Enhancing fermentable sugar production from sugarcane bagasse through surfactant-assisted ethylene glycol pretreatment and enzymatic hydrolysis: Reduced temperature and enzyme loading

被引:15
作者
Song, Guojie [1 ,2 ]
Bai, Yalin [1 ]
Pan, Zhenying [3 ]
Liu, Dan [1 ]
Qin, Yuanhang [4 ]
Zhang, Yinchao [1 ]
Fan, Zhihao [2 ]
Li, Yuhan [1 ]
Madadi, Meysam [2 ]
机构
[1] Chinese Acad Agr Sci, Tobacco Res Inst, Key Lab Tobacco Gene Resources, Qingdao 266101, Peoples R China
[2] Jiangnan Univ, Sch Biotechnol, Key Lab Ind Biotechnol, Minist Educ, Wuxi 214122, Peoples R China
[3] Beijing Forestry Univ, Beijing Key Lab Lignocellulos Chem, Beijing 100083, Peoples R China
[4] Wuhan Inst Technol, Sch Chem Engn & Pharm, Key Lab Green Chem Proc, Hubei Key Lab Novel React & Green Chem Technol,Min, Wuhan 430205, Peoples R China
关键词
Lignocellulosic biomass; Surfactants; Organosolv pretreatment; In -situ lignin modification; Enzymatic hydrolysis; BIOMASS;
D O I
10.1016/j.renene.2024.120515
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
In this study, an efficient coupling surfactant to ethylene glycol pretreatment (EG) and enzymatic hydrolysis of sugarcane bagasse (SCB) was proposed to enhance fermentable sugar production with lower pretreatment energy consumption and reduced enzyme loading. Under optimized conditions, 5 % Tween 80 -assisted EG pretreatment of SCB achieved 80.5 % delignification while retaining cellulose (91.6 %) and hemicellulose (81.6 %) content. This led to an enhanced glucose yield of 81.3 %, compared to 65.1 % without Tween 80. The addition of Tween 80 to pretreatment modified residual lignin through etherification, reduced phenolic hydroxyl groups and enhanced hydrophilicity by 23.7 % and 9.4 %, respectively, compared to the lignin sample without Tween 80. Consequently, this modification alleviated non-productive adsorption between lignin and enzymes, improving substrate hydrolyzability. Moreover, when 4.5 % Triton -X 100 was introduced during the hydrolysis of Tween 80 -assisted EG-pretreated substrates, a maximum glucose yield of 91.8 % and xylose yield of 92.6 % were achieved. Energy and enzyme cost analyses revealed a reduction of 35 % in pretreatment energy consumption and a 58.8 % decrease in enzyme costs, thanks to the synergistic action of surfactants in EG pretreatment and enzymatic hydrolysis. Overall, integrating surfactants into pretreatment and enzymatic hydrolysis holds promise for highly efficient conversion of SCB into fermentable sugars in enzyme -mediated lignocellulosic biorefineries.
引用
收藏
页数:11
相关论文
共 41 条
[21]   Positive role of non-catalytic proteins on mitigating inhibitory effects of lignin and enhancing cellulase activity in enzymatic hydrolysis: Application, mechanism, and prospective [J].
Madadi, Meysam ;
Song, Guojie ;
Sun, Fubao ;
Sun, Chihe ;
Xia, Changlei ;
Zhang, Ezhen ;
Karimi, Keikhosro ;
Tu, Maobing .
ENVIRONMENTAL RESEARCH, 2022, 215
[22]   Strategies for the Cellulosic Ethanol Production by Using High-Concentration Poly(ethylene glycol) in the Pretreatment, Enzymatic Hydrolysis, and Fermentation Steps [J].
Nogueira, Cleitiane da Costa ;
Padilha, Carlos Eduardo de Araujo ;
Gilherme, Alexande de Araujo ;
de Souza, Domingos Fabiano Santana ;
de Oliveira, Jackson Araujo ;
dos Santos, Everaldo Silvino .
BIOENERGY RESEARCH, 2022, 15 (01) :493-506
[23]   Enhancing enzymatic hydrolysis of green coconut fiber-Pretreatment assisted by tween 80 and water effect on the post-washing [J].
Nogueira, Cleitiane da Costa ;
de Araujo Padilha, Carlos Eduardo ;
de Sa Leitao, Ana Laura ;
Rocha, Patricia Maria ;
de Macedo, Gorete Ribeiro ;
dos Santos, Everaldo Silvino .
INDUSTRIAL CROPS AND PRODUCTS, 2018, 112 :734-740
[24]   Efficiency enhancement of a new cellulase cocktail at low enzyme loading for high solid digestion of alkali catalyzed atmospheric glycerol organosolvent pre-treated sugarcane bagasse [J].
Nwamba, Marknoah Chinenye ;
Song, Guojie ;
Sun, Fubao ;
Mukasekuru, Marie Rose ;
Ren, Hongyan ;
Zhang, Qing ;
Cao, Tishuang ;
Wang, Huaming ;
Sun, Haiyan ;
Hong, Jiong .
BIORESOURCE TECHNOLOGY, 2021, 338
[25]   Surfactants in biorefineries: Role, challenges & perspectives [J].
Sanchez Munoz, Salvador ;
Rocha Balbino, Thercia ;
Alba, Edith Mier ;
Barbosa, Fernanda Goncalves ;
de Pier, Fernando Tonet ;
de Almeida, Alexandra Lazuroz Moura ;
Zilla, Ana Helena Balan ;
Antunes, Felipe Antonio Fernandes ;
Teran Hilares, Ruly ;
Balagurusamy, Nagamani ;
dos Santos, Julio Ceaser ;
da Sliva, Silvio Silverio .
BIORESOURCE TECHNOLOGY, 2022, 345
[26]   Double in-situ lignin modification in surfactant-assisted glycerol organosolv pretreatment of sugarcane bagasse towards efficient enzymatic hydrolysis [J].
Song, Guojie ;
Madadi, Meysam ;
Meng, Xianzhi ;
Sun, Chihe ;
Aghbashlo, Mortaza ;
Sun, Fubao ;
Ragauskas, Arthur J. ;
Tabatabaei, Meisam ;
Ashori, Alireza .
CHEMICAL ENGINEERING JOURNAL, 2024, 481
[27]   Dual assistance of surfactants in glycerol organosolv pretreatment and enzymatic hydrolysis of lignocellulosic biomass for bioethanol production [J].
Song, Guojie ;
Sun, Chihe ;
Madadi, Meysam ;
Dou, Shaohua ;
Yan, Junshu ;
Huan, Hailin ;
Aghbashlo, Mortaza ;
Tabatabaei, Meisam ;
Sun, Fubao ;
Ashori, Alireza .
BIORESOURCE TECHNOLOGY, 2024, 395
[28]   Surfactants facilitated glycerol organosolv pretreatment of lignocellulosic biomass by structural modification for co-production of fermentable sugars and highly reactive lignin [J].
Song, Guojie ;
Madadi, Meysam ;
Sun, Chihe ;
Shao, Lishu ;
Tu, Maobing ;
Abdulkhani, Ali ;
Zhou, Qing ;
Lu, Xingmei ;
Hu, Jinguang ;
Sun, Fubao .
BIORESOURCE TECHNOLOGY, 2023, 383
[29]   Advances and perspectives on mass transfer and enzymatic hydrolysis in the enzyme-mediated lignocellulosic biorefinery: A review [J].
Sun, Chihe ;
Meng, Xianzhi ;
Sun, Fubao ;
Zhang, Junhua ;
Tu, Maobing ;
Chang, Jo-Shu ;
Reungsang, Alissara ;
Xia, Ao ;
Ragauskas, Arthur J. .
BIOTECHNOLOGY ADVANCES, 2023, 62
[30]   Industrially relevant hydrolyzability and fermentability of sugarcane bagasse improved effectively by glycerol organosolv pretreatment [J].
Sun, Fubao Fuelbiol ;
Zhao, Xiaoqin ;
Hong, Jiapeng ;
Tang, Yanjun ;
Wang, Liang ;
Sun, Haiyan ;
Li, Xiang ;
Hu, Jinguang .
BIOTECHNOLOGY FOR BIOFUELS, 2016, 9