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Solid-state anaerobic digestion of lignocellulosic biomass: Recent progress and perspectives

机译:木质纤维素生物质的固态厌氧消化:最新进展和展望

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Solid-state anaerobic digestion (SS-AD), which has gained popularity in the past decade as an environmentally friendly and cost-effective technology for extracting energy from various types of lignocellulosic biomass, is reviewed in this paper. According to data of biomass and methane yields of lignocellulosic feedstocks, crop residues have the highest methane production potential in the U.S., followed by the organic fraction of municipal solid waste (OFMSW), forestry waste, and energy crops. Methane yield and process stability of SS-AD can be improved by different strategies, such as co-digestion with other organic wastes, pretreatment of lignocellulosic biomass, and optimization of operating parameters. Different models for SS-AD have been developed, and insights into SS-AD processes have been obtained via microbial community analysis, microscope imaging, and tracer techniques. Future research and development in SS-AD, including feedstock identification and co-digestion, feedstock storage and pretreatment, SS-AD reactor development, digestate treatment, and value-added production, are recommended. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文综述了固态厌氧消化(SS-AD)技术,该技术在过去十年中作为一种从各种类型的木质纤维素生物质中提取能量的环保且经济高效的技术而受到欢迎。根据木质纤维素原料的生物量和甲烷产量数据,农作物残渣在美国具有最高的甲烷生产潜力,其次是城市固体废物(OFMSW),林业废物和能源作物的有机部分。 SS-AD的甲烷收率和工艺稳定性可以通过不同的策略来提高,例如与其他有机废物共同消化,木质纤维素生物质的预处理以及优化操作参数。已经开发出用于SS-AD的不同模型,并且已经通过微生物群落分析,显微镜成像和示踪剂技术获得了对SS-AD过程的见解。建议对SS-AD进行进一步的研究和开发,包括原料识别和共消化,原料存储和预处理,SS-AD反应器开发,消化处理和增值生产。 (C)2016 Elsevier Ltd.保留所有权利。

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