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- 01GMVB3M8CTYT9035ZC9FMQCBP classification C3.
- 01GMVB3M8CTYT9035ZC9FMQCBP date "2022".
- 01GMVB3M8CTYT9035ZC9FMQCBP language "eng".
- 01GMVB3M8CTYT9035ZC9FMQCBP type conference.
- 01GMVB3M8CTYT9035ZC9FMQCBP hasPart 01GMXEZ6WV0S4F445D6M61F9KY.pdf.
- 01GMVB3M8CTYT9035ZC9FMQCBP hasPart 01GPGQF3FTWTX3DTYWFQHV5S7D.pdf.
- 01GMVB3M8CTYT9035ZC9FMQCBP subject "Technology and Engineering".
- 01GMVB3M8CTYT9035ZC9FMQCBP doi "10.5281/zenodo.7405549".
- 01GMVB3M8CTYT9035ZC9FMQCBP presentedAt urn:uuid:d8b9ec65-87f4-4fa6-9513-b3c5d82305d7.
- 01GMVB3M8CTYT9035ZC9FMQCBP abstract "Finding alternatives to fossil resources, aiming to fulfil the needs of our society in a sustainable way, is one of the foremost challenges in the 21st century. Within this context, lignocellulose biorefining is a promising technology, enabling a route to renewable chemicals, materials and energy. The lignin-first (LF) biorefinery concept has recently emerged to complement traditional carbohydrate biorefining, with focus on lignin valorization. The reductive catalytic fractionation (RCF) of lignocellulosic feedstocks is a LF biorefining process that combines biomass fractionation, via solvolytic transformations, with heterogeneously catalyzed lignin depolymerization and stabilization, having a high potential towards the sustainable production of added-value building blocks from biomass. In this poster a computational modelling methodology is presented to investigate the reductive catalytic fractionation of lignocellulosic biomass with focus on lignin transformations from its native form in biomass towards the formation of bio-aromatics. First, reaction-diffusion models, relying on simple kinetics, probe the diffusion of lignin model compounds to identify kinetically-limited regimes. Second, two kinetic models based on the continuum theory of lumping are proposed to describe lignin solvolysis and depolymerization, which will be validated using existing and newly acquired experimental data. Finally, the developed models will be combined with molecular reconstruction methods, enabling the structural characterization of key LF products (up to light oligomers).".
- 01GMVB3M8CTYT9035ZC9FMQCBP author 01EE3E14-F0EE-11E1-A9DE-61C894A0A6B4.
- 01GMVB3M8CTYT9035ZC9FMQCBP author 3209f039-0b70-11ec-b876-9db4534a72b8.
- 01GMVB3M8CTYT9035ZC9FMQCBP author 7ca81383-a453-11ea-8d65-f12ea90279eb.
- 01GMVB3M8CTYT9035ZC9FMQCBP author F575C0F8-F0ED-11E1-A9DE-61C894A0A6B4.
- 01GMVB3M8CTYT9035ZC9FMQCBP dateCreated "2022-12-21T21:58:21Z".
- 01GMVB3M8CTYT9035ZC9FMQCBP dateModified "2024-07-09T14:34:46Z".
- 01GMVB3M8CTYT9035ZC9FMQCBP name "Mastering and fine-tuning elementary reaction and transport phenomena in the reductive catalytic fractionation of lignocellulosic biomass".
- 01GMVB3M8CTYT9035ZC9FMQCBP pagination urn:uuid:28fdde73-21d0-4a6f-86ca-1bbe67e86e90.
- 01GMVB3M8CTYT9035ZC9FMQCBP sameAs LU-01GMVB3M8CTYT9035ZC9FMQCBP.
- 01GMVB3M8CTYT9035ZC9FMQCBP sourceOrganization urn:uuid:7b366c55-3dd2-47c3-b7bd-c8f13cb1bea5.
- 01GMVB3M8CTYT9035ZC9FMQCBP type C3.