Natural gas composition — Which constituent contributes the most to the heating value of typical natural gas?
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ACarbon monoxide (CO)
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BCarbon dioxide (CO₂)
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CHydrogen (H₂)
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DMethane (CH₄)
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ENitrogen (N₂)
Answer
Correct Answer: Methane (CH₄)
Explanation
Introduction:Natural gas is a valuable fuel whose calorific value is mainly determined by its combustible hydrocarbons. Identifying the key contributor is essential for combustion calculations and gas quality control.
Given Data / Assumptions:
- Typical pipeline natural gas composition is predominantly methane, with smaller amounts of ethane, propane, butanes, CO₂, N₂, and traces of others.
- Heating value arises from combustibles; inerts lower the value.
Concept / Approach:Methane typically comprises 80–95% of natural gas on a volume basis and has a high heat of combustion. Therefore, even though heavier hydrocarbons have higher heats per mole, methane’s dominant mole fraction makes it the principal contributor to overall calorific value.
Step-by-Step Solution:Identify major component: CH₄ is the bulk of natural gas.Note that CO₂ and N₂ are inerts (no calorific contribution).CO and H₂ may be present in trace amounts; their contributions are minor in natural gas.Conclude CH₄ is the primary source of heating value.
Verification / Alternative check:Gas quality specifications and tariff billing (therms) closely track methane number and its mole fraction, underscoring methane’s role.
Why Other Options Are Wrong:
- CO₂ and N₂: inerts, reduce CV.
- CO and H₂: limited presence in natural gas streams; overall impact is small compared to methane.
Common Pitfalls:Overemphasising heavier hydrocarbons due to higher per-mole heats while ignoring their lower fractions.
Final Answer:Methane (CH₄)