Evaluation of a power plant with chemical looping combustion using an advanced exergoeconomic analysis

被引:46
作者
Petrakopoulou, Fontina [1 ,2 ]
Tsatsaronis, George [1 ]
Morosuk, Tatiana [1 ]
机构
[1] Tech Univ Berlin, D-10587 Berlin, Germany
[2] Natl Tech Univ Athens, Iroon Polytechneiou 9,Zografou Campus, Athens 15773, Greece
关键词
Chemical looping combustion; Advanced exergoeconomic analysis; Exergy; Economic analysis; Combined cycle power plant;
D O I
10.1016/j.seta.2013.05.001
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Advanced exergy-based analyses extend engineering knowledge beyond the respective conventional methods by quantifying the potential for improvement and the component interactions and facilitating the optimization of a system. In this paper, the first application of an advanced exergoeconomic analysis to a complex combined-cycle power plant with CO2 capture is presented and the obtained results are assessed. The power plant incorporates a chemical looping combustion unit that facilitates the CO2 capture process and has been chosen as one of the most promising oxy-combustion technologies with respect to efficiency, economic feasibility and environmental footprint. The largest avoidable costs, which represent the potential for improvement, are associated with the components constituting the main gas turbine system. The most important components based on the total avoidable cost are the reactor, expander and compressor. Furthermore, the relatively low component interactions show that most of the costs are associated with the operation of these components; i.e., no intense process interdependencies exist. (C) 2013 Elsevier Ltd. All rights reserved.
引用
收藏
页码:9 / 16
页数:8
相关论文
共 25 条
[1]   Thermoeconomic analysis of a fuel cell hybrid power system from the fuel cell experimental data [J].
Alvarez, T ;
Valero, A ;
Montes, JM .
ENERGY, 2006, 31 (10-11) :1358-1370
[2]  
[Anonymous], THESIS
[3]   Conventional and advanced exergoenvironmental analysis of a steam methane reforming reactor for hydrogen production [J].
Boyano, A. ;
Morosuk, T. ;
Blanco-Marigorta, A. M. ;
Tsatsaronis, G. .
JOURNAL OF CLEANER PRODUCTION, 2012, 20 (01) :152-160
[4]   Avoidable thermodynamic inefficiencies and costs in an externally fired combined cycle power plant [J].
Cziesla, F ;
Tsatsaronis, G ;
Gao, ZL .
ENERGY, 2006, 31 (10-11) :1472-1489
[5]   Improvement of Energy Conversion/Utilization by Exergy Analysis: Selected Cases for Non-Reactive and Reactive Systems [J].
Fiaschi, Daniele ;
Manfrida, Giampaolo .
ENTROPY, 2010, 12 (02) :243-261
[6]  
Frangopoulos C.A., 2009, EXERGY ENERGY SYSTEM
[7]   Chemical-looping combustion (CLC) for inherent CO2 separations-a review [J].
Hossain, Mohammad M. ;
de lasa, Hugo I. .
CHEMICAL ENGINEERING SCIENCE, 2008, 63 (18) :4433-4451
[8]  
IPCC, 2005, SPECIAL REPORT CARBO
[9]   Advanced exergetic analysis: Approaches for splitting the exergy destruction into endogenous and exogenous parts [J].
Kelly, S. ;
Tsatsaronis, G. ;
Morosuk, T. .
ENERGY, 2009, 34 (03) :384-391
[10]   Modeling of a 120 kW chemical looping combustion reactor system using a Ni-based oxygen carrier [J].
Kolbitsch, Philipp ;
Proell, Tobias ;
Hofbauer, Hermann .
CHEMICAL ENGINEERING SCIENCE, 2009, 64 (01) :99-108