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Sökning: onr:"swepub:oai:DiVA.org:ltu-82852" > Effective Biomass F...

Effective Biomass Fractionation through Oxygen-Enhanced Alkaline–Oxidative Pretreatment

Yuan, Zhaoyang (författare)
Department of Biochemistry & Molecular Biology, Michigan State University, East Lansing, Michigan 48824, United States
Klinger, Grace E. (författare)
Department of Biochemistry & Molecular Biology, Michigan State University, East Lansing, Michigan 48824, United States
Nikafshar, Saeid (författare)
Department of Forestry, Michigan State University, East Lansing, Michigan 48824, United States
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Cui, Yanbin (författare)
Department of Chemistry, University of Wisconsin-Madison, Madison, Wisconsin 53706, United States
Fang, Zhen (författare)
Department of Biochemistry & Molecular Biology, Michigan State University, East Lansing, Michigan 48824, United States
Alherech, Manar (författare)
Department of Chemistry, University of Wisconsin-Madison, Madison, Wisconsin 53706, United States
Goes, Shannon (författare)
Department of Chemistry, University of Wisconsin-Madison, Madison, Wisconsin 53706, United States
Anson, Colin (författare)
Department of Chemistry, University of Wisconsin-Madison, Madison, Wisconsin 53706, United States
Singh, Sandip K. (författare)
Department of Chemical & Biological Engineering, Montana State University, Bozeman, Montana 59717, United States
Bals, Bryan (författare)
Michigan Biotechnology Institute, Lansing, Michigan 48910, United States
Hodge, David B. (författare)
Luleå tekniska universitet,Industriell miljö- och processteknik,Department of Chemical & Biological Engineering, Montana State University, Bozeman, Montana 59717, United States
Nejad, Mojgan (författare)
Department of Forestry and Department of Chemical Engineering and Material Science, Michigan State University, East Lansing, Michigan 48824, United States
Stahl, Shannon S. (författare)
Department of Chemistry, University of Wisconsin-Madison, Madison, Wisconsin 53706, United States. Wisconsin Energy Institute, University of Wisconsin-Madison, Madison, Wisconsin 53726, United States
Hegg, Eric L. (författare)
Department of Biochemistry & Molecular Biology, Michigan State University, East Lansing, Michigan 48824, United States
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 (creator_code:org_t)
2021-01-11
2021
Engelska.
Ingår i: ACS Sustainable Chemistry and Engineering. - : American Chemical Society (ACS). - 2168-0485. ; 9:3, s. 1118-1127
  • Tidskriftsartikel (refereegranskat)
Abstract Ämnesord
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  • The high recalcitrance of plant cell walls is an obstacle for effective chemical or biological conversion into renewable chemicals and transportation fuels. Here, we investigated the utilization of both oxygen (O2) and hydrogen peroxide (H2O2) as co-oxidants during alkaline–oxidative pretreatment to improve biomass fractionation and increase enzymatic digestibility. The oxidative pretreatment of hybrid poplar was studied over a variety of conditions. Employing O2 in addition to H2O2 as a co-oxidant during the two-stage alkaline pre-extraction/copper-catalyzed alkaline hydrogen peroxide (Cu-AHP) pretreatment process resulted in a substantial improvement in delignification relative to using H2O2 alone during the second-stage Cu-AHP pretreatment, leading to high overall sugar yields even at H2O2 loadings as low as 2% (w/w of the original biomass). The presence of H2O2, however, was both critical and synergistic. Performing analogous reactions in the absence of H2O2 resulted in approximately 25% less delignification and 30% decrease in sugar yields. The lignin isolated from this dual oxidant second stage had high aliphatic hydroxyl group content and reactivity to isocyanate, indicating that it is a promising substrate for the production of polyurethanes. To test the suitability of the isolated lignin as a source of aromatic monomers, the lignin was subjected to a sequential Bobbitt’s salt oxidation followed by a formic acid-catalyzed depolymerization process. Monomer yields of approximately 17% (w/w) were obtained, and the difference in yields was not significant between lignin isolated from our Cu-AHP process with and without O2 as a co-oxidant. Thus, the addition of O2 did not lead to significant lignin crosslinking, a result consistent with the two-dimensional heteronuclear single-quantum coherence NMR spectra of the isolated lignin.

Ämnesord

TEKNIK OCH TEKNOLOGIER  -- Industriell bioteknik -- Bioprocessteknik (hsv//swe)
ENGINEERING AND TECHNOLOGY  -- Industrial Biotechnology -- Bioprocess Technology (hsv//eng)

Nyckelord

alkaline hydrogen peroxide pretreatment
aromatic monomers
catalysis
cellulosic biofuels
copper
lignin
oxidative depolymerization
polyurethanes
Biokemisk processteknik
Biochemical Process Engineering

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