Comparison of the impact of ionic liquid pretreatment on recalcitrance of agave bagasse and switchgrass

被引:76
|
作者
Perez-Pimienta, Jose A. [1 ]
Lopez-Ortega, Monica G. [1 ]
Varanasi, Patanjali [2 ,3 ]
Stavila, Vitalie [4 ]
Cheng, Gang [2 ,3 ]
Singh, Seema [2 ,3 ]
Simmons, Blake A. [2 ,3 ]
机构
[1] Univ Autonoma Nayarit, Dept Chem Engn, Tepic, Mexico
[2] Lawrence Berkeley Natl Lab, Joint BioEnergy Inst, Phys Biosci Div, Emeryville, CA USA
[3] Sandia Natl Labs, Biomass Sci & Convers Technol Dept, Livermore, CA USA
[4] Sandia Natl Labs, Energy Nanomat Dept, Livermore, CA USA
关键词
Agave bagasse; Switchgrass; Biomass pretreatment; Ionic liquid; ENZYMATIC DIGESTIBILITY; LIGNOCELLULOSIC BIOMASS; CELLULOSE; HYDROLYSIS; LIGNIN; ACID; SACCHARIFICATION; DISSOLUTION; FEATURES;
D O I
10.1016/j.biortech.2012.09.124
中图分类号
S2 [农业工程];
学科分类号
0828 ;
摘要
Lignocellulose represents a sustainable source of carbon for transformation into biofuels. Effective biomass to sugar conversion strategies are needed to lower processing cost without degradation of polysaccharides. Since ionic liquids (ILs) are excellent solvents for pretreatment/dissolution of biomass, IL pretreatment was carried out on agave bagasse (AGB-byproduct of tequila industry) and digestibility and sugar yield was compared with that obtained with switchgrass (SWG). The IL pretreatment was conducted using ([C2mim][OAc]) at 120 and 160 degrees C for 3 h and 15% biomass loading. While pretreatment using [C2mim][OAc] was very effective in improving the digestibility of both feedstocks, IL pretreatment at 160 degrees C resulted in higher delignification for AGB (45.5%) than for SWG (38.4%) when compared to 120 degrees C (AGB-16.6%, SWG-8.2%), formation of a highly amorphous cellulose structure and a significant enhancement of enzyme kinetics. These results highlight the potential of AGB as a biofuel feedstock that can produce high sugar yields with IL pretreatment. (C) 2012 Elsevier Ltd. All rights reserved.
引用
收藏
页码:18 / 24
页数:7
相关论文
共 50 条
  • [1] Characterization of agave bagasse as a function of ionic liquid pretreatment
    Perez-Pimienta, Jose A.
    Lopez-Ortega, Monica G.
    Chavez-Carvayar, Jose A.
    Varanasi, Patanjali
    Stavila, Vitalie
    Cheng, Gang
    Singh, Seema
    Simmons, Blake A.
    [J]. BIOMASS & BIOENERGY, 2015, 75 : 180 - 188
  • [2] Comparison of dilute acid and ionic liquid pretreatment of switchgrass: Biomass recalcitrance, delignification and enzymatic saccharification
    Li, Chenlin
    Knierim, Bernhard
    Manisseri, Chithra
    Arora, Rohit
    Scheller, Henrik V.
    Auer, Manfred
    Vogel, Kenneth P.
    Simmons, Blake A.
    Singh, Seema
    [J]. BIORESOURCE TECHNOLOGY, 2010, 101 (13) : 4900 - 4906
  • [3] Evaluation of agave bagasse recalcitrance using AFEX™, autohydrolysis, and ionic liquid pretreatments
    Perez-Pimienta, Jose A.
    Flores-Gomez, Carlos A.
    Ruiz, Hector A.
    Sathitsuksanoh, Noppadon
    Balan, Venkatesh
    Sousa, Leonardo da Costa
    Dale, Bruce E.
    Singh, Seema
    Simmons, Blake A.
    [J]. BIORESOURCE TECHNOLOGY, 2016, 211 : 216 - 223
  • [4] Ionic liquid-water mixtures enhance pretreatment and anaerobic digestion of agave bagasse
    Perez-Pimienta, Jose A.
    Garcia-Lopez, Rocio M.
    Mendez-Acosta, Hugo O.
    Gonzalez-Alvarez, Victor
    Simmons, Blake A.
    Mendoza-Perez, Jorge A.
    Arreola-Vargas, Jorge
    [J]. INDUSTRIAL CROPS AND PRODUCTS, 2021, 171
  • [5] Ionic liquid-water mixtures enhance pretreatment and anaerobic digestion of agave bagasse
    Pérez-Pimienta, Jose A.
    García-López, Rocío M.
    Méndez-Acosta, Hugo O.
    González-Álvarez, Víctor
    Simmons, Blake A.
    Méndoza-Pérez, Jorge A.
    Arreola-Vargas, Jorge
    [J]. Arreola-Vargas, Jorge (jorge.arreolav@tamu.edu), 1600, Elsevier B.V. (171):
  • [6] Ternary ionic liquid–water pretreatment systems of an agave bagasse and municipal solid waste blend
    Jose A. Perez-Pimienta
    Noppadon Sathitsuksanoh
    Vicki S. Thompson
    Kim Tran
    Teresa Ponce-Noyola
    Vitalie Stavila
    Seema Singh
    Blake A. Simmons
    [J]. Biotechnology for Biofuels, 10
  • [7] Impact of engineered lignin composition on biomass recalcitrance and ionic liquid pretreatment efficiency
    Shi, Jian
    Pattathil, Sivakumar
    Parthasarathi, Ramakrishnan
    Anderson, Nickolas A.
    Kim, Jeong Im
    Venketachalam, Sivasankari
    Hahn, Michael G.
    Chapple, Clint
    Simmons, Blake A.
    Singh, Seema
    [J]. GREEN CHEMISTRY, 2016, 18 (18) : 4884 - 4895
  • [8] Bioderived ionic liquid-based pretreatment enhances methane production from Agave tequilana bagasse
    Perez-Pimienta, Jose A.
    Icaza-Herrera, Jose P. A.
    Mendez-Acosta, Hugo O.
    Gonzalez-Alvarez, Victor
    Mendoza-Perez, Jorge A.
    Arreola-Vargas, Jorge
    [J]. RSC ADVANCES, 2020, 10 (24) : 14025 - 14032
  • [9] Ternary ionic liquid-water pretreatment systems of an agave bagasse and municipal solid waste blend
    Perez-Pimienta, Jose A.
    Sathitsuksanoh, Noppadon
    Thompson, Vicki S.
    Tran, Kim
    Ponce-Noyola, Teresa
    Stavila, Vitalie
    Singh, Seema
    Simmons, Blake A.
    [J]. BIOTECHNOLOGY FOR BIOFUELS, 2017, 10
  • [10] Recalcitrance Assessment of the Agro-industrial Residues from Five Agave Species: Ionic Liquid Pretreatment, Saccharification and Structural Characterization
    Perez-Pimienta, Jose A.
    Mojica-Alvarez, Reyna M.
    Sanchez-Herrera, Leticia M.
    Mittal, Ashutosh
    Sykes, Robert W.
    [J]. BIOENERGY RESEARCH, 2018, 11 (03) : 551 - 561