Lignin-based polyoxyethylene ether enhanced enzymatic hydrolysis of lignocelluloses by dispersing cellulase aggregates. 2015

Xuliang Lin, and Xueqing Qiu, and Long Yuan, and Zihao Li, and Hongming Lou, and Mingsong Zhou, and Dongjie Yang
School of Chemistry and Chemical Engineering, South China University of Technology, Guangzhou, China.

Water-soluble lignin-based polyoxyethylene ether (EHL-PEG), prepared from enzymatic hydrolysis lignin (EHL) and polyethylene glycol (PEG1000), was used to improve enzymatic hydrolysis efficiency of corn stover. The glucose yield of corn stover at 72h was increased from 16.7% to 70.1% by EHL-PEG, while increase in yield with PEG4600 alone was 52.3%. With the increase of lignin content, EHL-PEG improved enzymatic hydrolysis of microcrystalline cellulose more obvious than PEG4600. EHL-PEG could reduce at least 88% of the adsorption of cellulase on the lignin film measured by quartz crystal microbalance with dissipation monitoring (QCM-D), while reduction with PEG4600 was 43%. Cellulase aggregated at 1220nm in acetate buffer analyzed by dynamic light scattering. EHL-PEG dispersed cellulase aggregates and formed smaller aggregates with cellulase, thereby, reduced significantly nonproductive adsorption of cellulase on lignin and enhanced enzymatic hydrolysis of lignocelluloses.

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
D011092 Polyethylene Glycols Polymers of ETHYLENE OXIDE and water, and their ethers. They vary in consistency from liquid to solid depending on the molecular weight indicated by a number following the name. They are used as SURFACTANTS, dispersing agents, solvents, ointment and suppository bases, vehicles, and tablet excipients. Some specific groups are NONOXYNOLS, OCTOXYNOLS, and POLOXAMERS. Macrogols,Polyoxyethylenes,Carbowax,Macrogol,Polyethylene Glycol,Polyethylene Oxide,Polyethyleneoxide,Polyglycol,Glycol, Polyethylene,Glycols, Polyethylene,Oxide, Polyethylene,Oxides, Polyethylene,Polyethylene Oxides,Polyethyleneoxides,Polyglycols,Polyoxyethylene
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
D003313 Zea mays A plant species of the family POACEAE. It is a tall grass grown for its EDIBLE GRAIN, corn, used as food and animal FODDER. Corn,Indian Corn,Maize,Teosinte,Zea,Corn, Indian
D004789 Enzyme Activation Conversion of an inactive form of an enzyme to one possessing metabolic activity. It includes 1, activation by ions (activators); 2, activation by cofactors (coenzymes); and 3, conversion of an enzyme precursor (proenzyme or zymogen) to an active enzyme. Activation, Enzyme,Activations, Enzyme,Enzyme Activations
D004987 Ethers Organic compounds having two alkyl or aryl groups bonded to an oxygen atom, as in the formula R1–O–R2.
D006868 Hydrolysis The process of cleaving a chemical compound by the addition of a molecule of water.
D035261 Plant Components, Aerial The above-ground plant without the roots. Aerial Parts, Plant,Aerial Plant Components,Aerial Part, Plant,Aerial Plant Component,Component, Aerial Plant,Components, Aerial Plant,Part, Plant Aerial,Parts, Plant Aerial,Plant Aerial Part,Plant Aerial Parts,Plant Component, Aerial

Related Publications

Xuliang Lin, and Xueqing Qiu, and Long Yuan, and Zihao Li, and Hongming Lou, and Mingsong Zhou, and Dongjie Yang
September 2019, International journal of biological macromolecules,
Xuliang Lin, and Xueqing Qiu, and Long Yuan, and Zihao Li, and Hongming Lou, and Mingsong Zhou, and Dongjie Yang
April 1984, Biotechnology and bioengineering,
Xuliang Lin, and Xueqing Qiu, and Long Yuan, and Zihao Li, and Hongming Lou, and Mingsong Zhou, and Dongjie Yang
April 1991, Biotechnology and bioengineering,
Xuliang Lin, and Xueqing Qiu, and Long Yuan, and Zihao Li, and Hongming Lou, and Mingsong Zhou, and Dongjie Yang
July 2018, Chembiochem : a European journal of chemical biology,
Xuliang Lin, and Xueqing Qiu, and Long Yuan, and Zihao Li, and Hongming Lou, and Mingsong Zhou, and Dongjie Yang
August 2012, Biotechnology letters,
Xuliang Lin, and Xueqing Qiu, and Long Yuan, and Zihao Li, and Hongming Lou, and Mingsong Zhou, and Dongjie Yang
November 2017, Bioresource technology,
Xuliang Lin, and Xueqing Qiu, and Long Yuan, and Zihao Li, and Hongming Lou, and Mingsong Zhou, and Dongjie Yang
May 2013, ChemSusChem,
Xuliang Lin, and Xueqing Qiu, and Long Yuan, and Zihao Li, and Hongming Lou, and Mingsong Zhou, and Dongjie Yang
October 2014, Applied microbiology and biotechnology,
Xuliang Lin, and Xueqing Qiu, and Long Yuan, and Zihao Li, and Hongming Lou, and Mingsong Zhou, and Dongjie Yang
December 2018, Bioresource technology,
Xuliang Lin, and Xueqing Qiu, and Long Yuan, and Zihao Li, and Hongming Lou, and Mingsong Zhou, and Dongjie Yang
July 2013, Journal of biotechnology,
Copied contents to your clipboard!