Acid-catalyzed pyrolytic synthesis of levoglucosan through salt-mediated ring locking
Author:
Affiliation:
1. Department of Chemical and Biomolecular Engineering
2. Rice University
3. Houston
4. USA
5. Dalian National Laboratory of Clean Energy
6. Dalian Institute of Chemical Physics
7. Dalian
8. China
9. Department of Chemistry
Abstract
The combination of Na2SO4/H2SO4 increases levoglucosan (LGA) yield from glucose pyrolysis from 6% to as high as 40%, as a result of sodium suppressing the opening of the glucose ring.
Funder
National Science Foundation
CAS-SAFEA International Partnership Program for Creative Research Teams
Publisher
Royal Society of Chemistry (RSC)
Subject
Pollution,Environmental Chemistry
Link
http://pubs.rsc.org/en/content/articlepdf/2020/GC/C9GC03973B
Reference42 articles.
1. Fast Pyrolysis of Cellulose, Hemicellulose, and Lignin: Effect of Operating Temperature on Bio-oil Yield and Composition and Insights into the Intrinsic Pyrolysis Chemistry
2. Prospects for pyrolysis technologies in the bioenergy sector: A review
3. Unravelling the catalytic influence of naturally occurring salts on biomass pyrolysis chemistry using glucose as a model compound: a combined experimental and DFT study
4. Competing reactions limit levoglucosan yield during fast pyrolysis of cellulose
5. Production and purification of crystallized levoglucosan from pyrolysis of lignocellulosic biomass
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