137 resultados para EFEITO ESTUFA


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Smart grids are the focus of major study today because of the necessity of modernization in electrical systems and reduction of greenhouse gas emissions that increases global warming. Reaching the best deployment method, you must first of all know the current electrical system and how to use them for the benefit of this new technology. Preparing the action plan we should be aware of the main points of smart grids in each step of the electricity system - generation, transmission and distribution. Analyzed these topics, this work will focus on the first step in the implementation of the smart grids: the smart meters, tool which is already being implemented in Brazil. The main characteristics and applications of these devices, as well as their communication structure with the core distributors will be showed during the paper. Finally, we present a case study which will be discussed and analyzed based in the results obtained with the implementation of smart meters in the city of Vancouver, Canada, where we have a considerable savings already in the first year, with fully paying the initial investment and still have a profit

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O Paleogeno é um dos períodos da Era Cenozóica, que se distribui entre 65,5 a 23,03 milhões de anos, se localizando logo após o fim da Era Mesozóica, sucedendo o período Cretáceo. Paleoceno, Eoceno e Oligoceno são as épocas que compõem o Período Paleogeno. O Paleogeno pode ser definido como um período de clima quente quando analisado sob a óptica de toda a história geológica. As médias de temperatura para o período superam as temperaturas médias modernas em cerca de 10°C. Durante o Paleogeno também pode se observar eventos drásticos de aumento da temperatura do planeta, sendo possível traçar um paralelo, com o atual aquecimento global ocasionado pelo aumento da emissão de gases do efeito estufa, resguardado suas claras diferenças. A fronteira entre Cretáceo e Paleogeno se caracteriza pela segunda maior extinção da História Geológica do Planeta. Em conseqüência vivencia uma das mais importantes radiações filogenéticas, em todos os ambientes, em particular nos continentais terrestres, caracterizada pela explosão evolutiva dos mamíferos, que exploravam os nichos ecológicos deixados vagos pelo desaparecimento da maior parte dos arcossauromorfos mesozóicos. Somado a isto, no Paleogeno ocorreram importantes mudanças ambientais, abrangendo aspectos geotectônicos e climáticos, que levaram flora e fauna paleogênicas a sofrerem diversas modificações, a fim de se adaptarem ao novo cenário presente no Planeta.

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One of the biggest environmental problems of today is the climate change. Experts affirm that this global warming is related to the greenhouse effect. Its causes are directly related to human activity, especially the use of fossil fuels. In this context, companies around the world are challenged to improve energy efficiency in order to reduce the environmental impact and work toward the so-called tripod of sustainable development that focuses on the social, economic and environmental aspects of a business strategy. The first step a company can make in this regard is to conduct an inventory of emissions of greenhouse gases (GHGs). The reduction of GHG emissions in a refinery can be achieved by replacing steam turbines with electric motors to drive big machines, this reduction is achieved by relieving the steam consumption for electric power available or purchased. An important aspect associated with the reduction of GHG emissions is the best performance of the Energy Intensity Index (ERI). The objective of this study was to analyze the feasibility of the blower motorization in the regenerative cycle of a fluidized catalytic cracking unit at a specific refinery. For development work, two methods were used, the initial screening and optimization scenarios with the help of software Butyl. The results indicate that after a certain cost of natural gas this substitution becomes favorable. In addition, there is a large reduction of CO2 emissions avoided by burning fuel

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The study and selection of an equipment of air conditioner for any type of environment, should be made without overestimate or undersizing the project. The undersizing does not provide an adequate comfort temperature if the environment is too hot because the air conditioner does not remove all the heat necessary in the environment. But if the project is oversized, energy consumption is higher and there is an unnecessary cost. To prevent these failures is necessary to make a calculation of the thermal load on the environment and choose the equipment that has a higher cooling capacity than the calculated heat load and closer to the calculated heat load. In this graduate work will be chosen an air-conditioned equipment for bus, showing the calculations made for the thermal load for various types of heat gain in this type of vehicle. The thermal load on vehicles is more complicated to calculate than in areas because there are several factors that vary with the movement of the vehicle. It will also explain the compression refrigeration cycle, which is the cooling system used in vehicles because it is weightless, compact and lower cost. From the calculated heat load, it will be chosen an air conditioner that best suits the project and, finally, a brief presentation of the selected equipment will be made

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A conservação da biodiversidade é tema recorrente nas ciências e nas políticas já há algumas décadas, porém esta inquietação não é recente, visto que muitos naturalistas de séculos passados alertaram sobre as adversidades da perda da biodiversidade. Mais recentemente, a sociedade passou a exigir das empresas uma postura pró-conservação, pois são elas as maiores responsáveis pela degradação ambiental. Sendo assim, esta pesquisa analisou como a conservação da biodiversidade está inserida no setor de negócios e quais práticas têm sido adotadas para alcançar este fim. Em um primeiro momento, foi feito um histórico a respeito da conservação da biodiversidade desde os primeiros naturalistas até as grandes cúpulas mundiais sobre meio ambiente. Posteriormente, foi discutida a importância da inter-relação entre a biodiversidade e o setor empresarial. Por fim, foram levantados os principais instrumentos de gestão ambiental utilizados pelas empresas. Para ilustrar este arcabouço teórico, foram identificados os principais acordos multilaterais pró-conservação da biodiversidade e as mais novas ferramentas de gestão ambiental desenvolvidas e aplicadas no setor empresarial. Além disso, foi conduzido um estudo de caso com duas empresas brasileiras do setor de cosméticos, fundamentados nos seus respectivos Relatórios de Sustentabilidade, que subsidiaram a extração de informações sobre o modo como as empresas gerenciam seus recursos naturais. Concluiu-se que as empresas analisadas possuem boas práticas ambientais, exemplificadas em um estudo de caso a partir do qual foi possível conhecer as ações em andamento que versam sobre economia de energia, economia e reutilização da água, compensação das emissões dos gases de efeito estufa, gerenciamento de resíduos sólidos e investimentos em projetos socioambientais... (Resumo completo, clicar acesso eletrônico abaixo)

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O consumo de carne bovina pela população brasileira está relacionado a aspectos que sejam sociais ou de saúde. Além disso, pode afetar também o nosso meio ambiente, aumentando impactos ambientais. Em se tratando do Brasil, temos uma grande demanda deste alimento, influenciada pelos hábitos alimentares da população, exigindo, por conseguinte, uma grande produção. Através da construção de cenários e modelagem ambiental, este trabalho avaliou algumas das consequências ambientais da pecuária de corte no Brasil. Para tanto, usamos estimativas de consumo da população, produção da carne bovina e também de valores que relacionem o uso da terra com as emissões de gás carbônico para avaliar os problemas ambientais. Contabilizamos as emissões de gases de efeito estufa associadas as mudanças de uso da terra, fermentação entérica e o manejo de dejetos do gado bovino. Obtive que em alguns cenários extremistas como o Con2a as emissões foram no total de 1,77 PgCO2e anualmente. Enquanto no cenário nacional obtive um total de 1,2 PgCO2e das emissões anuais associadas a todos os seus setores. Em nossos resultados notamos a forte influência do nível de consumo de carne e do sistema de manejo nas emissões de gases efeito estufa dos cenários estudados

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Environrnental issues are in focus lately, mainly due to climate change that have been registered in recent decades. Some of these changes are attributed to the increased atmospheric concentration of greenhouse gases induce, main1y due to anthropogenic emissions. These gases act by absorbing heat in the form of electromagnetic radiation emitted by the planet, and after a time interval, reissuing such radiation in various directions, including back to the surface, causing overheating of the same. Projections indicate that climate change wiIl tend to increase even more. Because of this, in recent years a number of studies are being conducted on the dynamics of inducers of greenhouse gases, especially C02, because that is primarily responsible for the development of that phenomenon. To better understand the flow of C02 are studied specific areas, as regions bordering the forests, soils that are under preparation for agriculture, urban areas, among others. Forests are an important sink for C02, because during the process of photosynthesis, this molecule is captured and used to obtain glucose. Thus, studies of the regions bordering the forests contribute enough to the understanding of the dynamics of C02. Because it requires a large amount of factors, the concentration of CO2 in a given location is very variable and this makes it much more difficult to understand their dynamics and, consequently, the action of the enhanced greenhouse effect. Being a relatively new area of study, there are many controversies about the consequences of the greenhouse effect, so that the community does not believe that climate change resulting from human action. According to them, such changes are merely natural phenomena and periodicals

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The uninterrupted rise in emission of greenhouse gases open way to the use of biofuels, due to politics that focus on fuel safe, clean and renewable. The use of microalgae for biodiesel production has been described as one of the most promising sources of biomass for biofuels. The aim of this study was to evaluate the extraction and lipid profile of the microalgae Dunaliella tertiolecta, Isochrysis galbana and Tetraselsim gracilis. The extractions were performed with solvents chloroform /methanol and petroleum ether. The lipid profile was analyzed by gas chromatography after transesterification.The petroleum ether showed more efficiency in the extraction, the best result obtained was in the microalgae D. tertiolecta with 19.52% of lipid. The lipid profile analysis indicated a biodiesel stable to oxidation and elevated viscosity

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In Brazil, The power generation has always depended on the rivers, in other words, there are moments that the power generation can vary, which can cause variations in energy supply and even blackout according to the level of water in the reservoirs of the hydroelectric plants. For this reason, many options has been studied, like our example, which is about a combined cycle power plant in Canas. The use of combined cycle is interesting from the point o view of energy, because its efficiency is between 50 and 60%, and from the point of view of environment, because it can burn natural gas, which is cleaner than coal, it reduces the emission of gases that influence on the greenhouse effect. This work aims to perform a technical analysis of a case study of a power plant proposed to be built in Canas by the AES/AES Tietê Group. For the analysis will be used the commercial software GateCycle 6.0.0 from GE, this software has the power of simulating power generation cycles (nuclear, combined, etc.). The energy department of UNESP has the license, which makes possible the academic use of this tool. Two combined cycles were simulated, one using one pressure level HRSG, and another one closer to the real power plant, which is a combined cycle with a three pressure level HRSG. The results were close to expected, for the combined cycle with one pressure HRSG the power was 513,9 MW and a efficiency of 53,27%, in the case with the three pressure level HRSG the power was 517,1 MW and a efficiency of 53,5%. We conclude that the software requires that the user must have the knowledge about the subjects involved in the use of GateCycle in problems resolutions

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The gas turbine (GT) is known to have: low cost of capital over the amount of energy, high flexibility, high reliability, short delivery time, commissioning and commercial operation at the beginning and quick departure. The gas turbine is also recognized for its superior environmental performance, manifested in air pollution containment and reducing greenhouse gases (Mahi, 1994). Gas turbines in simple cycle mode (SC) have long been used by utilities to limited power generation peak. In addition, manufacturing facilities use gas turbines for power generation units on site, often in combination with the process of heat production, such as hot water and steam process. In recent years, the performance of industrial gas turbines has been improved due to significant investments in research and development, in terms of fuel to electricity conversion efficiency, plant capacity, availability and reliability. The greater availability of energy resources such as natural gas (NG), the significant reduction of capital costs and the introduction of advanced cycles, have also been a success factor for the increased use of gas turbines to load applications base (Poulikas, 2004). Open Cycle Gas Turbine with a greater degree of heat to the atmosphere may alternatively be used to produce additional electricity using a steam cycle, or to compose a cogeneration process. The combined cycle (CC) uses the heat from the gas turbine exhaust gas to increase the power output and increase the overall efficiency of more than 50% second (Najjar, 2001). The initial discovery of these cycles in the commercial power generation market was possible due to the development of the gas turbine. Only from the 1970s that gas turbine inlet temperature and therefore the exhaust gas temperature was sufficiently high to allow a better efficiency in the combined cycle ... (Complete Abstract click electronic access below)

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The process of steel production emits a large quantity of greenhouse gases, specifically carbon dioxide (CO2), and the reduction of such emissions is one of the main challenges for the industry in the 21st. Century. To quantify these emissions, the Worldsteel Association (association of the 170 large steel manufacturers of the world) published a methodology (CO2 Emission Data Collection) for calculation and comparison of CO2 emissions among its members. After that, in 2010, this methodology became an ISO (International Organization for Standardization) norm. Today, the calculation of the CO2 emissions in steel making companies follow the ISO 14404-1 for units with blast furnaces and the ISO 14404-2 for units with electric furnaces. In the last years, new technologies were and continue to be developed for the steel making sector aiming at energetic improvements and greenhouse gas reductions (mainly CO2) by the several processes involved in the production of steel. This work had the objective of producing a tool to calculate the CO2 emissions for the steel making sector. An Excel spreadsheet was developed to calculate the emission intensities of CO2 of a steel plant, the Usina Presidente Vargas, of the Companhia Siderúrgica Nacional (CSN). The spreadsheet furnishes results of CO2 emissions and energetic fluxes, and simulates the benefits that some of the new technologies can give to the company. The spreadsheet calculates the emissions in two ways: a) based on the carbon fluxes that enter the unit, and b) based on the emissions of each specific process within the unit (coking, sinterization, blast furnace, among others)

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Pós-graduação em Engenharia Mecânica - FEG

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Pós-graduação em Engenharia de Produção - FEB

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Pós-graduação em Agronomia (Ciência do Solo) - FCAV