Matches in SemOpenAlex for { <https://semopenalex.org/work/W3047134448> ?p ?o ?g. }
- W3047134448 endingPage "118451" @default.
- W3047134448 startingPage "118451" @default.
- W3047134448 abstract "A new torrefaction model was proposed for predicting solid mass loss in torrefaction as a function of biomass main macromolecular composition and type, as well as on the operating conditions. To do this, solid degradation kinetics were modelled following a 2-successive reaction scheme for each macro-compound and the additive modelling approach through biomass macromolecular component behavior in torrefaction proposed by Nocquet et al. (2014). The use of extracted fractions from different woody and agricultural biomass species (ash-wood, beech, miscanthus, pine and wheat straw) instead of commercial compounds increased the accuracy of the prediction of solid kinetics in biomass torrefaction. The validation of the proposed model with 9 raw biomasses in torrefaction showed an accurate prediction for woods, while the prediction for agricultural biomasses was acceptable." @default.
- W3047134448 created "2020-08-10" @default.
- W3047134448 creator A5003096533 @default.
- W3047134448 creator A5019740700 @default.
- W3047134448 creator A5025766178 @default.
- W3047134448 creator A5033117465 @default.
- W3047134448 creator A5040950597 @default.
- W3047134448 creator A5054829616 @default.
- W3047134448 creator A5066836935 @default.
- W3047134448 creator A5079541511 @default.
- W3047134448 date "2020-11-01" @default.
- W3047134448 modified "2023-10-18" @default.
- W3047134448 title "Understanding the torrefaction of woody and agricultural biomasses through their extracted macromolecular components. Part 2: Torrefaction model" @default.
- W3047134448 cites W1522707016 @default.
- W3047134448 cites W1788160565 @default.
- W3047134448 cites W1850141551 @default.
- W3047134448 cites W1973262724 @default.
- W3047134448 cites W1973863663 @default.
- W3047134448 cites W1976308118 @default.
- W3047134448 cites W1980230131 @default.
- W3047134448 cites W1982156408 @default.
- W3047134448 cites W1984335327 @default.
- W3047134448 cites W1997216054 @default.
- W3047134448 cites W1999902107 @default.
- W3047134448 cites W2000103417 @default.
- W3047134448 cites W2005478433 @default.
- W3047134448 cites W2008239616 @default.
- W3047134448 cites W2013658417 @default.
- W3047134448 cites W2014406124 @default.
- W3047134448 cites W2020175139 @default.
- W3047134448 cites W2024095954 @default.
- W3047134448 cites W2025770802 @default.
- W3047134448 cites W2027317052 @default.
- W3047134448 cites W2028162003 @default.
- W3047134448 cites W2032319253 @default.
- W3047134448 cites W2036038089 @default.
- W3047134448 cites W2040885940 @default.
- W3047134448 cites W2044171595 @default.
- W3047134448 cites W2046058956 @default.
- W3047134448 cites W2051082703 @default.
- W3047134448 cites W2057269875 @default.
- W3047134448 cites W2057904004 @default.
- W3047134448 cites W2061027546 @default.
- W3047134448 cites W2061126793 @default.
- W3047134448 cites W2061158367 @default.
- W3047134448 cites W2061503545 @default.
- W3047134448 cites W2064595685 @default.
- W3047134448 cites W2072395295 @default.
- W3047134448 cites W2074695162 @default.
- W3047134448 cites W2075578420 @default.
- W3047134448 cites W2082218175 @default.
- W3047134448 cites W2082774718 @default.
- W3047134448 cites W2094962737 @default.
- W3047134448 cites W2109568407 @default.
- W3047134448 cites W2139682665 @default.
- W3047134448 cites W2147002601 @default.
- W3047134448 cites W2156686125 @default.
- W3047134448 cites W2163630024 @default.
- W3047134448 cites W2166285603 @default.
- W3047134448 cites W2175374168 @default.
- W3047134448 cites W2208313037 @default.
- W3047134448 cites W2293533867 @default.
- W3047134448 cites W2314931024 @default.
- W3047134448 cites W2324238468 @default.
- W3047134448 cites W2327127521 @default.
- W3047134448 cites W2332481952 @default.
- W3047134448 cites W2398135676 @default.
- W3047134448 cites W2517341990 @default.
- W3047134448 cites W2587301228 @default.
- W3047134448 cites W2592213274 @default.
- W3047134448 cites W2623923654 @default.
- W3047134448 cites W2734733155 @default.
- W3047134448 cites W2735111597 @default.
- W3047134448 cites W2765494263 @default.
- W3047134448 cites W2790632055 @default.
- W3047134448 cites W2803329393 @default.
- W3047134448 cites W2808982337 @default.
- W3047134448 cites W2884689682 @default.
- W3047134448 cites W2891410972 @default.
- W3047134448 cites W2921860530 @default.
- W3047134448 cites W3035631703 @default.
- W3047134448 cites W4253164051 @default.
- W3047134448 cites W607621790 @default.
- W3047134448 cites W624352562 @default.
- W3047134448 doi "https://doi.org/10.1016/j.energy.2020.118451" @default.
- W3047134448 hasPublicationYear "2020" @default.
- W3047134448 type Work @default.
- W3047134448 sameAs 3047134448 @default.
- W3047134448 citedByCount "4" @default.
- W3047134448 countsByYear W30471344482022 @default.
- W3047134448 countsByYear W30471344482023 @default.
- W3047134448 crossrefType "journal-article" @default.
- W3047134448 hasAuthorship W3047134448A5003096533 @default.
- W3047134448 hasAuthorship W3047134448A5019740700 @default.
- W3047134448 hasAuthorship W3047134448A5025766178 @default.
- W3047134448 hasAuthorship W3047134448A5033117465 @default.
- W3047134448 hasAuthorship W3047134448A5040950597 @default.
- W3047134448 hasAuthorship W3047134448A5054829616 @default.