LAPSE:2023.2260
Published Article

LAPSE:2023.2260
A Value-Added Utilization Method of Sugar Production By-Products from Rice Straw: Extraction of Lignin and Evaluation of Its Antioxidant Activity
February 21, 2023
Abstract
To value-added utilization of the rice straw, two types of lignin were extracted from the by-products of sugar production. The ether-extracted lignin with a purity of 98.7% was extracted from the pretreatment filtrate with two times the concentrated filtrate volume of ether, where the lignin yield was 6.62 mg/g of the rice straw. The ball-milled lignin with a purity of 99.6% was extracted from the milled enzymatic hydrolysis residue with a 1,4-dioxane solution, where the revolution speed and grinding time were 300 rpm and 12 h, respectively. The yield of ball-milled lignin was 34.52 mg/g of the rice straw, which was 421.5% higher than that extracted from extract-free rice straw. In the process of rice straw pretreatment and lignin extraction, 76.43% by mass of phosphotungstic acid catalyst and approximately 98% by volume of 1,4-dioxane solution could be recycled and reused. Compared with the soda lignin extracted from papermaking black liquor, the scavenging rates of DPPH radical and ABTS+ radical of ether-extracted lignin increased by 36.26% and 41.18%, respectively, while the above scavenging rates of ball-milled lignin increased by 30.22% and 37.75%, respectively. Moreover, the reducing power of the two extracted lignins was also stronger than that of soda lignin. The ether-extracted lignin and ball-milled lignin have the potential to be developed as natural macromolecular antioxidants.
To value-added utilization of the rice straw, two types of lignin were extracted from the by-products of sugar production. The ether-extracted lignin with a purity of 98.7% was extracted from the pretreatment filtrate with two times the concentrated filtrate volume of ether, where the lignin yield was 6.62 mg/g of the rice straw. The ball-milled lignin with a purity of 99.6% was extracted from the milled enzymatic hydrolysis residue with a 1,4-dioxane solution, where the revolution speed and grinding time were 300 rpm and 12 h, respectively. The yield of ball-milled lignin was 34.52 mg/g of the rice straw, which was 421.5% higher than that extracted from extract-free rice straw. In the process of rice straw pretreatment and lignin extraction, 76.43% by mass of phosphotungstic acid catalyst and approximately 98% by volume of 1,4-dioxane solution could be recycled and reused. Compared with the soda lignin extracted from papermaking black liquor, the scavenging rates of DPPH radical and ABTS+ radical of ether-extracted lignin increased by 36.26% and 41.18%, respectively, while the above scavenging rates of ball-milled lignin increased by 30.22% and 37.75%, respectively. Moreover, the reducing power of the two extracted lignins was also stronger than that of soda lignin. The ether-extracted lignin and ball-milled lignin have the potential to be developed as natural macromolecular antioxidants.
Record ID
Keywords
antioxidant activity, ball-milling extraction, ether extraction, lignin, rice straw
Suggested Citation
Zhang S, Ma L, Gao S, Zhu C, Yan Y, Liu X, Li L, Chen H. A Value-Added Utilization Method of Sugar Production By-Products from Rice Straw: Extraction of Lignin and Evaluation of Its Antioxidant Activity. (2023). LAPSE:2023.2260
Author Affiliations
Zhang S: College of Engineering, Northeast Agricultural University, Harbin 150030, China; Agricultural Engineering Postdoctoral Research Station, Northeast Agricultural University, Harbin 150030, China
Ma L: College of Engineering, Northeast Agricultural University, Harbin 150030, China; Key Laboratory of Pig-Breeding Facilities Engineering, Ministry of Agriculture and Rural Affairs, Harbin 150030, China
Gao S: College of Engineering, Northeast Agricultural University, Harbin 150030, China
Zhu C: College of Engineering, Northeast Agricultural University, Harbin 150030, China
Yan Y: College of Engineering, Northeast Agricultural University, Harbin 150030, China
Liu X: College of Engineering, Northeast Agricultural University, Harbin 150030, China
Li L: College of Engineering, Northeast Agricultural University, Harbin 150030, China; Heilongjiang Province Technology Innovation Center of Mechanization and Materialization of Major Crops Production, Harbin 150030, China [ORCID]
Chen H: College of Engineering, Northeast Agricultural University, Harbin 150030, China; Heilongjiang Province Technology Innovation Center of Mechanization and Materialization of Major Crops Production, Harbin 150030, China
Ma L: College of Engineering, Northeast Agricultural University, Harbin 150030, China; Key Laboratory of Pig-Breeding Facilities Engineering, Ministry of Agriculture and Rural Affairs, Harbin 150030, China
Gao S: College of Engineering, Northeast Agricultural University, Harbin 150030, China
Zhu C: College of Engineering, Northeast Agricultural University, Harbin 150030, China
Yan Y: College of Engineering, Northeast Agricultural University, Harbin 150030, China
Liu X: College of Engineering, Northeast Agricultural University, Harbin 150030, China
Li L: College of Engineering, Northeast Agricultural University, Harbin 150030, China; Heilongjiang Province Technology Innovation Center of Mechanization and Materialization of Major Crops Production, Harbin 150030, China [ORCID]
Chen H: College of Engineering, Northeast Agricultural University, Harbin 150030, China; Heilongjiang Province Technology Innovation Center of Mechanization and Materialization of Major Crops Production, Harbin 150030, China
Journal Name
Processes
Volume
10
Issue
6
First Page
1210
Year
2022
Publication Date
2022-06-17
ISSN
2227-9717
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Original Submission
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PII: pr10061210, Publication Type: Journal Article
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LAPSE:2023.2260
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https://doi.org/10.3390/pr10061210
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