Matsuda Yoshinori, Shimizu Kunihiko, Sonoda Takahiro, Takikawa Yoshihiro
Laboratory of Phytoprotection Science and Technology, Faculty of Agriculture, Kindai University, Nara 631-8505, Japan.
Mikado Kyowa Seed, Co. Ltd., Chiba 267-0056, Japan.
Insects. 2020 Dec 3;11(12):861. doi: 10.3390/insects11120861.
An electrostatic apparatus was developed to control weeds and houseflies emerging from ground soil in a greenhouse simultaneously. Identical iron plates were placed in parallel at a defined interval and fixed in an iron frame. Two sets of fixed iron plates were used, one for weed control and one for fly control. For weed control, all of the iron plates were negatively charged, and negative charges accumulated on the plates were released to weed shoots through arc discharge. Houseflies were introduced into the space between the negatively charged and grounded plates, then subjected to arc discharge from the charged plates. Both plant shoots and adult houseflies are electrically conductive; thus, they were killed by discharge-exposure in the electric field between the charged iron plate and the ground soil, and between the charged and grounded plates, respectively. In practical use, these two devices were assembled as a two-level apparatus for simultaneous control of both targets. Several apparatuses were linked together, which increased the total electricity charge on the plates and produced a stronger discharge force sufficient to kill all targets. Thus, this study provides an electrostatics-based pest-control method for pesticide-independent greenhouse farming.
开发了一种静电装置,用于同时控制温室地面土壤中长出的杂草和家蝇。相同的铁板以规定的间隔平行放置,并固定在铁框架中。使用了两组固定铁板,一组用于除草,一组用于灭蝇。对于除草,所有铁板均带负电,铁板上积累的负电荷通过电弧放电释放到杂草嫩枝上。将家蝇引入带负电的铁板和接地铁板之间的空间,然后使其受到来自带电铁板的电弧放电。植物嫩枝和成年家蝇都具有导电性;因此,它们分别在带电铁板与地面土壤之间以及带电铁板与接地铁板之间的电场中因放电暴露而被杀死。在实际应用中,这两个装置组装成一个两级装置,用于同时控制两个目标。几个装置连接在一起,增加了铁板上的总电荷量,并产生了足以杀死所有目标的更强放电力。因此,本研究为不使用农药的温室种植提供了一种基于静电的害虫控制方法。