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首页> 外文期刊>Weed Research >Effects of surfactants and the kinetic energy of monodroplets on the deposit structure of glyphosate at the micro-scale and their relevance to herbicide bio-efficacy on selected weed species
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Effects of surfactants and the kinetic energy of monodroplets on the deposit structure of glyphosate at the micro-scale and their relevance to herbicide bio-efficacy on selected weed species

机译:表面活性剂和单滴动能对草甘膦沉积结构的微观影响及其与除草剂对某些杂草物种生物有效性的关系

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The deposit pattern of foliar-applied agrochemicals, and its relation to their bio-efficacy, has major practical importance. Thus, in our experiments, we evaluated the relevance of the deposition properties of glyphosate for its bio-efficacy. The deposition pattern of glyphosate monodroplets was influenced by using surfactant and by applying the droplets with or without kinetic energy to the plant foliage. Monodroplets (1 mu L) of glyphosate, formulated with or without ethoxylated rapeseed oil surfactant (RSO) having on average 5, 10, 30 or 60 ethylene oxide units (EO), as well as one commercial glyphosate product (CGP), were applied either by carefully placing the droplet on the foliage with a pipette (kinetic energy assumed to be near zero) or by a monodroplet generator (with kinetic energy). We selected two easy-to-wet (Stellaria media and Viola arvensis) and two difficult-to-wet (Chenopodium album and Setaria viridis) weed species as target plants. The deposit structure was determined using a scanning electron microscope with energy dispersive x-ray microanalysis. The kinetic energy of the droplet had no consistent effect on the deposit structure or the bio-efficacy of glyphosate formulations. In contrast, surfactants differing in EO unit, affected both the deposit structure and the bio-efficacy of the formulations, depending upon the species. In easy-to-wet species, the increase in EO unit of RSO surfactant failed to affect the deposit area of glyphosate and its bio-efficacy. However, in difficult-to-wet species, the increase in EO unit of RSO surfactant reduced the deposit area of glyphosate and enhanced its bio-efficacy.
机译:叶面施用农用化学品的沉积方式及其与生物有效性的关系具有重要的实际意义。因此,在我们的实验中,我们评估了草甘膦的沉积性能与其生物功效的相关性。草甘膦单滴的沉积方式通过使用表面活性剂和通过将具有或不具有动能的液滴施加到植物叶片上来影响。使用一滴草甘膦(1微升),配制有或无乙氧基化菜籽油表面活性剂(RSO),平均含5、10、30或60个环氧乙烷单元(EO),以及一种市售草甘膦产品(CGP)通过使用移液器(假设动能接近零)将液滴小心地放置在树叶上或通过单液滴发生器(利用动能)将液滴小心地放置在树叶上。我们选择了两种易湿的(Stellaria media和中提琴)和两种难湿的(Chenopodium album和Setaria viridis)杂草作为目标植物。使用具有能量色散x射线微分析的扫描电子显微镜确定沉积物结构。液滴的动能对草甘膦制剂的沉积物结构或生物功效没有持续的影响。相反,取决于种类,EO单元不同的表面活性剂会影响制剂的沉积结构和生物功效。在易湿的物种中,RSO表面活性剂EO单元的增加未能影响草甘膦的沉积面积及其生物功效。然而,在难以润湿的物种中,RSO表面活性剂EO单元的增加减少了草甘膦的沉积面积并增强了其生物功效。

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