Corrosion and carburization of superheater materials in oxyfuel combustion
Publiceringsår
2013
Upphovspersoner
Tuurna, Satu; Yli-Olli, Sanni; Pohjanne, Pekka
Abstrakt
The energy sector is globally the largest CO<sub>2</sub> emitter. Carbon capture and storage (CCS) is a concept to reduce greenhouse gas emissions resulting from the use of fossil fuels in power generation, and integrated oxyfuel combustion concepts, combustion in oxygen-enriched environment to make post-combustion extraction easier, is studied one of the options for CCS. Oxyfuel combustion can be expected to differ from combustion in air by e.g. modified distribution of fireside temperatures, much reduced NO<sub>x</sub> but increased levels of fireside CO<sub>2</sub>, SO<sub>2</sub> and water levels due to extensive flue gas recirculation. Increased flue gas recirculation may increase the concentration of a number of contaminants in the deposited ash and promote fouling and corrosion. In addition to development of low CO<sub>2</sub> emitting energy generation technologies, improved energy efficiency is essential in order to reach emission reduction targets. Increasing process efficiency requires high in-service temperatures for superheaters and reheaters. In this paper the corrosion performance of two superheater austenitic steels (TP347HFG and Sanicro 25) has been studied in laboratory tests under simulated oxyfuel conditions with and without a synthetic deposits (85 CaCO<sub>3</sub> - 15 wt% CaSO<sub>4</sub>, CaSO<sub>4</sub>-0.55 wt% KCl) at 650 and 720°C up to 1000 hours.
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Publikationstyp
Publikationsform
Artikel
Moderpublikationens typ
Konferens
Artikelstyp
Annan artikel
Målgrupp
VetenskapligKollegialt utvärderad
Kollegialt utvärderadUKM:s publikationstyp
A4 Artikel i en konferenspublikationPublikationskanalens uppgifter
Journal
VTT Technology
Moderpublikationens namn
Baltica IX. International Conference on Life Management and Maintenance for Power Plants
Konferens
BALTICA IX - International Conference on Life Management and Maintenance for Power Plants
Förläggare
VTT Technical Research Centre of Finland
Nummer
106
Sidor
527-537
ISSN
ISBN
Öppen tillgång
Öppen tillgänglighet i förläggarens tjänst
Ja
Licens för förläggarens version
Annan licens
Parallellsparad
Nej
Övriga uppgifter
Vetenskapsområden
Materialteknik
Nyckelord
[object Object]
Språk
engelska
Internationell sampublikation
Nej
Sampublikation med ett företag
Nej
Publikationen ingår i undervisnings- och kulturministeriets datainsamling
Ja