76 resultados para atrazina


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Soil organic matter is the main sorptive soil compartment for atrazine in soils, followed in a minor scale by the inorganic fraction. In this study, the soil organic matter quality and atrazine sorption were investigated in four different soil types. The pedogenic environment affected the humification and therefore the chemical composition of the organic matter. The organic matter contribution to atrazine sorption was larger (60-83%) than that of the inorganic fraction. The organic matter capacity in retaining the herbicide was favoured by a higher decomposition degree and a smaller carboxylic substitution of the aliphatic chains.

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Following application herbicides usually reach the soil and undergo several dissipation processes which determine their effects on target organisms and on the environment. This work aimed to evaluate atrazine and mesotrione sorption in Oxisols and estimate their potential impact on the environment. We observed that atrazine sorption was influenced by soil organic matter content and its hydrophobic character. Clay fraction was the main factor influencing mesotrione sorption followed in a lesser extent by soil organic matter content. In contrast to atrazine, mesotrione retention was favored by the higher carboxylic substitution in the aliphatic chains of soil organic matter. Atrazine and mesotrione were considered compounds that are likely to pose an appreciable risk of causing deleterious effects on the environment.

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In this study, polymeric nanocapsules of PCL containing the herbicide atrazine were prepared. In order to optimize the preparation conditions, a 2³ factorial design was performed using different formulations of nanocapsules, which investigated the influence of three variables at two levels. The factors varied were the quantities of PCL, Span 60 and Myritol. The results were evaluated considering the size, polydispersity, zeta potential and association rate and the measures of these parameters were taken immediately after preparation and after 30 days of preparation. The formulations with minimum level of polymer in the preparation showed better stability results.

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This study aimed to produce and characterize a novel material from fish scales and chitosan for use as a medium for the extended release of herbicides. The mechanism of release for the herbicides atrazine and diuron was influenced by diffusion and swelling according to the power law kinetic model. The atrazine release time was seven days, while that of diuron was four days. The results of this study will contribute to the development of environmental matrices for herbicide release systems.

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Electrodegradation of atrazine in water was performed using homemade (PA and PB) and purchased (PC) boron-doped diamond anodes. The degradation was monitored off-line by analyzing total organic carbon and high performance liquid chromatography with diode array detector (HPLC-DAD) and at-line by UV spectroscopy. The spectra were recorded every 2 min. The rank deficiency problem was resolved by assembling an augmented column-wise matrix. HPLC was employed to separate the original and byproducts degradation components. Aiming the same goal, multivariate curve resolution - alternating least squares (MCR-ALS) was applied to resolve the UV spectroscopic data. Comparison between HPLC and MCR-ALS separations is presented. By using MCR-ALS the spectra of atrazine and two byproducts were successfully resolved and the resulted concentration profiles properly represented the system studied. The ALS explained variance (R2) for PA, PB and PC was equal to 99.99% for all of them and the lack of fit for PA, PB and PC were 0.39, 0.34 and 0.54 respectively. The correlation (R) between the recovered and pure spectra were calculate for each electrodegradation, validating the MCR-ALS results. The average R was equal to 0.997. The spectral and concentration profiles described with this new approach are in agreement with HPLC-DAD results. The proposed method is an alternative to classical analyses for monitoring of the degradation process, mainly due to the simplicity, fast results and economy.

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Tesis (Maestría en Ciencias con orientación en Química Analítica Ambiental) UANL, 2014.

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A atrazina (ATZ) foi utilizada em experimentos de laboratório para estudos de mineralização e dessorção em amostras de Argissolo Vermelho (PV) e Vertissolo Ebânico (VE), sob campo nativo, com o intuito de identificar os atributos do solo que afetam estes processos. A influência da umidade do solo sobre a atividade microbiana foi avaliada variando-se os teores de umidade em 20, 40, 65 e 85% da capacidade de água disponível do solo (CAD) e aplicando-se 1,5 kg de princípio ativo ha-1 (menor dose recomendada (DR)). Para a avaliação do efeito das doses do herbicida ATZ sobre a atividade microbiana e sobre a taxa de degradação do herbicida foram feitas aplicações de 1x, 2x, 4x, 7x e 10x a DR. Na avaliação do efeito da matéria orgânica sobre a atividade microbiana e sobre a taxa de degradação da ATZ foi feita a aplicação de 10x a DR. Num estudo adicional foram testados quatro métodos de desinfestação de solos (fumigação, tindalização, autoclavagem e irradiação em forno de microondas). A determinação da ATZ na solução foi feita por cromatografia gasosa em extratos de metanol. A atividade microbiana foi monitorada pela evolução de CO2 e a microbiota foi avaliada pela contagem de unidades formadoras de colônias Os resultados indicam que a população microbiana apresenta maior atividade entre 65 e 85% de umidade da CAD e que o aumento das doses de aplicação da ATZ não provoca alterações relevantes na atividade microbiana. Aproximadamente 70% do herbicida aplicado fica sorvido ao solo, independentemente de dose de ATZ aplicada e da classe de solo estudada (PV e VE). As taxas de degradação da ATZ lábil foram baixas e dependentes de doses e tipos de solos, sendo maiores em doses mais elevadas e em solos com maior teor de C. Dentre os métodos de desinfestação, a irradiação em forno de microondas foi o mais adequado, uma vez que apresentou um comportamento similar à testemunha quanto à sorção do herbicida e foi eficiente na redução da população microbiana do solo.

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)

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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)

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Pós-graduação em Ciências Biológicas (Biologia Celular e Molecular) - IBRC

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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)

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Pós-graduação em Química - IQ