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Development of Silafluofen-Based Termiticides in Japan and Thailand

机译:在日本和泰国开发基于西拉氟芬的杀螨剂

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摘要

With the advancement from natural pyrethrins to synthetic pyrethroids, their applications have expanded from household insecticides for indoor use against sanitary pests to outdoor use for agriculture, forestry, animal health, termite control, and many other pest situations. However, high fish toxicity and development of pyrethroid resistance in some pests have been cited as common shortcomings of pyrethroids. To overcome these pyrethroid problems such as high fish toxicity, Katsuda and fellow scientists invented silafluofen by introducing a silicone atom into the pyrethroidal chemical structure in 1984. In addition to the high insecticidal activity and low mammalian toxicity, this compound features low fish toxicity, chemical stability under sunlight, in the soil and under alkaline environments. These features make silafluofen unique among pyrethroids. In Japan, silafluofen has been used as an agricultural insecticide for 15 years since 1995 for various plants, especially useful for paddy rice protection because of its low fish toxicity. Over the last 20 years, silafluofen-based termiticides including emulsifiable concentrate (EC) and oil formulations have been widely used in Japan for soil treatment and timber treatments. Additional silafluofen product lines include anti-termitic plastic sheets which are laid under buildings. In this paper, literature on the development of silafluofen and its use in Japan are reviewed. On the other hand, in Thailand, we proceeded with development works of silafluofen-based termiticides from 2005 by starting laboratory efficacy tests and field efficacy tests in Phuket. Both laboratory and field tests showed good efficacy as a soil termiticide, suggesting that the material will perform well for commercial use in high biological hazard environments such as Thailand and can be used in environments close to water where fish toxicity might be a concern with other pyrethroids.
机译:随着从天然除虫菊酯到合成拟除虫菊酯的发展,它们的应用已从用于室内对抗卫生害虫的家用杀虫剂扩展到农业,林业,动物健康,白蚁防治和许多其他害虫情况的室外使用。然而,鱼的高毒性和某些害虫对拟除虫菊酯的抗性发展被认为是拟除虫菊酯的常见缺点。为了克服这些拟除虫菊酯的问题,例如对鱼类的高毒性,胜田一郎和他的科学家于1984年通过在拟除虫菊酯的化学结构中引入硅原子来发明了氟来芬。该化合物除具有高杀虫活性和低哺乳动物毒性外,还具有低鱼类毒性,化学性质。在阳光下,土壤中和碱性环境下均具有稳定性。这些特性使西氟氟醚在拟除虫菊酯中独树一帜。自1995年以来,在日本,西氟氟醚已被用作农业杀虫剂达15年,用于各种植物,由于其对鱼类的低毒性而特别用于水稻保护。在过去的20年中,包括可乳化浓缩物(EC)和油配方在内的基于硅氟草醚的杀白蚁剂在日本已广泛用于土壤处理和木材处理。其他西拉氟芬产品线包括铺设在建筑物下方的防蚁塑料板。在本文中,综述了关于西拉氟芬的发展及其在日本的使用的文献。另一方面,在泰国,我们从普吉岛开始了实验室功效测试和现场功效测试,从2005年开始着手开发基于硅氟草醚的杀白蚁剂。实验室和现场试验均显示出作为土壤杀白蚁剂的良好功效,表明该材料在高度生物危害性环境(例如泰国)中具有良好的商业应用性能,并且可以在水质较近的环境中使用,而其他拟除虫菊酯可能会影响鱼类的毒性。

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