Enzymatic Oxidation of Lignin: Challenges and Barriers Toward Practical Applications

被引:74
作者
Chan, Jou C. [1 ]
Paice, Michael [2 ]
Zhang, Xiao [1 ,3 ]
机构
[1] Washington State Univ, Voiland Sch Chem Engn & Bioengn, 2710 Crimson Way, Richland, WA 99354 USA
[2] FPInnovations, Pulp Paper & Bioprod, 2665 East Mall, Vancouver, BC V6T 1Z4, Canada
[3] Pacific Northwest Natl Lab, 520 Battelle Blvd,POB 999,MSIN P8-60, Richland, WA 99352 USA
基金
美国国家科学基金会;
关键词
Lignin; enzymes; laccase; peroxidase; depolymerization; etherase; solvent effects; ARYL-ALCOHOL OXIDASE; WHITE-ROT BASIDIOMYCETE; SPHINGOMONAS-PAUCIMOBILIS SYK-6; DIRECT ELECTRON-TRANSFER; MANGANESE PEROXIDASE ISOENZYMES; DYE-DECOLORIZING PEROXIDASE; GEOTRICHUM-CANDIDUM DEC-1; SITE-DIRECTED MUTAGENESIS; STABLE BACTERIAL LACCASE; AROMATIC RING-CLEAVAGE;
D O I
10.1002/cctc.201901480
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Lignocellulosic biomass represents perhaps the most abundant renewable resource with a potential to replace fossil-based feedstock for sustainable energy, chemical and materials production. Among the three major lignocellulosic biomass components (i. e. cellulose, hemicellulose and lignin), lignin is a macromolecule with an aromatic skeleton with a variety of functional groups (e. g. hydroxyl, methoxy, carbonyl, double bond) and carries a higher energy density. The unique structure makes lignin an intriguing substrate for energy, chemicals and materials productions. However, the high molecular weight and complex macromolecular structure have made lignin a challenging substrate to be transformed by many conversion methods. Microbial enzyme degradation and modification of lignin have been subjected to a significant amount research in the last a few decades. Yet so far little success has been demonstrated to merit the use of enzymatic technology for lignin transformation at a commercial scale. This paper provides an updated review of the development of lignin degrading/modifying enzymes with an emphasis on identifying the key barriers and challenges toward practical applications of microbial enzymes for lignin valorization with a hope to generate new insights and direction that can overcome these challenges.
引用
收藏
页码:401 / 425
页数:25
相关论文
共 403 条
[1]   Decolorization and detoxification of textile dyes with a laccase from Trametes hirsuta [J].
Abadulla, E ;
Tzanov, T ;
Costa, S ;
Robra, KH ;
Cavaco-Paulo, A ;
Gübitz, GM .
APPLIED AND ENVIRONMENTAL MICROBIOLOGY, 2000, 66 (08) :3357-3362
[2]   LIGNIN CHEMISTRY - PAST, PRESENT AND FUTURE [J].
ADLER, E .
WOOD SCIENCE AND TECHNOLOGY, 1977, 11 (03) :169-218
[3]   STRUCTURAL ELEMENTS OF LIGNIN [J].
ADLER, E .
INDUSTRIAL AND ENGINEERING CHEMISTRY, 1957, 49 (09) :1377-1383
[4]   Identification of DypB from Rhodococcus jostii RHA1 as a Lignin Peroxidase [J].
Ahmad, Mark ;
Roberts, Joseph N. ;
Hardiman, Elizabeth M. ;
Singh, Rahul ;
Eltis, Lindsay D. ;
Bugg, Timothy D. H. .
BIOCHEMISTRY, 2011, 50 (23) :5096-5107
[5]   Development of novel assays for lignin degradation: comparative analysis of bacterial and fungal lignin degraders [J].
Ahmad, Mark ;
Taylor, Charles R. ;
Pink, David ;
Burton, Kerry ;
Eastwood, Daniel ;
Bending, Gary D. ;
Bugg, Timothy D. H. .
MOLECULAR BIOSYSTEMS, 2010, 6 (05) :815-821
[6]   Heterologous expression of lignin peroxidase of Phanerochaete chrysosporium in Aspergillus niger [J].
Aifa, MS ;
Sayadi, S ;
Gargouri, A .
BIOTECHNOLOGY LETTERS, 1999, 21 (10) :849-853
[7]   BIOMECHANICAL PULPING OF ASPEN WOOD CHIPS WITH 3 STRAINS OF CERIPORIOPSIS-SUBVERMISPORA [J].
AKHTAR, M .
HOLZFORSCHUNG, 1994, 48 (03) :199-202
[8]  
Albersheim P., 2011, Plant Cell Walls, P1
[9]  
Alvarez-Vasco C, 2016, GREEN CHEM, V18, P5133, DOI [10.1039/C6GC01007E, 10.1039/c6gc01007e]
[10]   Biofuel Cell Controlled by Enzyme Logic Systems [J].
Amir, Liron ;
Tam, Tsz Kin ;
Pita, Marcos ;
Meijler, Michael M. ;
Alfonta, Lital ;
Katz, Evgeny .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2009, 131 (02) :826-832