DocumentCode
2762115
Title
The potential for energy-efficient technologies to reduce carbon emissions in the United States: transport sector
Author
Greene, D.L. ; Plotkin, S. ; Duleep, K.G.
Author_Institution
Oak Ridge Nat. Lab., TN, USA
Volume
3
fYear
1997
fDate
27 Jul-1 Aug 1997
Firstpage
2114
Abstract
This paper presents the results of an assessment of the potential for cost-effective technological changes to reduce greenhouse gas emissions from the US transportation sector by the year 2010. US transportation energy use stood at 24.4 quadrillion Btu (Quads) in 1996, up 2 percent over 1995 (US DOE/EIA, 1997, table 2.5). Transportation sector carbon dioxide emissions amounted to 457.2 million metric tons of carbon (MmtC) in 1995, almost one third of total US greenhouse gas emissions (US DOE/EIA, 1996a, p.12). Transport´s energy use and CO2 emissions are growing, apparently at accelerating rates as energy efficiency improvements appear to be slowing to a halt. Cost-effective and nearly cost-effective technologies have enormous potential to slow and even reverse the growth of transport´s CO2 emissions, but technological changes will take time and are not likely to occur without significant, new public policy initiatives. Absent new initiatives, we project that CO2 emissions from transport are likely to grow to 616 MmtC by 2010, and 646 MmtC by 2015. An aggressive effort to develop and implement cost-effective technologies that are more efficient and fuels that are lower in carbon could reduce emissions by about 12% in 2010 and 18% in 2015, versus the business-as-usual projection. With substantial luck, leading to breakthroughs in key areas, reductions over the BAU case of 17% in 2010 and 25% in 2015, might be possible. In none of these case are CO2 emissions reduced to 1990 levels by 2015
Keywords
air pollution control; carbon compounds; energy conservation; transportation; CO2; CO2 emissions; United States; carbon dioxide emissions; carbon emissions reduction; energy efficiency improvements; energy-efficient technologies; greenhouse gas emissions reduction; transport sector; Acceleration; Atmosphere; Carbon dioxide; Costs; Energy efficiency; Fuels; Global warming; Laboratories; Public policy; Road transportation;
fLanguage
English
Publisher
ieee
Conference_Titel
Energy Conversion Engineering Conference, 1997. IECEC-97., Proceedings of the 32nd Intersociety
Conference_Location
Honolulu, HI
Print_ISBN
0-7803-4515-0
Type
conf
DOI
10.1109/IECEC.1997.656753
Filename
656753
Link To Document