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Can I read Experimental Investigation of Thermochemical Syngas Production in a Scrap Iron-based Oxidizer Reactor for Industrial Decarbonisation on EtoBox?
Experimental Investigation of Thermochemical Syngas Production in a Scrap Iron-based Oxidizer Reactor for Industrial Decarbonisation by Orlando Palone; Carmine Cava; Enrico Paris; Beatrice Vincenti; Michele V. Migliarese Caputi; Francesco Gallucci; Domenico Borello is a Engineering article available to read on EtoBox.
What is Experimental Investigation of Thermochemical Syngas Production in a Scrap Iron-based Oxidizer Reactor for Industrial Decarbonisation about?
The syngas production performance of scrap iron reacting with carbon dioxide and water steam was assessed under different operating conditions in a fixed bed oxidizer reactor. The syngas generation step is part of a novel process scheme encompassing the reutilization of iron scrap from steelmaking and the combined splitting of industrially captured carbon dioxide and steam into a syngas. At 1050 • C, a maximum volume percentage of 37 % carbon monoxide was detected in the product gas with the injection of 1 NL/min carbon dioxide. The carbon dioxide conversion was confirmed to be promoted by temperature. Subsequently, combined tests with carbon dioxide and water steam were carried out to assess the production and quality of the syngas (H 2 and CO) by varying the reactants total flow rate, the iron bed mass and the reactants molar ratio. By decreasing the total reactants flow rate, the reactants splitting process was promoted and below a certain flow rate carbon dioxide splitting prevailed on that of water steam. By increasing the H 2 O v /CO 2 molar ratio, the splitting was enhanced for both species. In particular, for the tested flow rate the water splitting increased by 10% compare
Who reads Experimental Investigation of Thermochemical Syngas Production in a Scrap Iron-based Oxidizer Reactor for Industrial Decarbonisation?
It is typically read by researchers, students, and practitioners in Engineering.
- Author
- Orlando Palone; Carmine Cava; Enrico Paris; Beatrice Vincenti; Michele V. Migliarese Caputi; Francesco Gallucci; Domenico Borello
- Publisher
- Elsevier BV
- Published
- 2023
- Language
- EN
- Field
- Engineering (Physical Sciences)