750 resultados para glyphosate potássico


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Glyphosate, an enzyme inhibitor herbicide, has been widely used around the world in agriculture. Dr. John Franz from Monsanto Corporation (USA) discovered glyphosate in 1970. It has been showed that glyphosate is strongly adsorbed by inorganic soil components especially aluminium and iron oxides, and the phosphate group is involved in this interaction. The inactivation of glyphosate in soils can last for days or even months depending on soil characteristics. The addition of phosphate from fertilizers can displace glyphosate from the soils and this could be the cause of decreased productivity of some crops.

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In the present paper we studied the recoveries of glyphosate, N-(phosphonomethyl)glycine (GLY) and its major metabolite, (aminomethyl)phosphonic acid (AMPA) in soil using national (Brazilian) ion-exchange resins, derivatization by a mixture of trifluoroacetic anhydride and trifluoroethanol and analyses by GC-MS. The quantification limits were 12 ng.g-1 for both compounds and the methodology showed a range of recuperation from 85 to 94% with coefficients of variation (CV) ranging from 4.07 to 6.91% for GLY. For AMPA, the mean recoveries ranged from 87 to 102% with CVs ranging from 5.81 to 6.99%. Additional studies showed that, due to the instability of the derivatized compounds, they must be analysed keeping constant time between derivatization and analysis, preferably less than 24 h.

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Residues of herbicides from sugarcane were monitored in waters and sediments of Corumbataí River and tributaries. Ametryne, atrazine, simazine, hexazinone, glyphosate, and clomazone were detected in water samples, with negligible levels of ametryne and glyphosate in sediment samples. The area of recharge of the Guarani aquifer presented the highest triazine and clomazone levels. The triazines were detected at higher levels, with atrazine above Brazil's potability and quality standards. Total herbicide levels at some sampling points were 13 times higher than the European Community potability limit. There is no Brazilian standard for ametryne, although the risk is larger due to ametryne's higher toxicity for the aquatic biota.

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The aim of this work was to investigate the copper electrode behavior in the voltammetric determination of glyphosate. The best conditions for this determination are phosphate buffer 0.05 mol L-1 and pH 7.3, and the peak potential is observed at 187 mV. LD and LQ values are 59 µg L-1 e 196 µg L-1, respectively. A water sample was analysed for glyphosate and identical results were obtained by using the analytical curve and the standard addition method. The comparison with a voltammetric method with Hg electrode, after a reaction with nitrite, showed quite concordant results for the analysis of the surface water sample. Therefore, the proposed method can be applied to direct determinations of the herbicide in waters, decreasing the time of analysis; besides, the method is in agreement with the "green chemistry" concept.

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The main objective of this work is to develop an efficient procedure to determine glyphosate in soybean grains. The cleanup of the aqueous extracts was done in two steps, beginning with liquid-liquid partitioning and then solid-phase extraction with anion exchange resin. After derivatization with a mixture of trifluoroacetic anhydride (TFAA) and trifluoroethanol (TFE), quantification was done by gas chromatography coupled to mass spectrometry. The mean recovery and RSD of the spiked samples were, respectively, 80.5% and 3.1% at level 0.200 mg kg-1, 93.3% and 18.7% at level 0.500 mg kg-1 and 92% and 3.5% at level 1.000 mg kg-1. The method was linear in the working range (correlation coefficient = 0.9965).

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The electrochemical oxidation of glyphosate on an electrode of nickel and on one of copper was studied. With both electrodes electrochemical signals related to the glyphosate concentration were observed. However, the behaviour of the copper electrode was much better than that of the nickel electrode. A calibration curve was obtained of the electrical signal of this electrode as a function of the glyphosate concentration. The detection limit was 30 µM. In the case of nickel, an increase in the oxidation signal, which is related to the glyphosate concentration, was obtained. However, the results were less reproducible and additional information is necessary to propose an interaction mechanism between glyphosate and the electrode.

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Copper electrode can be used for determination of complexing compounds through complexation reactions between Cu(II) and the analites. In this work some studies with three compounds were performed: glycine (precursor of glyphosate synthesis), herbicide glyphosate and aminomethylphosphonic acid (main metabolite of glyphosate). These compounds are complexing agents for Cu electrodes. Through simple experiments (cyclic voltammetry and corrosion studies) the applicability of the copper electrode as electrochemical sensor for complexing compounds in flow systems was presented.

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Glyphosate was determined in runoff and leaching waters in agricultural soil that received an application of active ingredient and was exposed to simulated intensive rain conditions. The concentrations decreased during the simulation period and the concentrations of the runoff were higher than those achieved in the samples of leaching waters. The concentrations were lower than the pattern in the Brazilian Regulation MS N. 518/2004 for drinking water. The transported load of the applied active ingredient by the leaching was of 15.4% (w/w) and for the runoff was of 1.7% (w/w).

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A flow injection spectrophotometric procedure for the determination of glyphosate in commercial formulations of herbicides is proposed. The determination is based on the reaction of glyphosate and p-dimethylaminocinnamaldehyde, in acid medium, yielding a colored compound (l máx = 495 nm). Under optimal conditions, Beer's law is obeyed in a concentration range 40-640 mg mL-1 with a correlation coefficient of 0.9996. The detection limit was 8.60 mg mL-1 for glyphosate. The method was successfully applied for the determination of glyphosate in commercial formulations of herbicides. Recovery of glyphosate from various commercial samples of herbicides range from 91.0 to 110%.

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Diante da crescente necessidade de realização de boas técnicas de manejo florestal, foi conduzido um experimento de campo com o objetivo de avaliar a possível interação entre o manejo de plantas daninhas e a adubação de cobertura no desenvolvimento de plantas de eucalipto. Os tratamentos foram dispostos em blocos ao acaso, em esquema fatorial 5x3, constituído de cinco situações de controle das plantas daninhas (testemunha "no mato"; testemunha "limpa"; isoxaflutole; glyphosate; isoxaflutole+glyphosate - em pré e pós- emergência, respectivamente) e três doses de adubação de cobertura (0,5 x; x; e 1,5 x, em que x corresponde à dose recomendada para adubação da cultura). No tricentésimo dia após o plantio do eucalipto, a massa de matéria seca de folhas e a massa de matéria seca de caule foram as características mais sensíveis à interferência das plantas daninhas. Quando em convivência com essas plantas, as doses de adubação de cobertura não promoveram grandes alterações nas variáveis supracitadas, indicando a competição da cultura com as plantas daninhas pelo recurso oferecido. Já nos tratamentos que ficaram livres da convivência com as plantas daninhas por todo o período avaliado (testemunha "limpa") ou por grande parte dele (isoxaflutole + glyphosate), a maior dose de adubação de cobertura foi responsável pelos maiores valores de massa de matéria seca de folhas e caule.

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Weed control is commonly performed by the inter-row mechanical weeding associated to intrarow glyphosate directed spraying, causing a risk for drift or accidental herbicide application, that can affect the crop of interest. The objective was to evaluate the response of clones C219, GG100, I144, and I224 of eucalypt (Eucalyptus grandis x E. urophylla) to glyphosate doses of 0, 18, 36, 72, 180, 360, and 720 g of acid equivalent per hectare. The clones showed different growth patterns with regard to height, leaf number, stem dry weight, relative growth rate, net assimilation rate, and relative leaf growth rate. The clones I144 and GG100 were more susceptible to glyphosate, showing the doses required to reduce dry weight by 50% of 113.4 and 119.6 g acid equivalent per hectare, respectively. The clones C219 and I224 were less susceptible to glyphosate, showing the doses required to reduce dry weight by 50% of 237.5 and 313.5 g acid equivalent per hectare, respectively. Eucalyptus clones respond differently to glyphosate exposure, so that among I224, C219, GG100, and I144, the susceptibility to the herbicide is increasing.

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Teve-se o objetivo de avaliar a eficiência de um conjunto de equipamentos de proteção individual no controle das exposições proporcionadas ao tratorista aplicando herbicidas nas culturas de soja e de amendoim com o pulverizador de barra e a segurança dessas condições de trabalho. Os pulverizadores utilizados foram os convencionais empregados nas duas culturas para as aplicações de herbicidas em pré-plantio incorporado (ppi), em pré-emergência (pré) e em pós-emergência inicial (pós), com volumes de 200 L ha-1, e 150 L ha-1 apenas na aplicação em pós, na cultura de soja. As exposições sem EPIs foram de 102,77 mL de calda por dia nas aplicações em ppi, 39,62 em pré e 47,14 em pós-emergência. A eficiência dos EPIs no controle das exposições dérmicas foi de 76,5% em ppi, 50,9% em pré e 75,3% em pós-emergência. Na cultura de soja, foram seguras para o tratorista, sem ou com EPIs, as aplicações de pendimethalin, imazaquin e flumetsulam em ppi; de pendimethalin, acetochlor, clomazone, flumioxazin, imazaquin, metribuzin, sulfentrazone, dimethenamid e flumetsulamem em pré, e de bentazone, glyphosate, imazethapyr, quizalofop-ethyl, chlorimuron ethyl e oxasulfuron em pós. Na cultura de amendoim, sem e com EPIs, foi segura a aplicação de pendimethalin em ppi; em pré, a aplicação de alachlor foi classificada como insegura, sem ou com o uso dos EPIs.

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O objetivo do trabalho foi avaliar se a utilização de adjuvantes nas misturas em tanque de glyphosate + chlorimuron-ethyl e glyphosate + carfentrazone-ethyl influenciam na qualidade da aplicação e eficiência de controle de Ipomoea grandifolia. Treze tratamentos, dispostos em delineamento inteiramente casualizado, foram constituídos pelas misturas em tanque de glyphosate + chlorimuron-ethyl (1.440 + 12,5 g ha-1) e glyphosate + carfentrazone-ethyl (1.440 + 10 g ha-1) isoladas e associados aos adjuvantes Nimbus®, Joint Oil®, Naturl'Oil®, Triunfo 515® e All Fix ®, e uma testemunha sem aplicação. Os adjuvantes utilizados foram eficientes na redução da tensão superficial das caldas; no entanto, não influenciaram nos valores de deposição e na eficiência do controle. Os adjuvantes proporcionaram efeitos distintos na redução da tensão superficial, no pH e na qualidade da aplicação (diâmetro mediano volumétrico, densidade de gotas, potencial de perdas por deriva, área coberta e diâmetro médio das gotas) das misturas em tanque de glyphosate + chlorimuron-ethyl e glyphosate + carfentrazone-ethyl, mas não interferiram na deposição da calda de pulverização sobre os alvos I. grandifolia e lâminas de vidro. Glyphosate + carfentrazone-ethyl apresentou maior velocidade de controle de I. grandifolia em relação ao glyphosate + chlorimuron-ethyl, na ausência ou na presença dos adjuvantes, apesar de o glyphosate + carfentrazone-ethyl associado com Nimbus® e Joint Oil® terem proporcionado às plantas-alvo início de desenvolvimento de novas folhas.

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ABSTRACTScarlet Morning Glory is considered to be an infesting weed that affects several crops and causes serious damage. The application of chemical herbicides, which is the primary control method, requires a broad knowledge of the various characteristics of the solution and application technology for a more efficient phytosanitary treatment. Therefore this study aimed to characterize the effect of rainfall incidence on the control of Ipomoea hederifolia, considering droplet size, surface tension, contact angle of droplets formed by herbicides liquid on vegetal and artificial surfaces, associated to adjuvants and the volumetric distribution profile of the spray jet. The addition of the adjuvants to the herbicide spraying liquid improved the application quality, as it influenced the angle formed by the spray by broadening the deposition band of the spray nozzle and thus the possible distance between the nozzles on spray boom and due the changes at droplet size, which contribute to a safety application. The rainfall occurrence affected negatively the weed control with the different spraying liquids and also the dry matter weight, suggesting that the phytosanitary product applied was washed off.

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Acute toxicity of the glyphosate -N (phosphonomethyl) glycine- herbicide, Roundup®, in juveniles of cachama blanca, (Piaractus brachypomus), was evaluated and the histopathological lesions were assessed. The 96 h lethal concentration 50 was 97.47mg.L-1 (P<0.05). In the gill, necrotic and proliferative lesions were detected. In the liver, congestion, degenerative foci, hyaline droplets and lipidic vacuolization of the hepatocytes were observed. In the stomach mild hyperplasia of mucous cells was detected, which was also observed in the skin. In this latter tissue, a large increase in the thickness of the epidermis with necrotic lesions, infiltration of leukocytes and melanin pigment were observed. In the brain, degenerative foci of neuronal bodies in the telencephalon associated with gliosis and infiltration of eosinophilic granule cells/mast cells were shown. In conclusion, gills, liver, skin and brain are susceptible to Roundup®. Moreover, effects on the central nervous system could affect olfaction as well as individual and group behavior, the reproductive performance of the fish and hence have repercussions at the population level.