Seasonality of the lower tropospheric ozone over China observed by the T Ozone Monitoring Instrument Hayashida, S., et al. (2018), Seasonality of the lower tropospheric ozone over China observed by the T Ozone Monitoring Instrument, Atmos. Environ., 184, 244-253, doi:10.1016/j.atmosenv.2018.04.014. Read more about Seasonality of the lower tropospheric ozone over China observed by the T Ozone Monitoring Instrument
Hydrological controls on the tropospheric ozone greenhouse gas effect Kuai, L., et al. (2017), Hydrological controls on the tropospheric ozone greenhouse gas effect, Elem Sci Anth, 5, 10, doi:10.1525/elementa.208. Read more about Hydrological controls on the tropospheric ozone greenhouse gas effect
Detecting high and low-intensity fires in Alaska using VIIRS I-band data: An improved operational approach for high latitudes Waigl, C.F., et al. (2017), Detecting high and low-intensity fires in Alaska using VIIRS I-band data: An improved operational approach for high latitudes, Remote Sensing of Environment, 199, 389-400, doi:10.1016/j.rse.2017.07.003. Read more about Detecting high and low-intensity fires in Alaska using VIIRS I-band data: An improved operational approach for high latitudes
Precipitation Characteristics in West and East Africa from Satellite and in Situ Observations Dezfuli, A.K., et al. (2017), Precipitation Characteristics in West and East Africa from Satellite and in Situ Observations, J. Hydrometeorology, 18, 1799-1805, doi:10.1175/JHM-D-17-0068.1. Read more about Precipitation Characteristics in West and East Africa from Satellite and in Situ Observations
Structural heterogeneity of vegetation fire ash Brook, A., et al. (2019), Structural heterogeneity of vegetation fire ash, Land Degrad Dev., doi:10.1002/ldr.2922. Read more about Structural heterogeneity of vegetation fire ash
Diurnal variation of aerosol optical depth and PM2.5 in South Korea: a synthesis from AERONET, satellite (GOCI), KORUS-AQ observation, and the WRF-Chem model Lennartson, E.M., et al. (2018), Diurnal variation of aerosol optical depth and PM2.5 in South Korea: a synthesis from AERONET, satellite (GOCI), KORUS-AQ observation, and the WRF-Chem model, Atmos. Chem. Phys., 18, 15125-15144, doi:10.5194/acp-18-15125-2018. Read more about Diurnal variation of aerosol optical depth and PM2.5 in South Korea: a synthesis from AERONET, satellite (GOCI), KORUS-AQ observation, and the WRF-Chem model
Mitigating Satellite-Based Fire Sampling Limitations in Deriving Biomass Burning Emission Rates: Application to WRF-Chem Model Over the Northern sub-Saharan African Region Wang, J., et al. (2018), Mitigating Satellite-Based Fire Sampling Limitations in Deriving Biomass Burning Emission Rates: Application to WRF-Chem Model Over the Northern sub-Saharan African Region, J. Geophys. Res., 123, 507-528. Read more about Mitigating Satellite-Based Fire Sampling Limitations in Deriving Biomass Burning Emission Rates: Application to WRF-Chem Model Over the Northern sub-Saharan African Region
A molecular perspective for global modeling of upper atmospheric NH3 from freezing clouds Ge, C., et al. (2018), A molecular perspective for global modeling of upper atmospheric NH3 from freezing clouds, Proc. Natl. Acad. Sci., 115, 6147-6152, doi:10.1073/pnas.1719949115. Read more about A molecular perspective for global modeling of upper atmospheric NH3 from freezing clouds
NU-WRF Aerosol Transport Simulation over West Africa: Effects of Biomass Burning on Smoke Aerosol Distribution Iguchi, T., et al. (2018), NU-WRF Aerosol Transport Simulation over West Africa: Effects of Biomass Burning on Smoke Aerosol Distribution, J. Appl. Meteor. Climat., 57, 1551-1573, doi:10.1175/JAMC-D-17-0278.1. Read more about NU-WRF Aerosol Transport Simulation over West Africa: Effects of Biomass Burning on Smoke Aerosol Distribution
A pilot study of shortwave spectral fingerprints of smoke aerosols above liquid clouds Xu, X., et al. (2018), A pilot study of shortwave spectral fingerprints of smoke aerosols above liquid clouds, J. Quant. Spectrosc. Radiat. Transfer, 221, 38-50, doi:10.1016/j.jqsrt.2018.09.024. Read more about A pilot study of shortwave spectral fingerprints of smoke aerosols above liquid clouds