Promise of combined hydrothermal/chemical and mechanical refining for pretreatment of woody and herbaceous biomass

被引:72
作者
Kim, Sun Min [1 ]
Dien, Bruce S. [2 ]
Singh, Vijay [1 ]
机构
[1] Univ Illinois, Dept Agr & Biol Engn, Urbana, IL 61801 USA
[2] USDA ARS, Natl Ctr Agr Utilizat Res, Bioenergy Res Unit, 1815 N Univ St, Peoria, IL 61604 USA
基金
美国食品与农业研究所;
关键词
Combined pretreatment; Chemical pretreatment; Hydrothermal pretreatment; Mechanical refining; Lignocellulosic biofuel; FERMENTING SACCHAROMYCES-CEREVISIAE; IMPROVE ENZYMATIC SACCHARIFICATION; DISK MILLING PRETREATMENT; HOT-COMPRESSED WATER; PALM MESOCARP FIBER; ETHANOL-PRODUCTION; CORN STOVER; LIGNOCELLULOSIC BIOMASS; BIOETHANOL PRODUCTION; CELLULOSIC ETHANOL;
D O I
10.1186/s13068-016-0505-2
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
Production of advanced biofuels from woody and herbaceous feedstocks is moving into commercialization. Biomass needs to be pretreated to overcome the physicochemical properties of biomass that hinder enzyme accessibility, impeding the conversion of the plant cell walls to fermentable sugars. Pretreatment also remains one of the most costly unit operations in the process and among the most critical because it is the source of chemicals that inhibit enzymes and microorganisms and largely determines enzyme loading and sugar yields. Pretreatments are categorized into hydrothermal (aqueous)/chemical, physical, and biological pretreatments, and the mechanistic details of which are briefly outlined in this review. To leverage the synergistic effects of different pretreatment methods, conducting two or more pretreatments consecutively has gained attention. Especially, combining hydrothermal/chemical pretreatment and mechanical refining, a type of physical pretreatment, has the potential to be applied to an industrial plant. Here, the effects of the combined pretreatment (combined hydrothermal/chemical pretreatment and mechanical refining) on energy consumption, physical structure, sugar yields, and enzyme dosage are summarized.
引用
收藏
页数:15
相关论文
共 75 条
[1]   Biomass pretreatment: Fundamentals toward application [J].
Agbor, Valery B. ;
Cicek, Nazim ;
Sparling, Richard ;
Berlin, Alex ;
Levin, David B. .
BIOTECHNOLOGY ADVANCES, 2011, 29 (06) :675-685
[2]   The effect of Tween-20 on simultaneous saccharification and fermentation of softwood to ethanol [J].
Alkasrawi, M ;
Eriksson, T ;
Börjesson, J ;
Wingren, A ;
Galbe, M ;
Tjerneld, F ;
Zacchi, G .
ENZYME AND MICROBIAL TECHNOLOGY, 2003, 33 (01) :71-78
[3]   Pretreatment technologies for an efficient bioethanol production process based on enzymatic hydrolysis: A review [J].
Alvira, P. ;
Tomas-Pejo, E. ;
Ballesteros, M. ;
Negro, M. J. .
BIORESOURCE TECHNOLOGY, 2010, 101 (13) :4851-4861
[4]   Challenges in enzymatic hydrolysis and fermentation of pretreated Arundo donax revealed by a comparison between SHF and SSF [J].
Ask, Magnus ;
Olofsson, Kim ;
Di Felice, Tommaso ;
Ruohonen, Laura ;
Penttila, Merja ;
Liden, Gunnar ;
Olsson, Lisbeth .
PROCESS BIOCHEMISTRY, 2012, 47 (10) :1452-1459
[5]   Do New Cellulolytic Enzyme Preparations Affect the Industrial Strategies for High Solids Lignocellulosic Ethanol Production? [J].
Cannella, David ;
Jorgensen, Henning .
BIOTECHNOLOGY AND BIOENGINEERING, 2014, 111 (01) :59-68
[6]   Bioethanol production from rapeseed straw at high solids loading with different process configurations [J].
Carlos Lopez-Linares, Juan ;
Romero, Inmaculada ;
Cara, Cristobal ;
Ruiz, Encarnacion ;
Moya, Manuel ;
Castro, Eulogio .
FUEL, 2014, 122 :112-118
[7]  
Chakraborty A, 2007, BIORESOURCES, V2, P210
[8]   Fundamental factors affecting biomass enzymatic reactivity [J].
Chang, VS ;
Holtzapple, MT .
APPLIED BIOCHEMISTRY AND BIOTECHNOLOGY, 2000, 84-6 (1-9) :5-37
[9]   A highly efficient dilute alkali deacetylation and mechanical (disc) refining process for the conversion of renewable biomass to lower cost sugars [J].
Chen, Xiaowen ;
Shekiro, Joseph ;
Pschorn, Thomas ;
Sabourin, Marc ;
Tao, Ling ;
Elander, Rick ;
Park, Sunkyu ;
Jennings, Ed ;
Nelson, Robert ;
Trass, Olev ;
Flanegan, Keith ;
Wang, Wei ;
Himmel, Michael E. ;
Johnson, David ;
Tucker, Melvin P. .
BIOTECHNOLOGY FOR BIOFUELS, 2014, 7
[10]   Comparison of different mechanical refining technologies on the enzymatic digestibility of low severity acid pretreated corn stover [J].
Chen, Xiaowen ;
Kuhn, Erik ;
Wang, Wei ;
Park, Sunkyu ;
Flanegan, Keith ;
Trass, Olev ;
Tenlep, Lisette ;
Tao, Ling ;
Tucker, Melvin .
BIORESOURCE TECHNOLOGY, 2013, 147 :401-408