4.7 Article

Using nucleophilic naphthol derivatives to suppress biomass lignin repolymerization in fermentable sugar production

期刊

CHEMICAL ENGINEERING JOURNAL
卷 420, 期 -, 页码 -

出版社

ELSEVIER SCIENCE SA
DOI: 10.1016/j.cej.2021.130258

关键词

Carbocation scavengers; Enzymatic hydrolysis; 3-Hydroxy-2-naphthoic acid; Lignin depolymerization, Pretreatment

资金

  1. Natural Science Foundation of Jiangsu Province [BK20200775]
  2. Universiti Malaysia Terengganu [UMT/CRIM/2-2/2/23 (23), 55302]
  3. HICOE Research Grant Scheme [UMT/CRIM/2-2/5 Jilid 2 (10), 56051, 66955]

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The study found that adding 3H2NA can increase the hydrolysis yield of pretreated substrates, and is associated with lower surface lignin content, higher cellulose accessibility, and delignification ratio.
Dilute acid pretreatment of biomass decomposes hemicelluloses but cannot effectively remove lignin. Here we investigate the adding of add five nucleophilic derivatives including 2-naphthol, 6-hydroxy-2-naphthoic acid (6H2NA), 2-hydroxy-1-naphthoic acid (2H1NA), 6-hydroxy-1-naphthoic acid (6H1NA), and 3-hydroxylic-2-naphthoic acid (3H2NA) to enhance the efficiency of lignin removal. The 72-h hydrolysis yield of pretreated substrates was increased from 30.9% to 34.7%, 38.3%, 36.0%, 36.0%, and 53.2%, respectively. The chemical composition, cellulose accessibility, and surface chemistry of pretreated materials with or without additives showed the improved hydrolysis yield with 3H2NA addition being related to lower surface lignin content, higher cellulose accessibility, and delignification ratio. Furthermore, the analysis of HSQC and P-31 NMR spectra of the residual lignin reflects the influence of naphthol derivatives on lignin structure. The results showed that the 3H2NA additive increased the content of lignin carboxyl groups and enhanced the helping fractionation and suppression of lignin repolymerization. These improvements through 3H2NA addition reduce lignin inhibition of fermentable sugar production from pretreated biomass.

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