ADM1-Based Modeling of Biohydrogen Production through Anaerobic Co-Digestion of Agro-Industrial Wastes in a Continuous-Flow Stirred-Tank Reactor System

Christina N. Economou, G. Manthos, D. Zagklis, M. Kornaros
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Abstract

Biological treatment is a promising alternative for waste management considering the environmentally sustainable concept that the European Union demands. In this direction, anaerobic digestion comprises a viable waste treatment process, producing high energy-carrier gases such as biomethane and biohydrogen under certain operating conditions. The mathematical modeling of this bioprocess can be used as a valuable tool for process scale-up with cost-effective implications. The scope of this work was the evaluation of the well-established Anaerobic Digestion Model 1 (ADM1) for use in two-stage anaerobic digestion of agro-industrial waste. Certain equations for the description of the metabolic pathways for lactate and bioethanol accumulation were implemented in the existing mechanistic model in order to enhance the model’s accuracy. The model presents a high estimation ability regarding the final product (H2 and biogas) reaching the same maximum value for the theoretical as the experimental data of these products (0.0012 and 0.0036 m3/d, respectively). The adapted ADM1 emerges as a useful instrument for designing anaerobic co-digestion processes with the goal of achieving high yields in fermentative hydrogen production, considering mixed biomass growth mechanisms.
基于 ADM1 的连续流搅拌槽反应器系统厌氧协同消化农工业废物生物制氢模型
考虑到欧盟所要求的环境可持续理念,生物处理是一种很有前途的废物管理替代方法。在这方面,厌氧消化是一种可行的废物处理工艺,可在特定的操作条件下产生高载能气体,如生物甲烷和生物氢。这种生物处理工艺的数学模型可以作为一种有价值的工具,用于扩大工艺规模,提高成本效益。这项工作的范围是评估成熟的厌氧消化模型 1 (ADM1)在农业工业废物两阶段厌氧消化中的应用。为了提高模型的准确性,在现有的机理模型中加入了一些描述乳酸和生物乙醇积累代谢途径的方程。该模型对最终产品(H2 和沼气)具有很高的估算能力,其理论最大值与实验数据相同(分别为 0.0012 和 0.0036 立方米/天)。考虑到混合生物质的生长机制,经过调整的 ADM1 成为设计厌氧协同消化工艺的有用工具,目的是实现发酵制氢的高产率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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