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Electrocution and containment methods to reduce the activity of red palm weevil (Rhynchophorus ferrugineus, Ol.)

机译:减少红棕榈叶虫(Rhynchophorus Ferrugineus,OL)的活性和遏制方法

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摘要

Aim of study: To evaluate the susceptibility of the Rhynchophorus ferrugineus to electric discharges, to eventually use this application in synergy with other methods as part of an integrated control strategy.Area of study: Worldwide.Material and methods: Three different electric voltage intensities were applied to R. ferrugineus to investigate the insect’s susceptibility in both adult and larval stages. The transmission and diffusion of electricity within a portion of the palm tree was tested. In addition, the suitability of containment materials for handling and transportation of plant residues was tested.Main results: The results of adult test showed that the total number of eggs laid per mating couple and the number of larvae born were about 1.5 times higher in the control compared to the electrified samples. The duration of the electric discharge on larvae had a small impact on the mortality rate, while the electric voltage showed a strong impact on mortality (87% for 10 V and 99% for 15 V). The presence of a significant electric current was observed in a viable portion of stem (distance from the source of electricity 10 cm) providing a direct current with 250 V tension. Among the materials tested for the transportation of palm residues, the aluminium net sheet showed the best results in the containment of both larval and adult individuals.Research highlights: Electrocution has proven to be a system which can help in the control of red palm weevil reducing the use of synthetic chemicals.
机译:研究的目的:为了评估rhynchophorus ferrugineus对电力放电的易感性,最终将此应用在协同作用中,作为综合控制策略的一部分。研究:全球和方法:三种不同的电压强度:三种不同的电压强度应用于R.Ferrugineus,以研究成人和幼虫阶段的昆虫的敏感性。测试了棕榈树的一部分内的电力的传输和扩散。此外,测试了用于处理和运输植物残留物的遏制材料的适用性。结果:成人试验结果表明,每个配合夫妇的鸡蛋总数和幼虫的数量较高约1.5倍与电气化样品相比的控制。幼虫放电的持续时间对死亡率的影响很小,而电压对死亡率产生强烈影响(87%10 V和99%,持续15V)。在阀杆的可行部分(距电气源10cm)的可行部分中观察到显着电流的存在,其提供具有250V张力的直流电。在测试棕榈残留物的运输的材料中,铝网在幼虫和成人个体中展示了最佳效果。研究亮点:电刑已被证明是一种可以帮助控制红棕榈韦维尔减少的系统使用合成化学品。

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