Densifying lignocellulosic biomass with sulfuric acid provides a durable feedstock with high digestibility and high fermentability for cellulosic ethanol production

木质纤维素生物量 纤维素乙醇 玉米秸秆 制浆造纸工业 蒸汽爆炸 原材料 发酵 生物量(生态学) 化学 纤维素 生物燃料 生物能源 可再生资源 乙醇燃料 废物管理 环境科学 食品科学 可再生能源 农学 生物化学 有机化学 工程类 电气工程 生物
作者
Xinchuan Yuan,Xiangxue Chen,Guannan Shen,Sitong Chen,Jianming Yu,Rui Zhai,Zhaoxian Xu,Mingjie Jin
出处
期刊:Renewable Energy [Elsevier]
卷期号:182: 377-389 被引量:35
标识
DOI:10.1016/j.renene.2021.10.015
摘要

Agricultural residues (e.g. corn stover (CS)) representing a huge lignocellulosic biomass waste are regarded as a promising renewable resource that can be converted to fuels and chemicals via biochemical route. Nevertheless, the unfavorable properties, such as low bulk density, contamination by microorganisms, fluffy and thereby difficult to handle, cause huge problems for biomass logistics and biomass conversion. Furthermore, traditional biomass pretreatment methods often use severe conditions, consume much energy, difficult to scale up and generate a feedstock with many toxic degradation products that inhibit fermentation. In this study, we developed a novel, low-cost and easy-to-implement pretreatment method: "Densifying Lignocellulosic biomass with acidic Chemicals (DLC)" on CS. The DLC-CS owning a uniform shape showed a bulk density 4 times higher compared to loose CS and was highly resistant to microbial contamination, which greatly facilitates biomass handling, transportation and storage. DLC-CS after regular steam autoclave treatment at 121 ○C exhibited high enzymatic digestibility and much higher fermentability compared to traditional dilute acid pretreatment. An ethanol titer as high as 68.1 g/L was achieved without washing or detoxification of the pretreated biomass. The superior performances of DLC for biomass logistics and biomass conversion render it very promising for industrial use.
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