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  • 馮兆忠

    馮兆忠

    馮兆忠,男,研究員,研究方向?yàn)榄h(huán)境變化的生態(tài)效應(yīng)。


    基本信息

    地址: 北京市海淀區(qū)雙清路18號

    簡要介紹

    自2004年一直從事近地層O3的生態(tài)效應(yīng)方面的研究工作,在O3對農(nóng)作物和苗木的影響機(jī)制方面取得了顯著的成果。已發(fā)表O3方面的論文共50篇,其中SCI論文24篇,以(共同)第一作者發(fā)表在Global Change Biology 3篇,Environmental Pollution4篇。通過建立開放式熏蒸平臺,研究地表O3濃度升高、大氣N沉降增加及全球變暖(升溫)對農(nóng)田生態(tài)系統(tǒng)和城市周邊的森林生態(tài)系統(tǒng)碳循環(huán)及水分利用的長期影響及其復(fù)合機(jī)制的探討。

    學(xué)習(xí)經(jīng)歷

    2001年09月-2004年07月,中國科學(xué)院生態(tài)環(huán)境研究中心,系統(tǒng)生態(tài)重點(diǎn)實(shí)驗(yàn)室,博士

    1998年09月-2001年07月,蘭州大學(xué), 生命科學(xué)院,碩士

    1994年09月-1998年07月,曲阜師范大學(xué),化學(xué)系,學(xué)士

    工作經(jīng)歷

    2013年03月- 中國科學(xué)院生態(tài)環(huán)境研究中心, 城市與區(qū)域生態(tài)國家重點(diǎn)實(shí)驗(yàn)室,研究員

    2011年03月-2013年02月,哥德堡大學(xué),生物與環(huán)境科學(xué)系,博士后

    2007年08月-2007年10月 美國伊利諾伊大學(xué)香檳分校作物系,訪問學(xué)者

    2007年07月- 2011年01月,東京大學(xué),農(nóng)學(xué)院,EFF & JSPS特別研究員

    2006年07月- 2009年07月,中國科學(xué)院生態(tài)環(huán)境研究中心,城市與區(qū)域生態(tài)國家重點(diǎn)實(shí)驗(yàn)室,副研究員

    2004年09月- 2006年06月,中國科學(xué)院生態(tài)環(huán)境研究中心,系統(tǒng)生態(tài)重點(diǎn)實(shí)驗(yàn)室,助理研究員

    研究方向

    環(huán)境變化的生態(tài)效應(yīng)

    專家類別

    研究員,百人計(jì)劃

    代表論著

    1. Feng Z, Tang H, Uddling J, Pleijel H, Kobayashi K, Zhu J, Oue H, Guo W (2012) A stomatal ozone flux-response relationship to assess ozone-induced yield loss of winter wheat in subtropical China. Environmental Pollution

    2. Zhang W, Feng Z*, Wang X, Niu J (2012) Responses of native broadleaved woody species to elevated ozone in subtropical China. Environmental Pollution

    3. Feng Z, Niu J, Zhang W, Wang X, Yao F, Tian Y (2011a) Effects of ozone exposure on sub-tropical evergreen Cinnamomum camphora seedlings grown in different nitrogen loads. Trees - Structure and Function

    4. Feng Z, Pang J, Kobayashi K, Zhu J, Ort DR (2011b) Differential responses in two varieties of winter wheat to elevated ozone concentration under fully open-air field conditions. Global Change Biology 17: 580-591

    5. Zhu X, Feng Z*, Sun T, Liu X, Tang H, Zhu J, Guo W, Kobayashi K (2011) Effects of elevated ozone concentration on yield of four Chinese cultivars of winter wheat under fully open-air field conditions. Global Change Biology

    6. Wang S, Feng Z*, Wang X, Gong W (2011) Arbuscular mycorrhizal fungi alter the response of growth and nutrient uptake of snap bean (Phaseolus vulgaris L.) to O3. Journal of Environmental Sciences

    7. Niu J, Zhang W, Feng Z*, Wang X, Tian Y (2011) Impact of elevated O3 on visible foliar symptom, growth and biomass of Cinnamomum camphora seedlings under different nitrogen loads. Journal of Environmental Monitoring

    8. Zhang WW, Niu JF, Wang XK, Tian Y, Yao FF, Feng ZZ* (2011) Effects of ozone exposure on growth and photosynthesis of the seedlings of Liriodendron chinense (Hemsl.) Sarg, a native tree species of subtropical China. Photosynthetica

    9. Feng Z, Pang J, Nouchi I, Kobayashi K, Yamakawa T, Zhu J (2010a) Apoplastic ascorbate contributes to the differential ozone sensitivity in two varieties of winter wheat under fully open-air field conditions. Environmental Pollution

    10。 Feng Z, Wang S, Szantoi Z, Chen S, Wang X (2010b) Protection of plants from ambient ozone by applications of ethylenediurea (EDU): A meta-analytic review. Environmental Pollution

    11. Chen Z, Wang XK, Yao FF, Zheng FX, Feng ZZ (2010) Elevated ozone changed soil microbial community in a rice paddy. Soil Science Society of America Journal

    12. Feng Z, Kobayashi K (2009) Assessing the impacts of current and future concentrations of surface ozone on crop yield with meta-analysis. Atmospheric Environment

    13. Feng ZZ, Kobayashi K, Wang XK, Feng ZW (2009) A meta-analysis of responses of wheat yield formation to elevated ozone concentration. Chinese Science Bulletin

    14. Chen Z, Wang X, Feng Z, Xiao Q, Duan X (2009) Impact of elevated O3 on soil microbial community function under wheat crop. Water, Air, and Soil Pollution

    15. Feng Z, Kobayashi K, Ainsworth EA (2008a) Impact of elevated ozone concentration on growth, physiology, and yield of wheat (Triticum aestivum L.): A meta-analysis. Global Change Biology

    16. Feng ZZ, Zeng HQ, Wang XK, Zheng QW, Feng ZW (2008b) Sensitivity of Metasequoia glyptostroboides to ozone stress. Photosynthetica

    17. Wang X, Zheng Q, Feng Z, Xie J, Ouyang Z, Manning WJ (2008) Comparison of a diurnal vs steady-state ozone exposure profile on growth and yield of oilseed rape (Brassica napus L.) in open-top chambers in the Yangtze Delta, China. Environmental Pollution

    18. Chen Z, Wang X, Feng Z, Zheng F, Duan X, Yang W (2008) Effects of elevated ozone on growth and yield of field-grown rice in Yangtze River Delta, China. Journal of Environmental Sciences

    19. Feng ZZ, Yao FF, Chen Z, Wang XK, Zheng QW, Feng ZW (2007) Response of gas exchange and yield components of field-grown Triticum aestivum L. to elevated ozone in China. Photosynthetica

    20. Wang X, Zheng Q, Yao F, Chen Z, Feng Z, Manning WJ (2007) Assessing the impact of ambient ozone on growth and yield of a rice (Oryza sativa L.) and a wheat (Triticum aestivum L.) cultivar grown in the Yangtze Delta, China, using three rates of application of ethylenediurea (EDU). Environmental Pollution

    21. Feng ZZ, Wang XK, Feng ZW (2005) Soil N and salinity leaching after the autumn irrigation and its impact on groundwater in Hetao Irrigation District, China. Agricultural Water Management

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