2018•Green ChemistryOpen access

Cellulose–hemicellulose interactions at elevated temperatures increase cellulose recalcitrance to biological conversion

Rajeev Kumar, Samarthya Bhagia, Micholas Dean Smith, Loukas Petridis, Rebecca Garlock Ong, Charles M. Cai, Ashutosh Mittal, M. Himmel, Venkatesh Kumar Balan, Bruce E. Dale, Arthur J. Ragauskas, Jeremy C. Smith, Charles E. Wyman

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Abstract

Hemicellulose–cellulose strong associations at elevated temperatures slows cellulose conversion significantly.

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Hemicellulose–cellulose strong associations at elevated temperatures slows cellulose conversion significantly.

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OpenAlex reports 79 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

Hemicellulose–cellulose strong associations at elevated temperatures slows cellulose conversion significantly.

Key concepts: Hemicellulose, Cellulose, Chemistry, Chemical engineering, Organic chemistry, Engineering

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