流化床热处理技术用于控制稻种上的小粒螟(Rhyzopertha dominica)和锯齿甲虫(Oryzaephilus surinamensis)。Khao Dawk Mali 105

Kunlayaa Boonsa-nga, Damorn Bundhurat, Viboon Changrue, Y. Chanbang
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摘要

利用实验室热流化床设备研究了流化床加热对控制糙米上储藏产品虫害的功效,随后还对大米的碾米质量进行了检测。糙米品种糙米品种 Khao Dawk Mali 105(13% wb)受到昆虫的侵扰,用 FDB 对其进行了处理。小谷螟(Rhyzopertha dominica,Fabricius)(内食性)比锯齿谷甲虫(Oryzaephilus surinamensis Linnaeus,外食性)对热的耐受性更高。在 55 摄氏度、3.7 米/秒的热空气速度下持续 90 秒,经 FDB 处理的小谷螟的死亡率在各阶段之间以及与未处理的对照组之间存在显著差异(P <0.05)。髓部阶段作为小谷螟耐受 FDB 的阶段,用 55-65°C 的温度处理 60-150 秒,55°C 150 秒、60°C 90 秒和 65°C 60 秒的 FDB 热处理导致 100%死亡。在 3.7 米/秒的热风速度下,温度为 40°C 120 秒,锯齿谷蠹的死亡率在各阶段与未处理的对照组之间存在显著差异(P <0.05)。卵期作为耐受 FDB 的阶段,在 40-50°C 条件下处理 60-150 秒,45°C 150 秒和 50°C 60 秒的 FDB 热处理导致 100%死亡。暴露于FDB后存活下来的一些成虫能够繁殖,但后代数量明显少于未处理的对照组。加热FDB对稻米的物理和化学性质略有影响。关键词热量 流化床热量 稻谷 贮藏害虫
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fluidized Bed Heat Treatment for Controlling the Lesser Grain Borer (Rhyzopertha dominica) and Sawtoothed Grain Beetle (Oryzaephilus surinamensis) on Paddy cv. Khao Dawk Mali 105
The efficacy of fluidized bed (FDB) heating was studied for controlling stored product insects on rough rice using laboratorial heat-fluidized bed equipment, and the milling quality of rice was later examined. Rough rice cv. Khao Dawk Mali 105 (13% wb) infested with insects was treated with FDB. The lesser grain borer (Rhyzopertha dominica, Fabricius) (internal feeders) had a higher tolerance for heat than the sawtoothed grain beetle (Oryzaephilus surinamensis Linnaeus, external feeders). At a hot air velocity of 3.7 m/s at 55°C for 90 s, the mortality of the lesser grain borer treated by FDB significantly differed (P <0.05) between all stages and from the untreated control. The pulpal stage, as an FDB-tolerant stage of the lesser grain borer, was treated with 55–65 °C for 60–150 s. FDB heat treatment at 55°C for 150 s, 60°C for 90 s, and 65°C for 60 s caused 100% mortality. At a hot air velocity of 3.7 m/s at 40°C for 120 s, the mortality of the sawtoothed grain beetle significantly differed (P <0.05) between all stages and the untreated control. The egg stage, as the FDB-tolerant stage, was treated at 40–50 °C for 60–150 s. FDB heat treatment at 45°C for 150 s and 50°C for 60 s caused 100% mortality. Some of the adults that survived FDB exposure were able to reproduce, but there were significantly less progeny than in the untreated control. Heat FDB slightly affected rice quality in terms of physical and chemical properties. Keywords: Heat, Fluidized bed heat, Paddy, Stored insect pests
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