New insights into improving acidic aluminum fuel cell for powering electrical vehicles
Résumé
Abstract This study-involved novelty of high power new aluminum (Al) fuel cell in 0.1 M HCl (less corrosive and strong conductive electrolyte instead of the aggressive alkali). The performance of aluminum (Al) anode enhanced by using antimony sulphate Sb2(SO4)3 salt effective poison (in acidic solution) the parasitic hydrogen evolution reaction (HER). Antimony ad-atom specifically adsorbed at cathodic sites of Al surface and stopped HER via retardation of recombination of step of Hads, consequently the formation of molecular hydrogen and its release from aluminum surface. The production of sustainable electricity from AFC and maximum power density achieved by Sb adsorption and using the low cost prepared porous air cathode (sulphur-Fe2O3-doped NiO nanocomposie). Corrosion control of Al and using NiO air cathode improved cell discharge capacity. The best cell parameters obtained at 1 × 10− 5M Sb2(SO4)3 were (cell potential 2.4 V, current density 20.4 Am− 2 and electrical power 30.30 kwhkg− 1.
Citer ce document
Accès au document
Texte intégral en lecture en ligne, réservé aux abonnés SPHAERO et aux membres de l'institution. Se connecter
Voir l'article sur le site de la revueStatistiques
Consultations : 1
Téléchargements : 0