Williams, R.T.; Caspers-Brown, A.; Michaud, J.; Stevens, N.; Meehan, M.; Sultana, C.M.; Lee, C.; Malfatti, F.; Zhou, Y.; Azam, F.;
et al. Possible Missing Sources of Atmospheric Glyoxal Part II: Oxidation of Toluene Derived from the Primary Production of Marine Microorganisms. Metabolites 2024, 14, 631.
https://doi.org/10.3390/metabo14110631
AMA Style
Williams RT, Caspers-Brown A, Michaud J, Stevens N, Meehan M, Sultana CM, Lee C, Malfatti F, Zhou Y, Azam F,
et al. Possible Missing Sources of Atmospheric Glyoxal Part II: Oxidation of Toluene Derived from the Primary Production of Marine Microorganisms. Metabolites. 2024; 14(11):631.
https://doi.org/10.3390/metabo14110631
Chicago/Turabian Style
Williams, Renee T., Annika Caspers-Brown, Jennifer Michaud, Natalie Stevens, Michael Meehan, Camille M. Sultana, Christopher Lee, Francesca Malfatti, Yanyan Zhou, Farooq Azam,
and et al. 2024. "Possible Missing Sources of Atmospheric Glyoxal Part II: Oxidation of Toluene Derived from the Primary Production of Marine Microorganisms" Metabolites 14, no. 11: 631.
https://doi.org/10.3390/metabo14110631
APA Style
Williams, R. T., Caspers-Brown, A., Michaud, J., Stevens, N., Meehan, M., Sultana, C. M., Lee, C., Malfatti, F., Zhou, Y., Azam, F., Prather, K. A., Dorrestein, P., Burkart, M. D., & Pomeroy, R. S.
(2024). Possible Missing Sources of Atmospheric Glyoxal Part II: Oxidation of Toluene Derived from the Primary Production of Marine Microorganisms. Metabolites, 14(11), 631.
https://doi.org/10.3390/metabo14110631