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An innovative biomass gasification process and its coupling with microturbine and fuel cell systems

机译:创新的生物质气化工艺及其与微型涡轮机和燃料电池系统的结合

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摘要

The use of biomass, wood in particular, is one of the oldest forms of producing energy for heating or cooking. Nowadays, new technologies concerning the utilisation of biomass or waste residues are in demand and the trend to use them in decentralised applications for combined heat and power (CHP) production provides an attractive challenge to develop them. At the TU Muenehen an innovative allothermal gasification technology, the Biomass Heatpipe Reformer (BioHPR) has been developed. The aim of this project was to integrate the technology of liquid metal heatpipes in the gasification process in order to produce a hydrogen rich product gas from biomass or residues. The gasification product can be further used in microturbine or SOFC systems. The present paper presents the aforementioned gasification technology, its coupling with innovative CHP systems (with microturbine or fuel cells) and investigates, through the simulation of these systems, the optimum conditions of the integrated systems in order to reach the highest possible efficiencies.
机译:生物质的使用,特别是木材,是生产供热或烹饪的能源的最古老形式之一。如今,关于生物质或废物残渣利用的新技术需求旺盛,将其用于热电联产(CHP)的分散应用中的趋势为开发它们提供了有吸引力的挑战。在TU Muenehen的创新性地热气化技术上,已开发出生物质热管重整器(BioHPR)。该项目的目的是将液态金属热管技术整合到气化过程中,以便从生物质或残渣中产生富氢的产品气。气化产物可以进一步用于微型涡轮机或SOFC系统中。本文介绍了上述气化技术,将其与创新的CHP系统(带有微型涡轮机或燃料电池)耦合,并通过对这些系统的仿真研究了集成系统的最佳条件,以达到最高的效率。

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