数字农科院2.0

Green valorization of sweet potato vines: Efficient cellulose extraction and γ-valerolactone recovery via biorefinery platform

文献类型: 外文期刊

作者: Yuan Li;Hongnan Sun;Taihua Mu;Marco Garcia-Vaquero

作者机构:

关键词: Cellulose;Circular economy;Fractionation;Lignocellulosic biomass;Pretreatment;Sodium chloride;γ-Valerolactone

期刊名称: Carbohydrate Polymers

ISSN: 0144-8617

年卷期: 2025 年 367 卷

页码:

收录情况: SCIE(2025版) ; ; EI(2025版)

摘要: Sweet potato vines, a common agricultural waste during sweet potato harvest, can be a valuable source of lignocellulose. The transformation of these vines into bio-based materials and platform chemicals through a biorefinery process is crucial for turning this promised potential into a practical industrial process. This research developed and optimized a NaCl-catalyzed γ-valerolactone (GVL) /H2O co-solvent pretreatment process for sweet potato vines. Using optimum conditions (solid-liquid ratio 1:15 (g/mL), 170 °C, 4 h, 20 % GVL/H2O, 15 % NaCl) cellulose retention rate was 90.5 % (90.0 % purity, 48.9 % crystallinity), with hemicellulose and lignin removal rates of 94.0 % and 90.0 %, respectively. The lignin (purity 87.5 %, dispersity of 1.05) was recovered by solvent exchange and centrifugation. Compared with commercial microcrystalline cellulose and lignin alkali, the recovered cellulose and lignin had good thermal stability, suitable for further downstream use. A control group experiment confirmed the synergistic effect of NaCl and GVL, with NaCl promoting lignocellulose decomposition. In addition, GVL showed excellent recovery performance with 94.8 % recovery rates and 94.6 % purity after 3 recovery cycles. To summarize, this work presents an ecologically sustainable and environmentally friendly biorefinery technique for effectively utilizing sweet potato vines and other agricultural wastes as source of platform chemicals.

分类号:

  • 相关文献

[1]Sustainable closed-loop biorefinery of γ-valerolactone from lignocellulosic biomass: Pretreatments of multiple biomass and synthesis of γ-valerolactone from multiple biomass-derived feedstocks. Yuan Li,Hongnan Sun,Taihua Mu,Marco Garcia-Vaquero. 2025

[2]Pretreatment of corn stover with acidic electrolyzed water and FeCl3 leads to enhanced enzymatic hydrolysis. Shen, Zhaobing,Jin, Chaonan,Shi, Jiping,Liu, Li,Shen, Zhaobing,Pei, Haisheng,Sun, Junshe,Sun, Junshe. 2014

[3]Characterization of a novel thermostable α-L-arabinofuranosidase for improved synergistic effect with xylanase on lignocellulosic biomass hydrolysis without prior pretreatment. Liu X.,Gao F.,Wang Y.,Zhang J.,Bai Y.,Zhang W.,Luo H.,Yao B.,Wang Y.,Tu T.. 2024

[4]Boosting enzymatic degradation of cellulose using a fungal expansin: Structural insight into the pretreatment mechanism. Sunjia Ding,刘晓青,Nina Hakulinen,Mohammad J. Taherzadeh,Yaru Wang,Yuan Wang,Xing Qin,Xiaolu Wang,Bin Yao,Huiying Luo,Tao Tu. 2022

[5]PlantcellwallpolysaccharidesdeconstructionbyCaldicellulosiruptorbescii. 苏小运. 2015

[6]Bimetallic ordered mesoporous carbon from lignin for catalytic selective hydrogenation of levulinic acid to γ-valerolactone. Xiaoqi Wang,Xinhua Qi,Mo Qiu,Feng Shen,Jirui Yang,Boxiong Shen. 2023

[7]Catalytic hydrogenation of levulinic acid to γ-valerolactone over lignin-metal coordinated carbon nanospheres in water. Yingying Xu,Yining Liang,Haixin Guo,Xinhua Qi. 2023

[8]Comparative analysis of muscle phosphoproteome induced by salt curing. Wang, Zhenyu,Zhang, Caixia,Li, Zheng,Shen, Qingwu,Zhang, Dequan,Shen, Qingwu,Wang, Zhenyu.

[9]Electrochemical regeneration of zeolites and the removal of ammonia. Li, Miao,Zhang, Zhenya,Sugiura, Norio,Lei, Xiaohui,Li, Miao,Feng, Chuanping,Bai, Wei. 2009

[10]Dietary Chloride Levels Affect Performance And Eggshell Quality Of Laying Hens By Substitution Of Sodium Sulfate For Sodium Chloride. Wang, J, Zhang, HJ, Wu, SG, Qi, GH, Xu, L. 2020

[11]Characterization of salt tolerant wheat genotypes by using morpho-physiological, biochemical, and molecular analysis. Ahsan Irshad,Rana Imtiaz Ahmed,Shoaib Ur Rehman,Guozhong Sun,Furqan Ahmad,Muhammad Ali Sher,Muhammad Zahid Aslam,Mohamed M. Hassan,Sameer H. Qari,Muhammad Kashif Aziz,Zulqurnain Khan. 2022

[12]Effect of electrokinetic treatment time on energy consumption and salt ions removal from clayey soils. Abdul Ahad Hussain,Kashif Kamran,Maryam Hina,Mubashera Ishaq,Muhammad Y. Naz,Shahid Bashir,Nadeem Sarwar,Moinuddin Mohammed Quazi. 2023

[13]Effects of additives (NaCl, citric acid, and ethanol) on the cooking quality and sensory quality of vermicelli produced from freeze-thaw-dehydrated whole potato powder. Chen, Ziqi,Zhang, Tingting,Liu, Qiannan,Liu, Wei,Zhao, Ruixuan,Hu, Honghai. 2024

[14]Effect of dietary supplemental sodium chloride on growth, blood or serum parameters, and related aspects of broilers aged 22 to 42 days. Li, Tingting,Zhang, Weiyun,Gao, Feiyu,Yao, Xingkai,Zhang, Liyang,Hu, Yun,Cui, Xiaoyan,Wang, Shengchen,Luo, Xugang. 2025

[15]Is soil dressing a way once and for all in remediation of arsenic contaminated soils? A case study of arsenic re-accumulation in soils remediated by soil dressing in Hunan Province, China. Su, Shiming,Bai, Lingyu,Gao, Xiang,Zhang, Tuo,Wang, Yanan,Li, Lianfang,Wang, Jinjin,Wu, Cuixia,Zeng, Xibai,Wei, Caibing.

[16]Ageing of added copper in bentonite without and with humic acid. Zhou, Shi-Wei,Ma, Yi-Bing,Xu, Ming-Gang,Zhou, Shi-Wei.

[17]The Fate of Arabidopsis thaliana Homeologous CNSs and Their Motifs in the Paleohexaploid Brassica rapa. Subramaniam, Sabarinath,Freeling, Michael,Wang, Xiaowu,Pires, J. Chris. 2013

[18]Antitumor activity of bee pollen polysaccharides from Rosa rugosa. Wang, Bo,Zhang, Zhongyu,Liu, Yang,Gao, Qipin,Zhou, Yifa,Li, Shanshan,Diao, Qiyu.

[19]High-Purity Calycosin-7-O--D-glucopyranoside Recovered from Radix Astragali by Extraction, Fractionation and Recrystallization. Shi, Bo,Xiao, Wei-hua,Han, Lu-jia. 2009

[20]Comparative Analysis of Polysaccharides from Two Ecological Types of Leymus chinensis. Bi Hong-tao,Li Jing-jing,Chen Xi-guang,Yan Ji-hong,Sun Fang,Fan Sha-sha,Cao Gang,Zhou Yi-fa. 2012

作者其他论文 更多>>