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A newly devised electric field screen for avoidance and capture of cigarette beetles and vinegar flies.

机译:一种新设计的电场屏蔽,用于避免和捕获香烟甲虫和醋蝇。

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摘要

A bifunctional electric field screen was proposed to physically exclude insect pests from warehouses. The screen consists of insulated iron wires (ICW) arranged in parallel and two earthed conductor nets placed on both sides of the ICW. A negative charge (0.1-8.0 kV) was applied to the insulated wires with a voltage generator to polarize an insulator sleeve used to cover the wire, negatively on the outer surface and positively on the inner conductor wire surface of the sleeve. The negative surface charge of the ICW caused an electrostatic induction in the earthed nets and an opposite charge on the net surfaces facing the ICW. An electric field formed in a space between the ICW and the earthed net, and the field strength increased in direct proportion to increasing voltages applied to the ICW. Adults of the test insects (cigarette beetle (Lasioderma serricorne) and vinegar fly (Drosophila melanogaster)) reaching the outer surface of the earthed net were deterred from entering the inside of the charged screen, whereas all insects immediately passed through the screen when the ICW was not charged. This avoidance was directly proportional to the increase in the voltage. In addition, the capability of the screen to capture insects that enter inside the screen was proven by introducing insects into the space between the ICW and the earthed net. Strong capture was observed when the ICW was negatively charged with more than 4.1 kV, under which conditions a short-term electric current (peaking at 0.3-0.6 micro A, for 3 min) occurred transiently. This electric current was due to the release of electricity from the insects, giving a net overall positive charge to the insects, which therefore were attracted more strongly to the negatively charged ICW. A test using an attractant-set chamber showed that the insects were completely prevented from passing through the charged screen, in contrast to a rapid transfer of all insects when the screen was not charged. Thus, the present results show that the described screen is a promising physical tool for controlling insect pests in warehouses.Digital Object Identifier http://dx.doi.org/10.1016/j.cropro.2010.09.001
机译:提出了一种双功能电场屏蔽器,以从仓库中物理排除害虫。屏蔽层由平行排列的绝缘铁丝(ICW)和位于ICW两侧的两个接地导体网组成。用电压发生器将负电荷(0.1-8.0 kV)施加到绝缘电线上,使用于覆盖电线的绝缘套极化,使其在外套的外表面上带负电,在外套的内导体表面上带正电。 ICW的负表面电荷在接地网中引起静电感应,而在面对ICW的网表面上产生相反的电荷。电场在ICW和接地网之间的空间中形成,并且场强与施加到ICW的电压增加成正比。阻止了到达接地网外表面的测试昆虫(香烟甲虫( Lasioderma serricorne )和醋蝇( Drosophila melanogaster ))的成虫进入其内部。带电的筛网,而当ICW不带电时,所有昆虫立即穿过筛网。这种避免与电压的增加成正比。另外,通过将昆虫引入到ICW和接地网之间的空间中,证明了屏障能够捕获进入屏障内部的昆虫。当ICW的负电荷超过4.1 kV时,观察到强烈的捕获,在这种情况下,短暂的电流(在0.3-0.6 micro A,3分钟达到峰值)瞬间发生。该电流是由于昆虫释放出的电所致,从而使昆虫产生了净的总正电荷,因此这些昆虫被带负电荷的ICW所吸引的程度更大。使用引诱剂固定室进行的测试表明,完全阻止了昆虫穿过带电的筛网,而在不带筛网的情况下,所有昆虫都迅速转移。因此,目前的结果表明,所描述的屏幕是用于控制仓库中害虫的有前途的物理工具。数字对象标识符http://dx.doi.org/10.1016/j.cropro.2010.09.001

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