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Proceedings

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Nutrient Management and Water/Air Quality
Recycled and Repurposed Nutrient Sources
Horticulture/Minor/Small Acreage Crops
Nutrient Management of Horticultural Crops
Cover Crops
Soil Health Indicators
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Authors
Bremer, E
Bremer, E
Brown, P.H
Davenport, J.R
DeVetter, L.W
Donaldson, A
Gent, D
Greer, K
Hoheisel, G.A
Horwath, W
Khalsa, S.S
Moore, A
Nichol, C
Peachey, R.E
Steenwerth, K
Sullivan, D
Tarkalson, D.D
Verhoeven, B
Wiebe, J
Zapata, D
Zhu-Barker, X
Topics
Recycled and Repurposed Nutrient Sources
Nutrient Management of Horticultural Crops
Type
Oral
Year
2021
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Topics

Filter results9 paper(s) found.

1. Repurposing Zinc from Mining Tire Waste to a Fertilizer Resource

Zinc (Zn) deficiency is common on high pH soils when growing field crops like Corn, Barley and Wheat.  Not only are crop yields and quality limited by low Zn, but more importantly the dilution of Zn in food stuffs and, thereby, Zn deficiency in the human diet has become a major concern as recognized by the World Health Organization.  At the same time, there is a Global problem in proper repurposing/disposal of used tires that contain between 1-3% ZnO.  In fact, in Chile, t... K. Greer, J. Wiebe, E. Bremer

2. Factors Influencing Efficacy of Elemental Sulphur Fertilizers

Elemental sulfur is a byproduct of fossil fuel production and produced in large quantities in both the US and Canada.  Fertilizers containing elemental S have a high S content and low manufacturing cost, but may not reliably meet crop requirements for S in the year of application due to the time required for elemental S to be oxidized.  The main factors influencing the oxidation rate of elemental S are particle size, particle dispersion and environmental conditions.  ... E. Bremer

3. Assessing Nutrient Uptake and Accumulation in Oregon Hop Production

Commercial hop production practices and cultivars have changed in the past 25 years and there is a need for updated nutrient management information under cotemporary practices. Current nutrient accumulation curves are only available for nitrogen (N). Current regional nutrient management guides from Oregon State University and Washington State University date back to the 1990’s or earlier. In the meantime, market forces and breeding efforts have led to a proliferation of new varieties, m... A. Moore, D. Gent, B. Verhoeven

4. Does Post-harvest Nitrogen Application Affect Blueberry Yield or Cold Hardiness?

In central Washington, nitrogen (N) management in blueberries typically consists of all N being applied prior to harvest.  For early cultivars, such as Duke, this means all fertilizer is applied before the end of June, leaving a long period of growth with no supplemental N.  To evaluate the potential for splitting N fertilizer applications into pre- and post-harvest timings, we conducted an experiment in a randomized complete block design with four replicates on a commercial ‘... J.R. Davenport, G.A. Hoheisel, L.W. Devetter

5. Reuse and Reclamation of Phosphogypsum

Phosphogypsum (PG) is a byproduct of phosphate fertilizer production.  It is produced when phosphate rock is treated with sulphuric acid during the manufacture of phosphoric acid, and is composed primarily of  gypsum (CaSO4.2H2O).  It is estimated that over 3 billion tonnes of PG have been accumulated in stacks worldwide and over 150 million tonnes are produced annually.  In North America, PG is stockpiled in stacks that can cover hund... C. Nichol

6. Sugar Beet Lime Effects on High pH Soils and Crops in Northwest U.S.

A viable solution to dispose of sugar beet precipitation calcium carbonate (PCC) is needed due to the unsustainable issues associated with storage. Sugar beet PCC is a lime material produced as a waste product from extracting sugar from sugar beet. The three main sugar beet processing factories in the Amalgamated Sugar Company growing area in Idaho and Oregon have stockpiled approximately 11.3 million Mg of PCC.  Each year these three factories produce a total of 350,000 Mg annually. &nb... D.D. Tarkalson

7. Refining Nitrogen Management for Organic Broccoli Production

Specialty organic fertilizers used in organic vegetable production are expensive. So, from environmental and economic perspectives, growers want to maximize nitrogen (N) fertilizer use efficiency by the crop. This research was conducted to (1) determine sufficient N fertilizer rates for organic broccoli, (2) evaluate the efficacy of a specialty organic fertilizer (feather meal; 12-0-0), and (3) confirm the effectiveness of midseason soil nitrate analyses (0-30 cm) in determining appropriate s... D. Sullivan, R.E. Peachey, A. Donaldson

8. Evaluating Cover Crops for Nitrogen Management in a Walnut Orchard

Cover crops provide numerous benefits in agricultural systems. From increasing soil water storage to reducing fertilizer inputs, quantifying cover crops benefits is crucial in nutrient management, crop productivity, environmental sustainability, and growers' adoption. The goal of this study was to quantify nitrogen (N) and carbon (C) inputs in a walnut  (Juglans regia L. 'Chandler') orchard that implemented three cover crop mixtures. The study site was a 5-year-old w... D. Zapata, X. Zhu-barker, K. Steenwerth, W. Horwath

9. Estimating Nitrogen Credits from Organic Matter Sources in Orchards

Orchard crops like almonds can effectively utilize different nitrogen (N) sources to meet the high annual N demand for fruit and tree growth. Different fertilizer formulations like urea ammonium nitrate, calcium ammonium nitrate, ammonium sulfate and potassium nitrate are widely and effectively used, and readily available for uptake. Yet, addressing N availability from organic matter sources in orchards, and in turn estimating appropriate N credi... S.S. Khalsa, P.H. Brown