Adjuvants used in fungicide spraying on soybean plants

IF 0.8 4区 农林科学 Q3 AGRICULTURE, MULTIDISCIPLINARY
L. C. Garcia, Guilherme H. Carraro, Sandro Felema, Allison J. Fornari, Leandro J. V. Sformi, Thiago M. Inagaki
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引用次数: 0

Abstract

Aim of study: An adjuvant is a material that is added to a spray carrier to improve the application technology's efficiency but lacks phytosanitary qualities. Our objective was to determine the best option of combining fungicides and adjuvants to control soybean (Glycine max) leaf diseases in three cropping seasons. Area of study: The experiment was developed in the Campos Gerais region (PR - Brazil). Material and methods: The five treatments consisted of 1) control (without applying fungicides on soybean plants); 2) fungicide application on soybean plants without adjuvant; 3) fungicide with adjuvant based on mineral oil; 4) fungicide with adjuvant based on lecithin and 5) propionic acid and fungicide with 50% of the dose of adjuvant based on mineral oil + 50% of the dose of surfactant adjuvant based on lecithin and propionic acid. The analyzed variables were the physicochemical characteristics of the spray carrier, the incidence and severity of diseases, and the yield components. A completely randomized design was used to study the physicochemical characteristics of the carrier and in randomized blocks for the field experiment. We used five replicates per treatment. Main results: No foaming and mixing incompatibility of the spray carrier was observed in any treatment. The adjuvant based on lecithin and propionic acid further acidified the spray carrier and presented the same surface tension as mineral oil. The soybean plants that did not receive chemical treatment had a higher occurrence of diseases, which reduced the productive potential. Research highlights: Adding adjuvants to the spray carrier did not increase the performance of fungicides in controlling diseases and did not affect the yield components.
在大豆植物上喷洒杀真菌剂时使用的佐剂
研究目的:佐剂是一种添加到喷雾载体中的材料,可提高施用技术的效率,但缺乏植物检疫质量。我们的目标是确定结合使用杀真菌剂和佐剂的最佳方案,以在三个种植季节中控制大豆(Glycine max)叶片病害。研究区域:实验在坎波斯吉拉斯地区(巴西)进行。材料和方法五个处理包括:1)对照(未在大豆植株上施用杀菌剂);2)在大豆植株上施用杀菌剂,不加佐剂;3)使用基于矿物油的佐剂的杀菌剂;4)使用基于卵磷脂的佐剂的杀菌剂;5)丙酸和使用 50%剂量的基于矿物油的佐剂+50%剂量的基于卵磷脂和丙酸的表面活性剂佐剂的杀菌剂。分析变量包括喷雾载体的理化特性、病害发生率和严重程度以及产量成分。研究载体的理化特性采用完全随机设计,田间试验采用随机区组。每个处理使用五个重复。主要结果在任何处理中都没有观察到喷雾载体起泡和混合不相容的现象。基于卵磷脂和丙酸的佐剂进一步酸化了喷雾载体,其表面张力与矿物油相同。未接受化学处理的大豆植株病害发生率较高,降低了生产潜力。研究亮点在喷洒载体中添加佐剂并不能提高杀菌剂控制病害的性能,也不会影响产量成分。
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来源期刊
Spanish Journal of Agricultural Research
Spanish Journal of Agricultural Research 农林科学-农业综合
CiteScore
2.00
自引率
0.00%
发文量
60
审稿时长
6 months
期刊介绍: The Spanish Journal of Agricultural Research (SJAR) is a quarterly international journal that accepts research articles, reviews and short communications of content related to agriculture. Research articles and short communications must report original work not previously published in any language and not under consideration for publication elsewhere. The main aim of SJAR is to publish papers that report research findings on the following topics: agricultural economics; agricultural engineering; agricultural environment and ecology; animal breeding, genetics and reproduction; animal health and welfare; animal production; plant breeding, genetics and genetic resources; plant physiology; plant production (field and horticultural crops); plant protection; soil science; and water management.
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