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Cost Analysis Model for Syngas Production Cost Evaluation Using the Graphical User Interface

机译:图形用户界面的合成气生产成本评估的成本分析模型

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An economic analysis of a bio-gasification facility requires an understanding of its syngas production cost. The objectives of this study were to develop a Cost Analysis Model (CAM) to determine the costs associated with syngas production at different production capacities. The CAM was developed using on a graphical user interface (GUI) programmed in Microsoft Visual Studio 2008 software, mathematical equations and validated using data from the local bio-gasifier at 60 Nm3h-1 capacity. The cost analysis results showed that the syngas production unit cost decreased from $0.543 Nm-3 to $0.043 Nm-3 by increasing the production capacity from 60 to 1,800 Nm3h-1. The economic analysis using the CAM showed better power relationship between production capacity vs. unit cost (R2 = 0.99) than the relationship between production capacity vs production cost (R2 = 0.97). It is generally suggested that the bio-gasification facility should run at a high production capacity in order to reduce the unit cost of syngas production. The CAM developed in this study could be a useful tool for economic analyses of syngas production at different capacities.
机译:对生物气化设施进行经济分析需要了解其合成气生产成本。这项研究的目的是开发一种成本分析模型(CAM),以确定与不同生产能力下的合成气生产相关的成本。使用在Microsoft Visual Studio 2008软件中编程的图形用户界面(GUI),数学方程式开发CAM,并使用来自本地生物气化炉的60 Nm 3 h -1的数据进行验证容量。成本分析结果表明,通过将生产能力从60 Nm -3 增加到1,800 Nm -3,合成气生产单位成本从$ 0.543 Nm -3 降至$ 0.043 Nm -3 h -1 。使用CAM进行的经济分析显示,生产能力与单位成本之间的幂关系(R 2 = 0.99)比生产能力与生产成本之间的关系(R 2 = 0.97)。通常建议生物气化设备应以高产能运行,以降低合成气生产的单位成本。在这项研究中开发的CAM可能是有用的工具,可以对不同容量的合成气生产进行经济分析。

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