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Using an optimization model to evaluate the economic benefits of industrial symbiosis in the forest industry

机译:使用优化模型评估林业中工业共生的经济效益

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摘要

In this work, a model comprising a pulp mill, a sawmill, a district heating network and a biofuel upgrading plant is used to demonstrate how the MIND method, an optimization method based on mixed integer linear programming, can be used to evaluate industrial symbiosis in the forest industry. Using this method, both energy and material flows on both the supply and the demand side can be studied simultaneously. The method can be used to find improvements in the structure of the modelled system, to find the optimal operational strategy of a given system, and to evaluate and compare different systems. The total system costs for stand-alone cases and integrated industrial symbiosis system configuration are compared, generating results that can be used as decision support when planning industrial symbiosis initiatives in the forest industry. The results of this study showed that there are financial benefits to industrial symbiosis compared to the same system operated in stand-alone mode, and that the industrial symbiosis configuration generates a more stable system. However, it is difficult to generalize the results from a case study, and the main conclusion drawn is that it is possible to show that industrial symbiosis has economical benefits, although the magnitude of these benefits needs to be evaluated from case to case.
机译:在这项工作中,模型由纸浆厂,锯木厂,区域供热网络和生物燃料提质厂组成,用于演示如何使用MIND方法(基于混合整数线性规划的优化方法)来评估工业共生。森林工业。使用这种方法,可以同时研究能源和物料在供需双方的流动。该方法可用于查找建模系统的结构中的改进,查找给定系统的最佳操作策略以及评估和比较不同的系统。比较了独立案例的总系统成本和集成的工业共生系统配置,生成的结果可用于计划林业中的工业共生计划。这项研究的结果表明,与以独立模式运行的同一系统相比,工业共生具有财务上的好处,并且工业共生配置可产生更稳定的系统。然而,很难从一个案例研究中得出结论,得出的主要结论是,尽管这些利益的大小需要逐案评估,但有可能表明工业共生具有经济利益。

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