Publication Cover
Journal of Environmental Science and Health, Part B
Pesticides, Food Contaminants, and Agricultural Wastes
Volume 56, 2021 - Issue 11
171
Views
0
CrossRef citations to date
0
Altmetric
Research Article

Control of Salvinia molesta with imazamox and analysis of environmental indicators in microcosms

ORCID Icon, , , , , & show all

References

  • Wersal, R. M.; Madsen, J. D. Combinations of Penoxsulam and Diquat as Foliar Applications for Control of Waterhyacinth and Common Salvinia: Evidence of Herbicide Antagonism. J. Aquat. Plant Manage. 2010, 48, 21–25.
  • Sartain, B. T.; Mudge, C. R. Evaluation of 12 Foliar Applied Non-Aquatic Herbicides for Efficacy against Giant Salvinia (Salvinia Molesta). J. Aquat. Plant Manage. 2018, 56, 107–112.
  • Conama. Conselho Nacional do Meio Ambiente. Resolução n° 465. Dispõe Sobre Critérios Para Autorização de Uso de Produtos ou de Agentes de Processos Físicos; Químicos ou Biológicos Para o Controle de Organismos ou Contaminantes em Corpos Hídricos Superficiais e da Outras Providências, Brasília, BR, 2015; pp 70–71. Publicado no DOU n°135. seção 1.
  • (a) Cruz, C.; Silva, A. F.; Shiogiri, N. S.; Garlich, N.; Pitelli, R. A. Imazapyr Herbicide Efficacy on Floating Macrophytes Control and Ecotoxicology for Non-Target Organisms. Planta Daninha. 2015, 33, 103–108. DOI: https://doi.org/10.1590/S0100-83582015000100012.; (b) Glyphosate Effectiveness in the Control of Macrophytes under a Greenhouse Condition. Planta Daninha. 2015, 33, 241–247.
  • Tan, S.; Evans, R. R.; Dahmer, M. L.; Singh, B. K.; Shaner, D. L. Imidazolinone‐Tolerant Crops: History, Current Status and Future. Pest Manag. Sci. 2005, 61, 246–257.
  • Campos, C. F.; Vitorino, H. S.; Souza, G. S. F.; Santana, D. C.; Martins, D. Translocação Dos Herbicidas Glyphosate e Imazamox em Plantas de Aguapé. Arq. Inst. Biol. 2013, 80, 177–182. DOI: https://doi.org/10.1590/S1808-16572013000200006.
  • Rodgers, L.; Black, D. Effects of Aerially-Applied Imazamox on Southern Cattail and Non-Target Emergent Vegetation in a Eutrophic Sawgrass Marsh. J. Aquat. Plant Manage. 2012, 50, 125–129.
  • Li, J.; Luo, G.; He, L.; Xu, J.; Lyu, J. Analytical Approaches for Determining Chemical Oxygen Demand in Water Bodies: A Review. Crit. Rev. Anal. Chem. 2018, 48, 47–65.
  • Vigiak, O.; Grizzetti, B.; Udias-Moinelo, A.; Zanni, M.; Dorati, C.; Bouraoui, F.; Pistocchi, A. Predicting Biochemical Oxygen Demand in European Freshwater Bodies. Sci. Total Environ. 2019, 666, 1089–1105.
  • Garlich, N.; Garcia, G. L.; Oliveira, A. C.; Santos, K. P.; Pitelli, R. A.; Ferreira, M. D. C.; Cruz, C. (2020). Electrostatic Spraying of Imazamox to Control the Floating Aquatic Plant Salvinia Molesta and Its Effects on Environmental Indicators of Water Quality. J. Environ. Sci. Health. B. 2021, 56, 251–258. DOI: https://doi.org/10.1080/03601234.2020.1858684.
  • OECD, Organization for Economic Co-operation and Development. Draft Guidance document on simulated freshwater lentic field tests (Outdoor Microcosms and Mesocosms). 2004, 26p. http://www.oecd.org/fr/securitechimique/essais/32612239.pdf.
  • Velini, D. E.; Osipe, R.; Gazziero, D. L. P. Procedimentos Para Instalação, Avaliação e Análise de Experimentos Com Herbicidas; Sociedade Brasileira da Ciência Das Plantas Daninhas (SBCPD): Londrina, BR, 1995, 42p.
  • Alam, Associacion Latinoamerica de Malezas. Recomendaciones Sobre Umificacion de Los Sistemas de Evaluacion em Ensayos de Comtrol de Malezas. ALAM. 1974, 1, 35–38.
  • Cetesb. Companhia Ambiental Do Estado de São Paulo, 3th ed.; Norma técnica CETESB L5.306. Determinação de clorofila a e feofitina a: método espectrofotômetro, São Paulo, BR, 2014, 14p.
  • Caldwell, D. H.; Langelier, W. F. Manometric Measurement of the Biochemical Oxygen Demand of Sewage. Sewage Work. J. 1948, 20, 202–218.
  • Adams, V. D. Water and Wastewater Examination Manual. In Methods for the Determination of Organics, Chemical Oxygen Demand (COD). Manual Method Dichromate Reflux; CRC Press LLC: Boca Raton, FL, 1989; pp 168–172, 264p.
  • Barbosa, J. C.; Maldonado, J. W. Agronomic Experimentation and AgroEstat: System for Statistical Analysis of Agronomic Trials; Multipress: Jaboticabal, BR, 2015; 396p.
  • Mudge, C. R.; Netherland, M. D. Response of Invasive Floating Plants and Nontarget Emergent Plants to Foliar Applications of Imazamox and Penoxsulam. J. Aquat. Plant Manage. 2014, 52, 1–7.
  • Glomski, L. A. M.; Getsinger, K. D. Carfentrazone-Ethyl for Control of Giant Salvinia. J. Aquat. Plant Manage. 2006, 44, 136–138.
  • Richardson, R. J.; Roten, R. L.; West, A. M.; True, S. L.; Gardner, A. P. Response of Selected Aquatic Invasive Weeds to Flumioxazin and Carfentrazone-Ethyl. J. Aquat. Plant Manage. 2008, 46, 154–158.
  • Emerine, S. E.; Richardson, R. J.; True, S. L.; West, A. M.; Roten, R. L. Greenhouse Response of Six Aquatic Invasive Weeds to Imazamox. J. Aquat. Plant Manage. 2010, 48, 105–111.
  • Barbosa, B. F. F.; Ferreira, M. C.; Silva, J. L.; Cavichioli, F. A.; Bertonha, R. S.; Custódio, A. A. P. Controle de Ipomoea Nil Utilizando Ponta Centrífuga de Pulverização em Diferentes Volumes de Aplicação Com e Sem Adjuvante. Rbherbicidas. 2011, 10, 277–290. DOI: https://doi.org/10.7824/rbh.v10i3.113.
  • Mudge, C. R. Interactions of Herbicides, Surfactants, and the Giant Salvinia Weevil (Cyrtobagous Salviniae) for Control of Giant Salvinia (Salvinia Molesta). J. Aquat. Plant Manage. 2013, 51, 77–87.
  • Sartain, B. T.; Mudge, C. R. The Response of Giant Salvinia to Foliar Herbicide Applications at Three Winter Timings. J. Aquat. Plant Manage. 2019, 57, 1–6.
  • Nelson, L. S.; Glomski, L. M.; Gladwin, D. N. Effect of Glyphosate Rate and Spray Volume on Control of Giant Salvinia. J. Aquat. Plant Manage. 2007, 45, 58–61.
  • Cruz, C.; Cervoni, J. H. C.; Silva, A. F.; Garlich, N.; R. A. Aplicação, P. Sequencial de Glyphosate em Plantas Aquáticas de Difícil Controle em Condição de Microcosmos. Ciência e Cultura. 2017, 13, 59–63.
  • Santos, D. M.; Pitelli, R. A.; Banzatto, D. A. Efeitos de Herbicidas Nos Teores de Clorofilas de Spirodela Punctata. Planta Daninha. 1999, 17, 175–182. DOI: https://doi.org/10.1590/S0100-83581999000200001.
  • Taiz, L.; Zeiger, E. Fisiologia Vegetal, 5th ed.; Artmed: Porto Alegre, 2013; 918p.
  • Ferreira, A. R. L.; Sanches, L. F. F.; Cortes, R. M. V.; Pacheco, F. A. L. Assessing Anthropogenic Impacts on Riverine Ecosystems Using Nested Partial Least Square Regression. Sci. Total Environ. 2017, 583, 466–477. DOI: https://doi.org/10.1016/j.scitotenv.2017.01.106.
  • Mello, A. S., Jr.; Santos, G. R.; Silva, G. S.; Melo, R. C. C.; Jesus, T. A. Monitoramento da Concentração de Oxigênio Dissolvido (OD) em Lagoas de Estabilização. INOVE-J. Eng., Arch. Tec. In. 2019, 20197, 128–146.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.