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Incorporating the Effect of Price Changes on CO2-Equivalent Emissions From Alternative-Fuel Lifecycles: Scoping the Issues

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  • Delucchi, Mark

Abstract

Human activities associated with the production and use of energy and materials can pollute the air and water. Since the late 1960s concern about regional and local air pollution has led to the adoption of environmental laws and regulations regarding major polluting human activities, such as fuel use for transportation or electricity production. More recently, concern about the impact of human activities on global climate has led to discussions about ways to reduce emissions of the so-called "greenhouse gases" that affect global climate. In the United States and worldwide, the transportation sector is one of the largest sources of urban air pollutants and greenhouse-gases (GHGs). As a result, policy makers and analysts often evaluate the impact of transportation policies on urban air quality and on global climate. The tools available for evaluating impacts on urban air quality (emission-factor models, travel models, and air-quality models) are reasonably well developed, but some of the tools for evaluating impacts on global climate (namely, lifecycle emissions models) are rudimentary and incomplete. This report discusses ways of improving one of the tools – lifecycle emissions analysis – often used in evaluating the impacts of transportation on global climate.

Suggested Citation

  • Delucchi, Mark, 2005. "Incorporating the Effect of Price Changes on CO2-Equivalent Emissions From Alternative-Fuel Lifecycles: Scoping the Issues," Institute of Transportation Studies, Working Paper Series qt606506g7, Institute of Transportation Studies, UC Davis.
  • Handle: RePEc:cdl:itsdav:qt606506g7
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    Cited by:

    1. Rajagopal, D. & Hochman, G. & Zilberman, D., 2011. "Indirect fuel use change (IFUC) and the lifecycle environmental impact of biofuel policies," Energy Policy, Elsevier, vol. 39(1), pages 228-233, January.

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    Keywords

    Engineering; UCD-ITS-RR-05-19;

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