Determination of Ignition Temperature in Micro Reactors
Balcazar, Emilio
Neher, Felix
Liebner, Christian
Hieronymus, Hartmut
Klemm, Elias
Download PDF

How to Cite

Balcazar E., Neher F., Liebner C., Hieronymus H., Klemm E., 2016, Determination of Ignition Temperature in Micro Reactors, Chemical Engineering Transactions, 48, 547-552.
Download PDF

Abstract

Explosion protection of oxidation reactions in micro reactors was investigated. Lange et al. (2014) reported on the possibilities of operating oxidation reactions in catalyst coated micro reactors within the explosion regime, but also warned about hotspot induced thermal runaway and detonation ignition at certain conditions. Methane and ethene, representing the explosion groups IIA1 and IIB (DIN EN ISO 16852), were used in stoichiometric oxygen mixtures with respect to total oxidation, which represents the worst case scenario in terms of safety assessment. Using laser radiation on a ceramic target inside of the micro channel, an artificial, controllable hotspot was generated. The ignition temperatures of fuel gas/oxygen mixtures inside a micro reactor were measured and their dependencies on initial pressure, initial temperature, volumetric flow rate, and micro channel height were examined. Deflagration reactions prior to the detonation were observed for the first time inside a micro reactor.
Download PDF