Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Pretreatment of wheat straw leads to structural changes and improved enzymatic hydrolysis

View through CrossRef
AbstractWheat straw (WS) is a potential biomass for production of monomeric sugars. However, the enzymatic hydrolysis ratio of cellulose in WS is relatively low due to the presence of lignin and hemicellulose. To enhance the enzymatic conversion of WS, we tested the impact of three different pretreatments, e.g. sulfuric acid (H2SO4), sodium hydroxide (NaOH), and hot water pretreatments to the enzymatic digestions. Among the three pretreatments, the highest cellulose conversion rate was obtained with the 4% NaOH pretreatment at 121 °C (87.2%). In addition, NaOH pretreatment was mainly effective in removing lignin, whereas the H2SO4 pretreatment efficiently removed hemicellulose. To investigate results of pretreated process for enhancement of enzyme-hydolysis to the WS, we used scanning electron microscopy, X-ray diffraction, and Fourier transform infrared spectroscopy to analyze structural changes of raw and treated materials. The structural analysis indicated that after H2SO4 and NaOH pretreatments, most of the amorphous cellulose and partial crystalline cellulose were hydrolyzed during enzymatic hydrolysis. The findings of the present study indicate that WS could be ideal materials for production of monomeric sugars with proper pretreatments and effective enzymatic base hydrolysis.
Title: Pretreatment of wheat straw leads to structural changes and improved enzymatic hydrolysis
Description:
AbstractWheat straw (WS) is a potential biomass for production of monomeric sugars.
However, the enzymatic hydrolysis ratio of cellulose in WS is relatively low due to the presence of lignin and hemicellulose.
To enhance the enzymatic conversion of WS, we tested the impact of three different pretreatments, e.
g.
sulfuric acid (H2SO4), sodium hydroxide (NaOH), and hot water pretreatments to the enzymatic digestions.
Among the three pretreatments, the highest cellulose conversion rate was obtained with the 4% NaOH pretreatment at 121 °C (87.
2%).
In addition, NaOH pretreatment was mainly effective in removing lignin, whereas the H2SO4 pretreatment efficiently removed hemicellulose.
To investigate results of pretreated process for enhancement of enzyme-hydolysis to the WS, we used scanning electron microscopy, X-ray diffraction, and Fourier transform infrared spectroscopy to analyze structural changes of raw and treated materials.
The structural analysis indicated that after H2SO4 and NaOH pretreatments, most of the amorphous cellulose and partial crystalline cellulose were hydrolyzed during enzymatic hydrolysis.
The findings of the present study indicate that WS could be ideal materials for production of monomeric sugars with proper pretreatments and effective enzymatic base hydrolysis.

Related Results

Anatomical, morphological and chemical characteristics of kaun straw (Seetaria-ltalika)
Anatomical, morphological and chemical characteristics of kaun straw (Seetaria-ltalika)
AbstractAnatomical, morphological and chemical characteristics of kaun straw were examined to assess their suitability for paper production and the properties were compared with wh...
Environmental Effects and Their impact on Yield in Adjacent Experimental Plots of High and Short Stem Wheat Varieties
Environmental Effects and Their impact on Yield in Adjacent Experimental Plots of High and Short Stem Wheat Varieties
Abstract Using Xinhuamai818 as the experimental material for high stem wheat varieties, HHH as the control plot for high stem wheat varieties(One letter represents an exper...
Environmental Effects and Their Impact on Yield in Adjacent Experimental Plots of High-stem and Short-Stem Wheat Varieties
Environmental Effects and Their Impact on Yield in Adjacent Experimental Plots of High-stem and Short-Stem Wheat Varieties
Abstract Xinhuamai 818 was used as the experimental material for high-stem wheat varieties, HHH was used as the control plot for high-stem wheat varieties (one letter repre...
Energy Utilization Potential of Wheat Straw in an Ecological Balance—A Case Study of Henan Province in China
Energy Utilization Potential of Wheat Straw in an Ecological Balance—A Case Study of Henan Province in China
Minimum volume of straw should be retained in collecting wheat straw in order to obtain sustainable agricultural biomass energy and measure the energy utilization potential of whea...
Steam Explosion for Wheat Straw Pretreatment for Sugars Production
Steam Explosion for Wheat Straw Pretreatment for Sugars Production
AbstractDevelopment of biofuels such as lignocellulosic ethanol represents a sustainable alternative in the transport sector. Wheat straw is a promising feedstock for bioethanol pr...
Characterization of Rice Straw for Energy use in Grain Drying: A Comparative Study
Characterization of Rice Straw for Energy use in Grain Drying: A Comparative Study
The utilization of rice straw for energy in grain drying has garnered significant attention in rice-producing countries. However, its effectiveness as a fuel in grain drying is unc...
Estimating winter wheat straw amount and spatial distribution in Qihe County, China, using GF-1 satellite images
Estimating winter wheat straw amount and spatial distribution in Qihe County, China, using GF-1 satellite images
Crop straw is considered an important renewable energy source. China produces approximately one billion tons of crop straw annually, but 35% of this yield is not used effectively. ...

Back to Top