Use of conductive diamond photo-electrochemical oxidation for the removal of pesticide glyphosate

In this work, the depletion of a commercial formulation of the pesticide glyphosate (RoundUp) using photolysis, electrolysis and photo-electrolysis with diamond anodes was studied. Results show that single photolysis is an inefficient technology for the removal of the pesticide; however, when couple...

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Detalhes bibliográficos
Autores: Rubí Juárez, Humberto, Cotillas, Salvador, Sáez Jiménez, Cristina, Cañizares Cañizares, Pablo, Barrera-Díaz, Carlos Eduardo
Formato: artículo
Fecha de publicación:2016
País:España
Recursos:Universidad de Castilla-La Mancha
Repositorio:RUIdeRA. Repositorio Institucional de la UCLM
OAI Identifier:oai:ruidera.uclm.es:10578/17533
Acesso em linha:http://dx.doi.org/10.1016/j.seppur.2016.04.048
http://hdl.handle.net/10578/17533
Access Level:acceso abierto
Palavra-chave:Diamond anode
Electrolysis
Photo-electrolysis
Pesticide
Glyphosate
Descrição
Resumo:In this work, the depletion of a commercial formulation of the pesticide glyphosate (RoundUp) using photolysis, electrolysis and photo-electrolysis with diamond anodes was studied. Results show that single photolysis is an inefficient technology for the removal of the pesticide; however, when coupled with electrolysis the removal yield significantly improves. The use of a combined process (photo-electrolysis) leads to the generation of higher concentrations of free radicals from the photo-activation of the oxidants electrogenerated. A major finding is that the supporting electrolyte plays a key role on the removal of glyphosate due to the generation of different oxidant species. Such species (peroxocarbonates, peroxosulfates and hypochlorite) also contribute to the depletion of the pesticide. Furthermore, the removal of glyphosate is clearly influenced by the current density because of the strong relationship between this parameter and the oxidants produced on the anode surface.