Top Value Added Chemicals From Biomass: I. Results of Screening for Potential Candidates from Sugars and Synthesis Gas

Основные химические продукты с высокой добавленной стоимостью из биомассы: I. Результаты отбора потенциальных кандидатов из сахаров и синтез-газа
Todd A. Werpy, John Holladay, James F. White
2004-11-01

bio-based chemicalsbiomass-derived chemicalschemical conversion pathwayssugar-based building blockssynthesis gas
This report identifies twelve building block chemicals that can be produced from sugars via biological or chemical conversions. The twelve building blocks can be subsequently converted to a number of high-value bio-based chemicals or materials. Building block chemicals, as considered for this analysis, are molecules with multiple functional groups that possess the potential to be transformed into new families of useful molecules. The twelve sugar-based building blocks are 1,4-diacids (succinic, fumaric and malic), 2,5-furan dicarboxylic acid, 3-hydroxy propionic acid, aspartic acid, glucaric acid, glutamic acid, itaconic acid, levulinic acid, 3-hydroxybutyrolactone, glycerol, sorbitol, and xylitol/arabinitol. In addition to building blocks, the report outlines the central technical barriers that are preventing the widespread use of biomass for products and chemicals.
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The analysis defines building blocks as multifunctional molecules capable of transformation into families of useful molecules.
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The candidate platform molecules include diacids, furan derivatives, hydroxy acids, amino acids, polyols, lactones, and related multifunctional compounds.
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The report also identifies central technical barriers limiting the widespread use of biomass for chemicals and products.
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The report identifies twelve multifunctional sugar-derived building-block chemicals suitable for conversion into high-value bio-based chemicals and materials.
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These building blocks can be produced from sugars through biological or chemical conversion routes.

Sugar-derived biomass building block chemicals

The potential of twelve multifunctional sugar-based building blocks for conversion into high-value bio-based chemicals and materials, and the technical barriers limiting their use

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2004-11-01
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Todd A. Werpy
John Holladay
James F. White
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