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Economic implications of oxyfuel application in a lignite-fired power plant

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dc.contributor.author Kakaras, E en
dc.contributor.author Doukelis, A en
dc.contributor.author Giannakopoulos, D en
dc.contributor.author Koumanakos, A en
dc.date.accessioned 2014-03-01T01:26:11Z
dc.date.available 2014-03-01T01:26:11Z
dc.date.issued 2007 en
dc.identifier.issn 0016-2361 en
dc.identifier.uri https://dspace.lib.ntua.gr/xmlui/handle/123456789/17958
dc.subject CO2 sequestration en
dc.subject Economic en
dc.subject Lignite-fired power plants en
dc.subject Oxyfuel en
dc.subject.classification Energy & Fuels en
dc.subject.classification Engineering, Chemical en
dc.subject.other Carbon dioxide en
dc.subject.other Coal combustion en
dc.subject.other Computer simulation en
dc.subject.other Economic analysis en
dc.subject.other Electricity en
dc.subject.other Flow of gases en
dc.subject.other Lignite en
dc.subject.other Capture costs en
dc.subject.other Lignite-fired power plants en
dc.subject.other Operational characteristics en
dc.subject.other Oxyfuel technology en
dc.subject.other Coal fired boilers en
dc.title Economic implications of oxyfuel application in a lignite-fired power plant en
heal.type journalArticle en
heal.identifier.primary 10.1016/j.fuel.2007.03.035 en
heal.identifier.secondary http://dx.doi.org/10.1016/j.fuel.2007.03.035 en
heal.language English en
heal.publicationDate 2007 en
heal.abstract Scope of the work presented in this paper is to examine and evaluate the application of the oxyfuel combustion CO2 capture technology in a lignite-fired power plant from an economic point of view. Results from simulations dealing with the most important features for CO2 reduction are performed. The operational characteristics, the efficiency penalties as well as the net efficiency reduction emerging from the Greenfield application of the oxyfuel technology are presented. CO2 capture costs and the energy requirements associated with the oxyfuel method affect significantly the cost of electricity. This paper focuses on the analysis of the techno-economic factors that result in the increase of the cost of electricity in comparison with the conventional air-fired power plant. For this reason a typical Greek lignite power plant is used as a reference case. Any technical, economic and financial assumptions applied provide a common basis for both power plants (i.e., conventional and oxyfuel) for the assessment of the change of the cost of electricity and the CO2 capture cost. The oxyfuel simulations are performed by taking into account the adoption of measures for the exploitation of heat that would otherwise be wasted. Such measures concern both the water/steam cycle and the gas flows (e.g., the oxygen flow). Heat integration from processes - such as the air separation, the CO2 Compression and purification and the flue gas treatment - is adopted in order to lower as much as possible the efficiency penalty. The cycle calculations have been performed using the thermodynamic cycle calculation software ENBIPRO (ENergie-Blllanz-PROgram). ENBIPRO is a powerful tool for heat and mass balance solving of complex thermodynamic circuits, calculation of efficiency, exergetic and exergoeconomic analysis of power plants. The software code models all pieces of equipment that usually appear in power plant installations and can accurately calculate all thermodynamic properties (temperature, pressure, enthalpy) at each node of the thermodynamic circuit, power consumption of each component, flue gas composition, etc. The code has proven its validity by accurately simulating a large number of power plants and through comparison of the results with other commercial software (Stamatelopoulos GN. Calculation and optimisation of power plant thermodynamic cycles. VD I-Regulations. Series 6, No. 340. Braunchweig, Mechanical Engineering Department; 1996 [in German]). (c) 2007 Elsevier Ltd. All rights reserved. en
heal.publisher ELSEVIER SCI LTD en
heal.journalName Fuel en
dc.identifier.doi 10.1016/j.fuel.2007.03.035 en
dc.identifier.isi ISI:000249546600016 en
dc.identifier.volume 86 en
dc.identifier.issue 14 SPEC. ISS. en
dc.identifier.spage 2151 en
dc.identifier.epage 2158 en


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