2019
DOI: 10.1016/j.ces.2019.05.013
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Simulation of two-step redox recycling of non-stoichiometric ceria with thermochemical dissociation of CO2/H2O in moving bed reactors – Part II: Techno-economic analysis and integration with 100 MW oxyfuel power plant with carbon capture

Abstract: This paper presents a solar thermochemical looping CO2/H2O dissociation reactors unit (CL) with commercial ceria as redox oxygen carrier. The CL unit is integrated to a 100 MW oxyfueled natural gas combined cycle with carbon capture to investigate the efficiency benefit obtained. A moving bed counter-current reactor model is developed in Aspen Plus considring rigorous continuous stirred reactors (RCSTRs) for both reduction and oxidation. A userkinetic subroutine is developed in FORTRAN and linked with each … Show more

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Cited by 13 publications
(3 citation statements)
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“…Farooqui et al [68] developed and tested a model for the WS and CDS driven by the ceria redox cycle. As shown in Figure 11, the oxidation and reduction reactor associated with the model was simulated by using ASPEN Plus ® (a series of CSTRs).…”
Section: Year 2019mentioning
confidence: 99%
“…Farooqui et al [68] developed and tested a model for the WS and CDS driven by the ceria redox cycle. As shown in Figure 11, the oxidation and reduction reactor associated with the model was simulated by using ASPEN Plus ® (a series of CSTRs).…”
Section: Year 2019mentioning
confidence: 99%
“…The importance of thermochemical cycles in producing synthetic fuels has significantly increased with the approved worldwide climate protocols [ 4 ]. One of the most effective thermochemical cycles is the two-step redox oxide pair system, which has shown great potential for synthetic solar fuel generation [ 5 ]. The principle of operation is based on the transition between the higher valence oxidized and lower valence reduced form of the oxide of a metal having multiple oxidation states [ 6 ].…”
Section: Introductionmentioning
confidence: 99%
“…Thus, adequate reactor design optimization from multiple aspects is necessary to develop a moving bed oxidation reactor for CO2 and H2O splitting for a two-step chemical looping cycle with ceria. The results presented further motivate in developing a closed loop reduction and oxidation moving bed reactor cycle and integrate into an oxyfuel power plant to investigate the efficiency of the solar thermochemical power generation, which is presented in a next section [227].…”
Section: Oxidation Reactormentioning
confidence: 92%