Industrial Uses of Methanol and Ethanol - UNSOLVED PRACTICE SET
Chapter: Alcohols Phenols and Ethers | Topic: Industrial Uses of Methanol and Ethanol
INDUSTRIAL USES OF METHANOL AND ETHANOL - UNSOLVED PRACTICE SET
Topic: Industrial Uses of Methanol and Ethanol
Multiple Choice Questions
Q1. Methanol is prepared industrially by:
- Fermentation of molasses
- Catalytic hydrogenation of carbon monoxide
- Oxidation of methane
- Reduction of formaldehyde
Q2. Ethanol is prepared industrially by:
- Hydration of ethene
- Fermentation of sugars
- Both (a) and (b)
- Reduction of acetaldehyde
Q3. Denatured spirit is ethanol mixed with:
- Methanol
- Pyridine
- Both (a) and (b)
- Water only
Q4. Power alcohol is:
- Pure ethanol
- Mixture of petrol and ethanol
- Mixture of diesel and ethanol
- Methanol only
Q5. Methanol is toxic because it is metabolized to:
- Formaldehyde and formic acid
- Acetaldehyde
- Acetic acid
- Carbon dioxide
Q6. Bioethanol is produced from:
- Petroleum
- Biomass (sugarcane, corn, etc.)
- Natural gas
- Coal
Short Answer Questions
Q7. How is methanol prepared industrially from synthesis gas? Write the reaction and mention the catalyst.
Q8. What is power alcohol? Why is ethanol mixed with petrol for use as fuel?
Q9. Why is methanol called "wood alcohol"? How is it different from ethanol in terms of preparation and toxicity?
Q10. What is denatured alcohol? Why is ethanol denatured before industrial use?
Q11. Write the reaction for the fermentation of glucose to ethanol. What enzyme catalyzes this reaction?
Q12. Your father uses ethanol-based hand sanitizer. Why is ethanol effective in killing germs? What concentration is most effective?
Long Answer Questions
Q13. (a) Describe the industrial preparation of methanol from synthesis gas (water gas).
(b) Write the reactions involved and mention the conditions (temperature, pressure, catalyst).
(c) What are the major uses of methanol in industry?
(d) Why is methanol considered a potential future fuel?
Q14. (a) Describe the industrial preparation of ethanol by:
(i) Hydration of ethene
(ii) Fermentation of molasses
(b) Compare the two methods in terms of:
(i) Raw materials
(ii) Energy requirements
(iii) Purity of product
(iv) Environmental impact
(c) Why is fermentation preferred in India for ethanol production?
Q15. (a) What is power alcohol? Describe its advantages and disadvantages as a fuel.
(b) Explain why ethanol is mixed with petrol (gasohol). What percentage is typically used in India?
(c) What are the environmental benefits of using ethanol-blended petrol?
(d) Why is methanol not used as extensively as ethanol in fuel blending?
Numerical / Application-Based Problems
Q16. The industrial production of methanol involves the following reaction:
CO + 2Hβ β CHβOH
ΞH = -90.7 kJ/mol
(a) If 280 kg of CO is used, calculate the theoretical yield of methanol. (Atomic masses: C = 12, O = 16, H = 1)
(b) The reaction is carried out at 250Β°C and 50-100 atm pressure using ZnO/CrβOβ catalyst. Why are high pressure and low temperature favoured thermodynamically?
(c) In practice, the temperature is maintained at 250Β°C rather than room temperature. Why? (Consider kinetic factors.)
(d) If the actual yield is 320 kg of methanol from 280 kg of CO, calculate the percentage yield.
(e) A company produces 1000 tonnes of methanol per day. Calculate the daily requirement of CO and Hβ in tonnes.
Q17. The following data relates to ethanol production and use in India:
| Parameter | Value |
|---|---|
| Annual petrol consumption | 30 million tonnes |
| Ethanol blending target (E20) | 20% by 2025 |
| Current ethanol blending | 10% (E10) |
| Ethanol production from sugarcane molasses | 250 litres/tonne molasses |
| Molasses availability | 12 million tonnes/year |
(a) Calculate the ethanol requirement to achieve E20 blending.
(b) Calculate the total ethanol that can be produced from available molasses.
(c) Is the molasses-based production sufficient to meet E20 target? If not, calculate the deficit.
(d) Suggest alternative feedstocks for ethanol production to meet the deficit. (Consider lignocellulosic biomass, rice straw, etc.)
(e) Calculate the reduction in COβ emissions if E20 is implemented, assuming petrol combustion releases 2.3 kg COβ per litre and ethanol combustion releases 1.5 kg COβ per litre. (Density of petrol β 0.75 kg/L, ethanol β 0.789 kg/L)
Q18. In a school science exhibition, students create a display on "Alcohols in Everyday Life."
(a) A student displays a bottle of hand sanitizer containing 70% ethanol. Why is 70% ethanol more effective than 95% ethanol for sanitization? (Consider protein denaturation and water content.)
(b) Another student shows that methanol is used as a windshield washer fluid in cold countries. Why is methanol preferred over ethanol for this purpose? (Consider freezing point and cost.)
(c) A third student presents data on methanol poisoning incidents in India, often caused by consuming illicit liquor adulterated with methanol. Explain why methanol is so toxic. (Consider metabolic pathway: methanol β formaldehyde β formic acid.)
(d) The students learn that Brazil runs most of its cars on ethanol (flex-fuel vehicles). Brazil produces ethanol from sugarcane, while the US produces it from corn. Compare the two approaches in terms of:
Energy balance (energy output vs. input)
Land use
Food vs. fuel debate
Carbon footprint
(e) The teacher asks: "India has set a target of net-zero emissions by 2070. How can ethanol and methanol contribute to this goal? What challenges need to be overcome?" Frame a comprehensive answer.