( in kilojoules) for the industrial synthesis of chloroform (CHCl3) in a reaction of methane ( CH4) with chlorine gas (Cl2) . Is the reaction exothermic or endothermic? CH4 (g) + 3Cl2 (g) → CHCl3(g) + 3 HCl (g) Bond Dissociation Energies ( Bond Enthalpies) in kJ/mol at 298K for Selected Bonds Bond Bond Energy (kJ/mol) C—H 410 kJ/mol Cl—Cl 243kJ/mol C—Cl 330kJ/mol H—Cl 432 kJ/mol
Thermochemistry
Thermochemistry can be considered as a branch of thermodynamics that deals with the connections between warmth, work, and various types of energy, formed because of different synthetic and actual cycles. Thermochemistry describes the energy changes that occur as a result of reactions or chemical changes in a substance.
Exergonic Reaction
The term exergonic is derived from the Greek word in which ‘ergon’ means work and exergonic means ‘work outside’. Exergonic reactions releases work energy. Exergonic reactions are different from exothermic reactions, the one that releases only heat energy during the course of the reaction. So, exothermic reaction is one type of exergonic reaction. Exergonic reaction releases work energy in different forms like heat, light or sound. For example, a glow stick releases light making that an exergonic reaction and not an exothermic reaction since no heat is released. Even endothermic reactions at very high temperature are exergonic.
From the relevant bond energies given below, find the approximate ΔH°
( in kilojoules) for the industrial synthesis of chloroform (CHCl3) in a reaction of methane ( CH4) with chlorine gas (Cl2) . Is the reaction exothermic or endothermic?
CH4 (g) + 3Cl2 (g) → CHCl3(g) + 3 HCl (g)
Bond Bond Energy (kJ/mol)
C—H 410 kJ/mol
Cl—Cl 243kJ/mol
C—Cl 330kJ/mol
H—Cl 432 kJ/mol
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