Environmental Photochemistry of Tylosin: Efficient, Reversible Photoisomerization to a Less-Active Isomer, Followed by Photolysis
Jeffrey J. Werner(University of Minnesota), Kristopher McNeill(ETH Zurich), Mahati Chintapalli(University of Minnesota), Rachel A. Lundeen(University of St. Thomas - Minnesota), William A. Arnold(University of Minnesota), Kristine H. Wammer(University of St. Thomas - Minnesota)
Cited by 37
Related Papers
Photochemical Fate of Sulfa Drugs in the Aquatic Environment: Sulfa Drugs Containing Five-Membered Heterocyclic Groups
|Environmental Science & Technology|2004|738
Triplet state dissolved organic matter in aquatic photochemistry: reaction mechanisms, substrate scope, and photophysical properties
|Environmental Science Processes & Impacts|2016|656
Biodegradation of synthetic polymers in soils: Tracking carbon into CO <sub>2</sub> and microbial biomass
|Science Advances|2018|529
Photodegradation of pharmaceuticals in the aquatic environment: A review
|Aquatic Sciences|2003|472
Methods for reactive oxygen species (ROS) detection in aqueous environments
|Aquatic Sciences|2012|444