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Stevens, W.B
Ferguson, R.B
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Ferguson, R.B
Ferguson, R.B
Peterson, T
Stevens, W.B
Hoeft, R.G
Mulvaney, R.L
Ferguson, R.B
Shapiro, C.A
Blumenthal, J.M
Benham, B.L
Ferguson, R.B
Hergert, G.W
Kranz, W.L
Stevens, W.B
Yonts, C.D
Ferguson, R.B
Pedersen, S.M
Lark, R.M
Tarkalson, D.D
Hergert, G.W
Stevens, W.B
Petersen, J.L
McCallister, D.L
Stevens, L.J
Ferguson, R.B
Franzen, D.W
Kitchen, N.R
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Oral
Year
2014
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1. Groundwater Quality and Nitrogen Use Efficiency in Nebraska's Central Platte River Valley

In response to increasing levels of nitrate-N in groundwater in the Central Platte River Valley of Nebraska, intensive education and then regulatory efforts were implemented starting in the 1980s, to encourage adoption of nitrogen fertilizer and irrigation management practices which can reduce nitrate leaching to groundwater. Since 1988, there have been steady declines in average NO 3-N concentrations in groundwater in the Central Platte River Valley, resulting from adoption of recommended practices...

2. Ground Water Quality Research and Demonstration Projects in Nebraska

Two projects were initiated in Nebraska in 1990 to address concern with increasing levels of nitrate in ground water as part of USDA's Water Quality Initiative. The Nebraska Management Systems Evaluation Area (MSEA) Water Quality Project is a joint effort of USDA Agricultural Research Service (ARS) and University of Nebraska-Lincoln scientists. One phase of the project is investigating the direct impact of four management systems on ground water quality. Another phase of the project is evaluating...

3. Effect of N Fertilization on Accumulation and Release of Readily-Mineralized Organic N

Increased nitrogen (N) fertilizer use has generated concern about groundwater contamination by nitrate (NO,?. The objective of this work was to determine how previous N management and cropping system affect fertilizer N use efficiency. Research plots from a long-term N rate study on a silt loam soil were used to evaluate the impact of long term N rates on immobilization and mineralization of fertilizer N. Labeled '5~~,15~~, was applied at rates of 0, 60, 120, 180, and 240 lblacre to subplots of the...

4. Site-Specific Nitrogen Management

Applying only the amount of nitrogen fertilizer needed for a crop at a particular point in the field makes intuitive sense - and is hard to argue against conceptually. However, in practice site-specific nitrogen (N) management is quite challenging. That is to be expected, since routine. uniform N management is often more challenging than is management of other nutrients. Because of nitrogen's mobility in soil. the fact that it is subject to a wide range of transformations and loss processes, and...

5. Site Specific Nitrogen and Irrigation Management Across Nebraska Agro-ecological Zones

Nitrogen leaching below hrrow irrigated ground has caused nitrate contamination in Nebraska's groundwater. Alternate row irrigation and alternate row nitrogen fertilization is proposed as a method to decrease water use and decrease nitrogen leaching. Nitrogen was applied at a uniform and variable rates based on spring grid sampling for nitrate and soil organic matter. The experiment was conducted at three sites in Nebraska that represent a range of growing conditions. At these sites the average growing...

6. A Comparison of Producer Adoption of Precision Agricultural Practices in Denmark, The United Kingdom, and Nebraska in the United States

While a lot of research and commercial development has taken place in precision agriculture in recent years there is little information available about the experience and opinions of the producers who are trying to make it pay its way in the field. Information about producer experiences in precision agriculture would be useful in guiding hture research and development in both the public and private sectors. Important questions could include: - what types of precision agriculture practices are producers...

7. Use of Fly Ash as as Alternative Liming Source for Irrigated Corn Production

Fly ash from the Gerald Gentleman Power Station in west central Nebraska can potentially serve as an alternative liming source without reducing corn grain yields. A study was conducted to assess the use of fly ash as an alternative liming source on three acid sandy soils of west central Nebraska where conventional limmg sources can be uneconomical due to transportation costs. Corn grain yield, and soil pH change over time were assessed. Lime sources failed to raise the soil pH in the upper 8 inches...

8. Determining In-season Nitrogen Requirements for Maize Using Model and Sensor Based Approaches

There is great value in determining the optimum quantity and timing of nitrogen (N) application to meet crop needs while minimizing losses. Applying a portion of the total N during the growing season allows for adjustments which can be responsive to actual field conditions which result in varying N needs. Two methods of determining in-season N needs were evaluated, a model-based approach and a crop canopy sensor approach. The Maize-N model was developed to estimate the economically optimum N fertilizer...