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Electrohydrodynamic mortality of insects: a plausible mechanism.

机译:昆虫的电流体动力学死亡率:一个合理的机制。

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摘要

An electrohydrodynamic (EHD) system which generated air ions within a strong electric field, was used to study mortalities of pupae, larvae, and adults of Tribolium confusum (TC) and larvae of Plodia interpunctella (PI). The treatments included a neutral air stream, negative ions, positive ions, and the air stream superimposed with ions of either polarity. The negative ions caused the maximum mortality in TC pupae and PI larvae whereas the TC adults were least affected, but the negative ion flux was higher than the positive one at the constant high voltage of the power supply used. The differences in the mean mortalities of the treatment groups were highly significant (P<0.0001). Mortality was primarily attributed to the body fluid losses caused by the electric wind of the EHD system. Mortality and weight loss relationships were linear with negative slopes (r2 = 0.52, and r2 = 0.98 for TC and PI, respectively). The superimposition of the air stream with either positive or negative ion fluxes increased the survival fractions compared with those of the ion fluxes alone.
机译:使用电动流体动力学(EHD)系统在强电场中产生空气离子,来研究con虫,幼虫和成虫Tri虫(TC)和间日P(PI)幼虫的死亡率。处理包括中性空气流,负离子,正离子,以及空气流中叠加有任一极性离子的处理。负离子在TC幼虫和PI幼虫中造成最大的死亡率,而TC成虫受的影响最小,但是在使用恒定的高电压电源时,负离子通量高于正离子。治疗组的平均死亡率差异非常显着(P <0.0001)。死亡率主要归因于EHD系统的电风引起的体液损失。死亡率和体重减轻关系呈线性,且具有负斜率(TC和PI分别为r2 = 0.52和r2 = 0.98)。与单独的离子通量相比,空气流与正离子流或负离子流的叠加均增加了存活率。

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