3.2 Estimates of the reserve to production ratio, R/P, for coal, oil, and gas are 132, 50, and 50 years, respectively. What would the duration of these reserves be if production increased linearly by 15% per decade? Estimate the reserves given in Table 3.1 in EJ and in TWY.

Applications and Investigations in Earth Science (9th Edition)
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Author:Edward J. Tarbuck, Frederick K. Lutgens, Dennis G. Tasa
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gas and coal!
3.2 Estimates of the reserve to production ratio, R/P, for coal, oil, and gas are 132, 50, and 50
years, respectively. What would the duration of these reserves be if production increased
linearly by 15% per decade? Estimate the reserves given in Table 3.1 in EJ and in TWY.
3.3 Justify the values of 3.1, 2.7, and 2.1 kg CO₂ per kg fuel for the specific carbon dioxide
emission of oil, gas, and coal, respectively, and that the density of natural gas is 0.8 kg
m³. Is 10,000 TWhy of carbon free heat energy a reasonable estimate of the effect of
capturing 10% of CO₂ emissions per year?
Transcribed Image Text:gas and coal! 3.2 Estimates of the reserve to production ratio, R/P, for coal, oil, and gas are 132, 50, and 50 years, respectively. What would the duration of these reserves be if production increased linearly by 15% per decade? Estimate the reserves given in Table 3.1 in EJ and in TWY. 3.3 Justify the values of 3.1, 2.7, and 2.1 kg CO₂ per kg fuel for the specific carbon dioxide emission of oil, gas, and coal, respectively, and that the density of natural gas is 0.8 kg m³. Is 10,000 TWhy of carbon free heat energy a reasonable estimate of the effect of capturing 10% of CO₂ emissions per year?
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