Published July 2010 | Version v1
Journal article

Dynamics of the oil transition: Modeling capacity, depletion, and emissions

  • 1. Department of Energy Resources Engineering, Green Earth Sciences 065, 367 Panama St., Stanford University, Stanford, CA 94305-2220 (United States)
  • 2. Energy and Resources Group, 310 Barrows Hall, University of California Berkeley, Berkeley, CA 94720-3050 (United States)

Description

The global petroleum system is undergoing a shift to substitutes for conventional petroleum (SCPs). The Regional Optimization Model for Emissions from Oil Substitutes, or ROMEO, models this oil transition and its greenhouse gas impacts. ROMEO models the global liquid fuel market in an economic optimization framework, but in contrast to other models it solves each model year sequentially, with investment and production optimized under uncertainty about future prevailing prices or resource quantities. ROMEO includes more hydrocarbon resource types than integrated assessment models of climate change. ROMEO also includes the carbon intensities and costs of production of these resources. We use ROMEO to explore the uncertainty of future costs, emissions, and total fuel production under a number of scenarios. We perform sensitivity analysis on the endowment of conventional petroleum and future carbon taxes. Results show incremental emissions from production of oil substitutes of ∼ 0-30 gigatonnes (Gt) of carbon over the next 50 years (depending on the carbon tax). Also, demand reductions due to the higher cost of SCPs could reduce or eliminate these increases. Calculated emissions are highly sensitive to the endowment of conventional oil and less sensitive to a carbon tax. (author)

Availability note (English)

Available from Available from: http://dx.doi.org/10.1016/j.energy.2010.03.014

Additional details

Identifiers

Publishing Information

Journal Title
Energy (Oxford)
Journal Volume
35
Journal Issue
7
Journal Page Range
p. 2852-2860
ISSN
0360-5442
CODEN
ENEYDS

Optional Information

Notes
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