991 resultados para emisiones NOx
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O aumento do estresse oxidativo tem sido positivamente associado às doenças cardiometabólicas, como hipertensão arterial. Por outro lado, o exercício físico aeróbio de moderada intensidade promove efeitos benéficos tanto na prevenção quanto no tratamento das doenças cardiometabólicas. Os efeitos benéficos estão relacionados à maior produção de óxido nítrico (NO) e/ou sua maior biodisponibilidade e aumento na expressão de enzimas antioxidantes. Sendo assim, o objetivo do trabalho foi analisar o efeito do treinamento físico aeróbio (TFA) na intensidade da máxima fase estável de lactato (MFEL) sobre parâmetros cardiorrespiratórios e cardiovasculares, atividade de enzimas antioxidantes superóxido dismutase (SOD) e catalase, e concentração de nitrito/nitrato (NOx-) e malondialdeído (MDA) em adultos acima dos 40 anos de idade. Fizeram parte do estudo 55 voluntários normotensos (NT – 49,7±0,6 anos) e 32 voluntários hipertensos (HT – 52,7±1,1 anos). O desenho experimental foi realizado através do ensaio clínico controlado cruzado por dezesseis semanas. Os voluntários permaneceram oito semanas sem a realização de TFA, sendo realizadas avaliações antes (período inicial – PI) e após esse período (período intermediário – PINT). Nas oito semanas seguintes todos foram submetidos a 3 sessões/semana de TFA na intensidade da MFEL em esteira ergométrica e após foi novamente realizada a avaliação (período final – PF). As avaliações consistiram de medições da pressão arterial (PA) de repouso (método auscultatório), frequência cardíaca (FC) de repouso e exercício (Polar® - RSX-800CX), testes de VO2 máximo (teste de 1 milha) e coletas de sangue (12 horas de jejum noturno). Amostras de plasma e soro foram utilizadas para análises da atividade da SOD, catalase, concentrações NOx- e MDA. O protocolo para determinação da MFEL foi de acordo com Beneke et al (2003). Para análise estatística foi...
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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)
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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)
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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
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Atmospheric particulate matter (PM) is genotoxic and recently was classified as carcinogenic to humans by the International Agency for Research on Cancer. PM chemical composition varies depending on source and atmospheric conditions. The Salmonella/microsome assay is the most used mutagenicity test and can identify the major chemical classes responsible for observed mutagenicity. The objective of this work was to characterize the mutagenicity of PM samples from a countryside city, Limeira, Brazil, which is influenced by heavy traffic and sugar cane biomass burning. Six samples of total PM were collected. Air mass backward trajectories were calculated. Organic extracts were assayed using the Salmonella/microsome microsuspension mutagenicity assay using TA98, YG1041, and TA1538, with and without metabolic activation (S9). YG1041 was the most sensitive strain and mutagenicity reached 9,700 revertants per m(3) without metabolic activation. Potency for TA1538 was higher than TA98, indicating that this strain should be considered in air mutagenicity studies. The increased response to YG1041 relative to TA98, and the decreased response with S9, suggests that nitroaromatics are the major contributors. Limeira is among the most mutagenic cities in the world. High mutagenicity in Limeira seems to occur when the air mass from the area of sugarcane production is mixed with air from the region impacted by anthropogenic activities such as traffic. An increase in the formation of nitro-polycyclic aromatic hydrocarbons may result from longer contact time between the aromatic compounds and the atmosphere with high NOx and ozone concentration, although more studies are required to confirm this hypothesis. Environ. Mol. Mutagen., 2015. © 2015 Wiley Periodicals, Inc.
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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)
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The use of digesters has become an important alternative for the proper disposal of organic agricultural wastes, serving as a solution to some environmental and health problems. Furthermore, the process of digestion provides commercially valuable by products such as biogas and bio fertilizer. The generation of biogas from agricultural waste, and its use in power generation systems has aroused great interest in rural areas because it enables supply in whole or in large part the energy demand of ownership by reducing production costs. The advent of technology has brought new forms of energy conversion of biogas, as the use of micro turbines specifies to be fuelled with biogas derived from the decomposition of organic matter in digesters, since it has a low level of methane in its composition, and high degree of impurities such as hydrogen sulphide, which are harmful to equipment and reduce the calorific value of biogas. The use of micro turbines behind other advantages like low emissions, great fuel flexibility and low maintenance. This paper presents an analysis of the feasibility of using biogas generated from cattle manure in micro turbines to generate electricity. Behind also an assessment of the energy potential that each animal has on various uses of biogas, and forms of energy recovery from the exhaust gases of the micro turbine. Also conducts an evaluation of the energy savings that the use of biogas aggregates properties.
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One of the energy alternatives that provide utility, flexibility, cleanliness and economy is biomass, such as forest waste (wood) and agricultural (sugarcane bagasse, rice husks, coffee pods, etc.). However, with its increasing supply and use grows also the concern of industries to invest in monitoring and control of emissions into the atmosphere, because during biomass burning are emitted as exhaust gases, fine particles known as particulates, which greatly contribute to the triggering of serious health problems to humans, in addition to the environmental damage. With that, this work aimed to conduct a monitoring of particulate and gaseous pollutants emissions to the atmosphere from the burning of various types of biomass used by industries. The equipment used for sampling were the optical monitor DataRAM 4 and the Unigas3000 + gas sampler. The results showed that biomass coffee pods presented the greatest concentration of particulates (485119 μg m-3) with particle diameters between 0.0602 μm and 0.3502 μm, i.e. the most ultrafine particles, harmful to human health and the environment. The largest emissions of CO and NOx were observed, respectively, for the coffee pods (3500 ppm) and for the rice husk (48 ppm). As for the superior calorific value (PCS), the best of fuel, with higher PCS, was the Eucalyptus grandis.
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Pós-graduação em Biotecnologia - IQ
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Pós-graduação em Medicina Veterinária - FCAV
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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)