Staff
Hao-Wei Wey
FB 2: Marine Biogeochemie
FE Biogeochemische Modellierung
- Phone:
- +49 431 600 2367
- Email:
- hwey(at)geomar.de
Address:
Wischhofstra脽e 1-3
24148 Kiel
Research Interest
- Marine and Terrestrial Carbon Cycle
- Carbon Dioxide Removal (CDR)
- Marine Biogeochemical Modeling
- Terrestrial Vegetation Modeling
- Land-Atmosphere Interactions
- Climate Dynamics
Professional Experiences
Postdoctoral researcher (Since 2021)
黑料视频 Helmholtz Centre for Ocean Research Kiel, Kiel, Germany
Postdoctoral researcher (2021)
Max-Planck Institute for Meteorology, Hamburg, Germany
Education
Dr. rer. nat., Earth Sciences (2021)
Max-Planck Institute for Meteorology and the University of Hamburg, Hamburg, Germany
M.S. in Atmospheric Sciences (2015)
National Taiwan University, Taipei, Taiwan
B.S. in Electrical Engineering with a minor in Atmospheric Sciences (2013)
National Taiwan University, Taipei, Taiwan
Projects
BMBF project (2021 鈥 2025): CDR Synthesis and Transfer project
Publications
Moustakis, Y., Wey, H.-W., N眉tzel, T., Oschlies, A., & Pongratz, J. (2025). No compromise in efficiency from the co-application of a marine and a terrestrial CDR method. Nature Communications, 16(1), 4709.
Yao, W., Morganti, T. M., Wu, J., Borchers, M., Ansch眉tz, A., Bednarz, L. 鈥怟., Bhaumik, K. A., B枚ttcher, M., Burkhard, K., Cabus, T., Chua, A. S., Diercks, I., Esposito, M., Fink, M., Fouqueray, M., Gasanzade, F., Geilert, S., Hauck, J., Havermann, F., 鈥 Wey, H.-W., 鈥 Mengis, N. (2025). Exploring Site鈥怱pecific Carbon Dioxide Removal Options With Storage or Sequestration in the Marine Environment 鈥 The 10 Mt CO2 yr鈭1 Removal Challenge for Germany. Earth鈥檚 Future, 13(4), e2024EF004902.
Wey, H.-W., Moustakis, Y., N眉tzel, T., Oschlies, A., Schwinger, J., Hajima, T., Fisher, R., Ziehn, T., Liddicoat, S. K., Kemena, T. P., & Keller, D. (2025). CMIP6 Models agree on similar carbon cycle feedbacks between enhancing terrestrial and marine carbon sinks. Environmental Research Letters.
Moustakis, Y., N眉tzel, T., Wey, H.-W., Bao, W., & Pongratz, J. (2024). Temperature overshoot responses to ambitious forestation in an Earth System Model. Nature Communications, 15(1), 8235.
Lawal, S., Sitch, S., Lombardozzi, D., Nabel, J. E. M. S., Wey, H.-W., Friedlingstein, P., Tian, H., & Hewitson, B. (2022). Investigating the response of leaf area index to droughts in southern African vegetation using observations and model simulations. Hydrology and Earth System Sciences, 26(8), 2045鈥2071.
Wey, H.-W., Pongratz, J., Nabel, J. E. M. S., & Naudts, K. (2022). Effects of Increased Drought in Amazon Forests Under Climate Change: Separating the Roles of Canopy Responses and Soil Moisture. Journal of Geophysical Research: Biogeosciences, 127(3), e2021JG006525.
Lo, M.-H., Wey, H.-W., Im, E.-S., Tang, L. I., Anderson, R. G., Wu, R.-J., Chien, R.-Y., Wei, J., AghaKouchak, A., & Wada, Y. (2021). Intense agricultural irrigation induced contrasting precipitation changes in Saudi Arabia. Environmental Research Letters, 16(6), 064049.
Chou, C., Ryu, D., Lo, M.-H., Wey, H.-W., & Malano, H. M. (2018). Irrigation-Induced Land鈥揂tmosphere Feedbacks and Their Impacts on Indian Summer Monsoon. Journal of Climate, 31(21), 8785鈥8801.
Lo, M., Kuo, T., Wey, H.-W., Lan, C., & Chen, J. (2017). Land Processes as the Forcing of Extremes: A Review. In S. 鈥怸. S. Wang, J. Yoon, C. C. Funk, & R. R. Gillies (Eds.), Geophysical Monograph Series (1st ed., pp. 75鈥92). Wiley.
Wey, H.-W., Lo, M.-H., Lee, S.-Y., Yu, J.-Y., & Hsu, H.-H. (2015). Potential impacts of wintertime soil moisture anomalies from agricultural irrigation at low latitudes on regional and global climates. Geophysical Research Letters, 42(20), 8605鈥8614.