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Modeling Nutrient Loss From Midwestern Crop Fields

Using cover crops in between corn and soybean crop production in the Midwest could significantly reduce nitrate load runoff via subsurface drains, according to U.S. Department of Agriculture (USDA) scientists. This reduction could support national efforts to reduce nitrate loads and protect water quality in the Gulf of Mexico.
 
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Excess water laden with nitrates in many Midwestern crop fields drains into subsurface perforated pipes and then flows into surface streams and rivers. The nutrient-rich field drainage reaches the Gulf of Mexico and supports algal blooms that lower water oxygen levels and contribute to developing a devastating “dead zone.”
 
Agricultural Research Service (ARS) scientists Rob Malone, Tom Kaspar, and Dan Jaynes are using the Root Zone Water Quality Model to assess how using winter rye cover crops in corn–soybean rotations could mitigate nitrate loads in the field-drainage water. The researchers are with the ARS National Laboratory for Agriculture and the Environment in Ames, Iowa. The ARS field-scale computer model was developed to simulate plant growth and the movement of water, nutrients and chemicals within and around the root zones of agricultural crops. ARS is USDA’s chief intramural scientific research agency, and this research supports the USDA goal of promoting agricultural sustainability.
 
The researchers ran the model simulation for several different planting scenarios at 41 sites across the Midwest from 1961 to 2005. 
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OFA takes farmers’ priorities to Queen’s Park

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We cover: today I am so excited to share this conversation with my buddy Eric Nordell of Beech Grove Farm in Pennsylvania to chat about, well, a lot of things. Eric and his wife Anne have run beech grove farm since 1983 and they do things a little differently (like farming with horses) but they dry farm which we discuss, they use some cover crops in the paths in interesting ways (also discussed) and in fact, we get into a whole digression about their deer fencing that you’re gonna wanna hear.