Evaporation time of droplets containing thiamethoxam and adjuvants sprayed on sugarcane leaves

The spread and evaporation time of droplets deposited on the target affect the application efficiency of pesticides. This study aimed at evaluating the evaporation time of droplets with different sizes, under different levels of relative air humidity, containing thiamethoxam and adjuvants sprayed on...

Full description

Bibliographic Details
Main Authors: João Paulo Arantes Rodrigues da Cunha, Olinto Lasmar, Arthur Magri Pereira Ramos, Guilherme Sousa Alves
Format: Article
Language:English
Published: Universidade Federal de Goiás 2016-03-01
Series:Pesquisa Agropecuária Tropical
Subjects:
Online Access:https://www.revistas.ufg.br/pat/article/view/38499/20567
id doaj-7352358519bc4fb9a2ebeef550910f0d
record_format Article
spelling doaj-7352358519bc4fb9a2ebeef550910f0d2020-11-25T01:56:36ZengUniversidade Federal de Goiás Pesquisa Agropecuária Tropical1983-40632016-03-014611810.1590/1983-40632016v4638499Evaporation time of droplets containing thiamethoxam and adjuvants sprayed on sugarcane leavesJoão Paulo Arantes Rodrigues da Cunha0Olinto Lasmar1Arthur Magri Pereira Ramos2Guilherme Sousa Alves3Universidade Federal de Uberlândia, Instituto de Ciências Agrárias, Uberlândia, MG, Brasil.Universidade Federal de Uberlândia, Instituto de Ciências Agrárias, Uberlândia, MG, Brasil.Universidade Federal de Uberlândia, Instituto de Ciências Agrárias, Uberlândia, MG, Brasil.Universidade Federal de Uberlândia, Instituto de Ciências Agrárias, Uberlândia, MG, Brasil.The spread and evaporation time of droplets deposited on the target affect the application efficiency of pesticides. This study aimed at evaluating the evaporation time of droplets with different sizes, under different levels of relative air humidity, containing thiamethoxam and adjuvants sprayed on sugarcane leaves. Data were collected in a climate chamber with controlled conditions, where a digital microscope was set up to record the droplet images. The evaporation time was evaluated considering three relative air humidity rates (45 %, 60 % and 75 %). For each condition, a completely randomized experiment was installed with five replications, in a 5 x 6 factorial design consisting of five sprays (water, thiamethoxam, thiamethoxam + mineral oil, thiamethoxam + vegetable oil and thiamethoxam + spreader) and six droplet diameters (337 µm, 424 µm, 486 µm, 576 µm, 831 µm and 985 µm). The evaporation time is directly and linearly related to the droplet diameter, with larger diameters requiring a longer time to evaporate. The evaporation time of droplets is also influenced by relative air humidity and spray composition. Among the adjuvants tested, the mineral oil provides the lower evaporation time for all droplet sizes.https://www.revistas.ufg.br/pat/article/view/38499/20567Saccharum officinarum L.pesticidedroplet diameter
collection DOAJ
language English
format Article
sources DOAJ
author João Paulo Arantes Rodrigues da Cunha
Olinto Lasmar
Arthur Magri Pereira Ramos
Guilherme Sousa Alves
spellingShingle João Paulo Arantes Rodrigues da Cunha
Olinto Lasmar
Arthur Magri Pereira Ramos
Guilherme Sousa Alves
Evaporation time of droplets containing thiamethoxam and adjuvants sprayed on sugarcane leaves
Pesquisa Agropecuária Tropical
Saccharum officinarum L.
pesticide
droplet diameter
author_facet João Paulo Arantes Rodrigues da Cunha
Olinto Lasmar
Arthur Magri Pereira Ramos
Guilherme Sousa Alves
author_sort João Paulo Arantes Rodrigues da Cunha
title Evaporation time of droplets containing thiamethoxam and adjuvants sprayed on sugarcane leaves
title_short Evaporation time of droplets containing thiamethoxam and adjuvants sprayed on sugarcane leaves
title_full Evaporation time of droplets containing thiamethoxam and adjuvants sprayed on sugarcane leaves
title_fullStr Evaporation time of droplets containing thiamethoxam and adjuvants sprayed on sugarcane leaves
title_full_unstemmed Evaporation time of droplets containing thiamethoxam and adjuvants sprayed on sugarcane leaves
title_sort evaporation time of droplets containing thiamethoxam and adjuvants sprayed on sugarcane leaves
publisher Universidade Federal de Goiás
series Pesquisa Agropecuária Tropical
issn 1983-4063
publishDate 2016-03-01
description The spread and evaporation time of droplets deposited on the target affect the application efficiency of pesticides. This study aimed at evaluating the evaporation time of droplets with different sizes, under different levels of relative air humidity, containing thiamethoxam and adjuvants sprayed on sugarcane leaves. Data were collected in a climate chamber with controlled conditions, where a digital microscope was set up to record the droplet images. The evaporation time was evaluated considering three relative air humidity rates (45 %, 60 % and 75 %). For each condition, a completely randomized experiment was installed with five replications, in a 5 x 6 factorial design consisting of five sprays (water, thiamethoxam, thiamethoxam + mineral oil, thiamethoxam + vegetable oil and thiamethoxam + spreader) and six droplet diameters (337 µm, 424 µm, 486 µm, 576 µm, 831 µm and 985 µm). The evaporation time is directly and linearly related to the droplet diameter, with larger diameters requiring a longer time to evaporate. The evaporation time of droplets is also influenced by relative air humidity and spray composition. Among the adjuvants tested, the mineral oil provides the lower evaporation time for all droplet sizes.
topic Saccharum officinarum L.
pesticide
droplet diameter
url https://www.revistas.ufg.br/pat/article/view/38499/20567
work_keys_str_mv AT joaopauloarantesrodriguesdacunha evaporationtimeofdropletscontainingthiamethoxamandadjuvantssprayedonsugarcaneleaves
AT olintolasmar evaporationtimeofdropletscontainingthiamethoxamandadjuvantssprayedonsugarcaneleaves
AT arthurmagripereiraramos evaporationtimeofdropletscontainingthiamethoxamandadjuvantssprayedonsugarcaneleaves
AT guilhermesousaalves evaporationtimeofdropletscontainingthiamethoxamandadjuvantssprayedonsugarcaneleaves
_version_ 1724979037980327936