Articles
Starwars: the use of lasers for indoor pest control
Article number
1426_64
Pages
463 – 470
Language
English
Abstract
Small in-flying pest insects, such as thrips are main virus vectors constituting as key problem in greenhouse horticulture.
This especially in view of the required pesticide reductions and the fact that viral diseases cannot be treated curatively at all.
The use of insect gauze is not effective against these small insects, obstructing ventilation and is difficult to keep clean.
Therefore, we explored using lasers as part of an integrated pest management system using thrips as a pest model.
Looking at different lenses and laser parameters such as exposure, emission spectrum, light path, and power output, we created a fibre laser screen covering the greenhouse ventilation ducts.
We then determined lethal dosages enabling us to kill thrips at 0.025 s, without obstructing airflow and without harm to plants.
Comparing absorption spectra, such a laser may also be successful against other small insects like whiteflies.
When implemented as a plant scanning system, eliminating trips in a targeted manner, it was shown in a preliminary trial that the laser could even destroy thrips on the underside of a plant leaf without any visible damage to the plant unless plants were exposed for a period longer than 2 s.
Energy consumption comprised a maximum of 450 W, comparable to half a Senseo coffee machine.
These results show that a laser system is a promising tool for achieving sustainable crop protection in greenhouses with a minimum to no pesticide use at all and without impact on the greenhouse climate.
This especially in view of the required pesticide reductions and the fact that viral diseases cannot be treated curatively at all.
The use of insect gauze is not effective against these small insects, obstructing ventilation and is difficult to keep clean.
Therefore, we explored using lasers as part of an integrated pest management system using thrips as a pest model.
Looking at different lenses and laser parameters such as exposure, emission spectrum, light path, and power output, we created a fibre laser screen covering the greenhouse ventilation ducts.
We then determined lethal dosages enabling us to kill thrips at 0.025 s, without obstructing airflow and without harm to plants.
Comparing absorption spectra, such a laser may also be successful against other small insects like whiteflies.
When implemented as a plant scanning system, eliminating trips in a targeted manner, it was shown in a preliminary trial that the laser could even destroy thrips on the underside of a plant leaf without any visible damage to the plant unless plants were exposed for a period longer than 2 s.
Energy consumption comprised a maximum of 450 W, comparable to half a Senseo coffee machine.
These results show that a laser system is a promising tool for achieving sustainable crop protection in greenhouses with a minimum to no pesticide use at all and without impact on the greenhouse climate.
Publication
Authors
E.J. Hernández-Olesinski, J. Perez-Rodriguez, E. Kroon, J. Peller, M. Sytsma, I. Tsafarars, K.A. Leiss
Keywords
greenhouse horticulture, pest control, lasers, Echinotrips americanus, Frankliniella occidentalis, Capsicum annuum
Groups involved
- Division Precision Horticulture and Engineering
- Division Greenhouse and Indoor Production Horticulture
- Working Group Nettings in Horticulture (subgroup of Protected Cultivation in Mild Winter Climates)
- Working Group Light in Horticulture
- Working Group Organic Greenhouse Horticulture
- Working Group Vegetable Grafting
- Working Group Modelling Plant Growth, Environmental Control, Greenhouse Environment
- Working Group Protected Cultivation, Nettings and Screens for Mild Climates
- Working Group Computational Fluid Dynamics in Agriculture
- Working Group Design and Automation in Integrated Indoor Production Systems
- Working Group Mechanization, Digitization, Sensing and Robotics
- Working Group Greenhouse Environment and Climate Control
- Division Landscape and Urban Horticulture
- Commission Agroecology and Organic Farming Systems
- Division Vegetables, Roots and Tubers
- Working Group Vertical Farming
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