Journal Article

·2019

Molybdenum‐ and vanadium‐containing perovskite electrocatalysts for dissociation of H 2 S

Meltem Karaismailoğlu Elibol YTU , N.Ö. Güldal YTU , Halit Eren Figen YTU , Sema Z. Baykara YTU

International Journal of Energy Research

Abstract

Catalytic operations, achieving considerable energy savings, continue getting wider application especially in clean energy systems. Perovskite materials, owing to their chemical and thermal stability, can be conveniently used as catalysts and electrode materials at wide temperature ranges. Hydrogen sulfide (H2S) offers a new and abundant source of hydrogen, the ultimate energy carrier. In the present work, change in electrical conductivity of catalysts obtained by adding molybdenum (Mo) and vanadium (V) as B to the perovskite structure with lanthanum (La) and strontium (Sr) as A and A′, respectively, has been studied within a temperature range of up to 1100 K. Samples La0.75Sr0.25MoO3 and LaSr0.5V0.5O3 demonstrated the highest values of conductivity at 1100 K. At lower temperatures, Cr-added Mo and V catalysts La0.9Sr0.1Cr0.5Mo0.5O3 and La0.9Sr0.1Cr0.5V0.5O3 had higher conductivity, closely followed by LaSr0.5V0.5O3.

Keywords

Vanadium Catalysis Molybdenum Hydrogen Conductivity Perovskite (structure) Inorganic chemistry Lanthanum Dissociation (chemistry) Atmospheric temperature range Materials science Strontium Electrical resistivity and conductivity Chemistry Chemical engineering Physical chemistry Crystallography Thermodynamics

Subject Areas

Advancements in Solid Oxide Fuel Cells ·Materials Chemistry ·Physical Sciences
Industrial Gas Emission Control ·Mechanical Engineering ·Physical Sciences
Chemical Looping and Thermochemical Processes ·Biomedical Engineering ·Physical Sciences

Citations by Year