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author:

Bian, Huiyang (Bian, Huiyang.) [1] | Wei, Liqing (Wei, Liqing.) [2] | Lin, Chunxiang (Lin, Chunxiang.) [3] (Scholars:林春香) | Ma, Qianli (Ma, Qianli.) [4] | Dai, Hongqi (Dai, Hongqi.) [5] | Zhu, J.Y. (Zhu, J.Y..) [6]

Indexed by:

EI Scopus

Abstract:

Two lignin-containing cellulose nanofibril (LCNF) samples, produced from two unbleached kraft pulps with very different lignin contents, were used to produce reinforced polyvinyl alcohol (PVA) hydrogels. The effects of LCNF loading (0.25-2 wt %) and lignin content on the rheological and mechanical properties of the reinforced hydrogels were investigated. The 2 wt % LCNF-reinforced PVA hydrogels exhibited up to a 17-fold increase in storage modulus and a 4-fold increase in specific Young's modulus over that of pure PVA hydrogel. Both the mechanical and rheological properties of LCNF-reinforced PVA hydrogels can be tuned by varying LCNF loading and LCNF lignin content. During LCNF production, lignin reduced cellulose depolymerization, resulting in LCNF with high aspect ratios that promoted entanglement and physical bridging of the hydrogel network. Free lignin particles generated during LCNF production acted as multifunctional nanospacers that increased porosity of the hydrogels. Because LCNFs were produced from unbleached chemical pulps, which have high yields and do not require bleaching, this study provides a more sustainable approach to utilize lignocelluloses to produce biomass-based hydrogels than by methods using commercial bleached pulps. © 2018 American Chemical Society.

Keyword:

Aspect ratio Bleaching Cellulose Cellulose nanocrystals Cleaning Elastic moduli Hydrogels Kraft pulp Lignin Nanofibers Polyvinyl alcohols Reinforcement

Community:

  • [ 1 ] [Bian, Huiyang]Jiangsu Co-Innovation Center of Efficient Processing and Utilization of Forest Resources, Nanjing Forestry University, Nanjing; 210037, China
  • [ 2 ] [Bian, Huiyang]Forest Products Laboratory, U.S. Forest Service, U.S. Department of Agriculture, Madison; WI; 53726, United States
  • [ 3 ] [Wei, Liqing]Forest Products Laboratory, U.S. Forest Service, U.S. Department of Agriculture, Madison; WI; 53726, United States
  • [ 4 ] [Lin, Chunxiang]Forest Products Laboratory, U.S. Forest Service, U.S. Department of Agriculture, Madison; WI; 53726, United States
  • [ 5 ] [Lin, Chunxiang]College of Environment and Resources, Fuzhou University, Fuzhou; 350108, China
  • [ 6 ] [Ma, Qianli]Forest Products Laboratory, U.S. Forest Service, U.S. Department of Agriculture, Madison; WI; 53726, United States
  • [ 7 ] [Ma, Qianli]State Key Laboratory of Pulp and Paper Engineering, South China University of Technology, Guangzhou; 510640, China
  • [ 8 ] [Dai, Hongqi]Jiangsu Co-Innovation Center of Efficient Processing and Utilization of Forest Resources, Nanjing Forestry University, Nanjing; 210037, China
  • [ 9 ] [Zhu, J.Y.]Forest Products Laboratory, U.S. Forest Service, U.S. Department of Agriculture, Madison; WI; 53726, United States

Reprint 's Address:

  • [zhu, j.y.]forest products laboratory, u.s. forest service, u.s. department of agriculture, madison; wi; 53726, united states

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Source :

ACS Sustainable Chemistry and Engineering

ISSN: 2168-0485

Year: 2018

Issue: 4

Volume: 6

Page: 4821-4828

6 . 9 7

JCR@2018

7 . 1 0 0

JCR@2023

JCR Journal Grade:1

Cited Count:

WoS CC Cited Count:

SCOPUS Cited Count: 183

ESI Highly Cited Papers on the List: 0 Unfold All

WanFang Cited Count:

Chinese Cited Count:

30 Days PV: 0

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