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               <dc:title>(E)-Anethole microspheres as an alternative insecticide in funnel traps</dc:title>
               <dc:creator>Pascual-Villalobos, M.J.</dc:creator>
               <dc:creator>Castañé, C.</dc:creator>
               <dc:creator>Martín, F.</dc:creator>
               <dc:creator>López, M.D.</dc:creator>
               <dc:creator>Guirao, P.</dc:creator>
               <dc:creator>Riudavets, J.</dc:creator>
               <dc:contributor>Producció Vegetal</dc:contributor>
               <dc:contributor>Protecció Vegetal Sostenible</dc:contributor>
               <dc:description>Pyrethroids are the insecticides most commonly used inside traps, and the lack of alternatives poses the risk of pests developing resistance. In this paper we present two (E)-anethole formulations (spray drying (SD) and oil emulsion entrapment (OEE) processes) that provide a controlled release of their bioactive ingredient in the vapour phase with insecticidal potential in funnel traps.&#xd;
An experiment with the two pyralid moths Ephestia kuehniella Zeller and Plodia interpunctella Hübner was set up at two pilot stores in Spain for a four-month period. The microspheres (4 g of SD powder/trap or 6 g of OEE beads/trap) remained effective for 100 days, killing the moths by volatile activity. The efficacy values were within the interval of 70–100% for the first half of the experiment, with a decrease afterwards. The OEE beads performed better than did SD powder in the long run: over 80% efficacy for the whole experiment. The OEE process gives more loading capacity (19.7 g of (E)-anethole per 100 g of beads) and entrapment efficiency (28.6 g of (E)-anethole encapsulated per 100 g of (E)-anethole added) and is slower in releasing the product.&#xd;
In a laboratory study for E. kuehniella, the LC50 was 58.2 mg/L for SD after 24 h exposure to vapours and 111.6 mg/L for OEE after 48 h exposure to vapours. Therefore, the SD powder provides a quicker release of the bioactive ingredient.&#xd;
The results indicate that encapsulated (E)-anethole could be a promising insecticide for mass trapping, mating disruption and attract and kill strategies.</dc:description>
               <dc:date>2025-10-22T11:26:24Z</dc:date>
               <dc:date>2025-10-22T11:26:24Z</dc:date>
               <dc:date>2021-08-07</dc:date>
               <dc:type>info:eu-repo/semantics/article</dc:type>
               <dc:identifier>Pascual-Villalobos, M.J., C. Castañé, F. Martín, M.D. López, P. Guirao, and J. Riudavets. 2021. "(E)-Anethole Microspheres As An Alternative Insecticide In Funnel Traps". Journal Of Stored Products Research 93: 101862. doi:10.1016/j.jspr.2021.101862.</dc:identifier>
               <dc:identifier>0022-474X</dc:identifier>
               <dc:identifier>http://hdl.handle.net/20.500.12327/1417</dc:identifier>
               <dc:identifier>https://doi.org/10.1016/j.jspr.2021.101862</dc:identifier>
               <dc:language>eng</dc:language>
               <dc:relation>Journal of Stored Products Research</dc:relation>
               <dc:relation>MICIU-AEI/Programa Estatal de I+D+I orientada a los retos de la sociedad/RTA2017-00022-00-00/ES/Optimización de nanoemulsiones de insecticidas de origen botánico/</dc:relation>
               <dc:relation>INIA-FEDER-AEI/Programa Estatal de I+D+I orientada a los retos de la sociedad/RTI2018-095526-R-I00/ES/GESTION INTEGRADA DE PLAGAS BASADA EN EL CONTROL BIOLOGICO EN GRANO ALMACENADO/</dc:relation>
               <dc:rights>http://creativecommons.org/licenses/by-nc-nd/4.0/</dc:rights>
               <dc:rights>info:eu-repo/semantics/openAccess</dc:rights>
               <dc:rights>Attribution-NonCommercial-NoDerivatives 4.0 International</dc:rights>
               <dc:publisher>Elsevier</dc:publisher>
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