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- W2886180065 abstract "The (RSM) is a useful method for optimizing analytical methods and it has been applied to evaluate independent variables in FPs. In this study, the removal of dimethoate (DMT) which is a commonly used pesticide and has a toxic effect on the environment, was evaluated in terms of oxidation and mineralization efficiency using response surface methodology (RSM) in the Fenton-like process (FLP). The obtained optimum conditions for DMT oxidation and mineralization using the FLP included DMT/Fe+3/H2O2 ratio of 0.018 mM/0.03 mM/0.15 mM and reaction time of 65 min. DMT oxidation efficiency was 78% and mineralization efficiency was 18%. The initial DMT concentration was the most significant variable affecting both the oxidation and mineralization efficiency of DMT." @default.
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- W2886180065 date "2018-08-01" @default.
- W2886180065 modified "2023-09-24" @default.
- W2886180065 title "Modelling Dimethoate Removal by Fenton-Like Process Using Response Surface Methodology" @default.
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- W2886180065 doi "https://doi.org/10.3390/proceedings2110649" @default.
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