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dc.contributor.authorHashemi, Seyedbehnam
dc.contributor.authorSolli, Linn
dc.contributor.authorAasen, Roald
dc.contributor.authorLamb, Jacob Joseph
dc.contributor.authorHorn, Svein Jarle
dc.contributor.authorLien, Kristian Myklebust
dc.date.accessioned2022-11-22T11:29:47Z
dc.date.available2022-11-22T11:29:47Z
dc.date.created2022-11-02T14:03:35Z
dc.date.issued2022
dc.identifier.citationBioresource Technology. 2022, 366, .en_US
dc.identifier.issn0960-8524
dc.identifier.urihttps://hdl.handle.net/11250/3033361
dc.description.abstractDelignification of steam-exploded birch wood (SEBW) was stimulated using a pretreatment method including Fenton reaction (FR) and fungi. SEBW was employed as a substrate to optimize the Fe(III) and Fe(II) dosage in FR. Maximum iron-binding to SEBW was obtained at pH 3.5. FR pretreatment increased biological methane yields from 257 mL/g vS in control to 383 and 352 mL/ g vS in samples with 0.5 mM Fe(II) and 1.0 mM Fe(III), respectively. Further enzymatic pretreatment using a commercial cellulase cocktail clearly improved methane production rate but only increased the final methane yields by 2–9 %. Finally, pretreatments with the fungi Pleurotus ostreatus (PO) and Lentinula edodes (LE), alone or in combination with FR, were carried out. SEBW pretreated with only LE and samples pretreated with PO and1 mM Fe(III) + H2O2 increased the methane production yield to 420 and 419 mL/g vS respectively. These pretreatments delignified SEBW up to 25 %.en_US
dc.language.isoengen_US
dc.publisherElsevier Scienceen_US
dc.rightsNavngivelse 4.0 Internasjonal*
dc.rights.urihttp://creativecommons.org/licenses/by/4.0/deed.no*
dc.titleStimulating biogas production from steam-exploded birch wood using Fenton reaction and fungal pretreatmenten_US
dc.title.alternativeStimulating biogas production from steam-exploded birch wood using Fenton reaction and fungal pretreatmenten_US
dc.typePeer revieweden_US
dc.typeJournal articleen_US
dc.description.versionpublishedVersionen_US
dc.source.journalBioresource Technologyen_US
dc.identifier.doihttps://doi.org/10.1016/j.biortech.2022.128190
dc.identifier.cristin2068111
cristin.ispublishedtrue
cristin.fulltextoriginal
cristin.qualitycode1


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