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Determining the Influence of Spray Quality, Nozzle Type, Spray Volume, and Air-Assisted Application Strategies on Deposition of Pesticides in Soybean Canopy

机译:确定喷雾质量,喷嘴类型,喷雾量和空气辅助施用策略对大豆冠层农药沉积的影响

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摘要

Many insect and disease problems occur in specific plant canopy locations and cannot be managed with systemic pesticides. Diseases such as Asian soybean rust (ASR) ( Phakopsora pachyrhizi ) infect plant material deep inside a canopy that is difficult to target. Field studies were established in north central Ohio to determine the effect of different application strategies on targeting of foliar pesticide in narrow-row (18 cm) soybean plantings. Several different application factors were tested, including spray quality, nozzle type, air-assistance, and spray volume. In 2005, the spray mix included a fungicide used for ARS management. In 2006, in addition to the fungicide, an insecticide for soybean aphid management was included. Plant samples were removed from each test plot, and stems and leaves from the bottom third and middle third of the plant were separated for individual analysis. Overall, there was significantly less active ingredient found in the lower third of the canopies than the middle third, and significantly less pesticide residue was found on stems than leaves from the same canopy location. Significantly more fungicide residue was found on lower leaves treated by the medium-quality XR8004 flat-fan nozzle in 2005 than the coarse-quality XR8005 flat-fan nozzle. There were no differences in fungicide residue found on middle canopy leaves between the fine, medium, and coarse quality flat-fan nozzles. The twin-fan pattern nozzles (Turbo Duo and TwinJet) produced the lowest amounts of fungicide residue on the lower leaves in 2005. The mechanical canopy opener produced significantly higher fungicide residues on middle canopy leaves than all other treatments. The Jacto air-assist sprayer using JA3 hollow-cone nozzles produced the highest fungicide residues on lower canopy leaves in 2005. There were some statistical differences between the amounts of fungicide and insecticide residue found on plant tissue in 2006 because of the high amount of variability in the sample data. Overall in 2006, the higher volume XR8004 treatment (187 L ha -1 ) and the twin-fan TTJ60-11003 treatment at 145 L ha -1 performed similar to the Jacto sprayer making applications at 145 L ha -1 using either flat-fan or hollow-cone nozzles. In general, higher volume applications produced higher amounts of fungicide and insecticide residue on leaves from the middle of the canopy for conventional flat-fan and air-assist applications. Spray volume had less affect on residues measured on leaves from the lower canopy area. Across two years of different canopies at the same spray volume (145 L ha -1 ), the Jacto sprayer using JA3 hollow-cone nozzles produced more fungicide residue on middle canopy stems and lower canopy leaves than the medium-quality XR8004 flat-fan nozzle.
机译:许多昆虫和疾病问题发生在特定的植物冠层位置,无法用系统性农药处理。亚洲大豆锈病(ASR)(Phakopsora pachyrhizi)等疾病会感染难以定位的树冠内部的植物。在俄亥俄州中北部建立了田间研究,以确定不同施用策略对窄行(18厘米)大豆种植中叶面农药靶向的影响。测试了几种不同的应用因素,包括喷雾质量,喷嘴类型,空气辅助和喷雾量。 2005年,喷雾混合物中包含用于ARS管理的杀菌剂。 2006年,除杀菌剂外,还包括用于大豆蚜虫防治的杀虫剂。从每个试验区中取出植物样品,并分离植物底部三分之一和中部三分之一的茎和叶以进行单独分析。总体而言,在相同冠层位置,较低的三分之一冠层中发现的活性成分明显少于中三分之一,并且在茎中发现的农药残留量明显少于叶片。与中等质量的XR8005扁平风扇喷嘴相比,2005年用中等质量的XR8004扁平风扇喷嘴处理的下部叶片上发现的杀真菌剂残留量明显多。优质,中型和粗型平扇喷嘴之间在中冠层叶片上未发现杀真菌剂残留的差异。 2005年,双扇型喷嘴(Turbo Duo和TwinJet)在下部叶片上产生的杀真菌剂残留量最低。与其他所有处理相比,机械冠层开松器在中部叶片上产生的杀真菌剂残留量明显更高。使用JA3中空喷嘴的Jacto空气辅助喷雾器在2005年下层冠层叶片上产生的杀真菌剂残留量最高。2006年在植物组织上发现的杀真菌剂和杀虫剂残留量之间存在统计差异,因为变异量很大在样本数据中。总体而言,在2006年,较高容量的XR8004处理(187 L ha -1)和145 L ha -1的双风扇TTJ60-11003处理的效果类似于Jacto喷雾器在145 L ha -1下使用平板风扇的应用或空心锥形喷嘴。通常,对于常规的平板风扇和空气辅助应用而言,较高数量的应用会从树冠中部的叶子上产生大量的杀菌剂和杀虫剂残留物。喷雾量对下部冠层区域的叶片上残留物的影响较小。在使用相同喷洒量(145 L ha -1)的两年中,使用JA3中空锥形喷嘴的Jacto喷雾器比中等质量的XR8004扁平扇形喷嘴在中部冠层茎和下部冠层叶片上产生更多的杀菌剂残留。

著录项

  • 来源
    《Transactions of the ASABE》 |2008年第5期|p.1529-1537|共9页
  • 作者单位

    The authors are Richard C. Derksen, ASABE Member Engineer, Agricultural Engineer, and Heping Zhu, ASABE Member Engineer, Agricultural Engineer, USDA-ARS Application Technology Research Unit, Wooster, Ohio;

    H. Erdal Ozkan, ASABE Member Engineer, Professor, Department of Food, Biological, and Agricultural Engineering, The Ohio State University, Columbus, Ohio;

    Ronald B. Hammond, Professor and Entomologist, Department of Entomology, The Ohio State University, Wooster, Ohio;

    Anne E. Dorrance, Professor and Plant Pathologist, Department of Plant Pathology, The Ohio State University, Wooster, Ohio;

    and Alison L. Spongberg, Associate Professor, Department of Environmental Sciences, University of Toledo, Toledo, Ohio. Corresponding author: Richard C. Derksen, USDA-ARS, Agricultural Engineering Building, 1680 Madison Ave., Wooster, OH 44691;

    phone: 330-263-3869;

    fax: 330-263-3953;

    e-mail: rich.derksen@ars.usda.gov.;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Air-assist, Coverage, Deposit, Disease, Insect, Soybean, Spray;

    机译:空气辅助;覆盖率;沉积物;疾病;昆虫;大豆;喷雾;

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