Pesticide drift from aircraft applications with conical nozzles and electrostatic system

ABSTRACT: Despite all advances obtained with the pesticide use worldwide and in Brazilian agriculture, there is still a lack of technologies for agricultural aircrafts. The objective of this study was to evaluate the drift produced by the use of conical nozzles and electrostatic system in aircraft a...

Full description

Bibliographic Details
Published in:Ciência Rural
Main Authors: Alfran Tellechea Martini, Luis Antonio de Avila, Edinalvo Rabaioli Camargo, Diogo Balbé Helgueira, Marlon Ouriques Bastiani, Alci Enimar Loeck
Format: Article
Language:English
Published: Universidade Federal de Santa Maria 2016-09-01
Subjects:
Online Access:http://www.scielo.br/scielo.php?script=sci_arttext&pid=S0103-84782016000901678&lng=en&tlng=en
_version_ 1852794683674066944
author Alfran Tellechea Martini
Luis Antonio de Avila
Edinalvo Rabaioli Camargo
Diogo Balbé Helgueira
Marlon Ouriques Bastiani
Alci Enimar Loeck
author_facet Alfran Tellechea Martini
Luis Antonio de Avila
Edinalvo Rabaioli Camargo
Diogo Balbé Helgueira
Marlon Ouriques Bastiani
Alci Enimar Loeck
author_sort Alfran Tellechea Martini
collection DOAJ
container_title Ciência Rural
description ABSTRACT: Despite all advances obtained with the pesticide use worldwide and in Brazilian agriculture, there is still a lack of technologies for agricultural aircrafts. The objective of this study was to evaluate the drift produced by the use of conical nozzles and electrostatic system in aircraft application. The experimental design was completely randomized with a factorial arrangement and four replications. Treatments included two spraying equipment: electrostatic system with 5L ha-1 of spray volume and conical nozzle with 15 and 20L ha-1. In all treatments, azoxystrobin fungicide was used at a dose of 100g a.i. ha-1 and paraffinic mineral oil at a dose of 0.5% v.v. Volume median diameter (VMD) and droplet density were estimated using water sensitive paper. Evaluations of drift distance were performed with glass collectors distributed horizontally on the soil surface, 50m before the application band, at the application site and 12,5, 25, 50, 75, 100, 150, 200 and 300m after the application site, along the wind direction. Azoxystrobin concentration in glasses were quantified by UHPLC-MS/MS. Results indicated that the drift distance can reach more than 300 meters away from the application site, with variable concentrations according to the equipment used. Electrostatic system reduced drift when compared to hydraulic conical nozzles.
format Article
id doaj-art-ffaab05b4e8b42a9a8ccaba7c040ceac
institution Directory of Open Access Journals
issn 1678-4596
language English
publishDate 2016-09-01
publisher Universidade Federal de Santa Maria
record_format Article
spelling doaj-art-ffaab05b4e8b42a9a8ccaba7c040ceac2025-08-19T20:42:32ZengUniversidade Federal de Santa MariaCiência Rural1678-45962016-09-014691678168210.1590/0103-8478cr20151386S0103-84782016000901678Pesticide drift from aircraft applications with conical nozzles and electrostatic systemAlfran Tellechea MartiniLuis Antonio de AvilaEdinalvo Rabaioli CamargoDiogo Balbé HelgueiraMarlon Ouriques BastianiAlci Enimar LoeckABSTRACT: Despite all advances obtained with the pesticide use worldwide and in Brazilian agriculture, there is still a lack of technologies for agricultural aircrafts. The objective of this study was to evaluate the drift produced by the use of conical nozzles and electrostatic system in aircraft application. The experimental design was completely randomized with a factorial arrangement and four replications. Treatments included two spraying equipment: electrostatic system with 5L ha-1 of spray volume and conical nozzle with 15 and 20L ha-1. In all treatments, azoxystrobin fungicide was used at a dose of 100g a.i. ha-1 and paraffinic mineral oil at a dose of 0.5% v.v. Volume median diameter (VMD) and droplet density were estimated using water sensitive paper. Evaluations of drift distance were performed with glass collectors distributed horizontally on the soil surface, 50m before the application band, at the application site and 12,5, 25, 50, 75, 100, 150, 200 and 300m after the application site, along the wind direction. Azoxystrobin concentration in glasses were quantified by UHPLC-MS/MS. Results indicated that the drift distance can reach more than 300 meters away from the application site, with variable concentrations according to the equipment used. Electrostatic system reduced drift when compared to hydraulic conical nozzles.http://www.scielo.br/scielo.php?script=sci_arttext&pid=S0103-84782016000901678&lng=en&tlng=entecnologia de aplicaçãoaviação agrícolapulverização eletrostáticaespectro de gotascoletores
spellingShingle Alfran Tellechea Martini
Luis Antonio de Avila
Edinalvo Rabaioli Camargo
Diogo Balbé Helgueira
Marlon Ouriques Bastiani
Alci Enimar Loeck
Pesticide drift from aircraft applications with conical nozzles and electrostatic system
tecnologia de aplicação
aviação agrícola
pulverização eletrostática
espectro de gotas
coletores
title Pesticide drift from aircraft applications with conical nozzles and electrostatic system
title_full Pesticide drift from aircraft applications with conical nozzles and electrostatic system
title_fullStr Pesticide drift from aircraft applications with conical nozzles and electrostatic system
title_full_unstemmed Pesticide drift from aircraft applications with conical nozzles and electrostatic system
title_short Pesticide drift from aircraft applications with conical nozzles and electrostatic system
title_sort pesticide drift from aircraft applications with conical nozzles and electrostatic system
topic tecnologia de aplicação
aviação agrícola
pulverização eletrostática
espectro de gotas
coletores
url http://www.scielo.br/scielo.php?script=sci_arttext&pid=S0103-84782016000901678&lng=en&tlng=en
work_keys_str_mv AT alfrantellecheamartini pesticidedriftfromaircraftapplicationswithconicalnozzlesandelectrostaticsystem
AT luisantoniodeavila pesticidedriftfromaircraftapplicationswithconicalnozzlesandelectrostaticsystem
AT edinalvorabaiolicamargo pesticidedriftfromaircraftapplicationswithconicalnozzlesandelectrostaticsystem
AT diogobalbehelgueira pesticidedriftfromaircraftapplicationswithconicalnozzlesandelectrostaticsystem
AT marlonouriquesbastiani pesticidedriftfromaircraftapplicationswithconicalnozzlesandelectrostaticsystem
AT alcienimarloeck pesticidedriftfromaircraftapplicationswithconicalnozzlesandelectrostaticsystem