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Broadleaf Weed Control with Halosulfuron Tankmixes in White Bean

机译:阔叶杂草与白豆的卤素酸咖啡罐混合物

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Six field trials were conducted over a four-year (2017-2020) period near Exeter and Ridgetown, Ontario to determine the efficacy of halosulfuron tankmixes applied postemergence to control broadleaf weeds in white bean. Halosulfuron caused up to 4% injury in white bean at 2 and 4 weeks after treatment (WAT). Bentazon, acifluorfen, fomesafen, bentazon/acifluorfen, and bentazon + fomesafen caused 2% - 16% injury at 2 WAT and up to 3% injury at 4 WAT in white bean. The addition of halosulfuron to the aforementioned herbicides did not accentuate white bean injury. Reduced weed interference with the herbicides evaluated increased white been yield 50% - 90% compared to the weedy control; there was no difference in seed yield among herbicide treatments evaluated. At 4 WAT, halosulfuron at 25, 37.5 and 50 g ai ha-1 controlled velvetleaf 86%, 93% and 97%; redroot pigweed 83%, 85% and 89%; common ragweed 90%, 93% and 94%; common lambsquarters 27%, 28% and 36%; flower-of-an-hour 66%, 76% and 69%; and wild mustard 100%, 100% and 100%, respectively. Bentazon, acifluorfen, fomesafen, bentazon/acifluorfen, and bentazon + fomesafen controlled velvetleaf 73%, 14%, 52%, 42% and 68%; redroot pigweed 40%, 91%, 85%, 75% and 80%; common ragweed 36%, 81%, 92%, 68% and 84%; common lambsquarters 87%, 39%, 48%, 60% and 76%; flower-of-an-hour 90%, 66%, 63%, 73% and 83%; and wild mustard 97%, 97%, 100%, 99% and 100%, respectively. Halosulfuron tankmixed with bentazon, acifluorfen, fomesafen, bentazon/acifluorfen or bentazon + fomesafen controlled velvetleaf 90%, 51%, 68%, 75% and 90%; redroot pigweed 80%, 99%, 95%, 92% and 91%; common ragweed up to 94%, 97%, 93%, 94% and 95%; common lambsquarters 74%, 62%, 43%, 62% and 66%; flower-of-an-hour 92%, 78%, 74%, 82% and 87%; and wild mustard 100%, 100%, 100%, 100% and 100%, respectively. Weed density and dry biomass followed the same trend. This study concludes that the optimal halosulfuron tankmix is broadleaf weed species specific for weed management in dry bean production.
机译:在安大略省附近的四年(2017-2020)期间进行了六次实地试验,以确定HaloSulfuron Tankmixes应用后期的疗效治疗白豆的阔叶杂草。在治疗(Wat)后2和4周,卤血核在白豆造成高达4%的伤害。 Bentazon,Acifluorfen,Fomesafen,Bentazon / Acifluorfen和Bentazon + Fomesafen造成2% - 16%的伤害2%-16%,在白豆4 Wat损伤高达3%的伤害。向上述除草剂添加卤咯磺酰化并未强调白豆损伤。与杂草控制相比,减少了评价的除草剂的杂草干扰增加了50% - 90%;评估除草剂处理中的种子产量没有差异。在4 Wat,Halosulfuron在25,37.5和50g Ai Ha-1控制的Velvetleaf 86%,93%和97%; Redroot Pigweed 83%,85%和89%;常见的牛奶90%,93%和94%;共同的羊羔27%,28%和36%;每小时花66%,76%和69%;野汁芥菜100%,100%和100%。 Bentazon,Acifluorfen,Fomesafen,Bentazon / Acifluorfen和Bentazon + Fomesafen控制Velvetleaf 73%,14%,52%,42%和68%; Redroot Pigweed 40%,91%,85%,75%和80%;常见的牛奶36%,81%,92%,68%和84%;共同的羊羔87%,39%,48%,60%和76%;每小时90%,66%,63%,73%和83%;野汁芥末芥菜97%,97%,100%,99%和100%。 HaloSulfuron Tanked与Bentazon,Acifluorfen,Fomesafen,Bentazon / Acifluorfen或Bentazon + Fomesafen控制Velvetleaf 90%,51%,68%,75%和90%; Redroot Pigweed 80%,99%,95%,92%和91%;常见的牛奶高达94%,97%,93%,94%和95%;共同的羊羔74%,62%,43%,62%和66%;每小时92%,78%,74%,82%和87%;野汁芥菜100%,100%,100%,100%和100%。杂草密度和干生物量遵循相同的趋势。本研究得出结论,最佳Halosulfuron Tankmix是阔叶杂草种类,可用于干酪生产中的杂草管理。

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