Inter-comparison of oxidative potential metrics for airborne particles identifies differences between acellular chemical assays
Pourya Shahpoury(Trent University), Haijie Tong(Helmholtz-Zentrum Hereon), Alison Traub(University of Toronto), Greg J. Evans(University of Toronto), Stefanie Hildmann(Max Planck Institute for Chemistry), Zheng Wei Zhang(Environment and Climate Change Canada), Bhargav R. Patel(University of Toronto), Ewa Dąbek-Złotorzyńska(Environment and Climate Change Canada), Thomas Berkemeier(Max Planck Institute for Chemistry), Meissam Noroozifar(University of Toronto), Jake Wilson(Max Planck Institute for Chemistry), Ulrich Pöschl(Max Planck Institute for Chemistry), Kağan Kerman(University of Toronto), Valbona Celo(Environment and Climate Change Canada), Gerhard Lammel(Masaryk University), Alexander Filippi(Max Planck Institute for Chemistry), Boris Mashtakov(Max Planck Institute for Chemistry), Steven Lelieveld(Max Planck Institute for Chemistry), Tom Harner(Environment and Climate Change Canada), Dana Umbrio(University of Toronto), Marco Wietzoreck(Max Planck Institute for Chemistry)
Cited by 36
Related Papers
Cardiovascular disease burden from ambient air pollution in Europe reassessed using novel hazard ratio functions
|European Heart Journal|2019|890
Loss of life expectancy from air pollution compared to other risk factors: a worldwide perspective
|Cardiovascular Research|2020|787
Multiphase Chemistry at the Atmosphere–Biosphere Interface Influencing Climate and Public Health in the Anthropocene
|Chemical Reviews|2015|698