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      研究隊伍

      姓  名:
      周永強
      性  別:
      職  務(wù):
       
      職  稱(chēng):
      副研究員
      學(xué)  歷:
      博士
      通訊地址:
      江蘇省南京市北京東路73號
      電  話(huà):
      025-86882193
      郵政編碼:
      210008
      傳  真:
       
      電子郵件:
      yqzhou@niglas.ac.cn

      簡(jiǎn)歷:

      工作簡(jiǎn)歷

      2020.05~今: 中國科學(xué)南京地理與湖泊研究所,副研究員

      2017.07~2020.04 中國科學(xué)南京地理與湖泊研究所,助理研究員

      2019.10~2020.04 瑞典烏普薩拉大學(xué),訪(fǎng)問(wèn)學(xué)者

      學(xué)習簡(jiǎn)歷

      2014.07~2017.06 中國科學(xué)南京地理與湖泊研究所,環(huán)境科學(xué)專(zhuān)業(yè),博士

      2016.10~2017.04 美國佛羅里達州立大學(xué),聯(lián)合培養博士生2015.12~2016.08 丹麥奧胡斯大學(xué),聯(lián)合培養博士生2015.06~2015.11 丹麥哥本哈根大學(xué),聯(lián)合培養博士生2012.09~2014.07 中國科學(xué)院大學(xué)中丹學(xué)院/哥本哈根大學(xué),水與環(huán)境專(zhuān)業(yè),碩士

      2008.09~2012.07 湖南師范大學(xué),地理科學(xué)專(zhuān)業(yè),學(xué)士


      研究領(lǐng)域:

      有色可溶性有機物循環(huán);湖泊碳循環(huán)

      社會(huì )任職:

      獲獎及榮譽(yù):

      1)中國科學(xué)院院長(cháng)特別獎,中國科學(xué)院,2017.8

      2)中國科學(xué)院優(yōu)秀博士學(xué)位論文獎,中國科學(xué)院,2018.8

      3)江蘇省優(yōu)秀博士學(xué)位論文獎,江蘇省學(xué)位委員會(huì ),2018.12

      4)2016年江蘇省自然科學(xué)一等獎(排名第9)

      代表論著(zhù):

      1)Zhou YQ, Davidson T, Yao XL, et al. How autochthonous dissolved organic matter responds to eutrophication and climate warming: Evidence from a cross-continental data analysis and experiments. Earth-Science Reviews. 2018, 185: 928-937.

      2)Zhou YQ, Zhou L, He XT, et al. Variability in dissolved organic matter composition and biolability across gradients of glacial coverage and distance from glacial terminus on the Tibetan Plateau. Environmental Science & Technology. 2019, 53: 12207?12217.

      3)Zhou YQ, Zhou L, Zhang YL, et al. Autochthonous dissolved organic matter potentially fuels methane ebullition from experimental lakes. Water Research. 2019, 166: 115048.

      4)Zhou YQ, Xiao QT, Yao XL, et al. Accumulation of terrestrial dissolved organic matter potentially enhances dissolved methane levels in eutrophic Lake Taihu, China. Environmental Science & Technology. 2018, 52: 10297-10306.

      5)Zhou YQ, Ma JR, Zhang YL, et al. Improving water quality in China: Environmental investment pays dividends. Water Research, 2017, 118: 152-159.

      6)Zhou YQ, Xiao QT, Zhou L, et al. Are nitrous oxide emissions indirectly fueled by input of terrestrial dissolved organic nitrogen in a large eutrophic Lake Taihu, China? Science of the Total Environment. 2020, 722: 138005.

      7)Zhou YQ, Li Y, Yao XL, et al. Response of chromophoric dissolved organic matter dynamics to tidal oscillations and anthropogenic disturbances in a large subtropical estuary. Science of the Total Environment. 2019, 662: 769–778.

      8)Zhou YQ, Ma JR, Zhang YL, et al. Influence of the three Gorges Reservoir on the shrinkage of China's two largest freshwater lakes. Global and Planetary Change. 2019, 177: 45–55.

      9)Zhou YQ, Yao XL, Zhang YL, et al. Response of dissolved organic matter optical properties to net inflow runoff in a large fluvial plain lake and the connecting channels. Science of the Total Environment. 2018, 639: 876-887.

      10)Zhou YQ, Yao XL, Zhang YB, et al. Rainfall intensity and pH-driven shifts in rainwater composition and loading of chromophoric dissolved organic matter. Environmental Pollution, 2017, 224: 638-648.

      11)Zhou YQ, Shi K, Zhang YL, et al. Fluorescence peak integration ratio IC:IT as a new potential indicator tracing the compositional changes in chromophoric dissolved organic matter. Science of the Total Environment, 2017, 574: 1588-1598.

      12)Zhou YQ, Zhang YL, Jeppesen E, et al. Inflow rate-driven changes in the composition and dynamics of chromophoric dissolved organic matter in a large drinking water lake. Water Research, 2016, 100: 211-221.

      13)Zhou YQ, Zhou J, Jeppesen E, et al. Will enhanced turbulence in inland waters result in elevated production of autochthonous dissolved organic matter? Science of the Total Environment, 2016, 543: 405-415.

      14)Zhou YQ, Jeppesen E, Zhang YL, et al. Dissolved organic matter fluorescence at wavelength 275/342 nm as a key indicator for detection of point-source contamination in a large Chinese drinking water lake. Chemosphere, 2016, 144: 503-509.

      15)Zhou YQ, Jeppesen E, Li JB, et al. Impacts of Three Gorges Reservoir on the sedimentation regimes in the downstream-linked two largest Chinese freshwater lakes. Scientific Reports. 2016, 6: 35396.

      16)Zhou YQ, Jeppesen E, Zhang YL, et al. Chromophoric dissolved organic matter of black waters in a highly eutrophic Chinese lake: freshly produced from algal scums? Journal of Hazardous Materials, 2015, 299: 222–230.

      17)Zhou YQ, Zhang YL, Shi K, et al. Dynamics of chromophoric dissolved organic matter influenced by hydrological conditions in a large, shallow and eutrophic lake in China. Environmental Science and Pollution Research, 2015, 22(17): 12992-13003.

      18)Zhou YQ, Zhang YL, Shi K, et al. Lake Taihu, a large, shallow and eutrophic aquatic ecosystem in China serves as a sink for chromophoric dissolved organic matter. Journal of Great Lakes Research, 2015, 41(2): 597–606.

      19)Zhou YQ, Li JB, Zhang YL, et al. Enhanced lakebed sediment erosion in Dongting Lake induced by the operation of the Three Gorges Reservoir. Journal of Geographical Sciences, 2015, 25(8): 917–929.


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