首页> 外文期刊>Weed Technology: A journal of the Weed Science Society of America >Influence of Spray-Solution Temperature and Holding Duration on Weed Control with Premixed Glyphosate and Dicamba Formulation
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Influence of Spray-Solution Temperature and Holding Duration on Weed Control with Premixed Glyphosate and Dicamba Formulation

机译:喷雾溶液温度和持续时间对草甘膦和麦草畏预混剂控制杂草的影响

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摘要

Water is the primary carrier for herbicide application, and carrier-water-related factors can influence herbicide performance. In a greenhouse study, premixed formulation of glyphosate plus dicamba was mixed in deionized (DI) water at 5, 18, 31, 44, or 57 C and applied immediately. In a companion study, glyphosate and dicamba formulation was mixed in DI water at temperatures of 5, 22, 39, or 56 C and sprayed after the herbicide solution was left at the respective temperatures for 0, 6, or 24 h. In both studies, glyphosate plus dicamba was applied at 0.275 plus 0.137 kg ae ha(-1) (low rate), and 0.55 plus 0.275 kg ha(-1) (high rate), respectively, to giant ragweed, horseweed, Palmer amaranth, and pitted morningglory. Glyphosate plus dicamba applied at a low rate with solution temperature of 31 C provided 14% and 26% greater control of giant ragweed and pitted morningglory, respectively, compared to application at solution temperature of 5 C. At both rates of glyphosate and dicamba formulation, giant ragweed and pitted morningglory control was 15% or greater at solution temperature of 44 C compared to 5 C. Weed control was not affected with premixture of glyphosate and dicamba applied = 24 h after mixing herbicide. When considering solution temperature, glyphosate and dicamba applied at low rate provided 13 and 6% greater control of Palmer amaranth and pitted morningglory, respectively, with solution temperature of 22 C compared to 5 C. Similarly, giant ragweed control was 8% greater with solution temperature of 39 C compared to 5 C. Glyphosate and dicamba applied at high rate provided 8% greater control of giant ragweed at solution temperature of 22 or 39 C compared to 5 C. Therefore, activity of premixed glyphosate and dicamba could be reduced with spray solution at lower temperature; however, the result is dependent on weed species.
机译:水是除草剂应用的主要载体,与载体水有关的因素会影响除草剂的性能。在温室研究中,将草甘膦和麦草畏的预混制剂在5、18、31、44或57 C的去离子(DI)水中混合并立即施用。在一项伴随研究中,将草甘膦和麦草畏制剂在5、22、39或56°C的去离子水中混合,并在将除草剂溶液分别在0、6或24 h下喷雾后喷洒。在这两项研究中,分别将草甘膦加麦草畏以0.275加0.137 kg ae ha(-1)(低速)和0.55加0.275 kg ha(-1)(高速)施用于巨型豚草,马草,Palmer mar菜。 ,并刺入牵牛花。与在5 C的溶液温度下施用相比,在31 C的溶液温度下低剂量施用草甘膦和麦草畏分别提供了对豚草和点斑牵牛花的14%和26%的控制。在草甘膦和麦草畏配方中,在溶液温度为44°C时与5°C相比,大型豚草和有斑点的牵牛花控制为15%或更高。杂草控制不受混合除草剂后24小时内施用的草甘膦和麦草畏的预混合的影响。考虑溶液温度时,低速施用草甘膦和麦草畏可分别控制Palmer mar菜和去核牵牛花的温度,分别为22 C和5 C,分别提高13%和6%。相较于5 C,温度为39C。以高速率施用草甘膦和麦草畏比5 C在22或39 C的溶液温度下提供了对豚草的更大8%的控制。因此,喷雾可降低草甘膦和麦草畏的预混活性较低温度下的溶液;但是,结果取决于杂草种类。

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