Jessica Meijide
University of Vigo
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Publication
Featured researches published by Jessica Meijide.
Journal of Hazardous Materials | 2016
Jessica Meijide; J. Gómez; Marta Pazos; M.A. Sanromán
In this work, a comparative study using anodic oxidation, Fenton and electro-Fenton treatments was performed in order to determine the synergic effect for the removal of thiamethoxan. The results determined that electro-Fenton process showed high efficiency in comparison with Fenton or anodic oxidation. After that, this hybrid process was optimized and the influence of iron catalyst concentration and applied current intensity on the degradation and mineralization were evaluated. Degradation profiles were monitored by high performance liquid chromatography (HPLC) being satisfactorily described by pseudo-first order kinetic model. At the optimal experimental conditions (300mA and 0.2mM Fe(+2)), the complete degradation of thiamethoxam was achieved after 10min. On the other hand, mineralization of thiamethoxam was monitored by total organic carbon (TOC) decay reaching more than 92% of TOC removal after 8h. Furthermore, a plausible mineralization pathway for the thiamethoxam degradation was proposed based on the identification of by-products such as aromatic intermediates, carboxylic acids and inorganic ions released throughout electro-Fenton process.
Chemosphere | 2017
Jessica Meijide; Emilio Rosales; Marta Pazos; M.A. Sanromán
The chemical process scale-up, from lab studies to industrial production, is challenging and requires deep knowledge of the kinetic model and the reactions that take place in the system. This knowledge is also useful in order to be employed for the reactor design and the determination of the optimal operational conditions. In this study, a model substituted phenol such as p-nitrophenol was degraded by electro-Fenton process and the reaction products yielded along the treatment were recorded. The kinetic model was developed using Matlab software and was based on main reactions that occurred until total mineralization which allowed predicting the degradation pathway under this advanced oxidation process. The predicted concentration profiles of p-nitrophenol, their intermediates and by-products in electro-Fenton process were validated with experimental assays and the results were consistent. Finally, based on the developed kinetic model the degradation process was optimized using central composite design taking as key parameters the ferrous ion concentration and current density.
Electrochimica Acta | 2015
Olalla Iglesias; Jessica Meijide; Elvira Bocos; M. Ángeles Sanromán; Marta Pazos
Process Safety and Environmental Protection | 2016
Emilio Rosales; Jessica Meijide; Teresa Tavares; Marta Pazos; M.A. Sanromán
Journal of The Taiwan Institute of Chemical Engineers | 2016
M. Cobas; Jessica Meijide; M.A. Sanromán; Marta Pazos
Bioresource Technology | 2017
Emilio Rosales; Jessica Meijide; Marta Pazos; M.A. Sanromán
Process Safety and Environmental Protection | 2017
Marius Popescu; Emilio Rosales; Ciprian Sandu; Jessica Meijide; Marta Pazos; Gabriel Lazar; Ma Ángeles Sanromán
Environmental Science and Pollution Research | 2017
Bakhta Bouzayani; Jessica Meijide; Marta Pazos; Sourour Chaâbane Elaoud; M.A. Sanromán
Journal of Electroanalytical Chemistry | 2018
Jessica Meijide; Sandra Servia Rodríguez; M. Ángeles Sanromán; Marta Pazos
Environmental Science and Pollution Research | 2017
Jessica Meijide; Marta Pazos; M.A. Sanromán