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Liquid fuels from biomass: An energy self-sustained process integrating H-2 recovery and liquid refining

机译:来自生物质的液体燃料:一种能源自持过程,将H-2回收和液体精炼相结合

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摘要

In the last years the research activities on biomass valorisation (mainly residues from urban and agricultural activities) have been intensified. Biomass is an abundant resource for energy generation and its extensive utilization may make possible to fulfil the goals determined by the national and international regulations about renewable sources and greenhouse gas emissions. In this work, simulations are carried out using ASPEN PLUS for an integrated process to produce liquid fuels from biomass in a self-sustainable energetic regime (thermal and electric) and several process factors have been considered. The process initially combines a primary pyrolysis reactor associated to a (char + gases) gasification unit in order to optimize the biomass use, followed by downstream processes to enhance the quality of final liquid fuel. The factors studied were the composition of the biomass, the primary (or pyrolytic) liquid yield, the composition of the liquid fuel, as well as the amount of the oxidant and steam used in the primary char-gasifier reactor. The use of a simplified model for liquid fuel composition let us to stablish a range of operational conditions in which both thermal and electric balance of the process are favourable. In this sense, the maximum extraction of liquid fuel was found around 20-25% by working at 10-25% of O-2 (as pure oxygen or air) and 15-45% of steam in the gasifier and fulfilling self-sustainable process condition, while biomass should possess C/O weight ratios >= 1.
机译:近年来,有关生物质增值的研究活动(主要是城市和农业活动的残留物)得到加强。生物质是用于能源生产的丰富资源,其广泛利用可能使实现有关可再生资源和温室气体排放的国家和国际法规确定的目标成为可能。在这项工作中,使用ASPEN PLUS进行了集成过程的模拟,该过程以自持的能量状态(热能和电能)从生物质生产液体燃料,并且已经考虑了几个过程因素。该工艺最初将一个与(炭+气)气化装置关联的一级热解反应器组合在一起,以优化生物质的利用,随后进行下游工艺以提高最终液体燃料的质量。研究的因素是生物质的组成,一次(或热解)液体的收率,液体燃料的组成,以及一次焦化气化炉中使用的氧化剂和蒸汽的量。对液体燃料成分使用简化模型可以使我们确定一系列有利于过程的热平衡和电平衡的运行条件。从这个意义上讲,通过在气化炉中以10-25%的O-2(作为纯氧气或空气)和15-45%的蒸汽进行工作并实现自我可持续性,可以最大程度地提取液体燃料,约为20-25%工艺条件,而生物质的C / O重量比应> = 1。

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