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Life-cycle assessment (LCA) and techno-economic analysis of a biomass-based biorefinery

机译:生物量的生物回归生物术语生命周期评估(LCA)和技术经济分析

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摘要

In this research, a biorefinery plant is proposed to generate biofuel through fast pyrolysis and gasification. The proposed biorefinery comprises hydrotreating, hydrocracking, and steam reforming sections. The whole plant, each section, and each designed component are analyzed and evaluated based on an exergy-based approach, i.e., exergy, exergoeconomic, and exergoenvironmental analyses. The exergy cost and exergoenvironmental impact of each section and each component are calculated and compared to monitor the economic effect and environmental impact and also to prioritize the section and the component which are not obtained as acceptable values in the analyses. It is revealed that the hydrocracking unit is the most efficient sector in comparison with others with the exergy efficiency of 89.75%. The exergoeconomic analysis illustrates that the used compressor in the hydrotreating unit and pumps in hydrocracking and steam reforming units have the most exergy cost in comparison with other components in the whole process. Similarly, exergoenvironmental assessment declares that employed reactors of the biorefinery plant have the most destructive effect on the environment.
机译:本研究提出了一种通过快速热解和气化生产生物燃料的生物炼制装置。拟建的生物精炼厂包括加氢处理、加氢裂化和蒸汽重整部分。根据基于火用的方法,即火用、火用经济和火用环境分析,对整个电厂、每个部分和每个设计部件进行分析和评估。计算并比较每个区段和每个部件的火用成本和火用环境影响,以监测经济影响和环境影响,并对分析中未获得可接受值的区段和部件进行优先排序。结果表明,与其他装置相比,加氢裂化装置是效率最高的装置,其火用效率为89.75%。(火用)经济分析表明,与整个过程中的其他部件相比,加氢处理装置中使用的压缩机以及加氢裂化和蒸汽重整装置中使用的泵的(火用)成本最高。类似地,exergoenvironmental assessment宣布,生物精炼厂使用的反应器对环境的破坏性最大。

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