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首页> 外文期刊>Waste Disposal & Sustainable Energy >Solid state anaerobic digestion of water poor feedstock for methane yield: an overview of process characteristics and challenges
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Solid state anaerobic digestion of water poor feedstock for methane yield: an overview of process characteristics and challenges

机译:水对甲烷产量的较差原料的固态厌氧消化:过程特征和挑战的概述

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摘要

Abstract Solid state anaerobic digestion (SSAD) of water poor feedstock may be a promising technology for energy recovery. Feedstocks having high solid concentration like lignocellulosic biomass, crop residues, forestry waste and organic fraction of municipal waste may be the appropriate feedstock for its biochemical conversion into energy carries like biomethane through SSAD. Compared to liquid state anaerobic digestion (LSAD), SSAD can handle higher organic loading rates (OLR), requires less water and smaller reactor volume and may have lower energy demand for heating or stirring and higher volumetric methane productivity. Besides these, pathogen inactivation may also be achieved in SSAD of biodegradable waste. Around 60% of recently built AD systems have adopted SSAD technology. However, the process stability of an SSAD system may have several constraints like limited mass transfer, process inhibitors and selection of digester type and should be addressed prior to the implementation of SSAD technology. In this article, a comprehensive overview of the key aspects influencing the performance of SSAD is discussed along with the need for mathematical modelling approaches. Further to this, reactor configuration for SSAD and digestate management requirement and practice for solid-state condition are reviewed for a better insight of SSAD technology
机译:水差原料的抽象固态厌氧消化(SSAD)可能是能量回收的有前途的技术。具有较高固体浓度的原料,例如木质纤维素生物量,农作物残基,林业废物和市政废物的有机分数可能是其生化转化为通过SSAD的生物甲烷等能量转化的适当原料。与液态厌氧消化(LSAD)相比,SSAD可以处理较高的有机负荷速率(OLR),需要更少的水和较小的反应堆体积,并且可能对加热或搅拌和较高的甲烷生产率的能量需求较低。除此之外,在可生物降解废物的SSAD中也可以实现病原体失活。最近建造的广告系统中,大约有60%采用了SSAD技术。但是,SSAD系统的过程稳定性可能具有多个限制,例如有限的传质,过程抑制剂和替代材料类型的选择,应在实施SSAD技术之前解决。在本文中,讨论了影响SSAD性能的关键方面的全面概述,以及对数学建模方法的需求。除此之外,审查了针对SSAD和消化管理要求和固态条件实践的反应堆配置,以更好地了解SSAD技术

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