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Production of High-Solid-Content Fire-Retardant Phosphorylated Cellulose Microfibrils

Publiceringsår

2021

Upphovspersoner

Khakalo, Alexey; Jaiswal, Aayush Kumar; Kumar, Vinay; Gestranius, Marie; Kangas, Heli; Tammelin, Tekla

Abstrakt

Phosphorylated cellulosic micro(nano)fibrillated materials are increasingly considered for flame-retardant applica tions as a biobased alternative to their halogen-based counterparts. Most of the reported cellulose functionalization strategies, however, are realized at low solids contents and/or involve energy-intensive fiber disintegration methods. In this perspective, we propose an alternative concept of phosphorylated micro fibrillated cellulose production with notably high (25 wt %) solids content and low (0.6 MWh/t) energy consumption. Here, an enzyme-aided pulp disintegration upon mild mechanical treatment was combined with an effective mixing of the fibrillated material with (NH4)2HPO4 in the presence of urea. Subsequently, the obtained slurry was cured at elevated temperature to enable cellulose phosphorylation, which was redispersed afterward in water. The morphology of the obtained phosphorylated micro(nano)fibrillated cellulose materials was extensively characterized by optical microscopy, a fiber analyzer, SEM, and AFM. The presence of phosphate groups in the cellulose structure was validated by ATR-FTIR as well as 31P and 13C NMR spectroscopy. The casted films prepared from phosphorylated cellulose bearing a charge of 1540 µmol/g, which was the highest among the prepared samples, demonstrated noticeably improved flame retardancy, leaving ∼89% of the material after burning as well as self extinguishing properties when the samples were subjected to a butane flame for 3 s.
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Organisationer och upphovspersoner

Teknologiska forskningscentralen VTT Ab

Jaiswal Aayush Kumar Orcid -palvelun logo

Khakalo Alexey Orcid -palvelun logo

Kangas Heli Orcid -palvelun logo

Gestranius Marie Orcid -palvelun logo

Tammelin Tekla Orcid -palvelun logo

Kumar Vinay Orcid -palvelun logo

Publikationstyp

Publikationsform

Artikel

Moderpublikationens typ

Tidning

Artikelstyp

En originalartikel

Målgrupp

Vetenskaplig

Kollegialt utvärderad

Kollegialt utvärderad

UKM:s publikationstyp

A1 Originalartikel i en vetenskaplig tidskrift

Publikationskanalens uppgifter

Volym

9

Nummer

36

Sidor

12365-12375

Publikationsforum

75010

Publikationsforumsnivå

1

Öppen tillgång

Öppen tillgänglighet i förläggarens tjänst

Ja

Öppen tillgång till publikationskanalen

Delvis öppen publikationskanal

Licens för förläggarens version

CC BY

Parallellsparad

Nej

Övriga uppgifter

Vetenskapsområden

Kemi; Teknisk kemi, kemisk processteknik; Materialteknik

Nyckelord

[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]

Språk

engelska

Internationell sampublikation

Nej

Sampublikation med ett företag

Nej

DOI

10.1021/acssuschemeng.1c04403

Publikationen ingår i undervisnings- och kulturministeriets datainsamling

Ja