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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Supercritical Carbon Dioxide Circulated EGS Combined with IGCC in New Mexico 4.3 Gasifier 4.3.1 Introduction A primary component in coal power plant system's success is the gasification reactor located in the heart of the IGCC plant. While gasification can make use of many fuel types, the abundance of coal reserves in New Mexico makes coal the logical choice. The product of interest in coal gasification is known as synthesis gas. This refers to a gaseous mixture which can vary greatly depending on the gasification reactor, coal type and operational parameters. Therefore, a primary objective is to identify a gasification configuration which best satisfies the demands of a power plant that produces a gross power output greater than 700 megawatts. Commercial gasification reactors are commonly classified into three groups; moving bed, entrained flow and fluidized bed. Of these, the entrained flow and the moving bed are most common in industrial applications. The fundamental differences between the reactor types are represented in the figures below. Figure 34: Entrained Flow Gasifier Figure 35: Moving Bed Gasifier In relation to IGCC, the best reactor type would consist of a short residence time with the least available energy lost in the gasification process. Advantages of the entrained flow reactor type are high temperature, relaxed coal type restrictions and short residence times. (Jeffrey, NETL Reference Shelf) Based on these conditions, an entrained flow system has the potential to be an excellent candidate for supplying synthesis gas in an IGCC plant. This analysis will explore the theoretical effects of select reactor conditions and reactant concentrations on synthesis gas quality in order to identify if this gasification design is conducive to power generation. 4.3.2 Methods The key to successful gasification is maximizing the heat of combustion present in the synthesis gas. An analysis of typical synthesis gas composition from the Tampa Florida IGCC plant owned by TECO electric reveals that the two largest sources of chemical energy are Penn State University | 4.3 Gasifier 60

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