110th Anniversary: Calcium Looping Coupled with Concentrated Solar Power for Carbon Capture and Thermochemical Energy Storage

被引:39
作者
Tregambi, Claudio [1 ]
Di Lauro, Francesca [2 ]
Montagnaro, Fabio [3 ]
Salatino, Piero [1 ]
Solimene, Roberto [2 ]
机构
[1] Univ Napoli Federico II, Dipartimento Ingn Chim Mat & Prod Ind, Piazzale Vincenzo Tecchio 80, I-80125 Naples, Italy
[2] CNR, IRC, Piazzale Vincenzo Tecchio 80, I-80125 Naples, Italy
[3] Univ Napoli Federico II, Dipartimento Sci Chim, Complesso Univ Monte St Angelo, I-80126 Naples, Italy
关键词
CO2; CAPTURE; HEAT-TRANSFER; THERMODYNAMIC ANALYSIS; PARTICLE SUSPENSION; MULTICYCLE ACTIVITY; SORBENT ATTRITION; PROCESS DRIVEN; INTEGRATION; PERFORMANCE; COAL;
D O I
10.1021/acs.iecr.9b03083
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
Concentrating solar power (CSP) technologies with energy storage can greatly enhance the dispatchability and the exploitation of solar energy in different applications. In this context, the present study addresses coupling CSP with calcium looping (CaL) along the 2-fold perspective of accomplishing: (a) carbon capture and sequestration or utilization (CCSU); (b) thermochemical energy storage (TCES). The experimental campaign, aimed at assessing limestone performances over extended cycling under realistic operating conditions, was performed in a fluidized bed reactor directly irradiated by a simulator of concentrated solar radiation. Infrared thermography was used to map the fluidized bed surface during "solar-driven" calcination. Experimental results indicated that TCES operating conditions yield a more reactive material due to the development of better microstructural properties, as inferred from N-2- and Hg-intrusion porosimetry, which reflect the different thermal history experienced by sorbent material. Working out of process variables in terms of density of energy storage revealed that the CSP-CaL integrated process can represent an attractive alternative option to commercial technologies based on molten salts.
引用
收藏
页码:21262 / 21272
页数:11
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