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The limiting oxygen concentration is shown in the lower right of the diagram. The limiting oxygen concentration (LOC), [1] also known as the minimum oxygen concentration (MOC), [2] is defined as the limiting concentration of oxygen below which combustion is not possible, independent of the concentration of fuel. It is expressed in units of ...
Dusts also have upper and lower explosion limits, though the upper limits are hard to measure and of little practical importance. Lower flammability limits for many organic materials are in the range of 10–50 g/m 3, which is much higher than the limits set for health reasons, as is the case for the LEL of many gases and vapours. Dust clouds ...
Any mixture of methane and air will therefore lie on the straight line between pure methane and pure air – this is shown as the blue air-line. The upper and lower flammability limits of methane in air are located on this line, as shown (labelled UEL and LEL, respectively). The stoichiometric combustion of methane is: CH 4 + 2O 2 → CO 2 + 2H ...
For each fuel, ignition occurs only within a certain range of concentration, known as the upper and lower flammability limits. For example, for methane and gasoline vapor, this range is 5-15% and 1.4-7.6% gas to air, respectively. An explosion can only occur when fuel concentration is within these limits [citation needed]
1400 ppm: 141797 (10% Lower explosive limit LEL) 72-43-5: 1306: Methoxychlor: 5000 mg/m 3-72435, carcinogenic substance 79-20-9: 0507: Methyl acetate: 9393 mg/m 3: 3100 ppm: 79209 (10% Lower explosive limit LEL) 74-99-7: 0560: Methyl acetylene: 2788 mg/m 3: 1700 ppm: 74997 (10% Lower explosive limit LEL) 59355-75-8-Methyl acetylene-propadiene ...
Another worry is oxygen. Oxygen levels around 20% — about the same concentration as in Earth's atmosphere — have been measured deep inside some of Berkeley's gas wells, indicating a leak or ...
The lower flammability limit or lower explosive limit (LFL/LEL) represents the lowest air to fuel vapor concentration required for combustion to take place when ignited by an external source, for any particular chemical. [29] Any concentration lower than this could not produce a flame or result in combustion.
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