virtual tour of a vegetative treatment system at the usda meat animal research center feedlot

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Virtual Tour of a Virtual Tour of a Vegetative Treatment Vegetative Treatment System at the USDA System at the USDA Meat Animal Research Meat Animal Research Center Feedlot Center Feedlot

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Virtual Tour of a Vegetative Virtual Tour of a Vegetative Treatment System at the USDA Treatment System at the USDA Meat Animal Research Center Meat Animal Research Center

FeedlotFeedlot

DesignDesign

Feedlot Pens

Vegetative Treatment Area

Water Flow

PerformancePerformance

SummarySummary

The system provided very good solids The system provided very good solids removal resulting in a reduction of total removal resulting in a reduction of total suspended solids by 80%, volatile suspended solids by 80%, volatile suspended solids by 67%, chemical oxygen suspended solids by 67%, chemical oxygen demand by 59%, and total nitrogen by 54%demand by 59%, and total nitrogen by 54%

Hay production decreased total nitrogen in Hay production decreased total nitrogen in the VTAthe VTA

SummarySummary

However, disproportionate deposition of runoff However, disproportionate deposition of runoff water increases surface soil nitrogen water increases surface soil nitrogen concentrations near the basin discharge tubesconcentrations near the basin discharge tubes

Elevation shifts of the inlets of the discharge tubes Elevation shifts of the inlets of the discharge tubes has caused disproportionate discharge to the VTAhas caused disproportionate discharge to the VTA

Adding adjustable weir plates to regulate flow on Adding adjustable weir plates to regulate flow on inlet of discharge tubes is recommendedinlet of discharge tubes is recommended