2O的産生及釋放機制研究. 中國生态農業學報(中英文), 27(01): 1-10.

謝林環,江濤*,曹英傑*,張得勝,黎坤,唐常源. 2019. 城鎮化流域降水徑流氫氧同位素特征及洪水徑流分割. 地理學報,73卷

禤映雪, 唐常源*, 曹英傑, 江濤, 黎坤, 李銳, 2018. 北江流域水化學時空變化及化學風化特征. 環境科學研究, 31(06): 1078-1087.

謝林環, 江濤*, 李銳, 唐常源, 陳建耀, 曹英傑, 劉小波, 曾紅平, 2017. 飛來峽水庫氮磷營養鹽形态及分布特征. 太阳集团app首页學報(自然科學版), 56(5): 112-118.

劉小莽, 鄭紅星*, 劉昌明, 曹英傑, 2009. 海河流域潛在蒸散發的氣候敏感性分析. 資源科學, 31(09): 1470-1476.

劉昌明, 曹英傑, 2009. 我國水污染狀況及其對人類健康的影響與主要對策. 科學對社會的影響(02): 16-22.

甄黎, 周從直, 束龍倉*, 曹英傑, 耿海濤, 2008. 海島淡水透鏡體演變規律的室内模拟實驗. 吉林大學學報(地球科學版)(01): 81-85.

束龍倉*, 周從直, 甄黎, 曹英傑, 2008. 珊瑚砂含水介質水理性質的實驗室測定. 河海大學學報(自然科學版)(03): 330-332.

榮麗杉, 束龍倉*, 劉佩貴, 曹英傑, 2008. 地下水生态系統服務功能價值評估——以鄂爾多斯沙漠高原生态系統為例, 第六屆中國水論壇學術研讨會, 中國四川成都, pp. 4.

溫忠輝, 曹英傑, 2007. 開采量不确定條件下數值模拟結果的可靠性分析. 吉林大學學報(地球科學版)(02): 239-242.