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Updated: Feb 21, 2026

Identification of Pharmaceuticals in The Aquatic Environment Using HPLC-ESI-Q-TOF-MS and Elimination of Erythromycin Through Photo-Induced Degradation
Published on: August 1, 2018
Modelo probabilístico de emisiones para filtros UV orgánicos liberados en aguas recreativas durante eventos de
Thomas W Federle1, Margaret L Fleming2, Iain A Davies2
1Cincinnati OH (Subcontractor), Thomas W Federle LLC, United States.
Abstract:
A critical element for understanding measured concentrations and predicting exposure levels of UV filters (UVFs) in recreational waters relates to mass released from sunscreen products applied to skin during swimming and bathing. A probabilistic mass transfer kinetic model was developed to estimate distributions of the mass of five organic UVFs released during individual swim events with sunscreen. The model incorporates the ratios of different demographics and distributions of their total skin areas, adjusted to account for body areas to which sunscreens are not typically applied or do not contact water. The resulting distribution of skin areas is combined with distributions of sunscreen application rates and UVF levels in sunscreen products to generate a distribution of UVF masses on skin that are exposed to water with the fraction released to water calculated using a first-order equation describing the kinetics of release. The predicted median mass released during a swim event was 112 mg for oxybenzone, 32.6 mg for avobenzone, 23.5 mg for octocrylene, 47.7 mg for homosalate and 7.59 mg for octisalate. As proof of principle, the model was used to repeat previous modelling at Prophète Beach, which resulted in predicted median values for oxybenzone and avobenzone within a factor of three of the reported measured environmental concentrations.

