2.2
Enthalpy, abbreviated H, equals the sum of internal energy, abbreviated E or U, and the product of pressure and volume.
The change in enthalpy, ΔH, is expressed as the difference between the enthalpies of the products and the reactants. At constant temperature and pressure, ΔH is equal to the amount of heat energy exchanged between the system and the surroundings, or the heat of the reaction.
When ΔH is positive, reactions absorb heat and are endothermic. If ΔH is negative, reactions release heat and are exothermic.
Combustion is an example of an exothermic process, where a substance burns in the presence of an oxidant like atmospheric oxygen to release energy in the form of heat.
The heat released is quantified as the molar heat of combustion, which is the amount of heat energy released on burning one mole of a substance.
When a hydrocarbon burns, the carbon and hydrogen from the fuel combine with molecular oxygen to produce water and carbon dioxide, along with the release of energy.
The value of the heat of combustion for a hydrocarbon increases with the number of carbon atoms in the chain since more carbon is available for burning and more bonds undergo changes.
For example, the
Combustion, commonly known as burning, is a reaction in which a substance reacts with an oxidizing agent, which in most cases is molecular oxygen, to…
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