4.8 Article

Revealing pyrolysis chemistry for biofuels production: Conversion of cellulose to furans and small oxygenates

期刊

ENERGY & ENVIRONMENTAL SCIENCE
卷 5, 期 1, 页码 5414-5424

出版社

ROYAL SOC CHEMISTRY
DOI: 10.1039/c1ee02743c

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资金

  1. Catalysis Center for Energy Innovation, an Energy Frontier Research Center
  2. U.S. Department of Energy, Office of Science, and Office of Basic Energy Sciences [DE-SC0001004]
  3. Natural Sciences and Engineering Research Council of Canada (NSERC)

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Biomass pyrolysis utilizes high temperatures to produce an economically renewable intermediate (pyrolysis oil) that can be integrated with the existing petroleum infrastructure to produce biofuels. The initial chemical reactions in pyrolysis convert solid biopolymers, such as cellulose (up to 60% of biomass), to a short-lived (less than 0.1 s) liquid phase, which subsequently reacts to produce volatile products. In this work, we develop a novel thin-film pyrolysis technique to overcome typical experimental limitations in biopolymer pyrolysis and identify alpha-cyclodextrin as an appropriate small-molecule surrogate of cellulose. Ab initio molecular dynamics simulations are performed with this surrogate to reveal the long-debated pathways of cellulose pyrolysis and indicate homolytic cleavage of glycosidic linkages and furan formation directly from cellulose without any small-molecule (e. g., glucose) intermediates. Our strategy combines novel experiments and first-principles simulations to allow detailed chemical mechanisms to be constructed for biomass pyrolysis and enable the optimization of next-generation biorefineries.

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