998 resultados para manganese sulfate


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Natural gas, although basically composed by light hydrocarbons, also presents contaminant gases in its composition, such as CO2 (carbon dioxide) and H2S (hydrogen sulfide). The H2S, which commonly occurs in oil and gas exploration and production activities, causes damages in oil and natural gas pipelines. Consequently, the removal of hydrogen sulfide gas will result in an important reduction in operating costs. Also, it is essential to consider the better quality of the oil to be processed in the refinery, thus resulting in benefits in economic, environmental and social areas. All this facts demonstrate the need for the development and improvement in hydrogen sulfide scavengers. Currently, the oil industry uses several processes for hydrogen sulfide removal from natural gas. However, these processes produce amine derivatives which can cause damage in distillation towers, can cause clogging of pipelines by formation of insoluble precipitates, and also produce residues with great environmental impact. Therefore, it is of great importance the obtaining of a stable system, in inorganic or organic reaction media, able to remove hydrogen sulfide without formation of by-products that can affect the quality and cost of natural gas processing, transport, and distribution steps. Seeking the study, evaluation and modeling of mass transfer and kinetics of hydrogen removal, in this study it was used an absorption column packed with Raschig rings, where the natural gas, with H2S as contaminant, passed through an aqueous solution of inorganic compounds as stagnant liquid, being this contaminant gas absorbed by the liquid phase. This absorption column was coupled with a H2S detection system, with interface with a computer. The data and the model equations were solved by the least squares method, modified by Levemberg-Marquardt. In this study, in addition to the water, it were used the following solutions: sodium hydroxide, potassium permanganate, ferric chloride, copper sulfate, zinc chloride, potassium chromate, and manganese sulfate, all at low concentrations (»10 ppm). These solutions were used looking for the evaluation of the interference between absorption physical and chemical parameters, or even to get a better mass transfer coefficient, as in mixing reactors and absorption columns operating in counterflow. In this context, the evaluation of H2S removal arises as a valuable procedure for the treatment of natural gas and destination of process by-products. The study of the obtained absorption curves makes possible to determine the mass transfer predominant stage in the involved processes, the mass transfer volumetric coefficients, and the equilibrium concentrations. It was also performed a kinetic study. The obtained results showed that the H2S removal kinetics is greater for NaOH. Considering that the study was performed at low concentrations of chemical reagents, it was possible to check the effect of secondary reactions in the other chemicals, especially in the case of KMnO4, which shows that your by-product, MnO2, acts in H2S absorption process. In addition, CuSO4 and FeCl3 also demonstrated to have good efficiency in H2S removal

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The crop of the sugarcane is stood out in the Brazilian agricultural scenery, due to the great demand of sugar, alcohol and by-products. The present work had as objective to evaluate the effect of five doses and three sources of manganese applied at planting furrow in sugarcane, in two cuts, in the Northwest area of São Paulo State, Brazil. The experiment was conducted at Fujimoto farm with coordinates 20 degrees 32 'S and 50 degrees 58' O, and altitude of 361 meters, area administered by Distillery Vale do Parana S/A Alcool and Acucar, in Suzanapolis county - São Paulo state. A randomizef blocks design in a factorial scheme 5x3, being 5 doses of manganese (0; 2.5; 5.0; 7.5 and 10.0 kg ha(-1)), and 3 sources (Quelate, FTE and manganese sulfate), applied at planting furrow, in 4 repetitions was used. The plots were constituted by 4 lines of 5 m length, spaced by 1.5 m. The RB 86-7515 variety was used. The sources of manganese did not influence in the technological quality and productivity of stems in none of the cuts of sugarcane. The application of doses of manganese resulted in increase on values of recoverable total sugar per ha and ton of pol per ha in plant cane, not influencing in the other variables analyzed on plant cane and ratoon cane.

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

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A cana-de-açúcar possui grande importância econômico-social e política para o Brasil. Este trabalho teve como objetivo avaliar o efeito de doses e fontes de manganês nessa cultura. O experimento foi realizado no sítio Fujimoto, área administrada pela Destilaria Vale do Paraná S/A Álcool e Açúcar, no município de Suzanápolis, SP. O delineamento experimental utilizado foi o de blocos ao acaso no esquema fatorial 5 x 3, sendo cinco doses de Mn (0; 2,5; 5,0; 7,5; e 10,0 kg ha-1) e três fontes (quelato, FTE e sulfato de manganês), aplicadas no sulco de plantio, em quatro repetições. As parcelas foram constituídas por quatro linhas de 5 m de comprimento e espaçadas 1,5 m. A variedade de cana-de-açúcar utilizada foi a RB 86-7515, realizando-se dois cortes. As fontes de Mn proporcionaram semelhantes produtividades de colmos, tanto da cana-planta quanto da primeira cana-soca. O quelato de Mn proporcionou maior número de colmo por metro de sulco na cana-soca. As doses de Mn não influenciaram a produtividade de colmos da cana-planta e da cana- soca, porém aumentaram o número de internódios e o diâmetro de colmo na cana-planta até as doses de 6,9 e 6,6 kg ha-1 de Mn, respectivamente.

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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Pós-graduação em Agronomia - FEIS

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

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