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Glyphosate is a transformation product of a widely used aminopolyphosphonate complexing agent

Abstract

Diethylenetriamine penta(methylenephosphonate) (DTPMP) and related aminopolyphosphonates (APPs) are widely used as chelating agents in household and industrial applications. Recent studies have linked APP emissions to elevated levels of the herbicide glyphosate in European surface waters. However, the transformation processes and products of APPs in the environment are largely unknown. We show that glyphosate is formed from DTPMP by reaction with manganese at near neutral pH in pure water and in wastewater. Dissolved Mn2+ and O2 or suspended MnO2 lead to the formation of glyphosate, which remains stable after complete DTPMP conversion. Glyphosate yields vary with the reaction conditions and reach up to 0.42?mol%. The ubiquitous presence of manganese in natural waters and wastewater systems underscores the potential importance of Mn-driven DTPMP transformation as a previously overlooked source of glyphosate in aquatic systems. These findings challenge the current paradigm of herbicide application as the sole source of glyphosate contamination and necessitate a reevaluation of water resource protection strategies.

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LabNews Media LLC
labnews.ai 的主编是 Marita Vollborn 和 Vlad Georgescu。自 1994 年以来,他们一直是畅销书作家、科学作家和科学记者。更多关于他们的写作信息,请访问 X-Press Journalistenbüro (https://xpress-journalisten.com)。更多维基百科信息:关于 Marita:https://de.wikipedia.org/wiki/Marita_Vollborn 关于 Vlad:https://de.wikipedia.org/wiki/Vlad_Georgescu
LabNews Media LLC

LabNews Media LLC

labnews.ai 的主编是 Marita Vollborn 和 Vlad Georgescu。自 1994 年以来,他们一直是畅销书作家、科学作家和科学记者。更多关于他们的写作信息,请访问 X-Press Journalistenbüro (https://xpress-journalisten.com)。更多维基百科信息:关于 Marita:https://de.wikipedia.org/wiki/Marita_Vollborn 关于 Vlad:https://de.wikipedia.org/wiki/Vlad_Georgescu