Calagem na retenção de glyphosate em solos de texturas distintas

Authors

DOI:

https://doi.org/10.30681/rcaa.v21i1.11170

Keywords:

sorção, práticas agrícolas, dessorção

Abstract

Liming is an essential management practice to the cultivation of tropical soils due to not only improve the soil pH but also to provide plant nutrients such as Ca and Mg. This practice may also control the behaviour and the fate of pesticides in the soil. The aim of this research was to assess the liming effect on both retention and mineralization of 14C-glyphosate in a Red Latosol (LE) and a Quartzarenic Neosol (RQ). Radiometric techniques were used with glyphosate radiolabelled at carbon phosphonomethyl group. The retention experiment was carried out by using the batch method with the following glyphosate concentrations: 0.24; 0.48; 0.96; 1.92 and 3.84 mg a.i.L-1. Desorption trial at 0.48 mg a.i. L-1 concentration was carried out after the sorption. The experiment was performed at a randomized design, being the two first in a 2 x 2 factorial  scheme, corresponding to two soil classes (LE and RQ) and two soil management (liming and no-liming). It was observed that liming did not have any significant effect on both the sorption and desorption of glyphosate in the studied soils. Both soils sorbed glyphosate in different manner and independently from liming practice being the LE soil the one that presented highest glyphosate sorption.

Downloads

Download data is not yet available.

Author Biographies

  • Sayonara Andrade do Couto Moreno Arantes, UFMT https://orcid.org/0000-0002-1559-1021

    Universidade Federal do Mato Grosso/Departamento de Agronomia/Instituto de Ciências Agrárias e Ambientais, Sinop, MT, Brazil

  • Kelte Arantes, UFMT

    Professor da Universidade Federal do Mato Grosso/Departamento de Agronomia/Instituto de Ciências Agrárias e Ambientais, Sinop, MT, Brazil

  • Arquimedes Lavorenti, ESALQ

    Professor aposentado da Escola Superior de Agricultura "Luiz de Queiroz"/USP

References

ABRACAL. Associação Brasileira dos Produtores de Calcário Agrícola. 2023 Disponível em: Acesso em: 10 de maio de 2023.

AHMED, A.A.; LEINWEBER, P.; KUHN, O. Unravelling the nature of glyphosate binding to goethite surfaces by ab initio molecular dynamics simulations. Physical Chemistry Chemical Physics, v.3, 2018. https://doi.org/10.1039/C7CP06245A.

ARANTES, S.A.C.M.; ZIMPEL, G.Q.; ARANTES, K.R.; BOTELHO, F.B.S.; CASSOL, J.A. Efeito residual do glyphosate em solos de diferentes texturas avaliado pelo método do bioensaio. Revista de Ciências Agroambientais, v.12, n.1, p.57-64, 2014.

BERIHUN, T.; TOLOSA, S.; TADELE, M.; KEBEDE, F. Effect of biochar application on growth of garden pea (Pisum sativum L.) in acidic soils of bule woreda gedeo zone Southern Ethiopia. International Journal of Agronomy, 2017. https://doi.org/10.1155/2017/6827323.

BORCHARD, N.; SIEMENS, J.; LAD, B.; MOLLER, A.; AMELUNG, W. Application of biochars to sandy and silty soil failed to increase maize yield under common agricultural practice. Soil Tillage Research, v.144, p.184-194, 2014. https://doi.org/10.1016/j.still.2014.07.016.

CAMARGO, O.A.; MONIZ, A.C.; JORGE, J.A.; VALADARES, J.M. Métodos de análise química, mineralógica e física de solos do Instituto Agronômico de Campinas. Campinas: IAC, 1986, 94 p. (IAC Boletim Técnico, 106).

CHEAH, U.B.; KIRKWOOD, R.C.; LUM, K.Y. Adsorption, desorption and mobility of four commonly used pesticides in Malasyan agricultural soils. Pesticide Science, v. 50, p. 53-63, 1997.

COMPÊNDIO DE DEFENSIVOS AGRÍCOLAS. Guia Prático de produtos fitossanitários para uso agrícola, 7 ed. São Paulo: Organização Andrei, São Paulo, 2005. 1141 p.

COSTA, M.A. Biodegradação de 14C-ametrina em Areia Quartzosa com adição de palha de cana e solo rizosférico. 1983. 107 p. Dissertação (Mestrado em Energia Nuclear na Agricultura) – Centro de Energia Nuclear na Agricultura, Universidade de São Paulo, Piracicaba, 1983.

COUTINHO, C.F.B.; GALLI, A.; MAZO, L.H; MACHADO, S.A.S. Carbendazim e o meio ambiente: degradação e toxidez. Pesticidas: Revista Ecotoxicologia e Meio Ambiente, v. 16, p. 63-70, 2006. http://dx.doi.org/10.5380/pes.v16i0.7480

DAI, Z., ZHANG, XU, J., TANG, C.; MUHAMMAD, N., WU, J.; BROOKES, P.C.; XU, J. Potential role of biochars in decreasing soil acidification - a critical review. Science of the Total Environment, p.581–582, 601–611, 2017. https://doi.org/10.1016/j. scitotenv.2016.12.169 Elsevier B.V.

EMBRAPA. Manual de métodos de análises de solo. 2.ed. Rio de Janeiro: EMBRAPA-CNPS, 1997. 212 p.

GIMSING, A.L.; BORGGAARD, O.K.; BANG, M. Influence of soil composition on adsorption of glyphosate and phosphate by contrasting Danish soils. European Journal of Soil Science, v.55, p.183–199, 2004. http://dx.doi.org/10.1046/j.1365-2389.2003.00585.x

INSTITUTO BRASILEIRO DE MEIO AMBIENTE. Manual de testes para a avaliação da ecotoxicidade de agentes químicos. 2.ed. Brasília, 1990. 351 p.

PEREIRA, R.C.; COSTA, A.C.S.; IVASHITA, F.F.; PAESANO JR, A.P.; ZAIA, D.A.M. Interaction between glyphosate and montmorillonite in the presence of artificial seawater. Heliyon. 2019. https://doi.org/10.1016/j.heliyon.2020.e03532

JONGE, H.; JONGE, L.W. Influence of pH and solution composition on the sorption of glyphosate and prochloraz to a sandy loam soil. Chemosphere, v.39, n.5, p.753-763, 1999. http://dx.doi.org/10.1016/S0045-6535(99)00011-9

JONGE, H.; JONGE, L.W.; JACOBSEN, O.H.; YAMAGUSHI, T.; MOLDRUP, P. Glyphosate sorption in soils of different pH and phosphorus content. Soil Science, v.166, p.230–238, 2001. http://dx.doi.org/10.1097/00010694-200104000-00002

KHOURY, A.; GEHRIS, T.C.; TRIBE, L.; SÁNCHEZ, R.M.T.; AFONSO, M.S. Glyphosate adsorption on montmorillonite: An experimental and theoretical study of surface complexes. Applied Clay Science, v.50, n.2, p.167-175, 2010. https://doi.org/10.1016/j.clay.2010.07.018

McCONNEL, J.S.; HOSSNER, L.R. pH-Dependent adsorption isotherms of glyphosate. Journal of Agricultural and Food Chemistry, v.33, p.1075-1078, 1985. https://doi.org/10.1021/jf00066a014

MEURER, E.J. Fundamentos de química do solo. 2.ed. Porto Alegre: Genesis, 2004. 290 p.

NATALE, W.; PRADO, R.M.; ROZANE, D.; ROMUALDO, L.M. Efeitos da calagem na fertilidade do solo e na nutrição e produtividade da goiabeira. Revista Brasileira de Ciência do Solo, v.31, p.1475-1485, 2007. https://doi.org/10.1590/S0100-06832007000600024.

OLIVEIRA JÚNIOR, R.S.; REGITANO, J.B. Dinâmica de pesticidas no solo. In: MELO, V. F.; ALLEONI, L. R. F. Química e mineralogia do solo. Viçosa: Sociedade Brasileira de Ciência do Solo, 2009. p.187-248

ORTIZ, A.M.G.; OKADA, E.B.; BEDMAR, F.; COSTA, J.L. Sorption and desorption of glyphosate in Mollisols and Ultisols soils of Argentina. Environmental Toxicology and Chemistry, v.36, n.10. 2017. https://doi.org/10.1002/etc.3851

PRATA, F.; CARDINALI, V.C.B.; LAVORENTI, A.; TORNISIELO, V.L.; REGITANO, J.B. Glyphosate sorption and desorption in soils with distinct phosphorus levels. Scientia Agricola, v.60, n.1, p.175-180, 2003. https://doi.org/10.1590/S0103-90162003000100026

PRATA, F.; LAVORENTI, A.; REGITANO, J.B.; TORNISIELO, V.L. Influência da matéria orgânica na sorção e dessorção do glifosato em solos com diferentes atributos mineralógicos. Revista Brasileira de Ciência do Solo, v.24, p.947-951, 2000. https://doi.org/10.1590/S0100-06832000000400026

SIDOLI, P.; BARAN, N.; ANGULO-JARAMILLO, R. Glyphosate and AMPA adsorption in soils: laboratory experiments and pedotransfer rules. Environmental Science and Pollution Research International, v.23, n.6, p.5733-5742, 2015. https:// doi.org/10.1007/s11356-015-5796-5

SPARKS, D.L. Environmental soil chemistry. California: Academic Press, 1995. 267 p.

TÉVEZ, H.R.; AFONSO, M.S. pH dependence of glyphosate adsorption on soil horizons. Boletín de la Sociedad Geológica Mexicana, v.67, n.3, p.509-516, 2015.

TONI, L.R.M.; SANTANA, H.; ZAIA, D.A.M. Adsorção de glifosato sobre solos e minerais. Química Nova, v.29, n.4, 2006. https://doi.org/10.1590/S0100-40422006000400034

VEREECKEN, H. Mobility and leaching of glyphosate: a review. Pesticides Management Science, v.61, p.1139–1151, 2005. http://dx.doi.org/10.1002/ps.1122

WEI, Y.; CHUANYONG, J. Molecular insights into glyphosate adsorption to goethite gained from ATR-FTIR, two dimensional correlation spectroscopy and DFT study. Environmental Science and Technology, v.52, n.4, p.1946–1953, 2018. https://doi.org/10.1021/acs.est.7b05643

Published

2024-02-04

Issue

Section

Agronomia

How to Cite

Calagem na retenção de glyphosate em solos de texturas distintas. (2024). Revista De Ciências Agro-Ambientais, 21(1), 8-16. https://doi.org/10.30681/rcaa.v21i1.11170

Similar Articles

11-20 of 24

You may also start an advanced similarity search for this article.