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Patel, S
Leichty, S
Ferdinand, L
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Authors
Oleszak, H
Cotrufo, F
Leichty, S
Stewart, C
Haag, L
Tomlinson, P
Patel, S
Santos, E
Haag, L
Patel, S
Tomlinson, P
Santos, E
Topics
Environment and Soil
Nitrogen Management
Type
Poster
Oral
Year
2020
2022
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Filter results3 paper(s) found.

1. Effects of Residue Placement on Co2 Loss in an Irrigated, No-till Corn System

It is well known that residue management practices that leave crop residue on the surface, such as no-till agriculture, promote soil fertility. However, the effects of such practices on carbon sequestration can be highly variable. To better understand how residue management impacts the loss of carbon through mineralization, we investigated the effects of residue location and addition on CO2 produced from residue decomposition under no-till irrigated continuous corn in Northern Colorado. Over... H. Oleszak, F. Cotrufo, S. Leichty, C. Stewart

2. Measuring N2O Emissions from Dryland Sorghum Production Using Gas Chamber and Eddy Covariance Flux Methods

Nitrous oxide (N2O) emissions are not well quantified in the dryland production systems of the Great Plains.  Lack of field-based data has led to the use of questionable assumptions in various life-cycle analyses when dryland grain production is a feedstock.  A field-scale trial of 81 acres was established within a 160 acre production field of dryland grain sorghum in northwest Kansas in 2021.  Grain sorghum was no-till seeded into wheat stubble.  Grower practices for nitrogen... L. Haag, P. Tomlinson, S. Patel, E. Santos

3. Spatial Variability in Profile Soil Nitrate, Nutrient Update, Grain Yield, and Nutrient Removal in a Commercial Dryland Grain Sorghum Field

Established relationships exist that describe the confidence interval around a soil test value as a function of cores in the sample for nutrients such as phosphorus.  This information is useful for developing economically and agronomically optimal soil sampling strategies.  Residual soil nitrate can be a significant source of a crops N needs in dryland cropping systems where N loss is minimal. A common question among producers and consultants is how many profile N cores are required... L. Haag, S. Patel, P. Tomlinson, E. Santos