Steam carbon gasification of a nickel based oxygen carrier
► Methane decomposes to form coke on NiO/NiAl 2O 4 oxygen carrier. ► Steam was fed to the coked carrier producing a highly concentrated stream of CO/H 2. ► The water treatment is efficient to remove all deposited coke at 800 °C. ► Water vapour is an effective oxidant for metallic Ni. Ni-based oxygen...
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Veröffentlicht in: | Fuel (Guildford) 2011-07, Vol.90 (7), p.2461-2466 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | ► Methane decomposes to form coke on NiO/NiAl
2O
4 oxygen carrier. ► Steam was fed to the coked carrier producing a highly concentrated stream of CO/H
2. ► The water treatment is efficient to remove all deposited coke at 800
°C. ► Water vapour is an effective oxidant for metallic Ni.
Ni-based oxygen carriers are promising candidates for Chemical Looping applications due to a combination of excellent methane conversion performance, mechanical stability, oxygen transfer capacity. However, experiments conducted on NiO/NiAl
2O
4 in a micro-fluidized bed reactor show that methane forms coke on active nickel sites. In subsequent tests, water vapour was fed to the coked Ni oxygen carrier producing a highly concentrated stream of CO/H
2 (1/1). In the absence of water vapour, production of hydrogen dropped with time while a methane/argon mixture was fed to the reactor. Co-feeding water together with methane improves stability – both H
2 production and carbon deposition were constant for over 1
h. Despite the tremendous lay down of carbon, catalytic activity remained stable at levels as low as 3
vol.% water vapour (and 10% methane). Water vapour is an effective oxidant for Ni(0) but is insufficient to entirely re-oxidize the oxygen carrier from Ni to NiO. |
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ISSN: | 0016-2361 1873-7153 |
DOI: | 10.1016/j.fuel.2011.02.029 |