Exergy Analysis of Gas Switching Chemical Looping IGCC Plants

被引:6
作者
Arnaiz del Pozo, Carlos [1 ]
Jimenez Alvaro, Angel [1 ]
Cloete, Jan Hendrik [2 ]
Cloete, Schalk [2 ]
Amini, Shahriar [2 ]
机构
[1] Univ Politecn Madrid, Calle Ramiro Maeztu 7, E-28040 Madrid, Spain
[2] SINTEF Ind, Richard Birkelands Vei 2B, N-7034 Trondheim, Norway
基金
欧盟地平线“2020”;
关键词
gas switching combustion; gas switching oxygen production; exergy; IGCC; CO2; capture; efficiency; GASIFICATION COMBINED-CYCLE; CO2; CAPTURE; OXYGEN PRODUCTION; CARBON CAPTURE; AIR SEPARATION; POWER-PLANTS; COMBUSTION; INTEGRATION; COAL; PURIFICATION;
D O I
10.3390/en13030544
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
Integrated gasification combined cycles (IGCC) are promising power production systems from solid fuels due to their high efficiency and good environmental performance. Chemical looping combustion (CLC) is an effective route to reduce the energy penalty associated with CO2 capture. This concept comprises a metal oxygen carrier circulated between a reduction reactor, where syngas is combusted, and an oxidation reactor, where O-2 is withdrawn from an air stream. Parallel to CLC, oxygen carriers that are capable of releasing free O-2 in the reduction reactor, i.e., chemical looping oxygen production (CLOP), have been developed. This offers interesting integration opportunities in IGCC plants, replacing energy demanding air separation units (ASU) with CLOP. Gas switching (GS) reactor cluster technology consists of a set of reactors operating in reduction and oxidation stages alternatively, providing an averaged constant flow rate to the gas turbine and a CO2 stream readily available for purification and compression, and avoiding the transport of solids across reactors, which facilitates the scale up of this technology at pressurized conditions. In this work, exergy analyses of a gas switching combustion (GSC) IGCC plant and a GSOP-GSC IGCC plant are performed and consistently benchmarked against an unabated IGCC and a precombustion CO2 capture IGCC plant. Through the exergy analysis methodology, an accurate assessment of the irreversible loss distribution in the different power plant sections from a second-law perspective is provided, and new improvement pathways to utilize the exergy contained in the GSC reduction gases outlet are identified.
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页数:25
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