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Godsey, C
Gburek, W.J
Pagliari, P.H
Shaver, T
Aspinall, D
Nussbaum Wagler, D.L
Ransom, C.J
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Krienke, B
Ferguson, R
Luck, J
Thompson, L
Parrish, J
Mueller, N
Mieno, T
Crowther, J
Shaver, T
Ingram, T
Krull, D
Glewen, K
O'Halloran, I
von Bertoldi, P.A
Cathcart, J
Reid, K
Aspinall, D
Hayes, A
Weld, J.L
Sharpley, A.N
Gburek, W.J
Beegle, D.B
Ferdinand, L
Lamond, R
Gordon, B
Janssen, K
Godsey, C
Berg, A.S
Baxter, C.A
Nussbaum Wagler, D.L
Joern, B.C
Pagliari, P.H
M Laboski, C.A
Ransom, C.J
Svedin, J.D
Kitchen, N.R
Veum, K.S
Anderson, S.H
Singh , G
Nelson, K
Kaur , G
Lory, J
Davis, M
Abendroth, L
Naumann, H
Calhoun, J
Chlapecka, J
Bradley, W
Ransom, C.J
Carson, R
Pal, P
Topics
Graduate Award Student Poster/State Poster
State Report
Type
Oral
Poster
Year
2016
1997
1998
2003
2010
2021
2024
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Filter results8 paper(s) found.

1. Identifying Critical Sources of Phosphorus Export from Agricultural Watersheds

Phosphorus (P) is an essential element for plant and animal growth, and its input to agriculture is necessary to maintain profitable crop and animal production. Eutrophication, the natural aging of lakes or streams brought on by nutrient enrichment, can be accelerated by P inputs to fresh waters from human activities (Carpenter et al., 1998; Schindler. 1977). Eutrophication has been identified as the main problem in surface waters withimpaired water quality (USEPA. 1996). It restricts water use for...

2. Fertilizer Management for Strip-till and No-till Corn Production

Strip-tillage for corn production can be advantageous over no-till. particularly in areas with heavy soils and high rainfall during spring months. Under these conditions in no-till systems. planting delays andlor slow. uneven emergence are common. Strip-tillage creates a narrow tilled area for the seedbed while maintaining the inter-row residue cover, allowing for erosion protection associated with no-till. yet providing an area in the rowr where the soil will dry out and warm up earlier in the season....

3. Impacts of Management, Moisture, and Phosphorus Form on Phosphorus Loss Potential

Phosphorus (P) is considered one of the major nutrients contributing to degradation of water quality in the United States. Our objectives were to examine P loss potential associated with: 1) high moisture conditions. 2) application (surface and incorporated) of manure from animals fed different diets and 3) sorption dynamics of inorganic and organic P compounds. The study of high moisture conditions evaluated the effects of near surface moisture conditions (wet and saturated), time (up to 28 days...

4. Changes in Soil Test Phosphorus as a Function of Inorganic and Organic Phosphorus in Animal Manure

Understanding how and why soil test phosphorus (P) levels increase with manure and fertilizer application is important to assist in improvi ng any nutrient management plan. An incubation study investigated the change in soil test P (STP) after 42 different animal manures (dairy, beef, swine, chicken, turkey, goat, sheep, and horse) or fer tilizer were applied at a rate of 40 mg total P kg -1 to 25 different agriculturally important soils of Wisconsin. Both liquid and solid dairy and swine manure...

5. Variable Fertilizer Nitrogen Application Based on the Delta Yield Index- A Field Study

A quick review of the both the scientific and popular literature indicates that many different approaches have been suggested for the prediction of variable fertilizer N applications in the field. In previous meetings of this conference we have presented the general outline and approach taken for our site-specific crop management project in Ontario. Briefly, historical data sets of grain corn response trials to fertilizer N (encompassing some 300 site-years worth of data) indicated that most yield...

6. Project Sense: Sensors for the Efficient Use of Nitrogen and Stewardship of the Environment. An On-Farm Research Effort to Increase Adoption of Sensor Based N Management

Low nitrogen use efficiency (NUE) has been attributed to several factors including asynchrony between nitrogen (N) fertilizer application, crop demand, and spatial variability (Shanahan et al., 2008). Sidedress applied N synchronizes crop uptake demand for N, but does not address the spatial and temporal variability that exists in a field year to year. Active crop canopy sensors provide an ability to monitor and respond to spatial and temporal N variability for a given field. A three-year project,... B. Krienke, R. Ferguson, J. Luck, L. Thompson, J. Parrish, N. Mueller, T. Mieno, J. Crowther, T. Shaver, T. Ingram, D. Krull, K. Glewen

7. Can Soil Health Metrics Improve Standard Soil Fertility Recommendations?

It is commonly speculated that integrating soil health (SH) testing with soil fertility (SF) testing would improve fertilizer recommendation decisions. However, quantified impacts of SH properties, specifically soil biological properties, on fertilizer demand have not been well established. The objective of this research was to explore corn (Zea mays L.) yield response to phosphorus (P) and potassium (K) fertilization as influenced by established SF analysis and common SH metrics.... C.J. Ransom, J. Svedin, N.R. Kitchen, K. Veum, S.H. Anderson

8. Corn Grain Yield Response to Nitrogen Rate Timing, Source, and Nitrification Inhibitor in Missouri

Nitrogen response depends on several factors including weather conditions, soil N supply capacity, previous crop in rotation, plant population, and fertilizer management practices. Fertilizer management practices include fertilizer rate, source, application timing, placement, and use of nitrogen stabilizer. In Missouri, the nitrogen fertilizer rate recommendations for corn are based on the yield goal equation. This equation includes the target plant population, pounds of nitrogen removed per thousand... G. Singh , K. Nelson, G. Kaur , J. Lory, M. Davis, L. Abendroth, H. Naumann, J. Calhoun, J. Chlapecka, W. Bradley, C.J. Ransom, R. Carson, P. Pal