1000 resultados para tratamento de efluente


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Em vista da escassez de informações sobre o comportamento da espécie Mentha aquatica quando cultivada sob condições de alagamento e altas concentrações orgânicas, objetivou--se avaliar o efeito de diferentes taxas de carregamento orgânico (TCOs) sobre a produtividade e o estado nutricional da espécie cultivada em sistemas alagados construídos (SACs) de escoamento horizontal subsuperficial no tratamento de efluente primário de esgoto sanitário. Dois SACs de 24,0 m x 1,0 m x 0,35 m, preenchidos com brita “zero” até a altura de 0,20 m, foram cultivados com a espécie. O experimento foi realizado em duas etapas: na primeira, avaliaram-se as TCOs de 40,35 kg ha-1 d-1 e 53,80 kg ha-1 d-1 de DBO5; na segunda etapa, as TCOs de 79,66 kg ha-1 d-1 e 160,35 kg ha-1 d-1 de DBO5. Ao final de cada etapa, amostras da parte aérea das plantas foram coletadas para quantificação de rendimento de matéria seca e análises dos teores foliares de nitrogênio, fósforo, potássio e sódio. Apesar de cultivada sob condições de alagamento, a espécie apresentou elevada produtividade. O aumento na TCO aplicada aos sistemas favoreceu a produção de matéria seca e o aumento na concentração foliar de nitrogênio, potássio e sódio.

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A produção enzimática é um dos campos mais promissores dentro das tecnologias para a síntese de compostos de alto valor agregado, estando em constante crescimento pela grande capacidade dos microrganismos de realizarem transformações químicas. As enzimas produzidas por processos fermentativos têm sido utilizadas para o controle ambiental. Muitas destas enzimas podem ser produzidas a partir de resíduos industriais, diminuindo os custos de produção. As lipases são enzimas que catalisam a hidrólise de triglicerídeos em glicerídeos e ácidos graxos. As lipases vêm sendo utilizadas na redução da concentração dos lipídios contidos nos efluentes, promovendo a hidrólise dos óleos e gorduras presentes. Objetivou-se avaliar a produção de lipases por fungos isolados a partir de efluentes de laticínios. Foram isolados 21 fungos, pertencentes aos gêneros Penicillium, Aspergillus, Trichoderma e Fusarium. Na etapa de seleção, 9 fungos foram selecionados devido à capacidade de crescimento em meio contendo azeite de oliva como substrato. Na fermentação submersa, os fungos E9 (Aspergillus), E21 (Aspergillus) e E20 (Penicillium) foram os que apresentaram as maiores atividades enzimáticas, de 1,250 a 2,250 U, utilizando-se como meio de cultivo o efluente coletado na saída do equalizador do sistema de tratamento de efluente.

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A Agrale S.A. é uma empresa que produz veículos, tratores e motores a diesel. Na Unidade de Caxias do Sul - RS, os efluentes líquidos gerados provêm das cabines de pintura, tratamento de superfície, cabine de lavagem de peças com óleos, usinagem, esgoto cloacal e lavagem de veículos. Todas essas águas residuárias são enviadas à estação de tratamento de efluentes onde recebem tratamento físico-químico (coagulação-floculação) e biológico (lagoa aerada seguida por uma lagoa de polimento com aguapés). Entretanto, no monitoramento da ETE, observou-se que em algumas ocasiões os teores de nitrogênio e fósforo excediam os limites de emissão. Ainda, na Empresa, não havia uma metodologia estabelecida para o acompanhamento da eficiência de operação da lagoa com aguapés, unidade onde se espera que as concentrações residuais de nutrientes sejam reduzidas. Assim, o objetivo do presente trabalho foi estudar o desempenho da lagoa com aguapés empregada como etapa de polimento na estação de tratamento de efluente. Avaliou-se a eficiência da lagoa sem aguapés, com 50% de aguapés e com aguapés. Ainda, para um recobrimento de 50% de aguapés, investigou-se o desempenho nas diversas estações do ano. Os parâmetros avaliados foram sólidos suspensos, DQO, nitrogênio Kjeldahl total, fósforo total, óleos e graxas e ferro. Os resultados demonstraram que a existência de uma lagoa estabilização para fins de polimento é importante na estação de tratamento de efluentes da Empresa, pois reduz consideravelmente o número de não conformidades na qualidade do efluente final. A lagoa sem recobrimento de aguapés apresentou o melhor resultado em relação ao parâmetro DQO. A lagoa com 50% de recobrimento de aguapés os melhores valores em relação à sólidos suspensos, nitrogênio Kjeldahl total, fósforo total e ferro A lagoa com aguapés apresentou os melhores resultados em relação à remoção de óleos e graxas. Entretanto, como a função primordial da lagoa era a remoção de nutrientes, considerou-se que, para o caso da ETE da Agrale, a melhor opção é a operação com um nível de 50% de recobrimento de aguapés. Com este nível de recobrimento, os índices médios anuais de remoção foram: 23,8% na concentração de sólidos suspensos, 44,8 % na concentração de DQO, 77,0 % no teor de nitrogênio, 60,5 % no teor de fósforo, 44,4 % no teor de óleos e graxas e 26,4% no teor de ferro. De modo geral, a remoção de nitrogênio e fósforo ocorreu durante todo o ano. Porém, no caso do fósforo, a remoção foi maior nas estações inverno e primavera, épocas em que ocorria o crescimento dos aguapés. A biomassa de aguapés retirada na lagoa da Agrale apresenta-se com composição parecida com a de aguapés retirados do meio natural e de em lagoas eutrofizadas com esgoto doméstico. Não se apresenta contaminada com metais pesados, possibilitando o seu descarte através da transformação em composto agrícola. O composto de aguapés obtidos na Agrale atende aos Padrões da Portaria número 1 de 04/03/1983. O material pode ser facilmente descartado pela simples introdução nos canteiros e gramados na Empresa. O uso de lagoa de aguapés é uma alternativa viável no polimento final de efluentes do setor metalmecânico. A lagoa de aguapés auxilia na remoção de nutrientes (nitrogênio e fósforo), óleos e graxas e concentrações residuais de metais pesados; apresentando sucesso nas condições climáticas de Caxias do Sul, RS.

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The production of water has become one of the most important wastes in the petroleum industry, specifically in the up stream segment. The treatment of this kind of effluents is complex and normally requires high costs. In this context, the electrochemical treatment emerges as an alternative methodology for treating the wastewaters. It employs electrochemical reactions to increase the capability and efficiency of the traditional chemical treatments for associated produced water. The use of electrochemical reactors can be effective with small changes in traditional treatments, generally not representing a significant additional surface area for new equipments (due to the high cost of square meter on offshore platforms) and also it can use almost the same equipments, in continuous or batch flow, without others high costs investments. Electrochemical treatment causes low environmental impact, because the process uses electrons as reagent and generates small amount of wastes. In this work, it was studied two types of electrochemical reactors: eletroflocculation and eletroflotation, with the aim of removing of Cu2+, Zn2+, phenol and BTEX mixture of produced water. In eletroflocculation, an electrical potential was applied to an aqueous solution containing NaCl. For this, it was used iron electrodes, which promote the dissolution of metal ions, generating Fe2+ and gases which, in appropriate pH, promote also clotting-flocculation reactions, removing Cu2+ and Zn2+. In eletroflotation, a carbon steel cathode and a DSA type anode (Ti/TiO2-RuO2-SnO2) were used in a NaCl solution. It was applied an electrical current, producing strong oxidant agents as Cl2 and HOCl, increasing the degradation rate of BTEX and phenol. Under different flow rates, the Zn2+ was removed by electrodeposition or by ZnOH formation, due the increasing of pH during the reaction. To better understand the electrochemical process, a statistical protocol factor (22) with central point was conducted to analyze the sensitivity of operating parameters on removing Zn2+ by eletroflotation, confirming that the current density affected the process negatively and the flow rate positively. For economical viability of these two electrochemical treatments, the energy consumption was calculated, taking in account the kWh given by ANEEL. The treatment cost obtained were quite attractive in comparison with the current treatments used in Rio Grande do Norte state. In addition, it could still be reduced for the case of using other alternative energy source such as solar, wind or gas generated directly from the Petrochemical Plant or offshore platforms

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The oil and petrochemical industry is responsable to generate a large amount of waste and wastewater. Among some efluents, is possible find the benzene, toluene, ethilbenze and isomers of xilenes compounds, known as BTEX. These compounds are very volatily, toxic for environment and potencially cancerigenous in man. Oxidative advanced processes, OAP, are unconventional waste treatment, wich may be apply on treatment and remotion this compounds. Fenton is a type of OAPs, wich uses the Fenton s reactant, hydrogen peroxide and ferrous salt, to promove the organic degradation. While the Photo-Fenton type uses the Fenton s reactant plus UV radiation (ultraviolet). These two types of OAP, according to literature, may be apply on BTEX complex system. This project consists on the consideration of the utilization of technologies Fenton and Photo-Fenton in aqueous solution in concentration of 100 ppm of BTEX, each, on simulation of condition near of petrochemical effluents. Different reactors were used for each type of OAP. For the analyticals results of amount of remotion were used the SPME technique (solid phase microextraction) for extraction in gaseous phase of these analytes and the gas chromatography/mass espectrometry The arrangement mechanical of Photo-Fenton system has been shown big loss by volatilization of these compounds. The Fenton system has been shown capable of degradate benzene and toluene compounds, with massic percentage of remotion near the 99%.

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The oil industry has several segments that can impact the environment. Among these, produced water which has been highlight in the environmental problem because of the great volume generated and its toxic composition. Those waters are the major source of waste in the oil industry. The composition of the produced water is strongly dependent on the production field. A good example is the wastewater produced on a Petrobras operating unit of Rio Grande do Norte and Ceará (UO-RNCE). A single effluent treatment station (ETS) of this unit receives effluent from 48 wells (onshore and offshore), which leads a large fluctuations in the water quality that can become a complicating factor for future treatment processes. The present work aims to realize a diagnosis of a sample of produced water from the OU - RNCE in compliance to certain physical and physico-chemical parameters (chloride concentration, conductivity, dissolved oxygen, pH, TOG (oil & grease), nitrate concentration, turbidity, salinity and temperature). The analysis of the effluent is accomplished by means of a MP TROLL 9500 Multiparameter probe, a TOG/TPH Infracal from Wilks Enterprise Corp. - Model HATR - T (TOG) and a MD-31 condutivimeter of Digimed. Results were analyzed by univariated and multivariated analysis (principal component analysis) associated statistical control charts. The multivariate analysis showed a negative correlation between dissolved oxygen and turbidity (-0.55) and positive correlations between salinity and chloride (1), conductivity, chloride and salinity (0.70). Multivariated analysis showed there are seven principal components which can explain the variability of the parameters. The variables, salinity, conductivity and chloride were the most important variables, with, higher sampling variance. Statistical control charts have helped to establish a general trend between the physical and chemical evaluated parameters

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This study investigates a new treatment system of wastewater by anaerobic and aerobic biological filters for nitrogen modification. The main objective of this study was evaluate, on a pilot scale, quantitatively and qualitatively the bacterian nitrifying community in a experimental sewage treatment system made by aerobics biological filters in series, in search of figure out the dynamic of nitrogen modification process. It was collected and laboratorial analysed microbiologically, regarding NMP of Nitrosomonas e Nitrobacter, and physical-chemically considering nitrogen sequence. We conclude that: the association in aerobic biological filters under nutrition controlled conditions and oxygen level allows the appearance of bacterian community responsible for the nitrogen modification; the method used, despite its limitations, provided the selection of autotrophic nitrifying microorganisms, allowing the identification of Nitrosomonas and Nitrobacter; the flow direction tested in the experimental unit did not affect the nitrifying bacterial community, certainly because they were kept drowned and did not occur flow speed that could breake the formed biomass; the nitrification process happened in aerated biological filters in all phases of the research, comproved by microbiological tests; in the third phase of the research the increase of the oxygen rate was significant for the nitrificant bacterian community in the aerate biological filters, allowing its growth, occurring relation between the efficiency of nitrification system and the quantity of organisms responsible for this process; the conduit used in aerated biological filters showed satisfactory performance support material to the nitrifying bacteria development

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Pós-graduação em Engenharia Mecânica - FEB

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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

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Pós-graduação em Engenharia Mecânica - FEG

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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)

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This study used a multi-analytical approach based on traditional microbiological methods for cultivation and isolation of heterotrophic bacteria in the laboratory associated with the molecular identification of the isolates and physicochemical analysis of environmental samples. The model chosen for data integration was supported by knowledge from computational neuroscience, and composed by three modules: (i) microbiological parameters, contemplating taxonomic data obtained from the partial sequencing of the 16S rRNA gene from 80 colonies of heterotrophic bacteria isolated by plating method in PCA media. For bacterial colonies isolation were used water samples from Atibaia and Jaguarí rivers collected at the site of water captation for use in effluent treatment, upstream from the entrance of treated effluent from the Paulínia refinery (REPLAN/Petrobras) located in the Paulínia-SP municipality, from the output of the biological treatment plant with stabilization pond and from the raw refinery wastewater; (ii) chemical parameters, ending measures of dissolved oxygen (DO), chemical oxygen demand (COD), biochemical oxygen demand (BOD), chloride, acidity CaCO3, alkalinity, ammonia, nitrite, nitrate, dissolved ions, sulfides, oils and greases; and (iii) physical parameters, comprising the pH determination, conductivity, temperature, transparency, settleable solids, suspended and soluble solids, volatile material, remaining fixing material (RFM), apparent color and turbidity. The results revealed interesting theoretical relationships involving two families of bacteria (Carnobacteriaceae and Aeromonadaceae). Carnobacteriaceae revealed positive theoretical relationships with COD, BOD, nitrate, chloride, temperature, conductivity and apparent color and negative theoretical relationships with the OD. Positive theoretical relationships were shown between Aeromonadaceae and OD and nitrate, while this bacterial family showed negative theoretical...

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This study used a multi-analytical approach based on traditional microbiological methods for cultivation and isolation of heterotrophic bacteria in the laboratory associated with the molecular identification of the isolates and physicochemical analysis of environmental samples. The model chosen for data integration was supported by knowledge from computational neuroscience, and composed by three modules: (i) microbiological parameters, contemplating taxonomic data obtained from the partial sequencing of the 16S rRNA gene from 80 colonies of heterotrophic bacteria isolated by plating method in PCA media. For bacterial colonies isolation were used water samples from Atibaia and Jaguarí rivers collected at the site of water captation for use in effluent treatment, upstream from the entrance of treated effluent from the Paulínia refinery (REPLAN/Petrobras) located in the Paulínia-SP municipality, from the output of the biological treatment plant with stabilization pond and from the raw refinery wastewater; (ii) chemical parameters, ending measures of dissolved oxygen (DO), chemical oxygen demand (COD), biochemical oxygen demand (BOD), chloride, acidity CaCO3, alkalinity, ammonia, nitrite, nitrate, dissolved ions, sulfides, oils and greases; and (iii) physical parameters, comprising the pH determination, conductivity, temperature, transparency, settleable solids, suspended and soluble solids, volatile material, remaining fixing material (RFM), apparent color and turbidity. The results revealed interesting theoretical relationships involving two families of bacteria (Carnobacteriaceae and Aeromonadaceae). Carnobacteriaceae revealed positive theoretical relationships with COD, BOD, nitrate, chloride, temperature, conductivity and apparent color and negative theoretical relationships with the OD. Positive theoretical relationships were shown between Aeromonadaceae and OD and nitrate, while this bacterial family showed negative theoretical...