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用于将木质纤维素转化为可发酵糖以生产高附加值产品的生物反应器。

Bioreactors for lignocellulose conversion into fermentable sugars for production of high added value products.

作者信息

Liguori Rossana, Ventorino Valeria, Pepe Olimpia, Faraco Vincenza

机构信息

Department of Chemical Sciences, University of Naples Federico II, Complesso Universitario Monte S. Angelo via Cintia 4, 80126, Naples, Italy.

Department of Agriculture, University of Naples Federico II, Portici, Italy.

出版信息

Appl Microbiol Biotechnol. 2016 Jan;100(2):597-611. doi: 10.1007/s00253-015-7125-9. Epub 2015 Nov 16.

Abstract

Lignocellulosic biomasses derived from dedicated crops and agro-industrial residual materials are promising renewable resources for the production of fuels and other added value bioproducts. Due to the tolerance to a wide range of environments, the dedicated crops can be cultivated on marginal lands, avoiding conflict with food production and having beneficial effects on the environment. Besides, the agro-industrial residual materials represent an abundant, available, and cheap source of bioproducts that completely cut out the economical and environmental issues related to the cultivation of energy crops. Different processing steps like pretreatment, hydrolysis and microbial fermentation are needed to convert biomass into added value bioproducts. The reactor configuration, the operative conditions, and the operation mode of the conversion processes are crucial parameters for a high yield and productivity of the biomass bioconversion process. This review summarizes the last progresses in the bioreactor field, with main attention on the new configurations and the agitation systems, for conversion of dedicated energy crops (Arundo donax) and residual materials (corn stover, wheat straw, mesquite wood, agave bagasse, fruit and citrus peel wastes, sunflower seed hull, switchgrass, poplar sawdust, cogon grass, sugarcane bagasse, sunflower seed hull, and poplar wood) into sugars and ethanol. The main novelty of this review is its focus on reactor components and properties.

摘要

源自专用作物和农业工业残余物的木质纤维素生物质是生产燃料和其他增值生物产品的有前景的可再生资源。由于对广泛环境的耐受性,专用作物可在边际土地上种植,避免与粮食生产产生冲突,并对环境产生有益影响。此外,农业工业残余物是生物产品的丰富、可用且廉价的来源,完全消除了与能源作物种植相关的经济和环境问题。将生物质转化为增值生物产品需要不同的加工步骤,如预处理、水解和微生物发酵。转化过程的反应器配置、操作条件和操作模式是生物质生物转化过程高产率和高生产率的关键参数。本综述总结了生物反应器领域的最新进展,主要关注用于将专用能源作物(芦竹)和残余物(玉米秸秆、小麦秸秆、牧豆树木、龙舌兰渣、水果和柑橘皮废料、向日葵籽壳、柳枝稷、杨木锯末、白茅、甘蔗渣、向日葵籽壳和杨木)转化为糖和乙醇的新配置和搅拌系统。本综述的主要新颖之处在于其关注反应器组件和特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eb90/4703634/ae552409eee5/253_2015_7125_Fig1_HTML.jpg

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