1000 resultados para preço da água


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This study optimized and validated the liquid-liquid extraction technique with partition at low temperature (LLE-PLT) for identification and quantification of four pesticides (chlorpyrifos, λ-cyhalothrin, permethrin, bifenthrin) in water samples. Analyses were performed by HPLC-UV. The technique was efficient for pesticide recovery with extraction exceeding 86%. Chromatographic response was linear for the four compounds in the 10-45 µg L-1 range, with correlation coefficients greater than 0.99. Limits of detection and quantitation were less than 3.5 µg L-1 and equal to 10 µg L-1, respectively. The proposed method was applied to 29 water samples from the Jaíba Project in northern Minas Gerais.

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This study describes the use of Principal Component Analysis to evaluate the chemical composition of water produced from eight oil wells in three different production areas. A total of 609 samples of produced water, and a reference sample of seawater, were characterized according to their levels of salinity, calcium, magnesium, strontium, barium and sulphate (mg L-1) contents, and analyzed by using PCA with autoscaled data. The method allowed the identification of variables salinity, calcium and strontium as tracers for formation water, and variables magnesium and sulphate as tracers for seawater.

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Fresh water sponge was used as a silica source for the synthesis of MCM-41 via the hydrothermal process. The silica was extracted from the sponge by washing with nitric acid and piranha solution. Synthesis of MCM-41 was performed at 100 °C for 5 days and the procedure was optimized, with modifications made to the leaching temperature of the silica and the synthesis of mesoporous material, which was characterized by XRD, FT-IR, SEM and adsorption of N2. The optimal result was achieved at a temperature of 135 °C for 3 days, showing ordered mesoporous material with a surface area of 1080 m² g-1.

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A new method using the headspace solid phase microextraction (HS-SPME) technique was used to evaluate the infinite dilute activity coefficient (γ1∞) in an alcohol/water/salt system. The studied systems were ethanol and water with NaCl and NH4Cl at salt concentrations of 5, 10, 15, and 30% m/v and temperatures of 303.15 and 313.15 K. The method was used to investigate the salt effect on vapor/liquid equilibrium in an ethanol/water system, yielding satisfactory results. The study focused on the rich side in ethanol. The data were compared with the literature infinite dilution data determined by other methods such as differential ebulliometry (EBUL), differential static cell equilibrium (STAT), and gas-liquid chromatography with no gas phase correction (GC). In this study, NaCl showed better separation rates than NH4Cl.

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The use of activated carbon powder (ACP), red mud and oxidation with chlorine to remove mefenamic acid in water are described, aimed at their application as a complement to sewage treatment processes in Brazil. A study on the behavior of mefenamic acid in water was performed by evaluating its dissolution for different concentrations and times. Subsequently, the optimal conditions for removal of mefenamic acid were investigated using ACP adsorption at different pH and concentrations, and red mud adsorption using different pH. The utilization of different pH and times was also investigated to establish the ideal conditions for chemical oxidation of the drug. Among the different conditions studied, the best condition for drug removal by ACP and red mud were 100% and 96%, respectively, while the best condition for chemical oxidation occurred using solutions with pH 6 and 7 and reaction times of 30 and 60 minutes.

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Water-soluble CdTe quantum dots are synthesized to investigate how short-chain surface ligands bearing -SH, -COOH, and -NH2 groups interact with CdTe during nucleation/growth processes. Their optical properties and colloidal stability after the ligand exchange are also investigated. We then characterize the resulting CdTe by fluorescence, UV–Vis absorption, and infrared spectroscopies. The stability of the colloidal dispersions was determined by their Zeta potentials. The results show that in the synthesis of water-soluble CdTe, surface ligands with at least two functional groups are required and the hard/soft character of them is an important factor in the stability of CdTe.

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Soft nanoparticles of size 200-400 nm were obtained from soybean protein isolate (SPI). The particles were formed and suspended in water by the coacervation of aqueous suspensions of SPI in hostile buffered aqueous solutions in the presence of surfactants. We investigate the effect of storage, ionic strength, and concentrations of SPI and surfactant on nanoparticle size and zeta potential. Transmission electron microscopy images and scattering techniques (SLS/ DLS) revealed that the particles are spherical, with hydrophilic chains at the surface.

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We briefly investigated the well-known correlation of trihalomethanes, present in fresh water, with cancer hazard in humans. A transient alternative method of chemical simulation using Bäcklund Transformations and Quantum Mechanics is presented. Finally, the method was applied to simulate the interaction between Trichloridemethane and Alanine - as well as its amino and carboxyl groups.

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Knowing the mercury levels of an environment allows a diverse array of biogeochemical studies into the mercury cycle on a local or global scale. Among matrices commonly evaluated, water remains a challenge for research because its mercury levels can be very low, requiring development of complex analytical protocols. Currently, sample preservation methods, protocols that avoid contamination, and analytical techniques with low detection limits allow analysis of mercury in pristine waters. However, different protocols suggest different methods depending on a range of factors such as the characteristics of water sampled and storage time. In remote areas, such as oceanic and Amazonian regions, sample preservation and transport to a laboratory can be difficult, requiring processing of the water during the sampling expedition and the establishment of a field laboratory. Brazilian research on mercury in water can be limited due to difficulty obtaining reagents, lack of laboratory structure, qualified personnel, and financial support. Considering this complexity for analyzing water, we reviewed methodologies for sampling, preservation, and storage of water samples for analysis of the most commonly evaluated mercury species (dissolved gaseous mercury, reactive mercury, methylmercury and total mercury).

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Bioaccumulation of Ag, Al, Cd, Co, Cr, Cu, Fe, Mn, Ni, Pb and Zn was determined in the gills and liver of Cyprinus carpio and related to concentrations in the sediment and water of the Alagados Reservoir, Ponta Grossa/Paraná. Cd and Fe exceeded the legal limit for water. Fe was the most abundant metal in the reservoir's water and sediment. The metals in the sediment were below the level of probable adverse effects on biota. There were no significant differences between sampling sites for water and sediment. Liver and gills had higher concentrations of Al, Fe and Zn, with a significant increase in Al (P > 0.05) compared to the increase in weight and size of the specimens. Statistically, gills showed higher concentrations of Al, Cd, Co, Cr, Mn and Zn and liver higher concentrations of Cu and Fe. Co, Cu, Fe, Mn and Zn showed significant differences (P < 0.01) between the organs. The bioaccumulation factors (BAF) showed that the interaction of water with gills promotes greater accumulation of metals in this organ. Despite the low concentrations in the reservoir, bioaccumulation of metals in gills and liver of C. carpio occurs by its interaction with contaminated water and sediment, respectively.

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Optimization of the main parameters of SWASV using boron-doped diamond electrode was described for the simultaneous determination of Zn, Cd, Pb and Cu free in coconut water. The values of electroanalytical parameters studied were optimized with the factorial design and center composite design. The optimized parameters for the preconcentration of metals were -1.50 V for potential, and 240 s for deposition time. For SWV, the optimized value was 11.56 mV for step potential. In addition, frequency and pulse height were defined at 100 Hz and 55 mV, respectively. Furthermore, the concentration of the supporting electrolyte (acetate buffer, pH 4.7) was optimized in 0.206 mol L-1. The optimized procedure was applied in two samples of coconut water: natural and processed. The limits of detection (LOD) obtained for Zn, Cd, Pb and Cu were 7.2; 4.4; 3.3 and 1.5 µg L-1, respectively. The concentrations of Cd and Pb were not detected. On the other hand, the values found for the concentrations of Zn and Cu were: < LOD (29 µg L-1) and (6.8 ± 0.9) µg L-1 for the natural sample; and (85.8 ± 4.2) µg L-1 and (7.7 ± 0.6) µg L-1 for the processed sample, respectively.

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Foi instalado um experimento em Viçosa, MG, em 11 de abril, em área infestada por escleródios de Sclerotinia sclerotiorum, com o objetivo de testar a eficiência de quatro fungicidas aplicados via água de irrigação por aspersão no controle do mofo-branco do feijoeiro (Phaseolus vulgaris). Os seguintes fungicidas e doses do ingrediente ativo por hectare foram testados: benomyl (1 kg), iprodione (0,75 kg), procimidone (0,5 kg) e fluazinam (0,5 l). As aplicações foram simuladas com regadores (35.000 l/ha). A primeira aplicação foi feita aos 39 dias após a emergência (DAE); a segunda, 13 dias depois. Nesses mesmos dias, o fluazinam também foi aplicado com pulverizador (667 l/ha) ou com regador (35.000 l/ha) entre as fileiras de feijão e rente ao solo. Este último tratamento teve por objetivo verificar se o fluazinam aplicado apenas no solo tem efeito no controle da doença. Ademais, foi utilizada uma testemunha que não recebeu fungicida. Após a colheita, avaliou-se a incidência do fungo nas sementes. Os fungicidas fluazinam (aplicado com pulverizador ou via água de irrigação sobre as plantas), benomyl e procimidone foram os mais eficientes no controle do mofo-branco e, dentre eles, apenas o procimidone não proporcionou rendimento maior que o da testemunha. O fluazinam aplicado apenas no solo reduziu a incidência da doença e a quantidade de escleródios produzidos. Os rendimentos variaram de 1.406 (testemunha) a 2.054 kg/ha (fluazinam, pulverização). Não houve influência dos tratamentos na incidência do fungo nas sementes, a qual variou de 0,25% (procimidone) a 1,08% (fluazinam aplicado no solo).

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Em regiões tropicais e de temperaturas elevadas, Macrophomina phaseolina é agente de podridão em raízes, caule, ramos, e frutos em mais de 500 espécies de plantas cultivadas.Entretanto, pouco se sabe acerca da influência da temperatura e da umidade sobre a germinação dos microescleródios desse fungo. O objetivo deste trabalho foi estudar o efeito da interação temperatura-tensão de água na areia sobre a germinação dos microescleródios do fungo. Os trabalhos foram conduzidos em condições de laboratório, tendo sido realizados em duas etapas. Em um primeiro experimento, avaliou-se a interação de cinco temperaturas com duas tensões de água. Os resultados obtidos subsidiaram um segundo experimento no qual avaliou-se a interação de duas temperaturas com seis tensões de água no substrato. O delineamento experimental para ambos experimentos foi o inteiramente casualizado com quatro repetições, em esquema fatorial, com arranjo combinatório 5x2 e 2x6, respectivamente, para o primeiro e segundo experimentos. Os resultados mostraram (P<=0,05) que os maiores percentuais de germinação ocorreram às temperaturas de 30 ºC e 33 ºC. Na tensão de água de -1.500 kPa ocorreu germinação em todas as temperaturas testadas. A tensão de água de -80 kPa tendeu a proporcionar o maior percentual de germinação, embora não tenha diferido das tensões de -8, -300 e -1.500 kPa. Os microescleródios não germinaram em areia seca ao ar, porém germinaram em 0 kPa, embora em menor percentual que a -8, - 80, -300 e -1.500 kPa. O efeito isolado da tensão de água sobre a germinação foi importante apenas quando se considerou os níveis extremos desse fator.

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Alguns microrganismos fitopatogênicos podem ser transportados pela água, que se constitui em importante e eficiente forma de disseminação. O controle de fitopatógenos pelo tratamento térmico da água infestada, utilizando a energia solar, constituiu o objetivo do trabalho. Quantificou-se a eficiência de um sistema automatizado de aquecimento solar desenvolvido para esta finalidade, baseado em processo misto de aquecimento da água em circuito fechado, com coletores planos e transmissão de calor por convecção natural e forçada. A automatização e a equalização da temperatura foram obtidas por termostatos localizados em diferentes pontos. Verificou-se boa eficiência do equipamento, trabalhando na temperatura de 60 ºC, tanto em rendimento de água processada como na eliminação do inóculo de fitopatógenos de importância econômica, como Botrytis cinerea, Colletotrichum spp., Fusarium spp., Pythium spp., Verticillium dahliae e Rhizoctonia solani. À exceção de F. oxysporum f. sp. phaseoli, os patógenos testados não sobreviveram ao tratamento térmico a temperaturas acima de 55 0C. A técnica mostrou-se promissora como uma opção na desinfestação da água para uso em irrigação de viveiros, casas de vegetação e diversas finalidades em pequenas ou médias propriedades agrícolas.

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O objetivo do presente trabalho foi determinar o efeito do tratamento com água quente no controle da podridão branca (Botryosphaeria dothidea) em maçãs (Malus domestica) cv. Fuji. Os tratamentos foram combinações de três tempos de imersão em água quente (1, 2, e 3 min) e três temperaturas da água (47, 49 e 52 °C), utilizando frutos inoculados com o patógeno. As maçãs foram armazenadas na temperatura de 0-1 °C em atmosfera controlada (AC) de 1,2 a 1,6 kPa de O2 e 0,2 a 0,4 kPa de CO2 e em ar refrigerado (AR). As amostras armazenadas foram avaliadas ao final um, três e cinco meses em AC ou AR mais sete dias em temperatura ambiente. Avaliou-se o diâmetro de lesão e variáveis da qualidade dos frutos. Os tratamentos de imersão em água quente reduziram o tamanho das lesões das maçãs quando o tratamento foi de 47 °C por 3 min em armazenamento em AC. A armazenagem em AC manteve melhores as características qualitativas das maçãs.