JOURNAL ARTICLE

Hydrogen Production via Autothermal Reforming of Diesel Fuel

Abstract

Abstract Hydrogen, for the operation of a polymer electrolyte fuel cell, can be produced by means of autothermal reforming of liquid hydrocarbons. Experiments, especially with ATR 4, which produces a molar hydrogen stream equivalent to an electrical power in the fuel cell of 3 kW, showed that the process should be preferably run in the temperature range between 700 ° and 850 °. This ensures complete hydrocarbon conversion and avoids the formation of considerable amounts of methane and organic compounds in the product water. Experiments with commercial diesel showed promising results but insufficient long‐term stability. Experiments concerning the ignition of the catalytic reaction inside the reformer proved that within 60 s after the addition of water and hydrocarbons the reformer reached 95% of its maximum molar hydrogen flow. Measurements, with respect to reformer start‐up, showed that it takes approximately 7 min. to heat up the monolith to a temperature of 340 ° using an external heating device. Modelling is performed, aimed at the modification of the mixing chamber of ATR Type 5, which will help to amend the homogeneous blending of diesel fuel with air and water in the mixing chamber.

Keywords:
Diesel fuel Methane reformer Chemical engineering Hydrogen production Hydrogen Methane Ignition system Materials science Syngas Catalytic reforming Hydrogen fuel Electrolyte Steam reforming Waste management Chemistry Thermodynamics Organic chemistry Electrode

Metrics

25
Cited By
2.75
FWCI (Field Weighted Citation Impact)
2
Refs
0.88
Citation Normalized Percentile
Is in top 1%
Is in top 10%

Citation History

Topics

Catalysis and Hydrodesulfurization Studies
Physical Sciences →  Engineering →  Mechanical Engineering
Catalysts for Methane Reforming
Physical Sciences →  Chemical Engineering →  Catalysis
Fuel Cells and Related Materials
Physical Sciences →  Engineering →  Electrical and Electronic Engineering

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