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A techno-economic comparison between two design configurations for a small scale, biomass-to-energy gasification based system

机译:小型,基于生物质能的气化系统的两​​种设计配置之间的技术经济比较

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Biomass has great potential as a clean and renewable feedstock for producing modern energy carriers. This paper focuses on the process of biomass gasification, wherein the synthesis gas is subsequently used to produce electricity. A comparison between the most promising design configurations for the industrial application of gasification based, biomass-to-energy cogenerators in the 100-600 kWe range is presented. Mass and energy balances and material and substance flow analyses drawn for each design solutions are based on the experimental data obtained from a pilot scale bubbling fluidized bed air gasi-fier, having a feeding capacity of 100 kg/h and operated with a commercially available, natural biomass. Measurements taken during the experimental tests include the syngas complete composition as well as the characterization of the bed material, the entrained fines collected at the cyclone and the purge material from the scrubber. The techno-economic performances of two energy generation devices, a gas engine and an externally-fired gas turbine, have been estimated on the basis of the manufacturer's specifications. The study concludes that the internal combustion engine layout is the solution that currently offers the higher reliability and provides the higher internal rate of return for the investigated range of electrical energy production.
机译:生物质作为生产现代能源载体的清洁和可再生原料具有巨大潜力。本文着重于生物质气化的过程,其中合成气随后用于发电。给出了在100-600 kWe范围内基于气化的生物质能转化热电联产器工业应用中最有前途的设计配置之间的比较。针对每种设计解决方案绘制的质量和能量平衡以及物料和物质流分析是基于从中试鼓泡流化床空气气化炉中获得的实验数据,其进料量为100 kg / h,并使用市售产品进行操作,天然生物质。在实验测试期间进行的测量包括合成气的完整组成以及床材料的表征,旋风分离器中收集的夹带细粉和洗涤塔的吹扫材料。已根据制造商的规格估算了两种能源发电设备(燃气发动机和外燃式燃气轮机)的技术经济性能。该研究得出的结论是,对于所研究的电能生产范围,内燃机布局是目前可提供更高可靠性和更高内部收益率的解决方案。

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