Matches in SemOpenAlex for { <https://semopenalex.org/work/W4366752912> ?p ?o ?g. }
- W4366752912 endingPage "127615" @default.
- W4366752912 startingPage "127615" @default.
- W4366752912 abstract "In this paper, a simplified comprehensive multistep kinetic mechanism for fast pyrolysis was integrated with secondary and homogeneous reactions to evaluate the energy and exergy of the process. The kinetic mechanism was implemented in a two-dimensional multifluid model, which was able to reproduce experimental product yields and compositions. The results showed that the energy and exergy yields of noncondensable gas increased with temperature, while those of char decreased. The bio-oil energy and exergy yields were maximized at 500 °C. The results also showed that cellulose had the highest bio-oil energy and exergy yields, while lignin extraction with low Lig-O had superior energy and exergy efficiencies. A higher feeding rate was found to result in considerably higher energy and exergy efficiencies, and the recycled char was sufficient to supply heat for the reactor at a biomass feeding rate of ≥1.5 kg/h for all fluidization velocities. A capacity rate parameter was proposed for a sustainable pyrolysis reactor with high biomass conversion and performance. This model provides a useful reference for reactor scale-up and optimization." @default.
- W4366752912 created "2023-04-24" @default.
- W4366752912 creator A5007574261 @default.
- W4366752912 creator A5072083049 @default.
- W4366752912 creator A5086742419 @default.
- W4366752912 creator A5088786401 @default.
- W4366752912 date "2023-08-01" @default.
- W4366752912 modified "2023-10-18" @default.
- W4366752912 title "Design optimization of fluidized bed pyrolysis for energy and exergy analysis using a simplified comprehensive multistep kinetic model" @default.
- W4366752912 cites W1505829748 @default.
- W4366752912 cites W1970182524 @default.
- W4366752912 cites W1970677752 @default.
- W4366752912 cites W1973421925 @default.
- W4366752912 cites W1978893684 @default.
- W4366752912 cites W2029416248 @default.
- W4366752912 cites W2032319253 @default.
- W4366752912 cites W2032385824 @default.
- W4366752912 cites W2033267637 @default.
- W4366752912 cites W2057392797 @default.
- W4366752912 cites W2065888511 @default.
- W4366752912 cites W2083557848 @default.
- W4366752912 cites W2519062787 @default.
- W4366752912 cites W2531945208 @default.
- W4366752912 cites W2600146518 @default.
- W4366752912 cites W2735111597 @default.
- W4366752912 cites W2766660697 @default.
- W4366752912 cites W2774214254 @default.
- W4366752912 cites W2774634786 @default.
- W4366752912 cites W2808252001 @default.
- W4366752912 cites W2810346559 @default.
- W4366752912 cites W2884941288 @default.
- W4366752912 cites W2908063997 @default.
- W4366752912 cites W2972965375 @default.
- W4366752912 cites W3001245438 @default.
- W4366752912 cites W3005645466 @default.
- W4366752912 cites W3028854387 @default.
- W4366752912 cites W3036402231 @default.
- W4366752912 cites W3036783703 @default.
- W4366752912 cites W3040440576 @default.
- W4366752912 cites W3093114855 @default.
- W4366752912 cites W3093162188 @default.
- W4366752912 cites W3096651988 @default.
- W4366752912 cites W3109232796 @default.
- W4366752912 cites W3138809487 @default.
- W4366752912 cites W3139436227 @default.
- W4366752912 cites W3182218116 @default.
- W4366752912 cites W3199079791 @default.
- W4366752912 cites W3201487854 @default.
- W4366752912 cites W3204659868 @default.
- W4366752912 cites W3208024914 @default.
- W4366752912 cites W3209106336 @default.
- W4366752912 cites W4207014891 @default.
- W4366752912 cites W4226179941 @default.
- W4366752912 cites W4242127898 @default.
- W4366752912 cites W4281261994 @default.
- W4366752912 cites W4376848321 @default.
- W4366752912 doi "https://doi.org/10.1016/j.energy.2023.127615" @default.
- W4366752912 hasPublicationYear "2023" @default.
- W4366752912 type Work @default.
- W4366752912 citedByCount "0" @default.
- W4366752912 crossrefType "journal-article" @default.
- W4366752912 hasAuthorship W4366752912A5007574261 @default.
- W4366752912 hasAuthorship W4366752912A5072083049 @default.
- W4366752912 hasAuthorship W4366752912A5086742419 @default.
- W4366752912 hasAuthorship W4366752912A5088786401 @default.
- W4366752912 hasConcept C111368507 @default.
- W4366752912 hasConcept C113146524 @default.
- W4366752912 hasConcept C115540264 @default.
- W4366752912 hasConcept C121332964 @default.
- W4366752912 hasConcept C127313418 @default.
- W4366752912 hasConcept C127413603 @default.
- W4366752912 hasConcept C135889238 @default.
- W4366752912 hasConcept C185592680 @default.
- W4366752912 hasConcept C192562407 @default.
- W4366752912 hasConcept C194832619 @default.
- W4366752912 hasConcept C2084832 @default.
- W4366752912 hasConcept C21880701 @default.
- W4366752912 hasConcept C2779970684 @default.
- W4366752912 hasConcept C36759035 @default.
- W4366752912 hasConcept C39432304 @default.
- W4366752912 hasConcept C528095902 @default.
- W4366752912 hasConcept C53991642 @default.
- W4366752912 hasConcept C548081761 @default.
- W4366752912 hasConcept C62520636 @default.
- W4366752912 hasConcept C83119724 @default.
- W4366752912 hasConcept C97355855 @default.
- W4366752912 hasConceptScore W4366752912C111368507 @default.
- W4366752912 hasConceptScore W4366752912C113146524 @default.
- W4366752912 hasConceptScore W4366752912C115540264 @default.
- W4366752912 hasConceptScore W4366752912C121332964 @default.
- W4366752912 hasConceptScore W4366752912C127313418 @default.
- W4366752912 hasConceptScore W4366752912C127413603 @default.
- W4366752912 hasConceptScore W4366752912C135889238 @default.
- W4366752912 hasConceptScore W4366752912C185592680 @default.
- W4366752912 hasConceptScore W4366752912C192562407 @default.
- W4366752912 hasConceptScore W4366752912C194832619 @default.
- W4366752912 hasConceptScore W4366752912C2084832 @default.
- W4366752912 hasConceptScore W4366752912C21880701 @default.