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Gordon, W.B
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Lamond, R.E
Thomas, W.L
Whitney, D.A
Maddux, L.D
Gordon, W.B
Martin, V.L
Gordon, W.B
Fjell, D.L
Whitney, D.A
Gordon, W.B
Whitney, D.A
Lamond, R.E
Gordon, W.B
Niehues, B.J
Olsen, C.J
Gehl, R.J
Schmidt, J.P
Stone, L.R
Maddux, L.D
Gordon, W.B
Gordon, W.B
Whitney, D.A
Ferdinand, L.J
Lamond, R.E
Gordon, W.B
Janssen, K.A
Godsey, C.B
Janssen, K.A
Gordon, W.B
Lamond, R.A
Gordon, W.B
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Type
Oral
Year
1994
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1. Nitrogen Management for No-Till Production Systems

Nitrogen management practices including rates and sources were evaluated in high residue no-till production systems involving corn and grain sorghum. A urease inhibitor, N-(n-butyl) thiophosphoric triamide (NBPT) was evaluated. This research also assessed the impact of type of previous residue on performance of surface applied N. A chlorophyll meter was evaluated as an in-field N assessment tool. Results to date indicate that NBPT is effective in improving the performance of surface broadcast urea....

2. Starter Fertilizer Interactions with Corn Hybrids

The objective of this study was to evaluate the response of corn hybrids grown in a dryland, no-tillage production system on a soil high in available phosphorus to starter fertilizer. Treatments were corn hybrids (5 in 1993 and 6 in 1994) grown with or without starter fertilizer. Starter fertilizer (30 Ib N and 30 Ib P,O,) was applied 2 inches to the side and 2 inches below the seed at planting. Nitrogen was balanced on all plots to give a total of 180 IbIA. Bray-I P level in the experimental area...

3. Effects of Phosphorus Application Method and Rate on Furrow-irrigated Ridge-tilled Grain Sorghum

The objective of this research was to investigate the effects of method of phosphorus (P) placement and rate on inigated grain sorghum grown in a ridge-tillage system on a soil low in available P. This experiment was conducted from 1993-1 995 on a producer's field near the North Central Kansas Experiment Field Experiment Field at Scandia, Kansas on a Carr sandy loam soil. Treatments consisted of fertilizer application methods: surface broadcast, single band starter (2 inches to the side and 2 inches...

4. Evaluation of Starter Fertilizer Formulations and Placements for Conservation Tillage Production Systems

With the interest in and importance of the use of starter fertilizers in conservation tillage production systems, research was continued to evaluate higher rates of N in starter fertilizers and different starter fertilizer placements. The use of starter fertilizer containing N, P and K significantly increased corn yields compared to a N only program, even though soil P and K levels were high. Increasing N rates in direct seed placed starter did not increase yields and significantly reduced plant...

5. Nitrate Leaching Characteristics for Various Nitrogen Management Strategies on Irrigated Corn

Efficient use of nitrogen (N) fertilizer for corn production is important for maximizing economic return to the producer and minimizing NO3 leaching to groundwater. This is especially important on irrigated, sandy soils due to the high infiltration and saturated conductivity and potential risk to the local water supplies. This study is being conducted to quantifL the NO3 leaching potential in the irrigated sands along Kansas' waterways under current and alternative N and water management strategies...

6. Starter Fertilizer Application Effect on Reduced and No-tillage Grain Sorghum Production

This experiment was conducted at the North Central Kansas Experiment Field, located near Belleville, on a Crete silt loam soil. Soil test P was in the high@ range. Treatments consisted oftillage systems and starter fertilizer placement and composition. Tillage systems were no-tillage and minimum tillage (spring disc and harrow treatment). Methods of starter fertilizer application included placement 2 inches to the side and 2 inches below the seed at planting (2x2) and dribbled in a band on the soil...

7. Evaluation of Fertilizer Management in Strip-till and No-till Corn Production

Strip-tillage for corn production may have advantages over no-till. particularly in areas with heavy soils andlor high rainfall during spring months. With these conditions in no-till systems. planting delays and/or slow, uneven emergence are common. Strip-tillage creates a narrow tilled area for the seedbed ivhile maintaining the intcr-row residue cover, allowing for the erosion protection associated with no-till, yet providing an area in the row where the soil will dry out and warm up earlier in...

8. Strip Tillage and No Tillage Fertilization Systems Evaluated for Eastern Kansas Rain Fed Corn

Row-crop agriculture in East-Central and Southeast Kansas is facing increasing pressure to reduce sediment and nutrient losses via runoff. Edge-of-field measurements show that no-tillage with fertilizers placed below the surface of the soil has significantly less sediment and total P losses in runoff compared to conventional tillage (Janssen et al., 2000). However, for rain-fed corn, no-tillage in these regions can provide serious challenges some years because of frequent spring rains and an abundance...

9. Management of Enhanced EfficiencyFertilizers

Phosphorus generally occurs in soils as the anions H 2PO4- or HPO4-2, depending on the soil pH. These anions readily react with soil cations su ch as calcium, magnesium, iron, and aluminum to produce various phosphate compounds of limited wate r solubility. Crop recovery of applied P fertilizer can be quite low during the season of application. Specialty Fertilizer Products 1 has developed and patented a family of dicarboxylic co-polymers that can be used as a coating on granular or mixed into liquid...