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Control of Insect Pests and Diseases in an Ohio Fruit Farm with a Laser-guided Intelligent Sprayer

机译:用激光引导的智能喷雾器控制俄亥俄州果园虫害的控制

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Laser-guided variable-rate intelligent spray technology is designed to significantly reduce pesticide use with a positive impact on the environment. However, there have been no reports on applying this technology to commercial fruit farms. Comparative experiments of intelligent variable-rate and conventional constant-rate spray applications for pesticide use and pest control were conducted at a fruit farm in Ohio during two consecutive growing seasons. Apple (Malus pumila), peach (Prunus persica), blueberry (Vaccinium section Cyanococcus), and black raspberry (Rubus occidentalis) were used for the tests. Pest severity of codling moth (Cydia pomonella), oriental fruit moth (Grapholitha molesta), scab (Venturia inaequalis), and powdery mildew (Podosphaera leucotricha) in apple; oriental fruit moth, brown rot (Monilinia fructicola), and powdery mildew (Podosphaera pannosa) in peach; spotted wing drosophila (Drosophila suzukii), mummy berry (Monilinia vaccinii-corymbosi), and phomopsis (Phomopsis vaccinii) in blueberry; and anthracnose (Elsinoe veneta) in black raspberry were assessed. There was equal severity of pests between intelligent and conventional spray applications, whereas the intelligent spray reduced pesticide use by 58.7%, 30.6%, 47.9%, and 52.5% on average for apple, peach, blueberry, and black raspberry, respectively. These results illustrate that intelligent spray technology is more environmentally friendly than conventional standard spray technology and equally or more effective for control of insect and disease pests in fruit production.
机译:激光引导的可变速率智能喷涂技术旨在显着减少对环境的积极影响的农药应用。但是,没有关于将该技术应用于商业果实农场的报告。在连续两个生长的季节,在俄亥俄州的水果农场进行智能变速率和常规恒定速率喷涂应用的比较实验。 Apple(Malus Pumila),桃(Prunus Persica),蓝莓(疫苗段氰基菌)和黑覆盆子(Rubus occidentalis)用于测试。 Codling Moth(Cydia Pomonella),东方果蝇(Grapholitha Molesta),Scab(Venturia Inaequalis)和苹果白粉(Podosphaera Leucotricha)的害虫剧情;东方果蝇,棕色腐烂(Monilinia Fructicola)和桃子霉(Podosphaera pandosa);斑点的翅膀果蝇(果树岛),妈咪浆果(Moniliniavaccinii-corymbosi),和蓝莓中的Phomopsis(Phomopsis vaccinii);评估黑覆盆子中的炭疽病(Elsinoe veneta)。智能和常规喷涂应用之间的害虫之间存在平等严重程度,而智能喷雾剂分别将农药降低58.7%,30.6%,47.9%,平均水平,苹果,桃,蓝莓和黑覆盆子平均为52.5%。这些结果说明了智能喷涂技术比传统的标准喷雾技术更环保,同等或更有效地控制果实生产中的昆虫和疾病害虫。

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