A comparison of chemical pretreatment methods for improving saccharification of cotton stalks
Silverstein, R. A., Chen, Y., Sharma-Shivappa, R. R., Boyette, M. D., & Osborne, J. (2006, December 9). Bioresource Technology.
author keywords: delignification; bioethanol; modeling; lignocellulose; enzymatic hydrolysis
MeSH headings : Biotechnology / methods; Cellulose / chemistry; Conservation of Energy Resources; Ethanol / chemistry; Gossypium / chemistry; Gossypium / drug effects; Hydrogen Peroxide / chemistry; Hydrolysis; Ozone / chemistry; Sodium Hydroxide / chemistry; Sulfuric Acids / chemistry; Temperature
topics (OpenAlex): Biofuel production and bioconversion; Advanced Cellulose Research Studies; Lignin and Wood Chemistry
TL;DR:
Quadratic models using time, temperature, and concentration as continuous variables were developed to predict xylan and lignin reduction, respectively for sulfuric acid and sodium hydroxide pretreatments, and explained most of the variation in xylan or lign in reduction through simple linear regressions.
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UN Sustainable Development Goal Categories
6. Clean Water and Sanitation
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