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彭静,先后就读于河北农业大学、中国农业大学和北京师范大学,并获得全球环境变化专业博士学位。现就职于中国科学院大气物理研究所东亚区域气候-环境重点实验室,长期以来主要从事陆气间的相互作用方面的研究。目前,主要从事全球耦合模式的地球生物化学过程的模拟,研究气候变化与地球生物化学过程的相互影响。主持青年科学基金项目: CO2浓度升高和气候变化对陆地生态系统碳水循环影响的不确定性分析。

 

联系方式

邮箱:pengjing@tea.ac.cn

电话:010-82995247

 

 共发表科学论文10多篇,主要包括:

[1] Peng Jing, Dong Wenjie, Yuan Wenping, and Zhang Yong, 2012: Responses of grassland and forest to

      temperature and precipitation changes in Northeast China, Advances in Atmospheric Sciences, 29,

      1063-1077, doi:10.1007/s00376-012-1172-2. SCI

[2] Peng Jing, Dan Li, and Dong Wenjie, 2013a: Estimate of extended long-term LAI data set derived from

      AVHRR and MODIS based on the correlations between LAI and key variables of the climate system from

      1982 to 2009, International Journal of Remote Sensing, 34(21), 7761-7778. SCI

[3] Peng Jing, Dan Li and Dong Wenjie, 2013b: Are there interactive effects of physiological and radiative

      forcing produced by increased CO2 concentration on changes of land hydrological cycle?  Global and

      Planetary Change, 112, 64-78. SCI

[4] Peng Jing, Dong Wenjie, Yuan Wenping, Chou Jieming, Zhang Yong, and Li Juan, 2013c: Effects of

      increased CO2 on land water balance from 1850 to 1989, Theoretical and Applied Climatology, 111(3-4),

      483-495, doi: 10.1007/s00704-012-0673-3. SCI

[5] Peng JingDan Li, Huang Mei, 2014, Sensitivity of global and regional terrestrial carbon storage to the

      direct CO2 effect and climate change based on the CMIP5 model Intercomparison, Plos One,

      doi: 10.1371/journal.pone.0095282. SCI

[6] Peng Jing, Dan Li, 2014: The soil moisture and net primary production affected by CO2 and climate

      change using a coupled model, Atmospheric and Oceanic Science Letters.

      doi:10.3878/j.issn.1674-2834.13.0100. CSCD

[7] Peng Jing, Dan Li, 2014: The response of the terrestrial carbon cycle simulated by FGOALS-AVIM to

      rising CO2. Flexible Global OceanAtmosphereLand System Model: A Modeling Tool for the Climate

      Change Research Community. Springer Earth System Sciences. doi:10.1007/978-3-642-41801-3,

      pp 393-403.


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