Effects of cellulase loading and substrate concentration on the enzymatic hydrolysis of corn stover
Pingkai Ouyang
Abstract
Pingkai Ouyang
Abstract
Corn stover, which was pretreated with an integrated wet-milling and alkali pretreatment method, was enzymatically hydrolyzed by a commercial cellulatic complex under conditions of a cellulase loading in the range of 1.5 ~30 FPU/g and a substrate concentration in the range of 10 ~40 g/L. The effects of cellulase loading and substrate concentration on reducing-sugar yield and hydrolysis reaction rate were investigated, and the mechanism of inhibiting hydrolysis reaction by lignin was discussed. A regression equation of reducing-sugar yield and cellulase loading, substrate concentration was obtained using the response surface methodology. It was shown that at a larger cellulase loading, reaction rate had a larger increase with increasing of substrate concentration. Adsorption of cellulase on lignin caused the inactivation of cellulase, which resulted in the reduction of hydrolysis reaction rate and reducing-sugar yield.
OpenAlex reports 1 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
Corn stover, which was pretreated with an integrated wet-milling and alkali pretreatment method, was enzymatically hydrolyzed by a commercial cellulatic complex under conditions of a cellulase loading in the range of 1.5 ~30 FPU/g and a substrate concentration in the range of 10 ~40 g/L. The effects of cellulase loading and substrate concentration on reducing-sugar yield and hydrolysis reaction rate were investigated, and the mechanism of inhibiting hydrolysis reaction by lignin was discussed. A regression equation of reducing-sugar yield and cellulase loading, substrate concentration was obtained using the response surface methodology. It was shown that at a larger cellulase loading, reaction rate had a larger increase with increasing of substrate concentration. Adsorption of cellulase on lignin caused the inactivation of cellulase, which resulted in the reduction of hydrolysis reaction rate and reducing-sugar yield.
Key concepts: Cellulase, Corn stover, Hydrolysis, Chemistry, Reducing sugar, Substrate (aquarium), Yield (engineering), Enzymatic hydrolysis