Kusakari Shin-Ichi, Okada Kiyotsugu, Shibao Manabu, Toyoda Hideyoshi
Research Association of Electric Field Screen Supporters, Nara 631-8505, Japan.
Agricultural, Food and Environmental Sciences Research Center of Osaka Prefecture, Osaka 583-0862, Japan.
Insects. 2020 Jul 15;11(7):447. doi: 10.3390/insects11070447.
An electric field is the space surrounding an electric charge, within which it is capable of exerting a perceptible force on another electric charge. Especially under high voltage, electric fields induce various electrostatic phenomena, some of which could be utilized to provide remarkable pest control measures. The main focus of the present study was to introduce an attractive force generated by a surface charge on an insulated electrified conductor, which was successfully used to construct an electric field screen that prevented airborne nuisances (spores, flying insects, pollen, and fine smoke) from entering the interiors of various facilities. Another focus was the disinclination of insects to enter the electric field, thus, giving the electric field screen the ability to repel insects. Charges accumulated on the surfaces of non-insulated conductors are mobile through discharge, based on their potential difference. Such arc discharge was strong enough to destroy insects that were exposed to it. Some precedent illustrative examples are cited to explain the principles of attraction, dielectrophoretic movement of spores, and discharge-mediated positive electrification of insects, and to discuss how electric fields are generated and used in electric field-based pest control strategies.
电场是围绕电荷的空间,在该空间内电荷能够对另一个电荷施加可感知的力。特别是在高电压下,电场会引发各种静电现象,其中一些现象可被用于提供显著的害虫防治措施。本研究的主要重点是引入绝缘带电导体表面电荷产生的吸引力,该吸引力已成功用于构建电场屏障,以防止空气传播的 nuisance(孢子、飞虫、花粉和细烟雾)进入各种设施内部。另一个重点是昆虫不愿进入电场,因此,使电场屏障具备驱赶昆虫的能力。非绝缘导体表面积累的电荷会基于其电位差通过放电而移动。这种电弧放电强度足以杀死暴露在其中的昆虫。引用了一些先前的示例来说明吸引力、孢子的介电泳运动以及放电介导的昆虫正电原理,并讨论电场如何在基于电场的害虫防治策略中产生和应用。