[[abstract]]In this work, a ruthenium catalyst was prepared for hydrogen generation from the hydrolysis reaction of an alkaline sodium borohydride solution. The reactions were carried out in a batch reactor at temperatures of 10, 30, 40 and 60 °C for at least 70% conversion or 500 min, whichever came first. The experimental data was fitted to the following three kinetic models: zero-order, first-order, and Langmuir–Hinshelwood. The results indicate that the Langmuir–Hinshelwood model gives a reasonable description of the hydrogen generation rate over the entire temperature range studied as well as the time spans of the experiments. The zero-order model gives good behavior description only at relatively low temperature, i.e. 10 °C. The first...
Worldwide, hydrogen is gaining ground since it is a promising alternative energy source to conventio...
Metal boride catalysts have been developed through reduction of (Ni, Co, and Ru) metal salts with so...
Sodium borohydride is stable in aqueous alkaline solution, however, it hydrolyses in water to hydrog...
Ruthenium on nickel-foam catalyst was prepared for hydrogen production from the hydrolysis reaction ...
Previous work by the authors has demonstrated a high rate and high yield hydrolysis of sodium borohy...
ABSTRACT: Nowadays, the concerns about greenhouse-gas emissions from fossil fuel sources are generat...
In the present work, Cu–Co-supported catalysts were tested for hydrogen generation from the hydrolys...
Depleting fossil fuel supplies, environmental pollution, and global warming demand a new energy carr...
The effects of temperature and the concentrations of NaBH4, NaBO2 and NaOH on the rate of NaBH4 hydr...
The characteristics of hydrogen generation from concentrated sodium borohydride (NaBH4) solutions we...
Liquid-phase catalytic hydrolysis of sodium borohydride (NaBH4) for hydrogen production necessitates...
Catalytic hydrolysis kinetics is a subject of great interest in the study of sodium borohydride (NaB...
Here, we report the results of a kinetic study on the hydrogen generation from the catalytic hydroly...
Previous work by the authors has demonstrated a high rate and high yield hydrolysis of sodium borohy...
In this study, the operational procedure of an experiment and simulation for a hydrogen-on-demand sy...
Worldwide, hydrogen is gaining ground since it is a promising alternative energy source to conventio...
Metal boride catalysts have been developed through reduction of (Ni, Co, and Ru) metal salts with so...
Sodium borohydride is stable in aqueous alkaline solution, however, it hydrolyses in water to hydrog...
Ruthenium on nickel-foam catalyst was prepared for hydrogen production from the hydrolysis reaction ...
Previous work by the authors has demonstrated a high rate and high yield hydrolysis of sodium borohy...
ABSTRACT: Nowadays, the concerns about greenhouse-gas emissions from fossil fuel sources are generat...
In the present work, Cu–Co-supported catalysts were tested for hydrogen generation from the hydrolys...
Depleting fossil fuel supplies, environmental pollution, and global warming demand a new energy carr...
The effects of temperature and the concentrations of NaBH4, NaBO2 and NaOH on the rate of NaBH4 hydr...
The characteristics of hydrogen generation from concentrated sodium borohydride (NaBH4) solutions we...
Liquid-phase catalytic hydrolysis of sodium borohydride (NaBH4) for hydrogen production necessitates...
Catalytic hydrolysis kinetics is a subject of great interest in the study of sodium borohydride (NaB...
Here, we report the results of a kinetic study on the hydrogen generation from the catalytic hydroly...
Previous work by the authors has demonstrated a high rate and high yield hydrolysis of sodium borohy...
In this study, the operational procedure of an experiment and simulation for a hydrogen-on-demand sy...
Worldwide, hydrogen is gaining ground since it is a promising alternative energy source to conventio...
Metal boride catalysts have been developed through reduction of (Ni, Co, and Ru) metal salts with so...
Sodium borohydride is stable in aqueous alkaline solution, however, it hydrolyses in water to hydrog...