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Updated: Jan 8, 2026

Quantification of the Potential Impact of Glyphosate-Based Products on Microbiomes
Published on: January 10, 2022
On the Mechanism of Ozonolysis of Glyphosate
Chester Dabalos1, Emmalani Reynolds1, Benedict Davidson1
1Department of Chemistry, College of Natural and Health Sciences University of Hawai'i at Hilo, 200 West Kawili Street, Hilo, Hawaii 96720, United States.
Abstract:
Glyphosate is a commonly used herbicide. This compound is considered a probable human carcinogen; thus, an efficient and inexpensive method for promoting its facile decomposition into simpler and safer compounds is highly desirable. Ozone, a known disinfectant for aqueous solutions, is known to promote the degradation of glyphosate. The reaction between glyphosate and ozone under alkaline conditions was studied by a variety of spectroscopic techniques. We find that a glyphosate-ozone adduct is initially cleaved primarily into aminomethylphosphonic acid, AMPA, and glycine via an imine intermediate. Investigation of the pH dependence of the reaction, study of a quaternary amine derivative of this herbicide, and NMR analyses of 13C- and 15N-labeled glyphosate analogues support our proposed mechanism. Finally, AMPA and glycine undergo a mechanistically similar degradation as glyphosate and are converted to inorganic products.
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