Luke

LFNMR-Informed Multi-Phase Moisture Modelling of Wood Biodegradation by Coniophora puteana

dc.contributor.authorDsouza, Royson Donate
dc.contributor.authorBelt, Tiina
dc.contributor.authorFortino, Stefania
dc.contributor.departmentid4100210610
dc.contributor.organizationLuonnonvarakeskus
dc.date.accessioned2026-09-04T11:26:02Z
dc.date.issued2026
dc.description.abstractFungal decay fundamentally alters moisture transport in wood through complex bio-physical coupling mechanisms that remain poorly understood. Brown-rot fungi such as Coniophora puteana (Schumach.: Fr.) P. Karst. degrade wood through chelator-mediated Fenton (CMF) chemistry, producing hydroxyl radicals that depolymerise cellulose and hemicellulose before significant mass loss. This diffusion-dependent process requires elevated moisture content and leads to structural degradation. However, existing models fail to capture the interaction between boundary-driven fungal colonization, decay-induced property changes, and multi-phase multi-Fickian moisture redistribution, particularly the separate evolution of bound- and free-water phases during decay. Here, we present a transport-response bio-hygrothermal finite element model that couples boundary-driven Monod-type fungal colonization kinetics with multi-phase moisture transport (free water, bound water, vapor) in decaying wood. Although fungal biomass evolution is simulated via a reaction–diffusion equation, decay progression is not derived from biomass–substrate interaction but prescribed independently as an experimentally informed input. The model incorporates decay-modified sorption isotherms, permeability evolution, and boundary-driven biomass influx, along with associated moisture transport, into the governing equations. The model is validated against low-field nuclear magnetic resonance (LF-NMR) measurements of C. puteana decay in Scots pine over 35 days. The model successfully reproduces the experimentally observed moisture evolution: a peak free-water content of 50%–70% during weeks 1–2, followed by a progressive decline, while bound water remains remarkably constant despite advancing decay. Monte Carlo uncertainty quantification demonstrates hierarchical parameter control: bound water is governed solely by thermodynamic factors, while free water responds to interacting biological and physical processes. Time-resolved correlation analysis shows a fundamental transition from colonization-dominated (weeks 1–2) to transport-dominated (weeks 3–5) moisture control, quantitatively explaining the experimentally observed shift from accumulation to depletion. This transport-response framework for analyzing moisture behavior under externally defined decay progression establishes quantitative parameter hierarchies that may inform the development of future substrate-coupled bio-hygrothermal models.
dc.format.pagerange37 p.
dc.identifier.citationHow to cite: Dsouza RD, Belt T, Fortino S. LFNMR-Informed Multi-Phase Moisture Modelling of Wood Biodegradation by Coniophora puteana. Forests. 2026; 17(4):492. https://doi.org/10.3390/f17040492
dc.identifier.urihttps://jukuri.luke.fi/handle/11111/104301
dc.identifier.urlhttps://doi.org/10.3390/f17040492
dc.identifier.urnURN:NBN:fi-fe20260904122836
dc.language.isoen
dc.okm.avoinsaatavuuskytkin1 = Avoimesti saatavilla
dc.okm.corporatecopublicationei
dc.okm.discipline1172
dc.okm.discipline4112
dc.okm.internationalcopublicationei
dc.okm.julkaisukanavaoa1 = Kokonaan avoimessa julkaisukanavassa ilmestynyt julkaisu
dc.okm.selfarchivedon
dc.publisherMDPI
dc.relation.articlenumber492
dc.relation.doi10.3390/f17040492
dc.relation.ispartofseriesForests
dc.relation.issn1999-4907
dc.relation.numberinseries4
dc.relation.volume17
dc.rightsCC BY 4.0
dc.source.justusid144903
dc.subjectfungal decay
dc.subjectmulti-Fickian
dc.subjectmoisture transport
dc.subjectfree water
dc.subjectLFNMR
dc.subjectfinite element modeling
dc.teh41007-00247101
dc.teh41007-00281501
dc.titleLFNMR-Informed Multi-Phase Moisture Modelling of Wood Biodegradation by Coniophora puteana
dc.typepublication
dc.type.okmfi=A1 Alkuperäisartikkeli tieteellisessä aikakauslehdessä|sv=A1 Originalartikel i en vetenskaplig tidskrift|en=A1 Journal article (refereed), original research|
dc.type.versionfi=Publisher's version|sv=Publisher's version|en=Publisher's version|

Tiedostot

Näytetään 1 - 1 / 1
Ladataan...
Name:
Dsouza_etal_forests_2026_LFNMR.pdf
Size:
3.49 MB
Format:
Adobe Portable Document Format
Description:
Dsouza_etal_forests_2026_LFNMR.pdf

Kokoelmat