Citas bibligráficas
Otsuka, K., (2018). Evaluación de la deionización capacitiva de NaCl acuoso empleando un electrodo de carbón activado modificado con hexafluorofosfatro de 1-butil-3-metilimidazolio [Tesis, Pontificia Universidad Católica del Perú]. http://hdl.handle.net/20.500.12404/12577
Otsuka, K., Evaluación de la deionización capacitiva de NaCl acuoso empleando un electrodo de carbón activado modificado con hexafluorofosfatro de 1-butil-3-metilimidazolio [Tesis]. PE: Pontificia Universidad Católica del Perú; 2018. http://hdl.handle.net/20.500.12404/12577
@mastersthesis{renati/535659,
title = "Evaluación de la deionización capacitiva de NaCl acuoso empleando un electrodo de carbón activado modificado con hexafluorofosfatro de 1-butil-3-metilimidazolio",
author = "Otsuka Salinas, Kenjo",
publisher = "Pontificia Universidad Católica del Perú",
year = "2018"
}
In the present thesis is presented the synthesis, characterization and application of an activated carbon electrode and activated carbon modified with ionic liquid 1-butyl-3- methylimidazolium hexafluorophosphate for the removal of sodium chloride in prepared aqueous saline solutions of 200, 500 and 1000 ppm and applying potentials of 0,8; 1,0 and 1,2 V by means of capacitive deionization process (CDI). The development of capacitive deionization (CDI) technology for the desalination of electrolytic solutions is a quite promising field, with multiple laboratory and industrial scale work being recorded to date. The capacitive deionization process (CDI) directly depends on the electrical capacitance of the materials used as electrodes, wettability, as well as the applied work potential between the electrodes. The carbonaceous materials modified with ionic liquid exhibit an increase in electrical capacitance, great electrochemical stability, as well as an improvement in wettability. Given this, the following question arises: will it be possible to develop an electrode that contributes to the improvement of the removal of sodium chloride in the field of capacitive deionization (CDI)? Through cyclic voltammetry technique, the electrical capacitance of modified activated carbon and activated carbon is calculated as 58,40 F/g and 44,20 F/g, respectively. By measuring the contact angle, an improvement in wettability is obtained from 112,00° for the unmodified electrode to 61,90° for the modified electrode. Finally, it is determined that the highest removal capacity of 13,79 mg/g is obtained at a saline concentration of 1240 ppm and a working potential of 1,0 V.
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