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Biomass fuel flexibility in future conventional power generation

机译:未来常规发电中的生物质燃料灵活性

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Power generation from the combustion of solid fuels has been a conventional technology for electricity production in the UK and most of the world for many decades. While the phasing out of coal as a fuel is an important aspect of the ‘decarbonising’ the electricity sector, the respective power plant technology could still play an important role into the future by use of abundant sources of solid biomass fuels. If such resources are to be effectively utilised, it is then necessary to accommodate the wide variation in the characteristics and behaviour of biomass fuels. Some of the key challenges in this context include: control of burn-out efficiency for different fuels; predictability of ash behaviour including operational problems and emissions arising from high ash and high potassium content fuels; the fate of fuel nitrogen content and the consequent effects on NOx emissions. This article presents an overview of these issues, their significance in the context of power plant design and operation and details of some recent research seeking to address them. Results of laboratory scale experiments showing the variation in properties and behaviour of different types of biomass fuel are also presented. These include studies on the relationship between fuel particle size and burn-out duration, gas-phase potassium release from biomass materials during combustion, variability in biomass ash composition and nitrogen release patterns from fuels in high temperature combustion.
机译:数十年来,由固体燃料燃烧产生的电能一直是英国乃至世界大部分地区的常规发电技术。尽管逐步淘汰煤炭作为燃料是电力部门“脱碳”的重要方面,但通过使用丰富的固体生物质燃料资源,各自的发电厂技术仍可能在未来发挥重要作用。如果要有效地利用这些资源,则必须适应生物质燃料的特性和行为的广泛变化。在这方面的一些主要挑战包括:控制不同燃料的燃尽效率;灰分行为的可预测性,包括运行问题和高灰分和高钾含量燃料产生的排放;燃料含氮量的去向以及对NOx排放的影响。本文概述了这些问题,它们在电厂设计和运行中的重要性以及一些旨在解决这些问题的最新研究的细节。还提供了实验室规模的实验结果,这些结果表明了不同类型生物质燃料的特性和行为的变化。这些研究包括以下方面的研究:燃料粒径与燃尽时间,燃烧过程中从生物质材料中释放出的气相钾,生物质灰分组成的变异性以及高温燃烧中燃料中的氮释放方式。

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