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a. A natural gas-fired power station generates electricity by reacting gaseous methane (CH₄) with oxygen - VCE - SSCE Chemistry - Question 6 - 2003 - Paper 1

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a. A natural gas-fired power station generates electricity by reacting gaseous methane (CH₄) with oxygen. List, in order, the energy conversions that take place in t... show full transcript

Worked Solution & Example Answer:a. A natural gas-fired power station generates electricity by reacting gaseous methane (CH₄) with oxygen - VCE - SSCE Chemistry - Question 6 - 2003 - Paper 1

Step 1

Energy Conversions

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Answer

The energy conversions that take place in a natural gas-fired power station are as follows:

  1. Chemical Energy: The reaction of methane with oxygen releases chemical energy.
  2. Thermal Energy: This chemical energy is converted into thermal energy during combustion, producing heat.
  3. Mechanical Energy: The thermal energy causes gas expansion which translates into mechanical energy. This is typically observed in the movement of turbines.
  4. Kinetic Energy: The rotating turbines generate kinetic energy.
  5. Electrical Energy: Finally, this kinetic energy is converted into electrical energy via a generator.

Step 2

Give one reason for this difference.

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Answer

Burning methane in a gas power station results in more energy loss due to inefficiencies associated with the greater than one-stage process of combustion, as compared to the more direct energy conversion processes in a fuel cell.

Step 3

State one factor that limits the widespread applications of fuel cells to generate electricity.

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Answer

One factor that limits the widespread applications of fuel cells is the higher cost of fuel cells compared to conventional power generation methods.

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