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Considering biomass growth and regeneration in the optimisation of biomass supply chains

机译:在优化生物量供应链时考虑生物量的生长和再生

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This paper presents t-OPTIMASS, a multi-period mixed integer linear programming model to optimise strategic and tactical decisions in all kinds of biomass supply chains taking into account the geographical fragmentation and temporal availability of biomass and changing biomass characteristics due to handling operations. Unlike existing models, t-OPTIMASS considers the growth and regeneration of biomass to determine the optimal harvesting moment(s). t-OPTIMASS is demonstrated based on the use of grass from nature reserves and road verges to substitute maize in the digestion mixture converted in the currently available wet anaerobic digestets or potential dry anaerobic digesters in Limburg (Belgium). The results highlight that the decision process is driven by the requirements imposed to the characteristics of the biomass to be converted at the conversion facility. The harvesting moment is defined and pre-treatment operations are introduced to make sure that biomass is delivered with characteristics that fit best these requirements. The analyses indicate that storage facilities are indispensable to deal with the temporal availability of biomass, the conflicting temporal demand and the required constant feeding of the digesters. t-OPTIMASS allows users, interested in macroanalysis, to define biomass potentials, to support policy decisions, to evaluate the feasibility of new facilities, etc. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文介绍了t-OPTIMASS,这是一种多周期混合整数线性规划模型,它考虑到生物质的地理分散性和时间可用性以及由于处理操作而导致的生物质特征变化,从而优化了各种生物质供应链中的战略和战术决策。与现有模型不同,t-OPTIMASS考虑生物量的生长和再生来确定最佳收获时刻。通过使用自然保护区和道路边缘的草替代玉米来替代t-OPTIMASS,该混合物是在林堡(比利时)目前可用的湿式厌氧消化池或潜在的干式厌氧消化池中转化的消化混合物中的。结果表明,决策过程是由对转换设施要转换的生物质特性提出的要求所驱动的。确定了收获时刻,并引入了预处理操作,以确保生物质具有最适合这些要求的特性。分析表明,存储设施对于处理生物质的时间可用性,矛盾的时间需求和所需的蒸煮器的持续供料是必不可少的。 t-OPTIMASS允许对宏观分析感兴趣的用户定义生物量潜力,支持政策决策,评估新设施的可行性等。(C)2015 Elsevier Ltd.保留所有权利。

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