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Warren, J.J
Singh , G
Yoder, B
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Ritchie, K.B
Hoeft, R.G
Nafziger, E.D
Gonzini, L.C
Warren, J.J
Ritchie, K.B
Hoeft, R.G
Gonzini, L.C
Warren, J.J
Nafziger, E.D
Hoeft, R.G
Nafziger, E.D
Mulvaney, R.L
Gonzini, L.C
Warren, J.J
Hoeft, R.G
Nafziger, E.D
Gonzini, L.C
Warren, J.J
Mathesius, J.J
Daverede, I.C
Kravchenko, A.N
Hoeft, R.G
Nafziger, E.D
Bullock, D.G
Warren, J.J
Gonzini, L.C
Guebert, K.S
Hoeft, R.G
Nafziger, E.D
Adee, E.A
Dunker, R.E
Paul, L.E
Gonzini, L.C
Warren, J.J
Adler, R
Singh, G
Nelson, K
Sadeghpour, A
Singh, G
Weidhuner, A
Lange, R
Yoder, B
Singh , G
Nelson, K
Kaur, G
Kaur, H
Nelson, K.A
Singh, G
Kaur, G
Singh , G
Lory, J.A
Nelson, K.A
Davis, M
Abendroth, L
Kaur, G
Calhoun, J
Chlapecka, J
Steinkamp, D.J
Nelson, K.A
Singh, G
Kaur, G
Kaur, 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
Singh , G
Nelson, K
Parvej, M
Brandt, D
Myers, R
Nain, A
Kaur , G
Nelson, K
Singh, G
Davis, M
Deep, K
Carson, R
Singh, G
Vredenburgh, J
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1. Nutrient Management and Starter Fertilizer for No-till Corn

No-till corn acreage has steadily increased in Illinois. No-till presents unique problems of nutrient stratification, increased surface residue, and cool, wet soils which may influence nutrient availability. Two experiments were initiated in 1993 at 4 locations to evaluate the response of no-till corn to: 1) primary N applications of anhydrous ammonia preplant, UAN broadcast preplant, and ammonia sidedressed at V6; 2) starter fertilizers with factorial combinations of N, P, and K banded 2 inches...

2. Response of Minimum-till Corn to Starter Fertilizer and ACA

Starter fertilizer containing N and P often increases grain yield under no-till management. but yield responses to starter have riot been consistently observed under conventional tillage. Experiments were established in 1996 and 1997 at six sites varying in latitude, soil type. fertility, and crop rotation to evaluate the effect of starter fertilizers on corn grown under high-residue minimum-till systems. In one experiment, a factorial combination of 3 N. 2 P, and 2 K rates placed in a 2x2 band was...

3. Effect of Time and Rate of N Application on N use Efficiency and Surface Water Contamination with Nitrates

Nitrate levels in excess of the public health standard of 10 mg N/1 in public water supplies along - with concern about hypoxia in the Gulf of Mexico have drawn renewed interest to improving fertilizer N use efficiency. Prior research has indicated that some farmers may be unkaowingly contributing to these problems. The objectives of this research were to: determine the effect of rate and time of N application on nitrate-N concentrations in water from tile lines and to evaluate the effect of previous...

4. Effect of Time of N Application for Corn

The economic benefit associated with the application of N fertilizers for corn has been known for over 5 decades. As a result, over 99 % of the farmers in Illinois apply N fertilizers when corn is grown. Unlike phosphorus and potassium, there is no good soil test to predict the amount of N needed, instead, farmers use a factor times yield potential with appropriate credits for legume and other N sources to set N rates. While this works well over a number of years, there are years when less N will...

5. Phosphorus Runoff From Incorporated and Surface-Applied Fertilizer and Manure

Continued inputs of fertiher and manure in excess of crop requirements have led to a build-up of soil phosphorus (I?) levels, creating an environmental rather than agronomic concern (Sharpley et al., 1994). The objective of this study was to evaluate the effects of soil test P level, source of P amendments, tillage, and manure application method on P runoff from agricultural soils. The treatments consisted of swine manure surface applied and injected at rates of 29 and 59 Ib acre-' of P, and triple...

6. Strip till Nitrogen Placement, and Starter Fertilizer Effects on Corn Growth and Yield

Strip tillage, a system where residue is removed and small ridges are formed in the fall in the position of next year's rows, has become an increasingly popular alternative to 0-till for corn in Illinois. Over three years and eight environments in Central and Northern Illinois, tillage had no effect on grain yield: conventional tillage, strip tillage, and 0-till produced 1 1.67, 11.67, 1 1.57 Mg/ha, respectively. There were also no differences in yield due to N timing, N placement, or starter fertilizer....

7. Cover Crops Impact on Biomass, Yield, Soil Health, and Nutrient Loss in a Tile-Terrace Field

Soil erosion by water can be the most important land degradation process on erodible to highly erodible soils. Therefore, different conservation practices can be implemented to address the issue including no-tillage, cover crops (CC), grass filter strips, riparian buffers, and terraces. A field trial was established at the University of Missouri Grace Greenley Research Center near Novelty to evaluate the impact of CC and no-CC (non-treated control, NTC) on crop yields, soil health, and water quality/quantity... R. Adler, G. Singh, K. Nelson

8. Side-dressing Nitrogen Influence on Nitrogen Release Dynamics of Early and Late-Terminated Cereal Cover Crop

Termination date and nitrogen application of corn (Zea mays L.) can influence the decomposition rate of cover crops in a corn cropping system. Our objective was to evaluate (i) the biomass accumulation and nutrient uptake of wheat (Triticum aestivum L.) fertilized with 34 kg N/ha and (ii) decomposition rate of wheat terminated early (4 weeks prior to planting) and late (at corn planting time) with and without side-dressing N at 168 kg N/ha. Our preliminary data... A. Sadeghpour, G. Singh, A. Weidhuner, R. Lange

9. How Late Can Nitrogen Be Applied to Corn?

Delaying some of the N supplied to the corn crop is considered a way to increase N uptake and yield and to limit N losses, but the length of the delay may increase the risk of yield loss. We conducted a 3-year experiment at Urbana, Illinois in which half of the N (112 kg N/ha) was injected as UAN at planting and the other half or all (224 kg N/ha) of the N was dribbled UAN next to the row, at each of eight stages ranging from V3 to R3. In corn following soybean, when half of the N was applied... B. Yoder

10. Landscape Position Affects Management Decisions for Crop Production

Landscape attributes including topographic positions, slope, curvature, elevation, water flow direction and water flow accumulation are well documented in the literature for their effects on crop productivity. Topography influences crop growth and yield by impacting water and nutrient movement in the soil. Under dryland crop production systems, water availability generally depends on topsoil depth, soil organic matter, and curvature of the micro-topography. To improve overall productivity of a... G. Singh , K. Nelson, G. Kaur

11. Drainage and Nitrogen Management Affects Soil Health and Soil Properties

Midwestern United States farmers rely on key fertilizer inputs and management of soil drainage to maintain productivity and profitability. Subsurface tile drainage is used extensively throughout the Midwest U.S. to lower the water table and drain waterlogged soils. To improve nutrient use efficiency and sustainable crop production, best management practices such as 4R nutrient stewardship framework is being promoted in conjunction with drainage water management technology. The 4R nutrient stewardship... H. Kaur, K.A. Nelson, G. Singh, G. Kaur

12. Revamping Nitrogen Fertilizer Recommendations for Missouri

Multiple nitrogen fertilizer rate decision tools have been developed over the years for recommending nitrogen to growers. These tools are based on mass balance equations with expected yield and yield goal, economically optimum nitrogen rate, preplant soil nitrate test, pre-sidedress and late spring soil nitrate test, plant tissue nitrogen, crop growth models, and canopy reflectance sensing. These tools rarely include biological nitrogen in the rate recommendations. Advances in soil health assessment... G. Singh , J.A. Lory, K.A. Nelson, M. Davis, L. Abendroth, G. Kaur, J. Calhoun, J. Chlapecka

13. Corn Response to Nitrogen Fixation Technology in Upstate Missouri

Nitrogen is one of the most expensive corn input costs and is critical for grain production. Nitrogen (N) fixing bacteria convert atmospheric N into organic forms that can be utilized by the plant are common with legumes. The symbiosis between Rhizobia and legumes is a critical plant–microbe mutualism that is essential for high yielding soybean. Recently, an emphasis on developing technology to supply corn with additional N through biological processes has been a focus of several agribusinesses... D.J. Steinkamp, K.A. Nelson, G. Singh, G. Kaur, H. Kaur

14. 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

15. Interpreting Soil Health Test Results to Guide Management for Missouri Row Crops

Soil health determines long‑term productivity, nutrient cycling, water retention, and resilience in row‑crop systems. Missouri-specific, data-driven framework for interpreting six complementary soil health indicators—total organic carbon (TOC), permanganate-oxidizable carbon (POXC), 3-day soil respiration, wet aggregate stability (WAS), autoclaved citrate-extractable (ACE) protein, and potentially mineralizable nitrogen (PMN)—was developed by the University of Missouri Soil Health... G. Singh , K. Nelson, M. Parvej, D. Brandt, R. Myers

16. Industrial Hemp Response to Nitrogen Applications in Missouri

Industrial hemp (Cannabis sativa L.) is gaining attention as a multipurpose crop for fiber, grain, and biomass, but research-based region-specific guidelines on nitrogen (N) management are limited. To address this gap, field experiments were conducted at two locations (Albany, Novelty) in northern Missouri in 2024 & 2025 to evaluate the effects of N applications on industrial hemp growth, biomass, and grain yield. The experiments were laid out as a randomized complete block design... A. Nain, G. Kaur , K. Nelson, G. Singh, M. Davis

17. From the Ground Up: a Farmer-Led On-Farm Research Evaluating the Potential of a New Fertilizer Source for Nitrogen in Pastures for Missouri

This research is a part of a transdisciplinary network of farmers leading on-farm research and innovation groups across Missouri, where farmers are leading the design and implementation of nitrogen (N) fertilizer treatments. The Objective of this on-farm research trial in southwest Missouri is to determine whether green lightning fertilizer technology can fulfill the N requirement of pasture in a more economical and sustainable way than the conventional sources of N. The cost of N fertilizer... K. Deep, R. Carson, G. Singh, J. Vredenburgh