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Natalie Mahowald
Business Address:
Cornell University
Ithaca, NY 14853
United StatesCo-Authored Publications:
- Bisson, K., et al. (2024), Observing ocean ecosystem responses to volcanic ash, Remote Sensing of Environment, 296.
- Bisson, K., et al. (2023), Observing ocean ecosystem responses to volcanic ash, Remote Sensing of Environment, 296, 113749, doi:10.1016/j.rse.2023.113749.
- Galetto, F., et al. (2023), Spatial and temporal quantification of subaerial volcanism from 1980 to 2019: solid products, masses and average eruptive rates, Rev. Geophys., 61, e2022RG000783, doi:10.1029/2022RG000783.
- Galetto, F., et al. (2023), Spatial and Temporal Quantification of Subaerial Volcanism From 1980 to 2019: Solid Products, Masses, and Average Eruptive Rates, Rev. Geophys..
- Adebiyi, A., et al. (2022), A review of coarse mineral dust in the Earth system, Aeolian Resrch., 60, 100849, doi:10.1016/j.aeolia.2022.100849.
- Feng, Y., et al. (2022), Global Dust Cycle and Direct Radiative Effect in E3SM Version 1: Impact of Increasing Model Resolution, J. Adv. Modeling Earth Syst..
- Hamilton, D. S., et al. (2022), Earth, Wind, Fire, and Pollution: Aerosol Nutrient Sources and Impacts on Ocean Biogeochemistry, Ann. Rev. Mar. Sci., 14, 1-28, doi:10.1146/annurev-marine-031921-013612.
- Liu, M., et al. (2022), The underappreciated role of anthropogenic sources in atmospheric soluble iron flux to the Southern Ocean, NPJ Climate and Atmospheric Science, 5(1), doi:10.1038/s41612-022-00250-w.
- Connelly, D. S., et al. (2021), The EMIT mission information yield for mineral dust radiative forcing, Remote Sensing of Environment, 258, 112380, doi:10.1016/j.rse.2021.112380.
- Li, L., et al. (2021), Quantifying the range of the dust direct radiative effect due to source mineralogy uncertainty, Atmos. Chem. Phys., 21, 3973-4005, doi:10.5194/acp-21-3973-2021.
Note: Only publications that have been uploaded to the
ESD Publications database are listed here.