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Agrochemical spray drift; assessment and mitigation—A review*

机译:农药喷雾漂移;评估和缓解–审查*

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摘要

During application of agrochemicals spray droplets can drift beyond the intended target to non-target receptors, including water, plants and animals. Factors affecting this spray drift include mode of application, droplet size, which can be modified by the nozzle types, formulation adjuvants, wind direction, wind speed, air stability, relative humidity, temperature and height of released spray relative to the crop canopy. The rate of fall of spray droplets depends upon the size of the droplets but is modified by entrainment in a mobile air mass and is also influenced by the rate of evaporation of the liquid constituting the aerosol. The longer the aerosol remains in the air before falling to the ground (or alternatively striking an object above ground) the greater the opportunity for it to be carried away from its intended target. In general, all size classes of droplets are capable of movement off target, but the smallest are likely to move the farthest before depositing on the ground or a non-target receptor. It is not possible to avoid spray drift completely but it can be minimized by using best-management practices. These include using appropriate nozzle types, shields, spray pressure, volumes per area sprayed, tractor speed and only spraying when climatic conditions are suitable. Field layout can also influence spray drift, whilst crop-free and spray-free buffer zones and windbreak crops can also have a mitigating effect. Various models are available to estimate the environmental exposure from spray drift at the time of application.
机译:在农药施用过程中,喷雾液滴可能会漂移超出预定目标,到达非目标受体,包括水,植物和动物。影响喷雾漂移的因素包括施用方式,液滴尺寸(可通过喷嘴类型,配方助剂,风向,风速,空气稳定性,相对湿度,温度和相对于农作物冠层释放的喷雾高度来修改)。喷雾液滴的下落速率取决于液滴的尺寸,但是通过夹带在可移动的空气质量中而改变,并且还受到构成气雾剂的液体的蒸发速率的影响。气溶胶在掉落到地面(或撞击地面之前的物体)之前在空气中停留的时间越长,将其带离目标的机会就越大。通常,所有大小的液滴都能够移动离开目标,但是最小的液滴可能会在沉积到地面或非目标受体上之前移动最远。不可能完全避免喷雾飘移,但可以通过最佳管理方法将其最小化。这些措施包括使用适当的喷嘴类型,防护罩,喷涂压力,每单位喷涂面积的体积,拖拉机速度以及仅在气候条件合适时才喷涂。田间布局也会影响喷雾飘移,而无作物和无喷雾的缓冲区和防风作物也可以起到缓解作用。可以使用各种模型来估算施工时喷雾漂移对环境的影响。

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