中试流化床反应器中氨与生物质共烧脱煤的数值模拟

João Sousa Cardoso , Valter Silva , José Antonio Mayoral Chavando , Daniela Eusébio , Matthew J. Hall
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引用次数: 8

摘要

氨(NH3)与煤的共烧提高了人们的认识,促进了氨作为可持续燃料的使用和部署的研究和开发。最近的进展表明,煤炭与生物质和NH3共烧是逐步淘汰燃煤发电站使用煤炭的最先进战略。在煤-生物质燃料组合中加入NH3不仅可以使燃煤过程脱碳,还可以降低生物质勘探成本,避免原料可用性中断,同时提高发电站的生产效率。此外,这种战略为环境友好型电力组合带来了另一个参与者,加速了煤炭从电力生产中逐步淘汰。然而,利用NH3发电仍存在一些研究空白。因此,本研究提供了一个二维欧拉-拉格朗日数值模型来描述煤与生物质和NH3在中试流化床反应器中的共烧。通过对煤和生物质燃烧实验数据的验证,验证了模型的准确性。煤、生物质和NH3共燃比变化,直到煤逐渐从燃料混合物中减少,并广泛研究其对燃烧过程的影响,以确定生物质和NH3对反应堆排放的影响。总体而言,生物质和NH3的使用显示出广泛减少燃煤能源系统的碳和NO排放,强调了生物质作为煤和NH3的替代品作为未来有效的碳中性燃料的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Numerical modelling of the coal phase-out through ammonia and biomass co-firing in a pilot-scale fluidized bed reactor

The co-firing of ammonia (NH3) with coal has raised awareness, boosting NH3 research and development on its use and deployment as a sustainable fuel. Recent advancements point towards the co-firing of coal with biomass and NH3 as a state-of-art strategy to phase-out coal from coal-based power stations. The implementation of NH3 to the coal-biomass fuel mix allows not only to decarbonize coal-fired processes but also reduces biomass exploration costs to avoid feedstock availability disruption while increasing the power station production efficiency. Moreover, such a strategy brings an alternative player into the environmentally friendly power mix portfolio, accelerating the coal phase-out from electricity production. However, the use of NH3 for power generation still presents some research gaps. Thus, this study delivers a 2D Eulerian-Lagrangian numerical model to describe the co-firing of coal with biomass and NH3 in a pilot-scale fluidized bed reactor. The numerical model is validated against experimental data on coal and biomass combustion to assess the model's accuracy. The coal, biomass, and NH3 co-firing ratios are varied to the point where coal is gradually reduced from the fuel mix, and its effect on the combustion processes is broadly investigated to determine the biomass and NH3 impact on the reactor's emissions. Overall, the use of both biomass and NH3 showed to broadly reduce carbon and NO emissions from coal-fired energy systems, emphasizing the potential addressed to biomass as an alternative to coal and NH3 as an effective carbon-neutral fuel of the future.

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