Formic acid (FA) is considered as a potential durable energy carrier. It contains ~4.4 wt % of hydrogen (or 53 g/L) which can be catalytically released and converted to electricity using a proton exchange membrane (PEM) fuel cell. Although various catalysts have been reported to be very selective towards FA dehydrogenation (resulting in H2 and CO2), a side-production of CO and H2O (FA dehydration) should also be considered, because most PEM hydrogen fuel cells are poisoned by CO. In this research, a highly active aqueous catalytic system containing Ru(III) chloride and meta-trisulfonated triphenylphosphine (mTPPTS) as a ligand was applied for FA dehydrogenation in a continuous mode. CO concentration (8–70 ppm) in the resulting H2 + CO2 gas ...
The need for sustainable energy sources is now more urgent than ever, and hydrogen is significant in...
Hydrogen utilization as a sustainable energy vector is of growing interest. We report herein a cyclo...
Proton exchange membrane (PEM) fuel cells are efficient energy converters that convert chemical ener...
Formic acid (FA) is considered as a potential durable energy carrier. It contains ~4.4 wt % of hydro...
Formic acid (FA) is considered as a potential durable energy carrier. It contains ~4.4 wt % of hydro...
\u3cp\u3eFormic acid (FA) is considered as a potential durable energy carrier. It contains ~4.4 wt %...
A proof-of-concept prototype of a medium-scale heterogeneous catalytic reactor for continuous produc...
Formic acid (FA) possesses a high volumetric concentration of H2 (53 g L−1). Moreover, it can be eas...
The dehydrogenation of formic acid permits the production of hydrogen virtually free of carbon monox...
The valorization of carbon dioxide and its transformation into useful chemicals is essential as mank...
The main obstacles in the widespread use of hydrogen as energetic alternative to fossil fuels are st...
Formic acid, containing 4.4 wt% of hydrogen, is a non-toxic liquid at ambient temperature and theref...
Hydrogen holds the potential to be one of the major energy carriers for the future. However, a hydro...
This article belongs to the Special Issue Organometallic Homogeneous Catalysis.Formic acid (FA) poss...
Our current energy production is convenient and simple, but it is not sustainable. The negative impa...
The need for sustainable energy sources is now more urgent than ever, and hydrogen is significant in...
Hydrogen utilization as a sustainable energy vector is of growing interest. We report herein a cyclo...
Proton exchange membrane (PEM) fuel cells are efficient energy converters that convert chemical ener...
Formic acid (FA) is considered as a potential durable energy carrier. It contains ~4.4 wt % of hydro...
Formic acid (FA) is considered as a potential durable energy carrier. It contains ~4.4 wt % of hydro...
\u3cp\u3eFormic acid (FA) is considered as a potential durable energy carrier. It contains ~4.4 wt %...
A proof-of-concept prototype of a medium-scale heterogeneous catalytic reactor for continuous produc...
Formic acid (FA) possesses a high volumetric concentration of H2 (53 g L−1). Moreover, it can be eas...
The dehydrogenation of formic acid permits the production of hydrogen virtually free of carbon monox...
The valorization of carbon dioxide and its transformation into useful chemicals is essential as mank...
The main obstacles in the widespread use of hydrogen as energetic alternative to fossil fuels are st...
Formic acid, containing 4.4 wt% of hydrogen, is a non-toxic liquid at ambient temperature and theref...
Hydrogen holds the potential to be one of the major energy carriers for the future. However, a hydro...
This article belongs to the Special Issue Organometallic Homogeneous Catalysis.Formic acid (FA) poss...
Our current energy production is convenient and simple, but it is not sustainable. The negative impa...
The need for sustainable energy sources is now more urgent than ever, and hydrogen is significant in...
Hydrogen utilization as a sustainable energy vector is of growing interest. We report herein a cyclo...
Proton exchange membrane (PEM) fuel cells are efficient energy converters that convert chemical ener...