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首页> 外文期刊>Journal of Economic Entomology >Spatial Pattern in Aerosol Insecticide Deposition Inside a Flour Mill
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Spatial Pattern in Aerosol Insecticide Deposition Inside a Flour Mill

机译:面粉厂内气雾杀虫剂沉积的空间格局

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Aerosol insecticides are commonly used for management of stored-product pests inside food facilities, but the physical complexity of the interior of most food facilities may influence the dispersal and deposition of droplets and create spatial variation in dosage. The spatial pattern in aerosol deposition was evaluated inside a flour mill using a high density grid of bioassay insects. Three insecticides, Aerotech with NyGuard and Pyrocide 100+Diacon II, both pyrethrin and insect growth regulator combinations, and Vap20, an organophosphate, were evaluated at normal (27℃) and high (40℃) target temperatures. Using a newly developed efficacy index, there was spatial pattern to aerosol deposition detected for the pyrethrin insecticides and the pattern differed between aerosols and temperatures. Walls and corners, especially behind the direction of application, were especially vulnerable to zones of lower efficacy, and open areas in center of the room tended to have the highest efficacy. The organophosphate insecticide provided complete efficacy at all bioassay dish locations, probably due in part to its vapor toxicity. Using boxes 1 m in depth and 5, 10, or 20 cm in height and open on only one end, it was shown that aerosol dispersal under horizontal surfaces could be impacted by gap height, aerosol, and temperature. These results show the potential for spatial variation in aerosol efficacy within a food facility and identify locations with the potential to receive a lower insecticide dosage. To increase overall efficacy, these locations may be targeted for additional interventions to provide more uniform pest population suppression.
机译:气雾杀虫剂通常用于处理食品设施内部的储藏产品害虫,但是大多数食品设施内部的物理复杂性可能会影响液滴的散布和沉积,并造成剂量的空间变化。使用生物测定昆虫的高密度网格,在面粉厂内评估气溶胶沉积的空间格局。在正常(27℃)和高温(40℃)目标温度下,评估了三种杀虫剂:Aerotech with NyGuard和Pyrocide 100 + Diacon II(除虫菊酯和昆虫生长调节剂的组合)以及Vap20(一种有机磷酸盐)。使用最新开发的功效指数,发现了除虫菊酯杀虫剂的气溶胶沉积空间格局,且气溶胶和温度之间的格局有所不同。墙壁和角落,尤其是在施药方向的后面,尤其容易受到较低功效区域的伤害,并且房间中央的开放区域往往具有最高功效。有机磷酸盐杀虫剂在所有生物测定皿的位置均具有完全的功效,这可能部分是由于其蒸气毒性。使用深度为1 m,高度为5、10或20 cm且仅在一端开放的盒子,表明水平高度下的气溶胶散布会受到间隙高度,气溶胶和温度的影响。这些结果显示了食品设施内气溶胶功效的空间变化潜力,并确定了可能接受较低杀虫剂量的场所。为了提高整体功效,可以将这些位置作为其他干预措施的目标,以提供更统一的害虫种群抑制。

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