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Lycopodium dust samples with mean diameter of 70 μm and electric igniters with 0.5 KJ ignition energy were used in the experiments.
The proposed formula is independent of ignition energy.
The minimum ignition delay was 27.5 ms with an ignition energy of 19.3 mJ.
The minimum ignition energy (MIE) was measured by two types of modified 1.2−liter Hartmann tubes.
The minimum ignition energy (MIE) of gaseous epoxypropane/air mixtures is measured using capacitive spark discharge.
The minimum ignition energy was about one order of magnitude higher than the minimum ignition energy obtained by the electric spark ignition.
For ignition energy effect, results from methane/niacin mixture demonstrated that the MEC and LFL will not be affected by changing ignition energy.
The Kühner MIKE3 is the predominant apparatus for measurement of the minimum ignition energy (MIE) of combustible dusts worldwide.
During a preceding examination, a relation was found between the ignition energy of a dust cloud and the Oxygen concentration.
The low ignition energy and high flame speed of hydrogen may help improve the combustion of rotary engines.
For this reason, the used ignition energy varies within a huge range from 1 mJ up to 10 kJ.
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