Greater Transportation Energy and GHG Offsets from Bioelectricity Than Ethanol
- 22 May 2009
- journal article
- research article
- Published by American Association for the Advancement of Science (AAAS) in Science
- Vol. 324 (5930), 1055-1057
- https://doi.org/10.1126/science.1168885
Abstract
The quantity of land available to grow biofuel crops without affecting food prices or greenhouse gas (GHG) emissions from land conversion is limited. Therefore, bioenergy should maximize land-use efficiency when addressing transportation and climate change goals. Biomass could power either internal combustion or electric vehicles, but the relative land-use efficiency of these two energy pathways is not well quantified. Here, we show that bioelectricity outperforms ethanol across a range of feedstocks, conversion technologies, and vehicle classes. Bioelectricity produces an average of 81% more transportation kilometers and 108% more emissions offsets per unit area of cropland than does cellulosic ethanol. These results suggest that alternative bioenergy pathways have large differences in how efficiently they use the available land to achieve transportation and climate goals.This publication has 24 references indexed in Scilit:
- Bioenergy Research Needs for Heat, Electricity, and Liquid FuelsMRS Bulletin, 2008
- Land Clearing and the Biofuel Carbon DebtScience, 2008
- Building better batteriesNature, 2008
- Biomass energy: the scale of the potential resourceTrends in Ecology & Evolution, 2008
- Grid-connected vehicles as the core of future land-based transport systemsEnergy Policy, 2007
- What is (and is not) vital to advancing cellulosic ethanolTrends in Biotechnology, 2007
- Carbon-Negative Biofuels from Low-Input High-Diversity Grassland BiomassScience, 2006
- Ethanol Can Contribute to Energy and Environmental GoalsScience, 2006
- BIOMASS FOR ELECTRICITY AND PROCESS HEAT AT ETHANOL PLANTSApplied Engineering in Agriculture, 2006
- Alternative transport fuels for the futureInternational Journal of Vehicle Design, 2004