Agronomy Journal Grow Your Career With ASA
HOME HELP FEEDBACK SUBSCRIPTIONS ARCHIVE SEARCH TABLE OF CONTENTS
 QUICK SEARCH:   [advanced]


     


This Article
Right arrow Figures Only
Right arrow Full Text Free
Right arrow Full Text (PDF) Free
Right arrow Alert me when this article is cited
Right arrow Alert me if a correction is posted
Services
Right arrow Similar articles in this journal
Right arrow Similar articles in ISI Web of Science
Right arrow Alert me to new issues of the journal
Right arrow Download to citation manager
Right arrow reprints & permissions
Citing Articles
Right arrow Citing Articles via HighWire
Right arrow Citing Articles via ISI Web of Science (24)
Right arrow Citing Articles via Google Scholar
Google Scholar
Right arrow Articles by Halvorson, A. D.
Right arrow Articles by Reule, C. A.
Right arrow Search for Related Content
PubMed
Right arrow Articles by Halvorson, A. D.
Right arrow Articles by Reule, C. A.
Agricola
Right arrow Articles by Halvorson, A. D.
Right arrow Articles by Reule, C. A.
Related Collections
Right arrow Dryland Cropping Systems
Right arrow Soil Organic Matter
Right arrow Soil Conservation
Right arrow Other Soil Management
Right arrow Tillage
Agronomy Journal 94:1429-1436 (2002)
© 2002 American Society of Agronomy

TILLAGE AND CROPPING SYSTEMS

Tillage System and Crop Rotation Effects on Dryland Crop Yields and Soil Carbon in the Central Great Plains

Ardell D. Halvorson*,a, Gary A. Petersonb and Curtis A. Reulea

a USDA-ARS, 301 South Howes, Rm 407, Fort Collins, CO 80522
b Soil and Plant Sci., Colorado State Univ., Fort Collins, CO 80523

* Corresponding author (adhalvor{at}lamar.colostate.edu)

Received for publication February 2, 2002. Winter wheat (Triticum aestivum L.)–fallow (WF) using conventional stubble mulch tillage (CT) is the predominant production practice in the central Great Plains and has resulted in high erosion potential and decreased soil organic C (SOC) contents. This study, conducted from 1990 through 1994 on a Weld silt loam (Aridic Argiustoll) near Akron, CO, evaluated the effect of WF tillage system with varying degrees of soil disturbance [no-till (NT), reduced till (RT), CT, and bare fallow (BF)] and crop rotation [WF, NT wheat–corn (Zea mays L.)–fallow (WCF), and NT continuous corn (CC)] on winter wheat and corn yields, aboveground residue additions to the soil at harvest, surface residue amounts at planting, and SOC. Neither tillage nor crop rotation affected winter wheat yields, which averaged 2930 kg ha-1. Corn grain yields for the CC (NT) and WCF (NT) rotations averaged 1980 and 3520 kg ha-1, respectively. The WCF (NT) rotation returned 8870 kg ha-1 residue to the soil in each 3-yr cycle, which is 2960 kg ha-1 on an annualized basis. Annualized residue return in WF averaged 2520 kg ha-1, which was 15% less than WCF (NT). Annualized corn residue returned to the soil was 3190 kg ha-1 for the CC (NT) rotation. At wheat planting, surface crop residues varied with year, tillage, and rotation, averaging WCF (NT) (5120 kg ha-1) > WF (NT) (3380 kg ha-1) > WF (RT) (2140 kg ha-1) > WF (CT) (1420 kg ha-1) > WF (BF) (50 kg ha-1). Soil erosion potential was lessened with WCF (NT), CC (NT), and WF (NT) systems because of the large amounts of residue cover. Levels of SOC in descending order in 1994 were CC (NT) >= WCF (NT) >= WF (NT) = WF (RT) = WF (CT) > WF (BF). Although not statistically significant, the CC (NT) treatment appeared to be accumulating more SOC than any of the rotations that included a fallow period, even more rapidly than WCF (NT), which had a similar amount of annualized C addition. Reduced tillage and intensified cropping increased SOC and reduced soil erosion potential.

Abbreviations: BF, bare fallow • CC, continuous corn • CT, conventional till • NT, no-till • RT, reduced till • SOC, soil organic carbon • WCF, wheat–corn–fallow • WF, winter wheat–fallow




This article has been cited by other articles:


Home page
Agron. J.Home page
M. T. Bowman, P. A. Beck, K. B. Watkins, M. M. Anders, M. S. Gadberry, K. S. Lusby, S. A. Gunter, and D. S. Hubbell
Tillage Systems for Production of Small-Grain Pasture
Agron. J., August 11, 2008; 100(5): 1289 - 1295.
[Abstract] [Full Text] [PDF]


Home page
Soil Sci.Home page
J. Alvaro-Fuentes, M. V. Lopez, C. Cantero-Martinez, and J. L. Arrue
Tillage Effects on Soil Organic Carbon Fractions in Mediterranean Dryland Agroecosystems
Soil Sci. Soc. Am. J., February 15, 2008; 72(2): 541 - 547.
[Abstract] [Full Text] [PDF]


Home page
Soil Sci.Home page
C. E. Stewart, A. F. Plante, K. Paustian, R. T. Conant, and J. Six
Soil Carbon Saturation: Linking Concept and Measurable Carbon Pools
Soil Sci. Soc. Am. J., January 25, 2008; 72(2): 379 - 392.
[Abstract] [Full Text] [PDF]


Home page
Soil Sci.Home page
U. M. Sainju, T. Caesar-TonThat, A. W. Lenssen, R. G. Evans, and R. Kolberg
Long-Term Tillage and Cropping Sequence Effects on Dryland Residue and Soil Carbon Fractions
Soil Sci. Soc. Am. J., September 28, 2007; 71(6): 1730 - 1739.
[Abstract] [Full Text] [PDF]


Home page
J. Environ. Qual.Home page
U. M. Sainju, A. Lenssen, T. Caesar-Thonthat, and J. Waddell
Carbon sequestration in dryland soils and plant residue as influenced by tillage and crop rotation.
J. Environ. Qual., July 1, 2006; 35(4): 1341 - 1347.
[Abstract] [Full Text] [PDF]


Home page
J. Environ. Qual.Home page
S. Machado, K. Rhinhart, and S. Petrie
Long-term cropping system effects on carbon sequestration in eastern Oregon.
J. Environ. Qual., July 1, 2006; 35(4): 1548 - 1553.
[Abstract] [Full Text] [PDF]


Home page
Agron. J.Home page
K. Dhima, I. Vasilakoglou, A. Lithourgidis, S. Papadopoulou, and I. Eleftherohorinos
Tillage System Effects on Competition between Barley and Sterile Oat
Agron. J., June 5, 2006; 98(4): 1023 - 1029.
[Abstract] [Full Text] [PDF]


Home page
Agron. J.Home page
J. M.-F. Johnson, R. R. Allmaras, and D. C. Reicosky
Estimating Source Carbon from Crop Residues, Roots and Rhizodeposits Using the National Grain-Yield Database
Agron. J., April 11, 2006; 98(3): 622 - 636.
[Abstract] [Full Text] [PDF]


Home page
Soil Sci.Home page
U. M. Sainju, A. Lenssen, T. Caesar-Tonthat, and J. Waddell
Tillage and Crop Rotation Effects on Dryland Soil and Residue Carbon and Nitrogen
Soil Sci. Soc. Am. J., February 27, 2006; 70(2): 668 - 678.
[Abstract] [Full Text] [PDF]


Home page
Agron. J.Home page
A. J. Schlegel, C. A. Grant, and J. L. Havlin
Challenging Approaches to Nitrogen Fertilizer Recommendations in Continuous Cropping Systems in the Great Plains
Agron. J., March 1, 2005; 97(2): 391 - 398.
[Abstract] [Full Text] [PDF]


Home page
Agron. J.Home page
C. K. Reddy, E. Z. Nyakatawa, and D. W. Reeves
Tillage and Poultry Litter Application Effects on Cotton Growth and Yield
Agron. J., November 1, 2004; 96(6): 1641 - 1650.
[Abstract] [Full Text] [PDF]


Home page
Agron. J.Home page
A. D. Halvorson, D. C. Nielsen, and C. A. Reule
Nitrogen Fertilization and Rotation Effects on No-Till Dryland Wheat Production
Agron. J., July 1, 2004; 96(4): 1196 - 1201.
[Abstract] [Full Text] [PDF]




HOME HELP FEEDBACK SUBSCRIPTIONS ARCHIVE SEARCH TABLE OF CONTENTS
The SCI Journals Crop Science Vadose Zone Journal
Journal of Natural Resources
and Life Sciences Education
Soil Science Society of America Journal
Journal of Plant Registrations Journal of
Environmental Quality
The Plant Genome
Copyright © 2002 by the American Society of Agronomy.