Graphitization of lignin-phenol-formaldehyde resins

Segun Isaac Talabi, Ana Paula da Luz, Victor Carlos Pandolfelli, Vitor Hugo Lima, Vagner Roberto Botaro, Alessandra de Almeida Lucas

Research output: Contribution to journalArticlepeer-review

19 Scopus citations

Abstract

Environmental friendliness and cost demand the development of lignin-modified phenolic (LPF) resins for application as a binder for carbon-containing refractories (CCRs) production. Moreover, the in-situ graphitization of such resins can produce crystalline carbon, which is an essential component of CCRs. Consequently, this study investigated LPF resins graphitization using ferrocene, boron oxide and boric acid. The modified resins were synthesized using thermally treated kraft lignin based on 1.5 formaldehyde to phenol molar ratio and with up to 30 wt.% lignin as phenol replacement. The resins chemical composition and the structural organization and oxidation resistance of carbons derived from the plain resins and those containing the graphitizing additives were determined. The results showed that ferrocene and the boron compounds could induce graphitic carbon generation when carbonizing LPF resins at 1500 °C for 5 hours. The best graphitization level (73%) was achieved when 10 wt.% boric acid was added to the resin produced with 20 wt.% lignin. Regarding the formulations containing ferrocene, the highest amount of graphitic carbon (48%) was generated when 5 wt.% of this additive was added to the resin synthesized with 10 wt.% lignin. The carbons derived from the formulations containing boron oxide presented the best oxidation resistance.

Original languageEnglish
Article numbere2019-0686
JournalMaterials Research
Volume23
Issue number2
DOIs
StatePublished - 2020
Externally publishedYes

Keywords

  • Graphitization
  • Kraft lignin
  • Lignin-phenol-formaldehyde resins
  • Synthesis

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