Modification of acid hydrolysis lignin for value-added applications by micronization followed by hydrothermal alkaline treatment

Author:

Krutov Stepan M.,Evtuguin Dmitry V.,Ipatova Elena V.,Santos Sonia A.O.,Sazanov Yurii N.

Abstract

Abstract Technical hydrolysis lignin (THL) was micronized by grinding in a rotary-jet mill to obtain a fraction of approximately 5 mm. Both initial and milled THLs were liquefied by thermal alkaline treatment at 220°C for 2 h. Upgraded THLs that were nonmilled (L1) and milled (L2) were desalted by treatment with cation-exchanged resin and were dried. Micronization affected the course of hydrothermal alkaline treatment and the structure and composition of the obtained lignin. Thus, L2 contained much less concomitant polysaccharides and extractives than L1 and was more condensed. The molecular weights of L1 and L2 were 1100 and 1000 Da, respectively, as determined by size-exclusion chromatography. Structural characterization carried out by employing tandem electrospray ionization-mass spectrometry and 1D and 2D nuclear magnetic resonance spectroscopy revealed that small amounts of β-O-4 (∼6 mol.%), β-5, and β-β structures still remained in L1 and L2. Overall, upgraded lignins are oligomers (trimers-pentamers) with highly degraded propane chains and possess polyconjugated condensed aromatic structures. Upgraded THL seems to be a promising raw material for polymeric formulations.

Publisher

Walter de Gruyter GmbH

Subject

Biomaterials

Reference78 articles.

1. Hydrolysis lignin - based organic electrode material for primary lithium batteries Solid State Electrochem;Gnedenkov,2013

2. Industrial Utilization of Lignin in;Chudakov,1972

3. Thermal decomposition and glass transition of industrial hydrolysis lignin;Hatakeyama;Therm Anal Calorim,2010

4. Oxidative stabilisation of kraft lignin for carbon fibre production;Brodin;Holzforschung,2012

5. High viscosity cationic slow - set and medium - set emulsions Patent US Priority date Apr;Schiling,2000

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