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Structural elucidation of lignin macromolecule from abaca during alkaline hydrogen peroxide delignification.
Ma, Cheng-Ye; Wang, Han-Min; Wen, Jia-Long; Shi, Quentin; Wang, Shuang-Fei; Yuan, Tong-Qi; Sun, Run-Cang.
Afiliação
  • Ma CY; Beijing Key Laboratory of Lignocellulosic Chemistry, Beijing Forestry University, Beijing 100083, China.
  • Wang HM; Beijing Key Laboratory of Lignocellulosic Chemistry, Beijing Forestry University, Beijing 100083, China.
  • Wen JL; Beijing Key Laboratory of Lignocellulosic Chemistry, Beijing Forestry University, Beijing 100083, China; Beijing Advanced Innovation Center for Tree Breeding by Molecular Design, Beijing Forestry University, Beijing, 100083, China. Electronic address: wenjialong@bjfu.edu.cn.
  • Shi Q; Shanghai Dssun New Material Co., Ltd, Shanghai 200223, China.
  • Wang SF; College of Light Industry and Food Engineering, Guangxi University, Nanning 530004, China.
  • Yuan TQ; Beijing Key Laboratory of Lignocellulosic Chemistry, Beijing Forestry University, Beijing 100083, China; Beijing Advanced Innovation Center for Tree Breeding by Molecular Design, Beijing Forestry University, Beijing, 100083, China.
  • Sun RC; Beijing Key Laboratory of Lignocellulosic Chemistry, Beijing Forestry University, Beijing 100083, China. Electronic address: rcsun3@bjfu.edu.cn.
Int J Biol Macromol ; 144: 596-602, 2020 Feb 01.
Article em En | MEDLINE | ID: mdl-31837367
To maximize the utilization of Abaca lignin in the current biorefinery, structural characteristics of native lignin from Abaca were firstly comprehensively investigated. Parallelly, effective delignification of Abaca was achieved by alkaline hydrogen peroxide (AHP) process, which facilitated the production of specialty paper in industry. The structural changes of lignin macromolecules during the AHP delignification were illustrated by comparing the structural differences of the released lignin fraction and corresponding native lignin, which were analyzed via the advanced analytical methods, such as 2D-HSQC NMR, 31P NMR, pyrolysis-GC/MS, and GPC techniques. It was found that Abaca lignin is a HGS-type lignin, which is overwhelmingly composed of ß-O-4 linkages and abundant hydroxycinnamic acids (mainly p-coumaric acid). In addition, partial cleavage of ß-O-4 linkages and p-coumarate in lignin occurred during the AHP delignification process. Meanwhile, AHP process also led to the elevation of H-type lignin units in AHPL. Considering that ß-O-4 bond is vulnerable in the catalytic degradation process of lignin, the lignin with abundant ß-O-4 linkages is beneficial to the downstream conversion of lignin into aromatic chemicals.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Extratos Vegetais / Musa / Peróxido de Hidrogênio / Lignina Idioma: En Ano de publicação: 2020 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Extratos Vegetais / Musa / Peróxido de Hidrogênio / Lignina Idioma: En Ano de publicação: 2020 Tipo de documento: Article