Eco-friendly surfactants in glyphosate formulation

R. C. Pessagno, Diego Grassi, C. Pedraza, G. Thompson, C. Ojeda
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Abstract

Weeds affect various crops worldwide, causing low yields and, therefore, significant economic losses. These losses can be minimized by the use of herbicides such as glyphosate. However, the efficiency of glyphosate depends on the type of agrochemical formulations. The most widely used surfactant is polyethoxylated tallow amine. Nevertheless, the disadvantage of these compounds is that their toxicity is greater than that of glyphosate itself. Thus, this study aimed to develop an environmentally-friendly combination of surfactants that can increase the performance of glyphosate compared to other currently used formulations. Saponin (S) is environmentally friendly and has a unique ability to go through the waxy cuticle of the weed leaf. However, its interfacial properties are very poor. In contrast, the alkyl glucoside (AG) mixture has shown excellent interfacial properties, being an environmentally safe surfactant, but cannot pass through the cuticle. In the present study, we mixed both surfactants. Two formulations were made with 20% (F1) and 2% (F2) of S with 4% AG. To verify the usefulness of our formulations, they were compared against a commercial product. The results showed that the commercial product had better CMC 0.3±0.1% and pC20 1.155±0.099 than our formulations F1 and F2. Formulations F1 and F2 showed better gCMC than the commercial product 36.5±4.1 mN/m and 30.9±1.4 mN/m, respectively. Field tests showed that F2 was more effective than the commercial product in eliminating weeds at the end of the test at 30 days. Our results allowed confirming that the use of saponin improves the efficiency of glyphosate. The work showed that structures similar to cyclopentaneperhydrophenanthrene are very effective for introducing drugs into plants through the leaves. This is an advance in general and in particular for the increase of the yield in certain crops.
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草甘膦配方中的环保表面活性剂
杂草影响着世界各地的各种作物,导致产量低,因此造成重大经济损失。这些损失可以通过使用草甘膦等除草剂来最小化。然而,草甘膦的效率取决于农用化学品配方的类型。最广泛使用的表面活性剂是聚乙氧基牛油胺。然而,这些化合物的缺点是它们的毒性大于草甘膦本身。因此,本研究旨在开发一种环保的表面活性剂组合,与目前使用的其他配方相比,该组合可以提高草甘膦的性能。皂苷(S)对环境友好,具有独特的穿过杂草叶片蜡质角质层的能力。然而,它的界面性质非常差。相反,烷基葡糖苷(AG)混合物显示出优异的界面性质,是一种环境安全的表面活性剂,但不能穿过角质层。在本研究中,我们混合了两种表面活性剂。两种配方是用20%(F1)和2%(F2)的S和4%的AG制成的。为了验证我们的配方的有用性,将它们与商业产品进行了比较。结果表明,与我们的配方F1和F2相比,商业产品具有更好的CMC 0.3±0.1%和pC20 1.155±0.099。配方F1和F2显示出比商业产品更好的gCMC,分别为36.5±4.1 mN/m和30.9±1.4 mN/m。田间试验表明,在30天的试验结束时,F2在清除杂草方面比商业产品更有效。我们的结果证实了皂苷的使用提高了草甘膦的效率。这项工作表明,类似于环戊-环戊烯的结构对于通过叶子将药物引入植物非常有效。这是一个总体上的进步,尤其是对某些作物产量的提高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Revista de Ciencias Agroveterinarias
Revista de Ciencias Agroveterinarias Veterinary-Veterinary (all)
CiteScore
0.50
自引率
0.00%
发文量
41
审稿时长
53 weeks
期刊介绍: Revista de Ciências Agroveterinárias (Journal of Agroveterinary Sciences) (ISSN 2238-1171) focus on publishing original and unpublished tecnical-scientific works regarding on researches in Agrarian and Veterinary Sciences and related areas. The objective of this journal is to publish double-blind peer reviewed research articles, research notes, and review articles contributing significantly for scientific knowledge diffusion and socialization, being made available to libraries of education and research institutions performing scientific activities on plants, animals, and related organisms.
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