A fundamental principle green chemistry is atom economy (AE). AE is a measure of how many atoms from the starting materials are incorporated into the desired product. For example, if a reaction incorporates all the reactant atoms into the product of interest, the reaction has a percent AE of 100%. Toobtain percent AE for a reaction, we calculate the mass of the desired product that can be formed from a stoichiometric mixture of reactants, andcompare this mass with the total mass of that reaction mixture. (In a stoichiometricmixture of reactants, none of the reactants are present excess; the mole amounts are in the same ratio as the stoichiometriccoefficients). %AE= mass ( m p l ) of the desired product P total mass of a stoichiometric micture of reactants ×100 The prime (') on the symbol for the mass of desired product serves to remind us that mass is calculated for a stoichiometric mixture of reactants. Use the definition above to calculate the percent AE for the following reactions, both of which can be used to make C 5 H 5 NH 2 the desired product.
A fundamental principle green chemistry is atom economy (AE). AE is a measure of how many atoms from the starting materials are incorporated into the desired product. For example, if a reaction incorporates all the reactant atoms into the product of interest, the reaction has a percent AE of 100%. Toobtain percent AE for a reaction, we calculate the mass of the desired product that can be formed from a stoichiometric mixture of reactants, andcompare this mass with the total mass of that reaction mixture. (In a stoichiometricmixture of reactants, none of the reactants are present excess; the mole amounts are in the same ratio as the stoichiometriccoefficients). %AE= mass ( m p l ) of the desired product P total mass of a stoichiometric micture of reactants ×100 The prime (') on the symbol for the mass of desired product serves to remind us that mass is calculated for a stoichiometric mixture of reactants. Use the definition above to calculate the percent AE for the following reactions, both of which can be used to make C 5 H 5 NH 2 the desired product.
Solution Summary: The author explains that a reaction is considered green if atom economy is high and most of the starting materials are utilized for product formation.
A fundamental principle green chemistry is atom economy (AE). AE is a measure of how many atoms from the starting materials are incorporated into the desired product. For example, if a reaction incorporates all the reactant atoms into the product of interest, the reaction has a percent AE of 100%. Toobtain percent AE for a reaction, we calculate the mass of the desired product that can be formed from a stoichiometric mixture of reactants, andcompare this mass with the total mass of that reaction mixture. (In a stoichiometricmixture of reactants, none of the reactants are present excess; the mole amounts are in the same ratio as the stoichiometriccoefficients).
%AE=
mass
(
m
p
l
)
of the desired product P
total mass of a stoichiometric micture of reactants
×100
The prime (') on the symbol for the mass of desired product serves to remind us that mass is calculated for a stoichiometric mixture of reactants. Use the definition above to calculate the percent AE for the following reactions, both of which can be used to make
C
5
H
5
NH
2
the desired product.
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Author:Steven D. Gammon, Ebbing, Darrell Ebbing, Steven D., Darrell; Gammon, Darrell Ebbing; Steven D. Gammon, Darrell D.; Gammon, Ebbing; Steven D. Gammon; Darrell
Author:Steven D. Gammon, Ebbing, Darrell Ebbing, Steven D., Darrell; Gammon, Darrell Ebbing; Steven D. Gammon, Darrell D.; Gammon, Ebbing; Steven D. Gammon; Darrell