Enhanced enzymatic hydrolysis and hydrogen production of sugarcane bagasse pretreated by peroxyformic acid. 2021

Jie Bu, and Yu-Tao Wang, and Mao-Cheng Deng, and Ming-Jun Zhu
Guangdong Key Laboratory of Fermentation and Enzyme Engineering, School of Biology and Biological Engineering, South China University of Technology, Guangzhou 510006, China.

Pretreatment plays a key role in biofuel production from lignocellulosic biomass. In this study, the main factors of peroxyformic acid (PA) pretreatment were optimized in the light of enzymolysis efficiency and composition analysis of pretreated sugarcane bagasse (SCB). Lignin was significantly removed (59.0%) and a complete saccharification level (103.6%) was obtained for the pretreated SCB with slight cellulose loss (9.2%) under the optimized pretreatment conditions. The effects of PA pretreatment on the structural characteristics of SCB were also studied and the digestibility of pretreated SCB was also evaluated by dark fermentative hydrogen production with an enriched anaerobic cellulolytic microbial consortium MC1. The hydrogen production increased by 195.5% (based on initial SCB) and the abundance of dominant hemicellulose-degradation genus Thermoanaerobacterium increased from 23.8% to 40.2% due to the remaining and accessible hemicellulose in PA pretreated SCB.

UI MeSH Term Description Entries
D008031 Lignin The most abundant natural aromatic organic polymer found in all vascular plants. Lignin together with cellulose and hemicellulose are the major cell wall components of the fibers of all wood and grass species. Lignin is composed of coniferyl, p-coumaryl, and sinapyl alcohols in varying ratios in different plant species. (From Merck Index, 11th ed) Lignins
D002480 Cellulase An endocellulase with specificity for the hydrolysis of 1,4-beta-glucosidic linkages in CELLULOSE, lichenin, and cereal beta-glucans. Endo-1,4-beta-Glucanase,Cellulysin,Endoglucanase,Endoglucanase A,Endoglucanase C,Endoglucanase E,Endoglucanase IV,Endoglucanase Y,beta-1,4-Glucan-4-Glucanohydrolase,Endo 1,4 beta Glucanase,beta 1,4 Glucan 4 Glucanohydrolase
D002482 Cellulose A polysaccharide with glucose units linked as in CELLOBIOSE. It is the chief constituent of plant fibers, cotton being the purest natural form of the substance. As a raw material, it forms the basis for many derivatives used in chromatography, ion exchange materials, explosives manufacturing, and pharmaceutical preparations. Alphacel,Avicel,Heweten,Polyanhydroglucuronic Acid,Rayophane,Sulfite Cellulose,alpha-Cellulose,Acid, Polyanhydroglucuronic,alpha Cellulose
D005561 Formates Derivatives of formic acids. Included under this heading are a broad variety of acid forms, salts, esters, and amides that are formed with a single carbon carboxy group. Formic Acids,Acids, Formic
D006859 Hydrogen The first chemical element in the periodic table with atomic symbol H, and atomic number 1. Protium (atomic weight 1) is by far the most common hydrogen isotope. Hydrogen also exists as the stable isotope DEUTERIUM (atomic weight 2) and the radioactive isotope TRITIUM (atomic weight 3). Hydrogen forms into a diatomic molecule at room temperature and appears as a highly flammable colorless and odorless gas. Protium,Hydrogen-1
D006868 Hydrolysis The process of cleaving a chemical compound by the addition of a molecule of water.
D031786 Saccharum A plant genus of the family POACEAE widely cultivated in the tropics for the sweet cane that is processed into sugar. Sugarcane,Saccharum officinarum,Saccharum spontaneum,Sugarcanes

Related Publications

Jie Bu, and Yu-Tao Wang, and Mao-Cheng Deng, and Ming-Jun Zhu
March 2015, Bioresource technology,
Jie Bu, and Yu-Tao Wang, and Mao-Cheng Deng, and Ming-Jun Zhu
August 2016, Bioresource technology,
Jie Bu, and Yu-Tao Wang, and Mao-Cheng Deng, and Ming-Jun Zhu
September 2015, Bioresource technology,
Jie Bu, and Yu-Tao Wang, and Mao-Cheng Deng, and Ming-Jun Zhu
February 2018, Bioresource technology,
Jie Bu, and Yu-Tao Wang, and Mao-Cheng Deng, and Ming-Jun Zhu
September 2014, Bioresource technology,
Jie Bu, and Yu-Tao Wang, and Mao-Cheng Deng, and Ming-Jun Zhu
January 2009, Bioresource technology,
Jie Bu, and Yu-Tao Wang, and Mao-Cheng Deng, and Ming-Jun Zhu
April 2014, Bioresource technology,
Jie Bu, and Yu-Tao Wang, and Mao-Cheng Deng, and Ming-Jun Zhu
February 2010, Bioresource technology,
Copied contents to your clipboard!