Yield and atom economy of chemical reactions
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レッスンノート
Why 100% Yield Is Rarely Achieved
- Yield is the amount of product obtained from a reaction.
- The reaction may be reversible, so products turn back into reactants and the reaction never goes to completion.
- Some product may be lost when it is separated from the reaction mixture, for example during filtration or distillation.
- Some reactants may be left behind in the equipment or lost during transfer from one container to another.
- Side reactions can occur if a reactant reacts with an impurity or a gas in the air, using up reactants in unexpected ways.
Actual Yield and Theoretical Yield
- The actual yield is the mass of product actually obtained in an experiment; it can only be found by experiment.
- The theoretical yield is the maximum mass of product that could be formed, calculated from the balanced equation and reacting masses.
- The theoretical yield assumes perfect practical and chemical conditions with 100% conversion of reactants to products.
- In practice, the actual yield is always less than the theoretical yield.
Calculating Percentage Yield
- Percentage yield compares the actual yield to the theoretical yield.
- Equation: percentage yield = (actual yield ÷ theoretical yield) × 100.
- A percentage yield greater than 100% indicates an error, often from dividing theoretical yield by actual yield instead of the other way round.
- For economic reasons, companies aim for the highest possible percentage yield to increase profits and reduce costs and waste.
- A well-managed process gives an actual yield close to the theoretical yield.
Calculating Theoretical Mass of Product
- This is a higher tier skill: use a balanced equation and a given mass of reactant to find the theoretical mass of product.
- Step 1: Write the balanced equation.
- Step 2: Convert the given mass of reactant into moles using moles = mass ÷ molar mass.
- Step 3: Use the coefficients in the equation to find the moles of product.
- Step 4: Convert moles of product into mass using mass = moles × molar mass.
- Be careful not to include coefficients when calculating molar masses; molar mass comes from the chemical formula, not the equation.
Atom Economy
- Atom economy (atom utilisation) measures the proportion of starting materials that end up as useful products.
- Most reactions produce more than one product, and some may not be useful.
- Equation: percentage atom economy = (relative formula mass of desired product ÷ total relative formula mass of all reactants) × 100.
- You can also use the total relative formula mass of all products instead of reactants, as long as the equation is balanced.
- A high atom economy means less waste and is important for sustainable development and economic reasons.
- The higher the atom economy, the more sustainable the process.
Comparing Yield and Atom Economy
- Percentage yield measures how much product is actually obtained compared to the theoretical maximum.
- Atom economy measures how much of the reactants' mass becomes useful product, based on the balanced equation.
- A high percentage yield does not necessarily mean a high atom economy; they are different measures.
- Both are used to analyse the efficiency of chemical reactions.
Choosing a Reaction Pathway
- A reaction pathway is a sequence of reactions used to produce a desired product.
- Companies evaluate several factors when choosing a pathway: atom economy, percentage yield, rate of reaction, equilibrium position, and the usefulness of by-products.
- High percentage yields and fast reaction rates are desirable attributes in industrial processes.
- Low atom economy means using lots of raw materials and producing much waste, which is expensive to dispose of and unsustainable.
- In reversible reactions, conditions may be altered to shift the equilibrium towards the products.
- If waste products can be sold or reused, the atom economy of the overall process improves.
- Alternative methods that produce a more useful by-product may also be considered.
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練習問題
無料プレビュー — 66問中8問。すべて見るには登録を。
1.Which equation correctly calculates percentage yield?
Easy- A(actual yield / theoretical yield) × 100
- B(theoretical yield / actual yield) × 100
- Cactual yield × theoretical yield × 100
- D(actual yield / theoretical yield) / 100
2.A reaction that is reversible can never have a 100% yield.
EasyTrue or false?
3.Which of the following are reasons why the actual yield of a reaction is often less than the theoretical yield? (select all that apply)
Medium- AThe reaction may be reversible.
- BSome product may be lost during separation and purification.
- CSome reactants may undergo side reactions.
- DThe theoretical yield is always calculated incorrectly.
- EAtoms are destroyed during the reaction.
4.What does atom economy measure?
Easy- AThe amount of starting materials that end up as useful products
- BThe amount of product actually obtained compared to the theoretical amount
- CThe speed at which a reaction reaches completion
- DThe energy released when a reaction takes place
5.A student says that if a reaction has a 90% yield, its atom economy must also be 90%. Why is this incorrect?
Medium- AYield compares actual and theoretical product masses, while atom economy compares the mass of desired product to the total mass of reactants.
- BYield is always higher than atom economy.
- CAtom economy is only used for reversible reactions.
- DYield is calculated from the balanced equation, while atom economy is measured experimentally.
6.In the reaction AgNO₃(aq) + NaI(aq) → AgI(s) + NaNO₃(aq), a student concludes the percentage atom economy for silver iodide is 50%. How might the student mistakenly arrive at this conclusion?
Medium- AThey assumed that because there are two products, each must make up half the total mass.
- BThey used the mass of silver iodide divided by the mass of sodium iodide.
- CThey used the mass of reactants divided by the mass of products.
- DThey forgot to multiply by 100.
7.Which method of forming copper(II) sulfate has the highest atom economy? Method 1: CuO + H₂SO₄ → CuSO₄ + H₂O. Method 2: CuCO₃ + H₂SO₄ → CuSO₄ + H₂O + CO₂.
Medium- AMethod 1, because it produces fewer waste products.
- BMethod 2, because it produces more products.
- CBoth have the same atom economy.
- DMethod 2, because carbon dioxide is useful.
8.Which of these is/are factors in choosing a reaction pathway?
Medium- AAtom economy only
- BAtom economy and percentage yield
- CAtom economy, percentage yield and rate of reaction
- DPercentage yield and rate of reaction only