Results 141 to 150 of about 1,477 (171)
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Weed Management and Peanut Response from Applications of Saflufenacil
Weed Technology, 2012Saflufenacil is a new protoporphyrinogen oxidase–inhibiting herbicide registered for use before establishment of field corn and soybean. Generally, peanut plants are tolerant to other herbicides in this class, and no reports document the utility of saflufenacil for in-season weed control.
Sergio Morichetti +4 more
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Weed Management in Peanut Using Stale Seedbed Techniques
Weed Science, 1995Field studies were conducted from 1991 through 1993 to determine the effects of stale seedbed management practices on weed control in peanut. Main plots were four levels of stale seedbed management: deep till (23 cm) and plant the same day (standard system), deep till 6 wk early and shallow till (7.6 cm) at 2 wk intervals prior to planting, deep till 6
W. Carroll Johnson, Benjamin G. Mullinix
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Weed-Control Systems for Peanut Grown as a Biofuel Feedstock
Weed Technology, 2008Peanuts are not often used as a true oilseed crop, especially for the production of fuel. However, peanut could be a feedstock for biodiesel, especially in on-farm or small cooperative businesses, where producers can dictate the cost of making their own fuel.
Wilson H. Faircloth +2 more
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Economics and Effectiveness of Alternative Weed Scouting Methods in Peanut
Weed Technology, 2007On-farm trials were conducted in 16 North Carolina peanut fields to obtain estimates of scouting times and quality of herbicide recommendations for different weed scouting methods. The fields were monitored for weed species and population density using four scouting methods: windshield (estimate made from the edge of the field), whole-field (estimate ...
Bridget L. Robinson +3 more
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Weed Control and Peanut Tolerance Using Pyroxasulfone in Oklahoma
Journal of Experimental Agriculture International, 2018To determine the spectrum of weed control and peanut tolerance with pyroxasulfone in Oklahoma. Study Design: Randomized complete block design with four replications. Place and Duration of Study: Oklahoma State University Caddo Research Station near Ft.
Todd Baughman, W Grichar, Peter Dotray
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Weed control and peanut (Arachis hypogaea) response to sulfentrazone
Crop Protection, 2006Abstract Field experiments were conducted at several Texas peanut growing regions during the 1999 and 2000 growing seasons to study weed control and peanut response to sulfentrazone. Sulfentrazone applied preplant incorporated (PPI) or preemergence (PRE) caused up to 80% peanut stunt when rated 4–5 weeks after planting (WAP). The severity of stunting
W. James Grichar +2 more
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Chemical weed control in peanut crops at Katherine, N.T
Australian Journal of Experimental Agriculture and Animal Husbandry, 1968In crops of Spanish peanuts at Katherine, N.T., trifluralin at 1 lb active ingredient an acre and benefin at 2 lb a.i. an acre gave almost complete control of the two pigweeds Trianthema portulacastrum and Portulaca oleracea. During two seasons, one a dry short season and the other a season of average rainfall and duration, both herbicides were very ...
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Crop and Weed Management Effects on Weed Populations in a Short‐Term Corn‐Corn‐Peanut Rotation
Journal of Production Agriculture, 1992Corn (Zea mays L.) is commonly grown in rotation with peanut (Arachis hypogaea L.) to improve management of peanut pests, including weeds. Field studies were conducted from 1988 through 1990 at Tifton, GA, to determine the effects of crops and weed management systems on weed populations in a corn‐corn‐peanut rotation.
W. Carroll Johnson +2 more
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Weed and Peanut (Arachis Hypogaea) Response to Diclosulam Applied Post
Weed Technology, 2007Diclosulam is generally applied either PPI or PRE to peanut to control certain broadleaf weeds and suppress sedges. Research was conducted to determine efficacy and peanut response to POST applications of diclosulam at 9, 13, 18, and 27 g ai/ha. Efficacy of diclosulam was affected by application rate and environment.
Sarah H. Lancaster +4 more
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Weed Control in Peanuts (Arachis hypogaea) with Imazaquin
Weed Science, 1987Field evaluations were made on the effects of imazaquin {2-[4,5-dihydro-4-methyl-4-(1-methylethyl)-5-oxo-1H-imidazol-2-yl]-3-quinolinecarboxylic acid} on Florida beggarweed [Desmodium tortuosum(SW) DC. # DEDTO] and sicklepod (Cassia obtusifoliaL. # CASOB) control in peanuts (Arachis hypogaeaL.).
Gregory R. Sims +3 more
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