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Worldwide Asian longhorned beetle eradication: An example of biological applications of noncontact microwave and ultrasound radiation.

机译:全球范围内亚洲长角甲虫的消灭:非接触微波和超声波辐射在生物学上的应用实例。

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Destructive pests such as the Asian longhorned beetle (Anoplophora glabripennis Motsch.) (ALB) can be transported around the world via wooden packing materials used in pallets and crates, placing urban and forest resources at grave risk. A potential nondestructive technique to detect pest infestations in wooden packing materials is noncontact ultrasound technology. Noncontact ultrasound (100 kHz to 500 kHz) detection of living larvae in wood was found to be unfeasible due to inference of transmission by the tunnel air/wood interfaces in the wood. However, 100 kHz, 200 kHz, and 500 kHz ultrasound transmission through 1-in. thick wood samples of any orientation was possible. C-scan images (200 kHz) showed the location of holes drilled inside the wood and movement of a larva placed on top of the wood.; The use of microwave energy to treat these wooden packing materials in the source country before transport to eradicate wood-boring pests infesting these materials was also investigated. Destruction of pests infesting wooden packing materials is required by international guidelines. Eradication of cerambycid larval infestations in laboratory-size pine and poplar lumber less than 6-in. thick (volume of 216 in3) was shown to be feasible using 2.45 GHz microwave energy. Five minutes of 1100 W radiation produced 100% mortality of cottonwood borer and ALB infestations in red pine, eastern white pine, loblolly pine, and aspen samples with moisture contents ranging from 30% to 130% of dry weight. The parameters of importance for scale up to commercial size loads include wood moisture content and energy to wood volume ratios. Lethal doses of 2.45 GHz microwave energy increased as wood moisture content increased. The proposed optimal energy to volume ratio for up to 78% moisture content wood samples is 2,812.5 J/in3. Total insect mortality occurred for all three time/power combinations (1000 W for 3 minutes, 2000 W for 1.5 minutes, or 3000 W for 1 minute) tested. Industry standard lumber dimensions and loads must be tested to determine if this ratio is appropriate for commercial use. Energy cost in the United States of 21 to 36 cents per pallet was estimated for microwave treatment compared to 5 to 10 cents per pallet for conventional heat treatment. Actual U.S. costs to exporters for methyl bromide fumigated pallets ranged from {dollar}0.89 to {dollar}16 per pallet in 2003, whereas microwave operating costs to exporters are crudely estimated to be 58 to 94 cents per pallet. Commercial size microwave experiments must be conducted before these cost estimates can be refined.
机译:诸如亚洲长角甲虫( Anoplophora glabripennis Motsch。)(ALB)之类的破坏性害虫可通过用于货盘和板条箱的木质包装材料在世界范围内运输,使城市和森林资源面临严重风险。检测木质包装材料中有害生物侵扰的潜在非破坏性技术是非接触超声技术。由于通过木材中的隧道空气/木材界面进行传输推断,发现非接触式超声波(100 kHz至500 kHz)检测木材中的活幼虫是不可行的。但是,通过1英寸传输100 kHz,200 kHz和500 kHz超声。任何方向的厚木样品都是可能的。 C-扫描图像(200 kHz)显示了在木材内部钻出的孔的位置以及放在木材顶部的幼虫的运动。还研究了在运输之前使用微波能量在来源国处理这些木质包装材料,以消除侵害这些材料的枯木害虫。国际准则要求销毁侵害木质包装材料的害虫。实验室大小小于6英寸的松树和杨树木材中消除cerambycid幼虫侵扰。使用2.45 GHz微波能量,证明厚度为216英寸( 3 的体积)是可行的。五分钟的1100 W辐射在赤松,东部白松,火炬松和白杨样品中产生的白杨bore和ALB病害死亡率为100%,水分含量为干重的30%至130%。对于按比例放大到商业尺寸负载的重要参数包括木材的含水量和能量与木材的体积比。随着木材水分含量的增加,2.45 GHz微波能量的致死剂量增加。对于水分含量高达78%的木材样品,建议的最佳能量体积比为2,812.5 J / in 3 。测试的所有三种时间/功率组合(1000 W 3分钟,2000 W 1.5分钟或3000 W 1分钟)的总昆虫死亡率。必须测试行业标准的木材尺寸和负载,以确定该比率是否适合商业用途。在美国,微波处理的能源成本估计为每托盘21至36美分,而传统热处理的能源成本为每托盘5至10美分。在2003年,出口商实际对美国出口的甲基溴熏蒸托盘成本为每托盘0.89美元至16美元,而出口商的微波操作成本粗略估计为每托盘58至94美分。在改进这些成本估算之前,必须进行商业规模的微波实验。

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