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  黄 耀 研究员
电话:(+86-010) 82074294
传真:(+86-010) 62041393
E-mail: huangy@mail.iap.ac.cn
地址:北京9804信箱,LAPC
邮编:100029
 

简历 :   
 黄耀,男,1956年出生。1982和1986年分别获南京气象学院理学学士和理学硕士学位,1997年获美国莱斯大学(Rice University)哲学博士学位。2000年入选中国科学院“引进国外杰出人才计划”,现任中国科学院大气物理研究所大气边界层物理和大气化学国家重点实验室(LAPC)副主任、创新基地研究员,兼任南京农业大学和美国奥本大学(Auburn University)客座教授,中国气象学会大气环境学委员会主任委员。主要研究背景为陆地生态系统模型、陆地碳氮循环与温室气体排放、气候变化的影响与适应等。先后主持和参加中国科学院、自然科学基金、国家有关部(委)和国际合作项目多项,是中国科学院知识创新工程重大项目“中国陆地和近海生态系统碳收支研究”(2001-2005)首席科技专家。共在国内外发表科研论文170余篇,其中SCI检索论文60余篇,出版专著3部,“中国农田温室气体排放过程与模型研究”获教育部2008年度自然科学二等奖(第一完成人)。是国际SCI期刊Agricultural and Forest Meteorology 和Agriculture, Ecosystems and Environment 编委, 2006 IPCC Guidelines for National Greenhouse Gas Inventories评阅人,开发的稻田甲烷排放模型先后被2000年和2006年IPCC国家温室气体排放清单指南推荐用于稻田甲烷排放清单编制。         

专著:
[1]  黄耀,周广胜,吴金水,延晓冬,中国陆地生态系统碳收支模型。北京:科学出版社,2008。
[2]  陈泮勤,黄耀,于贵瑞,地球系统碳循环。北京:科学出版社,2004。
[3]  黄耀,地气系统碳氮交换—从实验到模型。北京:气象出版社,2003。

主要论文:

  1. Huang Y, Sun WJ, Zhang W &Yu YQ, 2010. Changes in soil organic carbon of terrestrial ecosystems in China: A mini-review, Science China Life Sciences (in press)
    黄耀,孙文娟,张稳,于永强,2010. 中国陆地生态系统土壤有机碳变化研究进展,中国科学:生命科学(刊印中)
  2. Qin ZC & Huang Y, 2010. Quantification of soil organic carbon sequestration potential in cropland: A model approach, Science China Life Sciences (in press)
    覃章才,黄耀,2010. 基于模型的农田土壤固碳潜力估算,中国科学:生命科学(刊印中)
  3. Sun WJ, Huang Y, Zhang W, Yu YQ, 2010. Carbon sequestration and its potential in agricultural soils of China, Global Biogeochemical Cycling, (doi:10.1029/2009GB003484, in press)
  4. Huang Y, Sun WJ, Zhang W, Yu YQ, Su YH and Song CC, 2010. Marshland conversion to cropland in northeast China from 1950 to 2000 reduced the greenhouse effect, Global Change Biology, 16:680–695
  5. Huang Y, Tang YH, 2010. An estimate of greenhouse gas (N2O and CO2) mitigation potential under various scenarios of nitrogen use efficiency in Chinese croplands, Global Change Biology (doi: 10.1111/j.1365-2486.2010.02187.x)
  6. Li TT, Huang Y, Zhang W and Song CC, 2010. CH4MODwetland: A biogeophysical model for simulating methane emission from natural wetlands, Ecological Modelling, 221:666–680
  7. Chen ST, Huang Y, Zou JW, Shen QR, Hu ZH, Qin YM, Chen HS, Pan GX, 2010. Modeling interannual variability of global soil respiration from climate and soil properties, Agricultural and Forest Meteorology, 150:590–605
  8. Zou JW, Lu YY, Huang Y, 2010. Estimates of synthetic fertilizer N-induced direct nitrous oxide emission from Chinese croplands during 1980–2000, Environmental Pollution, 158:631–635
  9. Jiang JY, Hu ZH, Sun WJ, Huang Y, 2010. Nitrous oxide emissions from Chinese cropland fertilized with a range of slow-release nitrogen compounds, Agriculture, Ecosystems and Environment, 135:216–225
  10. Shi XZ, Yang RW, Weindorf DC, Wang HJ, Yu DS, Huang Y, Pan XZ, Sun WX, Zhang LM, 2009. Simulation of organic carbon dynamics at regional scale for paddy soils in China, Climatic Change (doi:10.1007/s10584-009-9704-1)
  11. Huang Y, Yu YQ, Zhang W, Sun WJ, Liu SL, Jiang J, Wu JS, Yu WT, Wang Y, Yang ZF, 2009. Agro-C: A biogeophysical model for simulating the carbon budget of agroecosystems, Agricultural and Forest Meteorology, 149(1):106–129
  12. Zou JW, Huang Y, Qin YM, Liu SW, Seng QR, Pan GX, Lu YY, Liu QH, 2009. Changes in fertilizer-induced direct N2O emissions from paddy fields during rice growing season in China between 1950s and 5 1990s, Global Change Biology, 15:229–242
  13. Chen ST, Huang Y, 2009. Soil respiration and N2O emission in croplands under different ploughing practices: a case study in south-east China, Australian Journal of Soil Research, 47(2):198–205
  14. Sun WJ, Huang Y, Zhang W, Yu YQ, 2009. Estimating topsoil SOC sequestration in croplands of eastern China from 1980 to 2000, Australian Journal of Soil Research, 47(3): 261–272
  15. Piao SL, Fang JY, Ciais P, Peylin P, Huang Y, Sitch S & Wang T, 2009. The carbon balance of terrestrial ecosystems in China, Nature, 458:1009-1013
  16. Zhao XS, Huang Y, Jia ZJ, Liu HZ, Song T, Wang YS, Shi LQ, Song CC, Wang YY, 2008. Effects of the conversion of marshland to cropland on water and energy exchanges in northeastern China, Journal of Hydrology, 355:181–191
  17. Chen ST, Huang Y, Zou JW, 2008. Relationship between nitrous oxide emission and winter wheat production, Biology and Fertility of Soils, 44:985-989
  18. Zou JW, Huang Y, Zheng XH and Wang YS, 2007. Quantifying direct N2O emissions in paddy fields during rice growing season in mainland China: Dependence on water regime, Atmospheric Environment, 41(37): 8030−8042
  19. Zhang W, Huang Y, Sun WJ, Yu YQ, 2007. Simulating crop net primary production in China from 2000 to 2050 by linking the Crop-C model with a FGOALS’s model climate change scenario, Advances in Atmospheric Science, 24(5): 845−854
  20. Huang, Y., Zhang, W., Sun, W.J, Zheng, X.H., 2007. Net primary production of Chinese croplands from 1950 to 1999, Ecological Applications, 17(3):692-701
  21. Zhang, W., Yu, Y.Q., Sun, W.J. and Huang, Y. 2007. Simulation of soil organic carbon dynamics in Chinese rice paddies from 1980 to 2000. Pedosphere. 17(1): 1-10
  22. Sun, W.J., Huang, Y., Chen, S.T., Zou, J.W. and Zheng, X.H., 2007. Dependence of wheat and rice respiration on tissue nitrogen and the corresponding net carbon fixation efficiency under different rates of nitrogen application, Advances in Atmospheric Science, 24(1): 55−64
  23. Huang, Y. & Sun, W.J., 2006. Changes in topsoil organic carbon of croplands in mainland China over the last two decades, Chinese Science Bulletin,51(15):1785−1803
    黄耀,孙文娟, 2006. 近20年来中国大陆农田表土有机碳含量的变化趋势,科学通报, 51(7):750−763
  24. Lu, Y., Huang, Y., Zou, J.W. and Zheng, X.H., 2006. An inventory of N2O emissions from agriculture in China using precipitation-rectified emission factor and background emission, Chemosphere, 65(11):1915-192
  25. Chen, S.T. & Huang, Y., 2006. Determination of respiration, gross nitrification and denitrification in soil profile using BaPS system, Journal of Environmental Sciences, 18(5):937−943
  26. Dai, W.H. and Huang, Y., 2006. Relation of soil organic matter concentration to climate and altitude in zonal soils of China, CATENA, 65(1):87—94
  27. Dai, W.H. & Huang, Y., 2006. Effects of site variables on surface soil organic carbon concentration in zonal soils of China. Journal of Anhui Normal University (Natural Science), 29(1):64-69
  28. Huang, Y., Zhang, W, Zheng, X.H., Han, S.H. and Yu, Y.Q., 2006. Estimates of methane emissions from Chinese rice paddies by linking a model to GIS database, ACTA ECOLOGICA SINICA, 26(4):980−988.
    黄耀, 张稳, 郑循华, 韩圣慧, 于永强, 2006. 基于模型和GIS技术的中国稻田甲烷排放估计, 生态学报,26(4):980−988
  29. Huang, Y., Yu, G. and Chen, P., 2005. Carbon Budgeting for the Terrestrial and Marginal Sea Ecosystems of China, Global Change NewsLetter, No. 62:17—19
  30. Jiao, Y., Huang, Y., Zong, L.G., Zheng, X.H., Sass, R.L., 2005. Effects of copper concentration on methane emission in rice soils, Chemosphere, 58(2):185—193
  31. Zou, J.W., Huang, Y., Sun, W.J., Zheng, X.H. and Wang, Y.S., 2005. Contribution of plants to N2O emissions in soil-winter wheat ecosystem: pot and field experiments, Plant and Soil, 269:205—211
  32. Zou, J.W., Huang, Y., Jiang, J.Y., Zheng, X.H. and Sass R.L., 2005. A 3-year field measurement of methane and nitrous oxide emissions from rice paddies in China: Effects of water regime, crop residue and fertilizer application, Global Biogeochem. Cycles, 19, GB2021, doi:10.1029/2004GB002401
  33. Zou, J.W., Huang, Y., Lu, Y.Y., Zheng, X.H. and Wang, Y.S., 2005. Direct emission factor for N2O from rice-winter wheat rotation systems in southeast China, Atmospheric Environment, 39:4755—4765
  34. Huang, Y., Zhang, W., Zheng, X.H., Li, J. and Yu, Y.Q., 2004. Modeling methane emission from rice paddies with various agricultural practices, Journal of Geophysical Research, doi:10.1029/2003JD004401
  35. Huang, Y., Zou, J.W., Zheng, X.H., Wang, Y.S. & Xu, X.K., 2004. Nitrous oxide emissions as influenced by amendment of plant residues with different C:N ratios, Soil Biology & Biochemistry, 36(6): 973-981
  36. Zou, J.W., Huang, Y., Zheng, X.H, Wang, Y.S. and Chen, Y.Q., 2004. Static opaque chamber-based technique for determination of net exchange of CO2 between terrestrial ecosystem and atmosphere, Chinese Science Bulletin, 49(4):381—388
    邹建文,黄耀,郑循华,王跃思,陈玉泉,2004. 基于静态暗箱法的陆地生态系统-大气CO2净交换估算,科学通报,49(3):258—264.
  37. Zou, J.W., Huang, Y.,Zong, L.G., Zheng, X.H. and Wang, Y.S., 2004. Carbon dioxide, nitrous oxide and methane emissions from a rice―wheat rotation as affected by crop residue incorporation and temperature, Advances in Atmospheric Science, 21(5): 691—698
  38. Zheng, X.H., Han, S.H., Huang, Y., Wang, Y.S. and Wang, M.X., 2004. Re-quantifying the emission factors based on field measurements and estimating the direct N2O emission from Chinese croplands, Global Biogeochemical Cycles, 18, GB2018, doi:10.1029/2003GB002167
  39. Zheng, X.H., Huang, Y., Wang, Y.S., Wang, M.X., 2003. Seasonal characteristics of nitric oxide emission from a typical Chinese rice-wheat rotation during the non-waterlogged period, Global Change Biology, 9:219—227
  40. Zheng, X.H., Huang, Y., Wang, Y.S., Wang, M.X., Jin, J.S., Li, L.T., 2003. Effects of soil temperature on nitric oxide emission from a typical Chinese rice-wheat rotation during the non-waterlogged period, Global Change Biology, 9:601—611
  41. Huang, Y., Jiao, Y., Zong, L.G., Wang, Y.S. and Sass, R.L., 2002. Nitrous oxide emissions from the wheat-growing season in eighteen Chinese paddy soils: an outdoor pot experiment, Biology and Fertili.ty of Soils, 36:411—417
  42. Huang, Y., Jiao, Y., Zong, L.G., Zheng, X.H., Sass, R.L. and Fisher, F.M., 2002. Quantitative dependence of methane emission on soil properties, Nutrient Cycling in Agroecosystems, 64(1-2): 157—167
  43. Yang, X., Wang, M.X., Huang, Y. and Wang, Y.S., 2002. A one-compartment model to study soil carbon decomposition rate at equilibrium situation, Ecological Modelling, 151(1):63—73
  44. Huang, Y., Jiang, J.Y., Zong, L.G., Sass, R.L. and Fisher, F.M., 2001. Comparison of Field Measurements of CH4 Emission from Rice Cultivation in Nanjing, China and in Texas, USA, Advances in Atmospheric Sciences, 18 (6): 1121—1130
  45. Xu, X.K., Huang, Y., Zhou, L.K., Huang, G.H. and Cleemput, O.V., 2001. Effect of dicyandiamide and hydroquinone on the transformation of urea-nitrogen-15 in soil cropped to wheat, Biology and Fertility of Soils, 34: 286—290
  46. Yang, X., Wang, M.X. and Huang, Y., 2001. The climatic-induced net carbon sink by terrestrial biosphere over 1901-1995, Advances in Atmospheric Sciences, 18 (6): 1192—1206
  47. Sass, R.L, Fisher, F.M. and Huang Y, 2000. A process-based model for methane emissions from irrigated rice fields: experimental basis and assumptions. Nutrient Cycling in Agroecosystems, 58:249—258
  48. Huang, Y., Sass, R.L. and Fisher, F.M., 1998. A semi-empirical model of methane emission from flooded rice paddy soils, Global Change Biology, 4:247—268
  49. Huang, Y., Sass, R.L. and Fisher, F.M., 1998. Model estimates of methane emission from irrigated rice cultivation of China, Global Change Biology, 4: 809—821
  50. Huang, Y., Gao, L. Z., Jin, Z.Q. and Chen, H., 1998. Simulating the optimal growing season of rice in the Yangtze River Valley and its adjacent area, China, Agricultural and Forest Meteorology, 91:251—262
  51. Huang, Y., Sass, R.L. and Fisher, F.M., 1997. Methane emission from Texas rice paddy soils. 1. Quantitative multi-year dependence of CH4 emission on soil, cultivar and grain yield, Global Change Biology, 3:479—489
  52. Huang, Y., Sass, R.L. and Fisher, F.M., 1997. Methane emission from Texas rice paddy soils. 2. Seasonal contribution of rice biomass production to CH4 emission, Global Change Biology, 3:491—500
  53. Huang, Y., Gao, L.Z., Jin, Z.Q. and Chen, H., 1996. A software package for optimizing rice production management based on growth simulation and feedback control, Agricultural Systems, 50:335—354
  54. 黄耀,孙文娟,张稳,于永强,魏玉荣,2010. 中国草地碳收支研究与展望,第四纪研究,30(3):456–465
  55. 李东,黄耀,吴琴,明珠,靳代樱,2010. 青藏高原高寒草甸生态系统土壤有机碳动态模拟研究,草业学报,19(2):160–168
  56. 王雅婕,黄耀,张稳,2009. 1961~2003年中国大陆地表太阳总辐射变化趋势,气候与环境研究,14(4):405–413
  57. 王平,黄耀,张稳,2009. 1955–2005年中国稻田甲烷排放估算,气候变化研究进展,5(5):291–297
  58. 戴万宏,黄耀,武丽,俞佳,2009. 中国地带性土壤有机质含量与酸碱度的关系,土壤学报,46(5):851–860
  59. 汤勇华, 黄耀, 2009. 中国大陆主要粮食作物地力贡献率和基础产量的空间分布特征, 农业环境科学学报,28(5):1070-1078
  60. 汤勇华, 黄耀, 2008. 中国大陆主要粮食作物地力贡献率及其影响因素的统计分析, 农业环境科学学报,27(4):1283-1289
  61. 王亚平,黄耀,张稳,2008. 中国东北三省1960-2005年地表干燥度变化趋势,地球科学进展,23(6):619-627
  62. 孙文娟,黄耀,张稳,于永强,2008. 农田土壤固碳潜力研究的关键问题,地球科学进展,23(9):996-1004
  63. 苏艳华,黄耀,2008. 湿地垦殖对土壤有机碳影响的模拟研究,农业环境科学学报, 27(4):1643-1648
  64. 朱大威,黄耀,金之庆,张稳,姜军,2008. 基于模型和GIS的江苏省氮肥施用适宜性分析—以2000年为例,中国农业科学,41(5):1373-1382
  65. 焦燕,黄耀,宗良纲,周权锁,Ronald L. Sass,2008. 氮肥水平对不同土壤N2O 排放的影响,环境科学,29(8):2094-2098
  66. 陈书涛, 黄耀, 郑循华, 陈玉泉, 2007. 种植不同作物对农田N2O和CH4排放的影响及其驱动因子, 气候与环境研究,12(2):147-155
  67. 卢燕宇,黄耀,张稳,郑循华,2007. 基于GIS技术的1991—2000年中国农田化肥氮源一氧化二氮直接排放量估计,应用生态学报,18(7):1539-1545
  68. 朱大威,黄耀,金之庆,卢燕宇,2007. 基于模型和GIS的农田有机肥供氮量时空变化分析,江苏农业学报,23(5):432–436
  69. 于永强,黄耀,张稳,孙文娟,2007. 华东地区农田土壤有机碳时空格局动态模拟研究,地理与地理信息科学,23(1):97~100
  70. 黄耀, 2006. 中国的温室气体排放、减排措施与对策, 第四纪研究,26(5):722−732
  71. 于永强,黄耀,张稳,2006. 华东地区农田土壤有机碳动态模拟研究—模型的验证与灵敏度分析,地理与地理信息科学,22(6):83~88
  72. 黄耀,王彧,张稳,于永强,王平,2006. 中国农业植被净初级生产力模拟(Ⅰ)—模型的建立与灵敏度分析,自然资源学报,21(5):790−801
  73. 王彧,黄耀,张稳,于永强,王平,2006. 中国农业植被净初级生产力模拟(Ⅱ)—模型的验证与净初级生产力估算,自然资源学报,21(6):916−924
  74. 张稳,黄耀, 郑循华, 于永强,2006. 稻田甲烷排放模型研究—模型灵敏度分析,生态学报,26(5):1359−1366
  75. 朱大威,黄耀,卢燕宇, 2006. 有机肥氮素动态模型的初步研究,南京农业大学学报,29(3):146~150
  76. 邹建文,黄耀,宗良纲,郑循华,王跃思, 2006. 稻田不同种类有机肥施用对后季麦田N2O排放的影响,环境科学, 27(7):1264−1268
  77. 黄耀,杨兆芳,于永强,姜军,孙文娟, 2005. 稻麦作物净初级生产力模型研究:模型的建立, 环境科学, 26(2):11—15
  78. 杨兆芳,于永强,黄耀,2005. 稻麦作物净初级生产力模型研究:模型的检验与情景预测, 环境科学, 26(2):16—20
  79. 焦燕,黄耀,宗良纲,周权锁,2005.Ronald L. Sass, 2005. 氮肥水平对不同土壤CH4排放的影响,环境科学, 26(3):21—24
  80. 姜军,黄耀,杨兆芳, 2005. 一个稻麦作物氮肥利用率的统计模型, 南京农业大学学报,28(1):57—60
  81. 卢燕宇,黄耀, 郑循华, 2005. 农田氧化亚氮排放系数的研究,应用生态学报,16 (7) :1299—1302
  82. 杨云, 黄耀, 姜纪峰, 2005. 土壤理化特性对冬季菜地N2O排放的影响, 农村生态环境, 21(7):7—12
  83. 刘巧辉, 黄耀, 郑循华, 2005. 基于BaPS系统的旱地土壤呼吸作用及其分量确定探讨, 环境科学学报, 25(8):1105—1111
  84. 孙文娟, 黄耀, 陈书涛, 邹建文, 郑循华, 2005. 稻麦作物呼吸作用与植株氮含量、生物量和温度的定量关系, 生态学报,25(5):1152—1158
  85. 陈书涛, 黄耀, 郑循华, 陈玉泉,2005。轮作制度对农田氧化亚氮排放的影响及驱动因子,中国农业科学,38 (10) :2053—2060
  86. 孙文娟,黄耀,陈书涛,杨兆芳,郑循华,2004. 作物生长和氮含量对土壤-作物系统CO2排放的影响,环境科学,25(3):1—6.
  87. 张稳, 黄耀, 郑循华, 李晶, 于永强, 2004. 稻田甲烷排放的模型研究—模型及其修正,生态学报,24(11):2347—2352
  88. 张稳, 黄耀, 郑循华, 李晶, 于永强, 2004. 稻田甲烷排放的模型研究—模型的验证, 生态学报,24(12):2679—2685
  89. 焦 燕,黄耀,宗良纲,周权锁,2004. 不同水稻土水稻生长季施用秸秆对后季麦田N2O排放的影响,南京农业大学学报,27(1):36—40
  90. .黄耀,沈雨,周密,马瑞升,2003. 木质素和氮含量对植物残体分解的影响,植物生态学报,27(2):183—188.
  91. 邹建文,黄耀,宗良纲,郑循华,王跃思,2003. 稻田CO2、CH4和N2O排放及其影响因素,环境科学学报,23(6):758—764.
  92. 邹建文,黄耀,宗良纲,蒋静艳,郑循华,王跃思,2003. 稻田灌溉和秸秆施用对后季麦田N2O排放的影响,中国农业科学,36(4):409—414.
  93. 邹建文,黄耀,宗良纲,王跃思,Ronald L. Sass,2003. 不同种类有机肥施用对稻田CH4和N2O排放的综合影响,环境科学,24(4):7—12.
  94. 蒋静艳,黄耀,宗良纲,2003. 环境因素和作物生长对稻田CH4和N2O排放的影响, 农业环境科学学报,22(6):711—714.
  95. 蒋静艳,黄耀,宗良纲,2003. 水分管理与秸秆施用对稻田CH4和N2O排放的影响,中国环境科学,23(5):552—556.
  96. 沈 雨,黄耀,宗良纲,张稳,徐茂,刘林旺,2003. 基于模型和GIS的江苏省农田土壤有机碳变化研究,中国农业科学,36(11):1312—1317.
  97. 焦 燕,黄耀,宗良纲,周权锁,Ronald L. Sass,2003. 有机肥施用、土壤有效铜和氮素对稻田甲烷排放的影响,农业环境科学学报,22(5):565—569.
  98. 黄耀,2002. 中国陆地和近海生态系统碳收支研究,中国科学院院刊,17(2):104—107
  99. 黄耀,焦燕,宗良纲,周权锁,R.L. Sass,F.M. Fisher,2002. 土壤理化特性对麦田N2O排放影响的研究,环境科学学报,22(5):598—602
  100. 黄耀,刘世梁,沈其荣,宗良纲,2002. 环境因子对农业土壤有机碳分解的影响,应用生态学报,13(6):709—714
  101. 焦 燕,黄耀,宗良纲,周权锁,R.L. Sass,F.M. Fisher,2002. 土壤理化特性对稻田CH4排放的影响,环境科学,23(5):1—7
  102. 黄耀,2001. 关于陆地生态系统碳循环研究的几点思考,世界科技研究与发展,23(1):66—68
  103. 黄耀,蒋静艳,宗良纲,周权锁,R.L. Sass,F.M. Fisher, 2001. 种植密度和降水对冬小麦田N2O排放的影响,环境科学,22(6):20—23
  104. 黄耀,刘世梁,沈其荣,宗良纲,2001. 农田土壤有机碳动态模拟模型的建立,中国农业科学,34(5):532—536
  105. 刘世梁,黄耀,沈其荣,宗良纲,蒋定安,黄洪光,2001. 农田土壤有机碳动态模拟模型的检验与应用,中国农业科学,34(6): 644—648
  106. 黄耀,Sass R L,Fisher F M,1999. 水稻物质生产对稻田甲烷排放的影响,农业环境保护,18(4):150—154
 
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