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

Solvothermal-Based Lignin Fractionation From Corn Stover: Process Optimization and Product Characteristics

View through CrossRef
Fractionation of lignocellulosic is a fundamental step in the production of value-added biobased products. This work proposes an initiative to efficiently extract lignin from the corn stover using a single-step solvothermal fractionation in the presence of an acid promoter (H2SO4). The organic solvent mixture used consists of ethyl acetate, ethanol, and water at a ratio of 30: 25:45 (v/v), respectively. H2SO4 was utilized as a promoter to improve the performance and selectivity of lignin removal from the solid phase and to increase the amount of recovered lignin in the organic phase. The optimal conditions for this extraction, based on response surface methodology (RSM), are a temperature of 180°C maintained for 49.1 min at an H2SO4 concentration of 0.08 M. The optimal conditions show an efficient reaction with 98.0% cellulose yield and 75.0% lignin removal corresponding to 72.9% lignin recovery. In addition, the extracted lignin fractions, chemical composition, and structural features were investigated using Fourier transform infrared spectroscopy, thermogravimetric analysis, elemental analysis, and two-dimensional heteronuclear single quantum coherence nuclear magnetic resonance spectroscopy (2D-HSQC NMR). The results indicate that the recovered lignin primarily contains a β-O-4 linking motif based on 2D-HSQC spectra. In addition, new C–C inter-unit linkages (i.e., β-β, and β-5) are not formed in the recovered lignin during H2SO4-catalyzed solvothermal pretreatment. This work facilitates effective valorization of lignin into value-added chemicals and fuels.
Title: Solvothermal-Based Lignin Fractionation From Corn Stover: Process Optimization and Product Characteristics
Description:
Fractionation of lignocellulosic is a fundamental step in the production of value-added biobased products.
This work proposes an initiative to efficiently extract lignin from the corn stover using a single-step solvothermal fractionation in the presence of an acid promoter (H2SO4).
The organic solvent mixture used consists of ethyl acetate, ethanol, and water at a ratio of 30: 25:45 (v/v), respectively.
H2SO4 was utilized as a promoter to improve the performance and selectivity of lignin removal from the solid phase and to increase the amount of recovered lignin in the organic phase.
The optimal conditions for this extraction, based on response surface methodology (RSM), are a temperature of 180°C maintained for 49.
1 min at an H2SO4 concentration of 0.
08 M.
The optimal conditions show an efficient reaction with 98.
0% cellulose yield and 75.
0% lignin removal corresponding to 72.
9% lignin recovery.
In addition, the extracted lignin fractions, chemical composition, and structural features were investigated using Fourier transform infrared spectroscopy, thermogravimetric analysis, elemental analysis, and two-dimensional heteronuclear single quantum coherence nuclear magnetic resonance spectroscopy (2D-HSQC NMR).
The results indicate that the recovered lignin primarily contains a β-O-4 linking motif based on 2D-HSQC spectra.
In addition, new C–C inter-unit linkages (i.
e.
, β-β, and β-5) are not formed in the recovered lignin during H2SO4-catalyzed solvothermal pretreatment.
This work facilitates effective valorization of lignin into value-added chemicals and fuels.

Related Results

Fractionation and characterization of lignin from sugarcane bagasse using a sulfuric acid catalyzed solvothermal process
Fractionation and characterization of lignin from sugarcane bagasse using a sulfuric acid catalyzed solvothermal process
Abstract Background: Conversion of lignocellulosic residue to bioenergy and biofuel is a promising platform for global sustainability. Fractionation is an initial step for ...
Cationic Lignin Polymers as Flocculant for Municipal Wastewater
Cationic Lignin Polymers as Flocculant for Municipal Wastewater
The radical polymerization of acid-washed and unwashed softwood kraft lignin with [2-(methacryloyloxy) ethyl] trimethylammonium chloride (METAC) was attempted to investigate the pr...
Technical Lignin Fractionation: A Powerful Tool for Lignin Structure Homogenization and Its Application
Technical Lignin Fractionation: A Powerful Tool for Lignin Structure Homogenization and Its Application
Extracted lignin as a by-product of pulping and bio-refining processes is the main available bio-phenolic polymer. The structural complexity, polydispersity, and black color of lig...
Rheological Properties and Microscopic Morphology Evaluation of UHMWPE-Modified Corn Stover Oil Bio-Asphalt
Rheological Properties and Microscopic Morphology Evaluation of UHMWPE-Modified Corn Stover Oil Bio-Asphalt
In order to promote the efficient utilization of bio-oil, corn stover oil and petroleum asphalt were used to prepare bio-asphalt. UHMWPE was adopted to strengthen the high-temperat...
Development and improvement of artificial diets for larvae of Diabrotica species using multidimensional design space techniques
Development and improvement of artificial diets for larvae of Diabrotica species using multidimensional design space techniques
The western corn rootworm (Coleoptera: Chrysomelidae; Diabrotica virgifera virgifera LeConte) and the northern corn rootworm (Coleoptera: Chrysomelidae; Diabrotica barberi Smith an...
Extrusion-Biodelignification Approach for Biomass Pretreatment
Extrusion-Biodelignification Approach for Biomass Pretreatment
This work presents a new approach for lignocellulosic biomass pretreatment. The process is a sequential combination of extrusion (Ex) and semi-solid fermentation (SSF). To assess t...
Characterization of Corn Stover and Eucalyptus Sawdust for Pellet Production
Characterization of Corn Stover and Eucalyptus Sawdust for Pellet Production
Reducing the use of fossil fuels and increasing the use of renewable resources is essential in minimizing climate change. As the world progress towards using more renewable resourc...
Optimization of Removal of Lignin from Corn Stover by Urea
Optimization of Removal of Lignin from Corn Stover by Urea
Abstract Corn stover in rich source was taken as the research object. The pre-treatment process of corn stover by urea was proposed. The effects of urea amount, temp...

Back to Top