2000
DOI: 10.1006/jcat.2000.2819
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The Controlled Oxidation of Hydrogen from an Explosive Mixture of Gases Using a Microstructured Reactor/Heat Exchanger and Pt/Al2O3 Catalyst

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Cited by 179 publications
(94 citation statements)
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“…These parameters relate to the diffusivity of the precursor. Appropriateness of CVD methods for coating with Al 2 O 3 has been shown very early by Janicke et al (2000).…”
Section: Reactor Joining Methodsmentioning
confidence: 99%
“…These parameters relate to the diffusivity of the precursor. Appropriateness of CVD methods for coating with Al 2 O 3 has been shown very early by Janicke et al (2000).…”
Section: Reactor Joining Methodsmentioning
confidence: 99%
“…In addition, there is a quenching distance so that the explosion cannot occur if the distance between the oxygen and hydrogen molecule is smaller than a certain separation distance. According to Janicke et al (2000), this quenching distance is 1 mm. However, EFFC is a device constructed in basis of nanostructure.…”
Section: Non-potential Safety Hazardmentioning
confidence: 99%
“…Another oxidation reaction has been performed in a microstructured heat exchanger/reactor: the catalyzed oxidation reaction of hydrogen from an explosive mixture of gases [66]. This oxidation reaction is very hazardous and requires an explosive reactant mixture.…”
Section: Oxidation Reactionsmentioning
confidence: 99%
“…The two previous studies [64,66] concerning microstructured heat exchanger/reactors were focused on oxidation reactions. The apparatuses have been designed according to a plate heat exchanger geometry and oxidation reactions have been successfully performed.…”
Section: Geometrymentioning
confidence: 99%