HR: 1340h
AN: B43A-0237 [Abstracts]
TI: Considerations of a Field-Scale Soil Carbon Budget For Furrow Irrigation
AU: Poch, R
EM: Rosa.Poch@macs.UdL.es
AF: University of Lleida, Dept of Soils, Lleida, 000
Spain
AU: * Hopmans, J W
EM: jwhopmans@ucdavis.edu
AF: University of California, Departments of LAWR & Plant Sciences, Davis, CA 95616
United States
AU: Six, J W
EM: jwsix@ucdavis.edu
AF: University of California, Departments of LAWR & Plant Sciences, Davis, CA 95616
United States
AU: Rolston, D E
EM: derolston@ucdavis.edu
AF: University of California, Departments of LAWR & Plant Sciences, Davis, CA 95616
United States
AB:
There is a general lack of information on the effects of irrigation on soil carbon (C) sequestration in (semi)arid regions.
For that purpose we present results of the sediment and C budget of a furrow-irrigated field, by analyzing water and
sediments of irrigation and associated tail waters of a 30 ha corn field (Zea mays) in the Central Valley in California. This
field was monitored to assess the effects of minimum tillage versus standard tillage on soil C sequestration and greenhouse
gas emissions. Water samples of two irrigation events in July and August, 2004, were collected and analyzed for suspended
sediment, dissolved organic C (DOC) and N (DON), total C and N. Field and soil water budgets were estimated from
meteorological data, flow measurements of applied irrigation and runoff water, and neutron-probe soil water measurements.
Tail waters contained less sediment but more organic C than irrigation waters, due to particle settlement and enrichment in
organic matter. Tillage treatment had no significant effect on composition of water or sediment. Furrow irrigation resulted
in a net field input of 700 kg sediment ha-1, 21.4 kg C ha-1 and 7.7 kg N ha-1. The added C by the sedimentation accounted
for about two thirds of the total C increase. Our experiments showed the importance of time scale in C budgeting for
intensively irrigated agroecosystems, where fast dynamics and large variability of inputs are common.
DE: 0402 Agricultural systems
DE: 0428 Carbon cycling (4806)
DE: 0496 Water quality
SC: Biogeosciences [B]
MN: Fall Meeting 2005