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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Thermodynamic analysis of lignocellulosic biofuel production via a biochemical process: Guiding technology selection and research focus
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Thermodynamic analysis of lignocellulosic biofuel production via a biochemical process: Guiding technology selection and research focus

机译:通过生化过程生产木质纤维素生物燃料的热力学分析:指导技术选择和研究重点

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摘要

The aim of this paper is to present an exergy analysis of bioethanol production process from lignocellulosic feedstock via a biochemical process to asses the overall thermodynamic efficiency and identify the main loss processes. The thermodynamic efficiency of the biochemical process was found to be 35% and the major inefficiencies of this process were identified as: the combustion of lignin for process heat and power production and the simultaneous scarification and co-fermentation process accounting for 67% and 27% of the lost exergy, respectively. These results were also compared with a previous analysis of a thermochemical process for producing biofuel. Despite fundamental differences, the biochemical and thermochemical processes considered here had similar levels of thermodynamic efficiency. Process heat and power production was the major contributor to exergy loss in both of the processes. Unlike the thermochemical process, the overall efficiency of the biochemical process largely depends on how the lignin is utilized.
机译:本文的目的是通过生物化学过程对木质纤维素原料生产生物乙醇的过程​​进行火用分析,以评估整体热力学效率并确定主要的损失过程。发现该生化过程的热力学效率为35%,并且该过程的主要低效率被确定为:木质素燃烧用于过程热和电力生产以及同时进行的稀松和共发酵过程分别占67%和27%损失的火用这些结果也与以前对生产生物燃料的热化学过程的分析进行了比较。尽管存在根本差异,但此处考虑的生化和热化学过程具有相似的热力学效率水平。在这两个过程中,过程热能和电力生产是造成本能损失的主要因素。与热化学过程不同,生物化学过程的总体效率在很大程度上取决于木质素的利用方式。

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