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Proceedings

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Holman, J.D
Donoho, T
Kleinman, P
Baber, K
Baltensperger, D
Lehman, R
Gelderman, R
Koerner, P
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Authors
Chim, B
Osborne, S
Lehman, R
Osborne, S
Lehman, R
Riedell, W
Chim, B
Simon, L.M
Obour, A.K
Holman, J.D
Schipanski, M.E
Johnson, S.K
Roozeboom, K.L
Obour, A.K
Holman, J.D
Assefa, Y.M
Simon, L.M
Mauler, P
Baber, K
Jones, C
Miller, P
Koeshall, S
Miller, P
Jones, C
Atencio, S
Chen, C
Eriksmoen, E
Fordyce, S
Lamb, P
Ostlie, M
Rickertsen, J
Grusak, M.A
Bourgault, M
Franck, B
Carr, P
Koeshall, S
Baber, K
Foster, A
Hagele, J
Donoho, T
Tollefson, D
Topics
Conservation Impacts on Soil Health
General Posters
Nitrogen Management
Nutrient Management and Analysis
General
Type
Poster
Oral
Year
2020
2022
2026
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Authors

Filter results7 paper(s) found.

1. Do Legume Cover Crops Help Mineralize Soil Nitrogen?

Nitrogen (N) dynamic is dependent on multiple factor all of which influence in-season plant N availability.  Inclusion of a cover crop can have additional impacts on N dynamic by utilizing fall residue soil N, reducing the potential of N leaching.  Legume cover crops also have the potential to add additional N to the soil through N fixation.  The objective of this study was to evaluate N dynamic of different cover crops (legume and nonlegume) compared to no cover... B. Chim, S. Osborne, R. Lehman

2. Long-term Crop Rotation Impact on Soil Properties and Crop Response

Crop rotations can be part of sustainable agriculture production by their effectiveness depends on understanding how crop rotations affect above- and below-ground crop characteristics. Objectives were to investigate crop rotation effects on shoot dry weight and root characteristics of cereal and grain legume crops at anthesis as well as on grain yield. Rotations were corn (Zea mays L.)-soybean [Glycine max (L.) Merr.], (CS); corn-soybean-spring wheat (Triticum aestivum L.)-field... S. Osborne, R. Lehman, W. Riedell, B. Chim

3. Post-Wheat Summer Cover Crop Effects Crop Yields and Soil Properties in a No-till Dryland Cropping System

Traditional dryland cropping systems in the semi-arid Great Plains include long fallow periods of up to 14 months to conserve soil moisture. However, such systems are inefficient even under continuous no-till (NT) management. As less water is necessary to produce forage compared to grain, cover crops (CCs) may be successfully integrated into dryland crop rotations for increased soil cover and potentially greater income when hayed or grazed as annual forages. One study was initiated in 2016 near... L.M. Simon, A.K. Obour, J.D. Holman, M.E. Schipanski, S.K. Johnson, K.L. Roozeboom

4. Nitrogen Fertilizer Application and Depth of Moist Soil at Planting Affected Grain Sorghum Yield

The depth of moist soil before planting is critical for grain crop production in intensified dryland cropping systems. We investigated depth of moist soil at planting and nitrogen (N) fertilizer application rate effects on continuous grain sorghum yields on a Crete silt loam soil over 32-years in western Kansas. Treatments were four N rates (0, 20, 40 and 60 lb ac-1) in a randomized complete blocks design with four replication and depth of moist soil at planting determined with Paul... A.K. Obour, J.D. Holman, Y.M. Assefa, L.M. Simon, P. Mauler

5. Lentil Nitrogen Fixation Response to Fertilizer and Inoculant in the Northern Great Plains

Lentil production in the semi-arid northern Great Plains has increased dramatically over the past two decades, providing agroecosystem benefits of efficient water use, pest cycle disruption, and biological nitrogen (N) fixation. Through N fixation, lentil may help alleviate soil acidification and groundwater contamination by reducing N fertilizer needs. Despite widespread farmer adoption of lentil in the region, little is known about the benefits of fertilizer or inoculant type concerning N fixation.... K. Baber, C. Jones, P. Miller, S. Koeshall

6. Lentil Inoculant, Potassium, Sulfur, and Micronutrient Effects on Yield and Protein in the Northern Great Plains

Lentil (Lens culinaris Medikus) is an important crop, averaging more than 600,000 ac in MT and ND from 2016-20. However, relatively little is known about inoculant and fertility response in lentil in the U.S. northern Great Plains. The objective of this experiment was to evaluate the effect of rhizobial inoculant formulations (granular and seed-coat) and nutrient additions (K, S, and micronutrients), on lentil growth, yield, and seed protein. This study was conducted at six or seven university... P. Miller, C. Jones, S. Atencio, C. Chen, E. Eriksmoen, S. Fordyce, P. Lamb, M. Ostlie, J. Rickertsen, M.A. Grusak, M. Bourgault, B. Franck, P. Carr, S. Koeshall, K. Baber

7. Managing High-pH Soils: Restoring Nutrient Function with Polysulphate and Acidic Phosphate Fertilizers

High soil pH often reflects the active consumption of hydrogen ions (H⁺) by carbonates and bicarbonates, which suppresses calcium solubility and reduces the availability of phosphorus, potassium, and key micronutrients. These limitations are driven by soil chemistry rather than true nutrient deficiency, restricting nutrient mobility and root access. This presentation will examine Polysulphate® as a functional calcium and sulfate source that improves system efficiency. In addition, ICL... A. Foster, J. Hagele, T. Donoho, D. Tollefson