HR: 09:00h
AN: B51B-05 INVITED [PDF]
TI: Implications of Using Corn Stalks as a Biofuel Source: A Joint ARS and DOE Project
AU: * Wilhelm, W W
EM: wwilhelm1@unl.edu
AF: USDA-ARS, 117 Keim Hall,
University of Nebraska, Lincoln, NE 68516 United States
AU: Cushman, J
EM: cushmanjh@ornl.gov
AF: Oak Ridge National Laboratory, PO Box 2008, Bldg 1062, Oak Ridge, TN 37831 United States
AB:
Corn stover is a readily source of biomass for cellulosic ethanol production, and may provide additional income for growers.
Published research shows that residue removal changes the rate of soil physical, chemical, and biological processes, and in
turn, crop growth. Building a sustainable cellulosic ethanol industry based on corn residue requires residue management
practices that do not reduce long-term productivity. To develop such systems, impacts of stover removal on the soil and
subsequent crops must be quantified. The ARS/DOE Biofuel Project is the cooperative endeavor among scientists from six
western Corn Belt US Dept. of Agriculture, Agricultural Research Service (ARS) locations and US Dept. of Energy. The
objectives of the project are to determine the influence of stover removal on crop productivity, soil aggregation, quality,
carbon content, and seasonal energy balance, and carbon sequestration.
When residue is removed soil temperatures fluctuate more and soil water evaporation is greater. Residue removal reduces the
amount of soil organic carbon (SOC), but the degree of reduction is highly dependent on degree of tillage, quantity of stover
removed, and frequency of stover removal. Of the three cultural factors (stover removal, tillage, and N fertilization)
tillage had the greatest effect on amount of corn-derived SOC. No tillage tends to increase the fraction of aggregates in the
2.00 to 0.25 mm size range at all removal rates. Stover harvest reduces corn-derived SOC by 35% compared to retaining
stover on the soil averaged over all tillage systems. Corn stover yield has not differed across stover removal treatments in
these studies. In the irrigated study, grain yield increased with stover removal. In the rain-fed studies, grain yield has
not differed among residue management treatments. Incorporating the biomass ethanol fermentation by-product into a soil with
low SOC showed a positive relationship between the amount of lignin added and the subsequent humic acid concentration and
aggregate stability. These and future outcomes from this effort will provide DOE and the developing biomass ethanol industry
knowledge and guidelines on the environmental and crop productivity consequences of large-scale collection of corn stover.
DE: 1615 Biogeochemical processes (4805)
SC: Biogeosciences [B]
MN: 2003 Fall Meeting