Anna Michalak

Director, Carnegie Climate and Resilience Hub



Global vegetation biomass production efficiency constrained by models and observations


Journal article


Yue He, S. Peng, Yongwen Liu, Xiangyi Li, Kai Wang, P. Ciais, M. A. Arain, Yuanyuan Fang, J. B. Fisher, D. Goll, D. Hayes, D. Huntzinger, A. Ito, A. Jain, I. A. Janssens, J. Mao, C. Matteo, A. Michalak, C. Peng, J. Peñuelas, B. Poulter, D. Qin, D. Ricciuto, K. Schaefer, C. Schwalm, Xiaoying Shi, H. Tian, S. Vicca, Yaxing Wei, N. Zeng, Qiu'an Zhu
Global Change Biology, 2019

Semantic Scholar DOI PubMed
Cite

Cite

APA   Click to copy
He, Y., Peng, S., Liu, Y., Li, X., Wang, K., Ciais, P., … Zhu, Q. (2019). Global vegetation biomass production efficiency constrained by models and observations. Global Change Biology.


Chicago/Turabian   Click to copy
He, Yue, S. Peng, Yongwen Liu, Xiangyi Li, Kai Wang, P. Ciais, M. A. Arain, et al. “Global Vegetation Biomass Production Efficiency Constrained by Models and Observations.” Global Change Biology (2019).


MLA   Click to copy
He, Yue, et al. “Global Vegetation Biomass Production Efficiency Constrained by Models and Observations.” Global Change Biology, 2019.


BibTeX   Click to copy

@article{yue2019a,
  title = {Global vegetation biomass production efficiency constrained by models and observations},
  year = {2019},
  journal = {Global Change Biology},
  author = {He, Yue and Peng, S. and Liu, Yongwen and Li, Xiangyi and Wang, Kai and Ciais, P. and Arain, M. A. and Fang, Yuanyuan and Fisher, J. B. and Goll, D. and Hayes, D. and Huntzinger, D. and Ito, A. and Jain, A. and Janssens, I. A. and Mao, J. and Matteo, C. and Michalak, A. and Peng, C. and Peñuelas, J. and Poulter, B. and Qin, D. and Ricciuto, D. and Schaefer, K. and Schwalm, C. and Shi, Xiaoying and Tian, H. and Vicca, S. and Wei, Yaxing and Zeng, N. and Zhu, Qiu'an}
}



Tools
Translate to