Kim Sun Min, Dien Bruce S, Singh Vijay
Department of Agricultural and Biological Engineering, University of Illinois at Urbana-Champaign, Urbana, IL 61801 USA.
Bioenergy Research Unit, Agricultural Research Service, USDA, National Center for Agricultural Utilization Research, Peoria, IL 61604 USA.
Biotechnol Biofuels. 2016 Apr 30;9:97. doi: 10.1186/s13068-016-0505-2. eCollection 2016.
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.
利用木质和草本原料生产先进生物燃料正迈向商业化阶段。生物质需要进行预处理,以克服那些阻碍酶接触、妨碍植物细胞壁转化为可发酵糖的生物质物理化学特性。预处理仍是该过程中成本最高的单元操作之一,也是最关键的操作之一,因为它是抑制酶和微生物的化学物质来源,并且在很大程度上决定了酶的用量和糖产量。预处理可分为水热(含水)/化学、物理和生物预处理,本综述将简要概述其作用机理细节。为利用不同预处理方法的协同效应,连续进行两种或更多种预处理已受到关注。特别是,将水热/化学预处理与机械精制(一种物理预处理)相结合,有应用于工业工厂的潜力。在此,总结了联合预处理(水热/化学预处理与机械精制相结合)对能源消耗、物理结构、糖产量和酶用量的影响。