Matches in SemOpenAlex for { <https://semopenalex.org/work/W1536050049> ?p ?o ?g. }
- W1536050049 abstract "One of the largest obstacles to the large scale application of hydrogen powered fuel cell vehicles is the absence of hydrogen storage methods suitable for application on-board of these vehicles. Metal hydrides are materials in which hydrogen is reversibly absorbed by one or more metals or combinations of metals with non-metallic elements. Due to their high volumetric hydrogen content metal hydrides offer an alternative to traditional methods for hydrogen storage like high pressure gaseous or liquid hydrogen storage. In order to be successful, potential metal hydride systems depend on very small particle sizes, proper mixing of different components, and the addition of well dispersed catalyst(s). All of this can be achieved by spark discharge nanoparticle generation (SDG). In SDG, a high voltage power supply is used to generate sparks between two electrodes. The interaction of the sparks with the electrodes results in erosion of the electrodes, and the metal vapour that is thus formed condenses to form very small nanoparticles. Spark discharge offers an interesting alternative to current production methods for metal hydrides like ball milling, as very small and highly pure nanoparticles can be generated. The process is continuous, can be operated at atmospheric pressure and has the potential to be scaled up. The simplicity of adding a range of different catalysts and the high dispersion that can be achieved by mixing in the aerosol phase further add to the potential benefits of spark discharge. In this thesis results are presented on using spark discharge as a new method for generating metal hydride based hydrogen storage materials. It is the first part of a long term research effort at Delft University of Technology into new materials for hydrogen storage produced using this method." @default.
- W1536050049 created "2016-06-24" @default.
- W1536050049 creator A5046344277 @default.
- W1536050049 date "2010-09-27" @default.
- W1536050049 modified "2023-09-23" @default.
- W1536050049 title "Spark Discharge Generated Nanoparticles for Hydrogen Storage Applications" @default.
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