1000 resultados para Tensoativo. Microemulsão. Borra de petróleo. Solubilização.Tratamento. Resíduos perigosos
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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)
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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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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)
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O presente consiste no estudo de caracterização e proposta de tratamento de lixiviados de resíduos de madeira produzidos em laboratório. Lixiviados de madeira ou chorumes de madeira são originados quando resíduos de madeira, decorrente do processo de transformação, são dispostos de forma inadequada, no ambiente, possibilitando a interação destes com água, geralmente de precipitações climáticas, o que resulta na geração de líquido de cor escura que pode conter uma série de substâncias com potencial impacto negativo sobre os ambientes aquáticos. O efluente estudado foi gerado em laboratório por meio de dois experimentos distintos. No Experimento A, em frascos de polietileno, foram misturadas água e pó-de-serra, na proporção 9:1, permanecendo em contato, em sistema aberto e temperatura ambiente, por 90 dias. Nos tempos de 0, 1, 5, 10, 20, 30, 45, 60, 75, 80 e 90 dias, a solução foi filtrada e levada ao laboratório para análise. No Experimento B, armazenou-se em um recipiente plástico aproximadamente 5 Kg de resíduos de madeira, onde na parte inferior foi adaptado um dreno para coleta de efluente. Este sistema ficou exposto ao sol e a precipitações climáticas, de tal forma a simular as condições reais de geração de lixiviados de uma pilha de resíduos de madeira em caso real. Em ambos experimentos (A e B) observou-se a geração de um líquido de cor âmbar claro a negro, com odor forte característico, levemente ácido @H 5,53 — 6,97), alta demanda de oxigênio (DBO 17 — 310 mg.L-1; DQO 857 — 3.161 mg.L-1 e OD 0,63 — 5,56 mg.L-1), altas cargas de matéria orgânica (CT 170,93 — 425,19 mg.L-1, COT 167,66 — 415,66 mg.L-1 e CIT 2,22 — 34,05 mg.L-1), grande concentração de sólidos (SS 10 — 23 mL.L-1; STS 463 — 1.330 mg.L-1; STD 31 — 640 mg.L-1) e turbidez (10,0 — 638,5 UT). Devido a estas características foi proposto um tratamento fisico-químico para o chorume produzido, por meio da combinação dos processos de coagulação/floculação e oxidação com permanganato de potássio, que resultou, respectivamente, na redução dos níveis de DQO 20,95% e 88,53%, cor 43,31% e 98,18%, turbidez 40,45% e 98,16%, STS 65,71% e 100%, por processo. A eficiência global do tratamento proposto foi de 90,93% nos valores de DQO, 98,97% nos valores de cor verdadeira, 98,90% nos valores de turbidez e 100,00% nos valores de STS.
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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)
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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)
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Os efluentes de indústrias, como refinarias e petroquímicas, frequentemente contém elevadas concentrações de substâncias tóxicas, dentre elas, os compostos fenólicos. Estas substâncias, mesmo em pequenas quantidades, afetam as propriedades organolépticas da água, além de que durante o processo de cloração da água potável, podem ser transformadas em clorofenóis e policlorofenóis, pela reação com o cloro, formando substâncias com características carcinogênicas. Neste sentido, o refino do petróleo produz grande variedade de poluentes cujas propriedades modificam-se em função dos processos utilizados. Os fenóis são compostos tóxicos, com características fungicida e desinfetante, sendo tóxico para a maioria dos microrganismos, além de apresentarem ação de carcinogenicidade, mutagenicidade e serem recalcitrantes, acumulam-se nos corpos receptores, gerando danos à saúde e à vida aquática. No entanto, embora o fenol possua ação bactericida, alguns microrganismos adquiriram a habilidade de se adaptar e utilizar este composto como fonte de carbono e energia. O presente trabalho pretendeu selecionar linhagens bacterianas, a partir do efluente de uma refinaria de petróleo, da região de Paulínia – SP, que sejam capazes de utilizar altos teores de fenóis como fonte de carbono e energia para seu crescimento e desenvolvimento, a fim de serem aplicadas nas estações de tratamento de efluentes industriais, com foco nas refinarias de petróleo. Foram isoladas 3 linhagens a partir das amostras enriquecidas do efluente da refinaria e, após os ensaios, constatou-se que 1 linhagem apresentou resistência à concentração de fenol de 1.000 mg.L-1. Os ensaios de biodegradação e crescimento em fenol como única fonte de carbono, demonstraram que estas linhagens são capazes de biodegradar aproximadamente 20% do fenol disponível no meio, no período de 24 horas. A quantificação do fenol residual foi realizada em...
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Petroleum and its subproducts are considered a treat for the environmental quality because of the many environmental accidents that may occur during exploitation, transport and storage. A common remediation technique used in the contaminated areas is based on the use of surfactants, mainly the chemical ones, because they have low production costs. In the other hand, some microorganisms have indicate capacities of producing surfactants that emulsify substances and as result, offer a bigger contact surface for the microbiota degradation. This biossurfactants stand out in comparison with the chemical surfactants because they present lower micelar concentration values, are more tolerant for temperature and pH variation, because they are biodegradable, have low toxicity, higher emulsification and hydrocarbon solubilization index. In this way, after the surfactant application, a toxicity evaluation have to be made to identify the treatment effects. In soil, the activity of some microbial enzymes can show the environmental behavior of the contaminant under different treatment conditions. Dehydrogenase is one example of those enzymes that can demonstrate indirectly the effect of the pollutant on the soil microorganisms. The aim of this paper was to evaluate the toxicity after the addition of a surfactant and/or Pseudomonas aeruginosa LBI in soil contaminated by a mineral automotive lubricant. The previous mentioned bacteria are a potential biossurfactant (rhamnolipid) producer. In order to evaluate the toxicity, the dehydrogenase test was run. In this test, trifeniltetrazolium compound (TTC) after utilized as an electron acceptor, turns into trifenil formazan (TPF), that can be indirectly quantified using the absorbance measured by the spectrophotometer UV-visible. In this way, it was possible to quantify the dehydrogenase activity from the contaminated soil samples... (Complete abstract click electronic access below)
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Ethanol, the main automotive biofuel, has its production based on the fermentation of sugars found in biological materials and on the distillation of the alcoholic media formed during the fermentative process. Stillage is the main residue from ethanol production, containing a high organic loading in addition to acidic and corrosive characteristics. Considering the available technologies to treat stillage, we highlight anaerobic digestion, which allows the reduction of the impacts associated to pollutants loading of this effluent and the generation of energy from the methane gas produced in the process. Based on the high treatment efficiency usually associated to the anaerobic process, this work aimed to assess whether anaerobic systems applied to the treatment of stillage are energetically self-sufficient. First we evaluated the energy recovery capacity in an anaerobic reactor applied to the treatment of stillage resulting from corn-to-ethanol processing. The results indicated the great influence that a correct selection of electrical equipment and their respective operating periods have on the net energy balance of the anaerobic treatment. The high energy consumption of the heater would not allow the system to achieve a positive net energy balance – the maximum energy recovery would reach only 0.68% of the consumption. However, the replacement of the mixture equipment would result in energy gains ranging from 8.5 to 967.9% of the consumption. In this work we also assessed the efficiency of methane yields for a few studies and the correlation between some parameters of the anaerobic process. With respect to the methane yield, we noted that mesophilic systems tend to be more advantageous than the thermophilic ones (efficiency of 76.45 ± 22.51% vs. 69.40 ± 30.36%). Considering the study... (Complete abstract click electronic access below)
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The organic wastes need to be adequately managed, in order to avoid the environmental pollution and damage to the public health. So, this work aimed to study the composting process using two methods: manual and mechanized, for the treatment of bovine ruminal waste. This residue is generated in large proportions during the bovine slaughter process, and it can lead environmental degradation and contamination, or even damage to the public health, when not treated. For the initial adjustment of the composting parameters, it was incorporated the residue of coffee husks. The manual composting system was done by the manually aerated piles, while the mechanized composting system was done in a reactor coupled to a compressor that enabled the aeration of the system. The proportions used in both systems were: 90% bovine rumen (R) and 10% coffe husks (CC); 85% bovine rumen and 15% coffe husks; 80% bovine rumen and 20% coffe husks. The parameters determined during the monitoring of the composting process were: temperature, pH, moisture, organic matter, ash, organic carbon, Kjeldahl nitrogen and C/N ratio. The results obtained during the monitoring of the piles and reactors presented similar behavior, except for the parameters Kjeldahl nitrogen and C/N ratio. When compared to the “Instrução Normativa no 25 de 23/07/2009 do Ministério da Agricultura, Pecuária e Abastecimento”, the organic produced composts with the best results were: pile 2 (85% R; 15% CC) and reactors 1 (90% R; 10% CC) e 2 (85% R; 15% CC)
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This project aimed to analyze the feasibility of the methane yield associated to the anaerobic digestion of brewery residues, checking whether the energetic balance of the system is favorable. The methane yield efficiency was calculated for the parameters of two papers that treated solids with a particle-size <1mm. Theses solids are not degraded in conventional treatment systems. Calculations were based in the reactions of anaerobic degradation of the macromolecules that compose brewery residues, considering the theoretical production and the effective production of methane. The results were 50.44% and 52.86%. Regarding to the energy balance of the anaerobic treatment, we noted the high influence of the selection and operating regime of electrical equipment over the potential energy. The best situation, in which the energetic self-sufficiency was reached, was observed when using the mixer under an intermittent regime (1min/h), without employing the heating recirculator, for the maximum organic loading of 4.0 gVS/L.day (days 248-258). In this case, the system would generate an amount of energy equal to 0.0356 kWh/day, able to overcome the energy required by the equipment in about 6.5 times. Moreover, we also noted the interference of the application of different solid loadings in the reactors, once the application of the higher organic load generated 5 times more energy than the application of the smaller one
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With the constant increase in the municipal solid waste (MSW) generation, mainly due to the high consumption patterns, it becomes difficult to manage correctly the solid waste and thus minimize their impact on the environment. One of the most problems of the large amount of waste generated is the liquid originated from physical, chemical and biological decomposition process of organic wastes, with dark color and bad smell, called leachate: it can reach the soil, polluting the groundwater and the surface water. Therefore, this study aimed to investigate the process of coagulation/flocculation/sedimentation applied in the treatment of the leachate generated in the not controlled landfill of Presidente Prudente, Sao Paulo... (Complete abstract click electronic access below)
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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)
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Pós-graduação em Agronomia (Irrigação e Drenagem) - FCA