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The Kismet of Residual During LMS Delignification of High-Kappa Kraft Pulps

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SummaryA series of laccase-mediator treatments (LMS) with 1-hydroxybenzotriazole (HBT) andN-acetyl-Nphenylhydroxylamine(NHAA) (Fig. 1) as the mediators were performed on a laboratory prepared southern softwood conventional kraft pulp (kappa # 75.4). Subsequent to the LMS treatments, the treated pulps were subjected to various oxidatively reinforced alkaline extraction stages (E*). The kappa results suggested that both LMSHBTand LMSNHAAtreatments delignified this high-kappa pulp. The E* stages were beneficial in countering the darkening effect observed after the LMS treatments. Structural changes in residual lignins isolated before and after laccase-mediator (LMSNHAA(E*) and LMSHBT(E*)) treatments were explored. The spectral analysis of phosphitylated residual lignins revealed an increase in carboxylic acid content and a depletion of phenolic hydroxyl groups in non-condensed at C-5 lignin moieties. Aliphatic hydroxyl groups were substantially decreased when NHAA was used. Overall, it appears that LMSHBTand LMsNHAAtreatments on high-kappa kraft pulps primarily attack phenolic hydroxyl groups in non-condensed at C-5 lignin structures.
Title: The Kismet of Residual During LMS Delignification of High-Kappa Kraft Pulps
Description:
SummaryA series of laccase-mediator treatments (LMS) with 1-hydroxybenzotriazole (HBT) andN-acetyl-Nphenylhydroxylamine(NHAA) (Fig.
1) as the mediators were performed on a laboratory prepared southern softwood conventional kraft pulp (kappa # 75.
4).
Subsequent to the LMS treatments, the treated pulps were subjected to various oxidatively reinforced alkaline extraction stages (E*).
The kappa results suggested that both LMSHBTand LMSNHAAtreatments delignified this high-kappa pulp.
The E* stages were beneficial in countering the darkening effect observed after the LMS treatments.
Structural changes in residual lignins isolated before and after laccase-mediator (LMSNHAA(E*) and LMSHBT(E*)) treatments were explored.
The spectral analysis of phosphitylated residual lignins revealed an increase in carboxylic acid content and a depletion of phenolic hydroxyl groups in non-condensed at C-5 lignin moieties.
Aliphatic hydroxyl groups were substantially decreased when NHAA was used.
Overall, it appears that LMSHBTand LMsNHAAtreatments on high-kappa kraft pulps primarily attack phenolic hydroxyl groups in non-condensed at C-5 lignin structures.

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