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CO-FIRING COAL, BIOMASS AND WASTE FUELS IN CIRCULATING FLUIDIZED BED BOILERS TO REDUCE CO_2 EMISSIONS

机译:循环流化床锅炉中共用煤,生物质和废物燃料,以减少CO_2排放

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The combustion of CO_2 neutral solid fuels like biomass and waste-based fuels with circulating fluidized bed (CFB) boiler designs has become an accepted way to generate electric power and process steam to reduce global CO_2 emissions (i.e. reduce "carbon footprint") and hence to reduce the potential impact on climate change. In the European Union, for example, there is a co-combustion directive to encourage the use of biomass and waste as energy sources with the co-firing of coal. Quite often biomass and waste combustion in CFB's have unique technical challenges when compared to fossil fuels. The technical challenges of firing these CO_2 neutral fuels do impact CFB boiler design and may impact plant lifecycle and reliability when compared to coal. Among these are combustion bed agglomeration, furnace and heating surface slagging, and new forms of corrosion potential. However, when co-firing these CO_2 neutral fuels with coal, these challenges can be tempered in a positive way through inherent changes in the flue gas chemistry and other design considerations.Co-firing makes sense. In addition to reducing the carbon footprint of a boiler project through use of biomass and waste, these energy sources can have a significant positive impact on plant financials owing to low cost supply. However these fuels can have wide variations in availability and energy content over the course of the many years of a boiler's life. As such, maintaining coal as a supplemental fuel or back-up fuel also provides significant benefit in terms of guaranteeing the energy input supply and thereby securing plant availability. This benefit can help lower project financial risk and improve financial attractiveness and viability. This paper describes this type of boiler, its design considerations and operating history. Highlighted herein is the operating facility in Pori, Finland, commissioned in 2008, which is a 60 MWe CFB boiler burning peat, biomass and recycled waste fuel (RDF) with coal as a back-up fuel. Other facilities with similar design and with operating history of over 10 years are included as reference.
机译:与循环流化床(CFB)锅炉设计的生物质和废物燃料等CO_2中性固体燃料的燃烧已成为产生电力和工艺蒸汽以减少全球CO_2排放的接受方式(即减少“碳足迹”)并因此减少对气候变化的潜在影响。例如,在欧盟,有一种共同燃烧指令,以鼓励使用生物量和废物作为能源与煤的共烧。与化石燃料相比,CFB中的生物量和废物燃烧具有独特的技术挑战。射击这些CO_2中性燃料的技术挑战会影响CFB锅炉设计,并与煤相比,可能会影响植物生命周期和可靠性。其中包括燃烧床附聚,炉子和加热表面粘合,以及新的腐蚀电位形式。然而,当与煤炭共同烧制这些CO_2中性燃料时,这些挑战可以通过烟气化学和其他设计考虑因素的固有变化以积极的方式回火。射击是有道理的。除了使用生物质和废物减少锅炉项目的碳足迹外,由于低成本供应,这些能源对植物财务产生了显着的积极影响。然而,这些燃料可以在锅炉生命的多年的过程中具有广泛的可用性和能量内容。因此,在保证能量输入供应的方面,维持煤作为补充燃料或备用燃料也提供了显着的好处,从而确保了工厂的可用性。这一福利可以帮助降低项目财务风险,提高金融吸引力和可行性。本文介绍了这种锅炉,其设计考虑因素和运行历史。这里突出显示的是芬兰·芬兰·普里的经营设施,于2008年委托,这是一种60 MWE CFB锅炉燃烧泥炭,生物量和再循环的废料(RDF)作为煤炭作为备用燃料。其他设施和相似的设计和超过10年的操作历史的设施如参考。

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