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Delivery of Chemical and Microbial Pesticides through Drip Irrigation Systems

机译:通过滴灌系统输送化学和微生物农药

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摘要

Applying pesticides uniformly to the target area with drip irrigation systems is essential for achieving effectiveness of efficient insect or disease control and for the sustainability of a safe environment. The uniformity and recovery rate of water-soluble and insoluble materials of chemical and microbial pesticides with different physical properties discharged from emitters throughout driplines was evaluated. The materials were a water-soluble fluorescent tracer (BSF), a flowable water-dispersible insecticide (Imidacloprid), a suspendible microbial entomopathogenic fungus (EPF), a suspendible microbial soil fungicide (SF), and microbial entomopathogenic nematodes. Treatments also included three different flow capacities of emitters with nominally rated flow capacities of 1.9, 3.8, and 7.6 L h -1 , respectively. Although all materials were readily deliverable through the drip irrigation system, the uniformity of the materials discharged varied with the material formulations and emitter flow capacity. For all emitter flow capacities, BSF had the lowest coefficient of variation, followed by nematodes, Imidacloprid, SF, and EPF. Conversely, the recovery rate of the five materials was in the reverse order. Emitter flow capacity affected the recovery rates of Imidacloprid and SF discharged from the emitters, but not of BSF, EPF and nematodes. Drip irrigation was demonstrated as a viable alternative for application of water-soluble and insoluble materials; however, the discharge rates of EPF and SF must first be determined to compensate for their non-uniformity of delivery and low recovery rates from emitters
机译:使用滴灌系统将农药均匀地喷洒到目标区域对于实现有效的昆虫或疾病控制效果以及维持安全环境至关重要。评价了在整个滴水线上从发射器排放的具有不同物理特性的化学和微生物农药的水溶性和非水溶性材料的均匀性和回收率。这些材料是水溶性荧光示踪剂(BSF),可流动的水分散性杀虫剂(吡虫啉),可悬浮的微生物昆虫病原真菌(EPF),可悬浮的微生物土壤杀真菌剂(SF)和微生物昆虫病原线虫。处理方法还包括三种不同的发射器流量,名义上的额定流量分别为1.9、3.8和7.6 L h -1 。尽管所有物料均可通过滴灌系统轻松输送,但排放物料的均匀性随物料配方和发射器流量的变化而变化。对于所有发射器流量,BSF的变异系数最低,其次是线虫,吡虫啉,SF和EPF。相反,五种材料的回收率却相反。发射器的流量影响从发射器排出的吡虫啉和SF的回收率,但不影响BSF,EPF和线虫的回收率。滴灌被证明是施用水溶性和不溶性材料的可行替代方法。但是,必须首先确定EPF和SF的排放率,以补偿它们的不均匀输送和排放源的低回收率。

著录项

  • 来源
    《Applied Engineering in Agriculture》 |2009年第6期|p.883-893|共11页
  • 作者单位

    Xiaochan Wang, Visiting Scientist of USDA-ARS Application Technology Research Unit (ATRU), Wooster, Ohio, and Associate Professor of Nanjing Agricultural University, China;

    Heping Zhu, ASABE Member Engineer, Agricultural Engineer, Michael E. Reding, Research Entomologist, James C. Locke, Research Plant Pathologist, USDA-ARS Application Technology Research Unit (ATRU), Wooster, Ohio;

    Jarrod E. Leland, Senior Research Scientist, Novozymes Biologicals, Inc., Salem, Virginia;

    Richard C. Derksen, ASABE Member Engineer, Agricultural Engineer, USDA-ARS Application Technology Research Unit (ATRU), Wooster, Ohio;

    Alison L. Spongberg, Professor, Department of Environmental Sciences, The University of Toledo, Toledo, Ohio;

    and Charles R. Krause, Research Plant Pathologist, USDA-ARS Application Technology Research Unit (ATRU), Wooster, Ohio. Corresponding author: Heping Zhu, USDA-ARS, Application Technology Research Unit, Agric. Eng. Bldg., OARDC, 1680 Madison Ave., Wooster, OH 44691;

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

    Chemigation; Distribution uniformity; Entomopathogenic fungus; Entomopathogenic nematodes; Microbial fungicide; Micro irrigation; Pest control agent;

    机译:化学化;分布均匀性;病原性真菌;昆虫病原线虫;微生物杀菌剂;微灌;害虫防治剂;

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