1000 resultados para Processo Fischer-Tropsch
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An alternative for landfill leachate treatment are advanced oxidation processes by Fenton's reagent (AOP/Fenton). In this context, the aim of this paper was to evaluate, in a bench scale, the treatability of leachate pós-AOP/Fenton characterizing the supernatant and the sludge generated separately. Observed in optimal conditions, high removal efficiency of COD (76.7%), real color (76.4%) and humic substances (50%). Organic compounds were detected in the sludge (2.465 mg COD L-1) and high concentration of iron (1.757 mg L-1) as was expected. Finally, the sludge generated showed low settling hindering their separation by sedimentation (SVI = 321 mL g-1).
Construção de uma câmara para monitoramento in situ do processo de secagem de geis e sólidos porosos
Resumo:
The present work deals with the design and construction of an equipment for studying the drying process of gels and solids. The equipment was built using mainly a commercial oven and others peripherals for programmed control of temperature, humidity and data acquisition. The system allows the in situ monitoring of the gel drying, registering the weight loss, and the shrinkage of sample and the oven temperatures. This set of allowed parameters makes possible to establish the main steps involved in the drying of meso and nanostructured porous materials.
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Currently, public policy has encouraged innovation in universities and also transference of technology to the industry. Another important stage to be considered would be the registration or filing of a patent and the economical viability study. Government programs, such as the innovation incentive program, among others, should facilitate popularization and promote interest by industry. In this work we described the steps, from the conception of the idea to the scale up going through its interest by the industry. The case study is about the glycerol conversion utilizing modified niobia as catalysts.
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Several problems are involved the treatment plants of textile effluents, mainly the low efficiency of color removal. This paper presents an alternative of post-treatment by UV/H2O2 process, for color removal in biologically treated textile effluents. The tests were performed in a photochemical reactor and samples were taken at different times to perform analyses. Using 250 mgH2O2.L-1, 96% removal of color was verified, indicating the dyes degradation. A reduction of 84% of aromatics compounds, 90% of TSS removal, and a further reduction of the organic fraction were observed, demonstrating that the process is effective as a post-treatment of effluents from textile industries.
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This work used green coconut mesocarp as a bioadsorbent to remove Reactive Gray BF-2R dye. A 2³ factorial design was used to evaluate the influence of the variables adsorbent mass, particle size and stirring speed on the adsorptive process. Kinetic and adsorption equilibrium studies were performed. Results showed that the kinetic equilibrium was reached after 150 min. Using the Langmuir model, a q max of 21.9 mg g-1 and k of 0.30 L g-1 was obtained. The mesocarp of coconut, a residue of agribusiness, proved to be an effective alternative technique for the removal of dye in this study.
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The Rancimat and accelerated stove tests were used to determine the oxidative stability of B100 biodiesel mixed with synthetic antioxidants. The predictive equations, with process variable, were obtained by applying a simplex-centroid design. Regardless of the antioxidant used, all assays carried out with the accelerated stove test presented storage time longer than 177.88 d, the greatest value obtained by applying the Rancimat test. The t test, applied to the parameters containing the process variable, showed a statistically significant difference (at the level of 5%) between the methods used.
Resumo:
Two processes are used to stabilize organic wastes: composting and vermicomposting.There are no studies in the literature showing which process is most effective over the short term. In this study, 3 organic wastes were composted and vermicomposted for 90 days, and the parameters pH, effective cation exchange capacity, total organic carbon, total Kjeldahl nitrogen, Ptotal, E4/E6 ratio, hydrophobicity and aromaticity indexes were determined. In all experiments, vermicomposted materials showed higher stability, proving a superior tool for stabilization of these organic wastes.
Resumo:
In this work, an experimental design was used to analyze the influence of process parameters on the production of extracellular enzymes such as β-glucosidase and peroxidase, and their possible effect on the obtention of soluble and nanostructured silica from rice husk ash by the action of the fungus Fusarium oxysporum. Specifically, pH, fermentation time and glucose concentration in the culture medium were varied. Statistical analysis indicated that the silica synthesis in the aqueous medium was strongly dependent on pH and time. Although the glucose concentration does not exert a direct influence on the biosynthesis of silica, it is an important parameter in the production of extracellular enzymes. To prevent enzyme inhibition and provide higher dissolution of silica, it is recommended to work at a pH close to neutral with a glucose concentration of 3 g L-1 for at least 144 h.
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The filling of capillaries via the sol-gel process is growing. Therefore, this technical note focuses on disseminating knowledge acquired in the Group of Analytical Chemistry and Chemometrics over seven years working with monolithic stationary phase preparation in fused silica capillaries. We believe that the detailed information presented in this technical note concerning the construction of an alternative high pressurization device, used to fill capillary columns via the sol-gel process, which has promising potential for applications involving capillary electrochromatography and liquid chromatography in nano scale, may be enlightening and motivating for groups interested in developing research activities within this theme.
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Solid samples containing a Ca2Fe2O5 phase were synthesized using the Pechini method. The samples were characterized using X-ray diffraction, thermogravimetric analysis, differential thermal analysis, X-ray fluorescence, nitrogen adsorption/desorption isotherms, and scanning electron microscopy. The stability of the Ca2Fe2O5 phase was evaluated in the photocatalytic degradation of methylene blue (MB) in aqueous solution in the presence of bubbling gas (air, N2, or CO2). The presence of CO2 is known to suppress MB degradation. After the photocatalytic test, changes were observed in the crystalline phase of all systems. These results suggest the low stability of the Ca2Fe2O5 phase in aqueous systems and the significant effect of CO2 on the photocatalytic activity of the Ca2Fe2O5 phase.
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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.
Resumo:
In this work, Doehlert experimental design was used to optimize the Transesterification Double Step Process (TDSP) method of methyl soybean oil biodiesel production which starts with a basic catalysis followed by an acidic catalysis. The conversion values were calculated from NMR spectra. Response surface was used to show the results of the interactions between the variables. This experimental design evaluated variables like catalyst and alcohol amount for the basic catalysis and time and temperature for the acidic catalysis. According to results obtained after Doehlert design application the alcohol amount was the main factor that influenced on the basic catalysis but for the acidic catalysis both time and temperature are important and their effects are opposite. It resulted on excellent conversions for both steps obtaining for the basic catalysis about 100% when was used like optimal conditions catalyst amount equal to 0.40 g and volume of methanol equal to 60 mL and for the acidic catalysis about 99% when was used like optimal conditions temperature of 65 °C and 90 minutes for reaction time.
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In light of the theory of relationship with know of Bernard Charlot, aiming to understand the unique stories of the subject through a positive lecture, i.e., understanding the reality and the way the subjects read and interpret the world, this article attempts identify how higher education students solve an investigative case and learn the scientific knowledge using this theory. For this, we used narrative as a discourse genre to collect the data of 34 students who participated in the small group activities. After content analysis, the results showed that all groups of students solve the case in a similar way and in three stages, prevailing relations with know with the world, with others and with yourself. However, even if the resolution is similar, chemical learning differs between different groups and differs between the scientific content present in the case. From these results it is possible to identify the effectiveness of learning depends on the epistemic and identity relationships with know of each subject (relationship with yourself) because to learn the student must enter into an intellectual activity (investigative case), stay on it and develop the relationships with known necessary to master the normativity (chemical language).
Resumo:
Agrobacterium tumefaciens é o agente causal da galha-da-coroa, doença que afeta a maioria das plantas dicotiledôneas e caracteriza-se pelo crescimento de tumores na junção entre o caule e a raiz (coroa). A formação desses tumores é o resultado de um processo natural de transferência de genes de Agrobacterium spp. para o genoma da planta infetada. Esses genes estão contidos em um plasmídio de alto peso molecular (120 a 250 kb), denominado Ti ("tumor inducing"), presente em todas as linhagens patogênicas de Agrobacterium spp. Duas regiões do plasmídio Ti estão diretamente envolvidas na indução do tumor: a região-T, que corresponde ao segmento de DNA transferido para a célula vegetal, e a região de virulência (região vir), que contém genes envolvidos na síntese de proteínas responsáveis pelo processo de transferência da região-T. Esta região, uma vez transferida e integrada no genoma da célula vegetal, passa a ser denominada de T-DNA ("transferred DNA"). Os genes presentes no T-DNA codificam enzimas envolvidas na via de biossíntese de reguladores de crescimento, auxinas e citocininas. A síntese desses reguladores pelas células transformadas causa um desbalanço hormonal, levando à formação do tumor no local da infecção. Outro grupo de genes presentes no T-DNA codifica enzimas responsáveis pela síntese de opinas, que são catabolisadas especificamente pela bactéria colonizadora, como fonte de nutrientes. O conhecimento preliminar das bases moleculares envolvidas no processo de infecção de uma planta hospedeira por Agrobacterium spp., permitiu a utilização desta bactéria como vetor natural de transformação genética de plantas.
Resumo:
A mancha-negra dos grãos de aveia branca, cujo principal agente causal é Pyrenophora chaetomioides, é caracterizada pelo escurecimento de seus tecidos superficiais e pode ocasionar redução na qualidade e valor dos mesmos para a indústria alimentícia. Para melhor entender o processo de infecção e formação de manchas os objetivos deste trabalho foram i) Determinar o período de maior suscetibilidade dos grãos à formação de manchas por P. chaetomioides nos componentes florais da aveia; ii) determinar os diferentes níveis de resistência dos genótipos de aveia OR 2, ER 20877-2, UFRGS 995004-2, UPF 95204-2, UFRGS 16, UFRGS 9912002-2, UFRGS 999007-5, UFRGS 998013-3, UPF 16, UFRGS 999022-1, UFRGS 995058-3, UFRGS 15, UFRGS 17, UFRGS 19 e UFRGS 997005-2 à mancha-negra e sua correlação quanto à infecção dos grãos; iii) avaliar o efeito do controle químico na expressão da doença durante a fase de formação de grãos. Em laboratório, avaliou-se o percentual de grãos manchados e a incidência de P. chaetomioides nos componentes florais, enquanto que, a campo, avaliaram-se o rendimento e peso do hectolitro dos grãos. Nos estádios de grão leitoso e massa é quando ocorre a maior incidência de P. chaetomioides nos componentes florais. Os genótipos diferiram com relação ao sintoma da mancha-negra e incidência, mas não houve correlação entre estas duas variáveis. O controle químico na floração reduziu apenas 21% da incidência do fungo nas sementes, em relação à testemunha. Apesar disso, não foi suficiente para reduzir a formação das manchas e nem aumentar o rendimento que compensasse o seu custo.