zones grids and ec
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Zones Grids and EC. Perfection : The Goal ????. Perfection P & K. Immobile P and K Soil and Crop Driven First Year evaluate response . Perfection P & K. Immobile P and K Rate Studies in each zone. 10 lbs. 10 lbs. 10 lbs. 20 lbs. 20 lbs. 20 lbs. 30 lbs. 30 lbs. 30 lbs. 40 lbs. - PowerPoint PPT PresentationTRANSCRIPT
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Zones Grids and EC
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Perfection : The Goal ????
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Immobile P and K Soil and Crop Driven
◦ First Year evaluate response
Perfection P & K
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Immobile P and K Rate Studies in each zone
Perfection P & K
10 lbs20 lbs30 lbs40 lbs
10 lbs20 lbs30 lbs40 lbs10 lbs
20 lbs30 lbs40 lbs
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Understand the Benefits and Limitations of Soil Testing
Broad sweeping recommendations Recommendations are Conservative in both
directions Will recommend only when likely to respond Rate will ensure maximum yield for the
majority
Perfection P & K
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Understand the Benefits and Limitations of Soil Testing
Nitrogen levels in soil are not static◦ Soil test in August not always relevant in March.
Dependent upon environment and yield level
Multiple yield potentials in the field Recommendation based on Averages.
Perfection N
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Fields are highly variable◦ Why apply flat field rate◦ Why apply even zone level rate
Perfection N
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Lines for zones based on 1 factor◦ Yield History
Yield levels Yield Stability
◦ Topography◦ Soil Type◦ Soil EC◦ Geography / boundaries◦ Organic Matter◦ Nutrient levels
Drawing Lines
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Soil EC is soil electrical conductivity– a measurement of how much electrical current soil can conduct. It’s an effective way to map soil texture because smaller soil particles such as clay conduct more current than larger silt and sand particles. Soil EC measurements have been used since the early 1900’s-
Veris mobilized the process and added GPS. As the Veris EC cart is pulled through the field, one pair of coulter-electrodes injects a known voltage into the soil, while the other coulter-electrodes measure the drop in that voltage.
The result: a detailed map of the soil texture variability in the crop rooting zone
Electrical Conductivity (EC)
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Using 1 factor to determine other unrelated factors
Deteriming the Variable
P KP
Elevation
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Elevation
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Soil EC
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Soil pH
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Buffer Index
Lime required (tons 100% ECCE)
pH 6.8 pH 6.4
Over 7.1 None None7.1 0.5 None7.0 0.7 None6.9 1.0 None6.8 1.2 0.76.7 1.4 1.26.6 1.9 1.76.5 2.5 2.26.4 3.1 2.76.3 3.7 3.2
Buffer Index
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PhosphorusSoil Test P
Index
% Sufficien
cy
P2O5 lbs/a
c0 25 8010 45 6020 80 4030 85 3040 90 20
65+ 100 0
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PotassiumSoil Test K
Index
% Sufficien
cy
K2O lbs/a
c0 50 6075 70 50
125 80 40200 95 20
250+ 100 0
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Buffer Index
Lime required (tons 100% ECCE)
pH 6.8 pH 6.4
Over 7.1 None None7.1 0.5 None7.0 0.7 None6.9 1.0 None6.8 1.2 0.76.7 1.4 1.26.6 1.9 1.76.5 2.5 2.26.4 3.1 2.76.3 3.7 3.2
Buffer Index
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PhosphorusSoil Test P
Index
% Sufficien
cy
P2O5 lbs/a
c0 25 8010 45 6020 80 4030 85 3040 90 20
65+ 100 0
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Elevation
Shallow EC
Soil pHK
P
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Go to web for files.
Commercial
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What can you do with it?◦ Variable rate seeding and variable rate N for
starters
Identifying Yield Potential and Yield Stability
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Population Strips. These will be evaluated with yield monitor.
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All techniques are potentially the right way and the wrong way.
MUST have variability before you treat for variability!
Variable Rate Lime, Most economical. Sometimes Nutrient needs are the same
sometimes its not, more often its not. Look at the cost of the method versus the
economics of the production system.
Summary