GREAT NECK WATER POLLUTION CONTROL DISTRICT NASSAU COUNTY, NEW YORK MICROTURBINE INSTALLATION FEASIBILITY STUDY

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GREAT NECK WATER POLLUTION CONTROL DISTRICT NASSAU COUNTY, NEW YORK MICROTURBINE INSTALLATION FEASIBILITY STUDY ( great-neck-water-pollution-control-district-nassau-county-ne )

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Problem Statement: Resource assessment and utilization of geothermal energy potential of the Rio Grande Rift Basin: A technical overview and economic analysis of a combined EGS-IGCC system with CO2 as the working fluid. 1.0 Introduction Within the desert southwest of the United States lie significant geothermal resources that possess many of the characteristics that are desirable for enhanced geothermal systems (EGS). These resources are unable to be developed using conventional techniques due to insufficient water to serve as the working fluid. To develop these resources a working fluid of sufficient quantities must be used. The focus of this project is to develop an EGS system that uses carbon dioxide as the working fluid whose source is from an integrated gas combined cycle coal-fired power plant. Enhanced Geothermal Systems or EGS are systems that do not contain sufficient fluids to transfer the heat to the surface. They therefore require a heat transmission medium to extract heat energy. Conventional EGS operate using water as the working fluid. However, in this project, a novel concept of using CO2 as heat transmission fluid is proposed. Using CO2 offers numerous advantages, such as having lower viscosity as compared to water, thus resulting into higher flow velocities. Also, low solubility of CO2 would decrease the scale precipitation in wellbores and surface equipments. In addition to this, geologic sequestration of CO2 can also be achieved. Thus, the novel concept of combining IGCC with EGS is proposed and designed. Majority of power plants around the world runs on coal. As energy demand continues to grow it is realistic that energy generation from coal will be necessary until other technologies become capable of producing significant base load power generation. The next generation of coal based power plants, integrated gasification combined cycle (IGCC) is the advance form of technology to obtain energy from the coal cleanly. In IGCC technology CO2 gas is separated from the synthesis gas which is produced from the coal and the captured CO2 can be used for various applications. Penn State University | 1.0 Introduction 1

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