Matches in SemOpenAlex for { <https://semopenalex.org/work/W4385504917> ?p ?o ?g. }
- W4385504917 endingPage "121644" @default.
- W4385504917 startingPage "121644" @default.
- W4385504917 abstract "As a carbon - free, economical and safe energy carrier, ammonia is favoured and has been used in many different applications for combustion. However, there are few reports of NH3 being burned in a fluidized bed. This investigation of the premixed combustion of NH3 and O2 in a single bubble inside a fluidized bed was done both experimentally and with CFD-DEM simulations incorporating a skeletal mechanism of 98 elementary reactions. The results show that premixed combustion of NH3 and O2 occurred in a growing bubble. Quenching became evident at a bubble's edge. Combustion became unstable at low equivalence ratios. In addition, the equivalence ratio significantly affected the ignition delay, flame's propagation velocity, as well as the concentrations of gaseous species in the bubble and emulsion phases. Increasing bed temperature reduced the ignition delay. Nitrogen, as the background fluidising gas, exerted a negative impact on combustion, because of N2 diffusing from the emulsion to the bubble phase. The combustion of NH3/air in the bubble phase of a fluidized bed was difficult to happen in the absence of a catalyst or co-combustion with an inflammable fuel." @default.
- W4385504917 created "2023-08-03" @default.
- W4385504917 creator A5006895588 @default.
- W4385504917 creator A5008461481 @default.
- W4385504917 creator A5056033075 @default.
- W4385504917 creator A5072121801 @default.
- W4385504917 creator A5091070290 @default.
- W4385504917 date "2023-11-01" @default.
- W4385504917 modified "2023-09-23" @default.
- W4385504917 title "NH3/O2 premixed combustion in a single bubble of fluidized bed" @default.
- W4385504917 cites W1964708957 @default.
- W4385504917 cites W1970237383 @default.
- W4385504917 cites W1973603874 @default.
- W4385504917 cites W1984088569 @default.
- W4385504917 cites W1988359562 @default.
- W4385504917 cites W1997585774 @default.
- W4385504917 cites W2001206520 @default.
- W4385504917 cites W2008820501 @default.
- W4385504917 cites W2010231476 @default.
- W4385504917 cites W2011983288 @default.
- W4385504917 cites W2041088995 @default.
- W4385504917 cites W2044578692 @default.
- W4385504917 cites W2045463332 @default.
- W4385504917 cites W2047922816 @default.
- W4385504917 cites W2051321477 @default.
- W4385504917 cites W2052322346 @default.
- W4385504917 cites W2065684773 @default.
- W4385504917 cites W2066230129 @default.
- W4385504917 cites W2066302296 @default.
- W4385504917 cites W2074971409 @default.
- W4385504917 cites W2085662493 @default.
- W4385504917 cites W2089572481 @default.
- W4385504917 cites W2114804457 @default.
- W4385504917 cites W2129694990 @default.
- W4385504917 cites W2132952542 @default.
- W4385504917 cites W2159596590 @default.
- W4385504917 cites W2177045747 @default.
- W4385504917 cites W2280171397 @default.
- W4385504917 cites W2290880407 @default.
- W4385504917 cites W2393545811 @default.
- W4385504917 cites W2412528273 @default.
- W4385504917 cites W2518912132 @default.
- W4385504917 cites W2530219516 @default.
- W4385504917 cites W2560836958 @default.
- W4385504917 cites W2802458779 @default.
- W4385504917 cites W2809129800 @default.
- W4385504917 cites W2892230460 @default.
- W4385504917 cites W2900226406 @default.
- W4385504917 cites W2901788157 @default.
- W4385504917 cites W2908102983 @default.
- W4385504917 cites W2922935816 @default.
- W4385504917 cites W2944543137 @default.
- W4385504917 cites W2944798832 @default.
- W4385504917 cites W2945042646 @default.
- W4385504917 cites W2972204853 @default.
- W4385504917 cites W3004558240 @default.
- W4385504917 cites W3005253591 @default.
- W4385504917 cites W3007409009 @default.
- W4385504917 cites W3008574334 @default.
- W4385504917 cites W3017131100 @default.
- W4385504917 cites W3038351647 @default.
- W4385504917 cites W3046222032 @default.
- W4385504917 cites W3083960751 @default.
- W4385504917 cites W3087098913 @default.
- W4385504917 cites W3087603097 @default.
- W4385504917 cites W3112239214 @default.
- W4385504917 cites W4213359893 @default.
- W4385504917 cites W4221063788 @default.
- W4385504917 cites W4284696940 @default.
- W4385504917 cites W4293216771 @default.
- W4385504917 cites W4313334188 @default.
- W4385504917 doi "https://doi.org/10.1016/j.apenergy.2023.121644" @default.
- W4385504917 hasPublicationYear "2023" @default.
- W4385504917 type Work @default.
- W4385504917 citedByCount "0" @default.
- W4385504917 crossrefType "journal-article" @default.
- W4385504917 hasAuthorship W4385504917A5006895588 @default.
- W4385504917 hasAuthorship W4385504917A5008461481 @default.
- W4385504917 hasAuthorship W4385504917A5056033075 @default.
- W4385504917 hasAuthorship W4385504917A5072121801 @default.
- W4385504917 hasAuthorship W4385504917A5091070290 @default.
- W4385504917 hasConcept C105923489 @default.
- W4385504917 hasConcept C121332964 @default.
- W4385504917 hasConcept C127413603 @default.
- W4385504917 hasConcept C157915830 @default.
- W4385504917 hasConcept C159063594 @default.
- W4385504917 hasConcept C178790620 @default.
- W4385504917 hasConcept C185592680 @default.
- W4385504917 hasConcept C192562407 @default.
- W4385504917 hasConcept C2084832 @default.
- W4385504917 hasConcept C2778123984 @default.
- W4385504917 hasConcept C42360764 @default.
- W4385504917 hasConcept C548081761 @default.
- W4385504917 hasConcept C57879066 @default.
- W4385504917 hasConcept C59269787 @default.
- W4385504917 hasConcept C88676905 @default.
- W4385504917 hasConcept C97355855 @default.
- W4385504917 hasConceptScore W4385504917C105923489 @default.