首页> 外文会议>28th International Technical Conference on Coal Utilization amp; Fuel Systems Vol.2 Mar 9-13, 2003 Clearwater, Florida, USA >A pilot-scale demonstration of oxy-combustion with flue gas recirculation in a pulverized coal-fired boiler
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A pilot-scale demonstration of oxy-combustion with flue gas recirculation in a pulverized coal-fired boiler

机译:煤粉锅炉中烟气再循环中氧燃烧的中试示范

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Over the past years, environmental concerns for various combustion-generated emissions have grown rapidly: acid rain precursors (NO_x, SO_x) were initially targeted, followed by mercury emissions and more recently by carbon dioxide emissions, brought into focus as a greenhouse gas. As a consequence, governments have strengthened regulations, imposing SO_2, NO_x and mercury limits in a growing number of areas, and encouraging CO_2 reductions. Since the power generation industry and more specifically coal-fired power plants are responsible for a large amount of these pollutants, new combustion processes have to be developed in order to provide coal-fired power plants with a solution to comply with existing and future regulations. In this context, a new combustion process based on oxygen-enriched flue gas recirculation for pulverized coal-fired power plants is being proposed to provide an easy-to-implement option for multi-pollutant control, including CO_2 capture. To date, theoretical analyses and lab-scale experiments have been reported, with no large-scale implementations. This paper presents the experimental results obtained from a pilot-scale demonstration of the oxygen-enriched flue gas recirculation combustion process on a pulverized coal-boiler. This demonstration was performed on a 1.5MW boiler simulator, using Illinois coal. Measurements from the pilot boiler demonstrate the technical feasibility of the process for larger scale-boilers, highlighting the favorable impact on NO_x, SO_x and mercury emissions, while concentrating the carbon dioxide in the flue gas. The results also show a significant reduction in fly ash unburned combustible content resulting in improvement in boiler efficiency due to the use of oxygen. The paper concludes that oxygen enrichment represents a technically sound technology for multi-pollutant control. A consequent paper presented during this conference discusses the economical aspects related to the technology, indicating that oxygen enrichment is an attractive solution for ultra-clean coal-based power generation.
机译:在过去的几年中,对各种燃烧产生的排放的环境关注迅速增长:最初以酸雨前体(NO_x,SO_x)为目标,其次是汞排放,最近是二氧化碳排放,成为温室气体。结果,各国政府加强了法规,对越来越多的地区实施了SO_2,NO_x和汞的限制,并鼓励减少CO_2。由于发电行业,尤其​​是燃煤电厂是造成大量此类污染物的原因,因此必须开发新的燃烧工艺,以便为燃煤电厂提供符合现有和未来法规的解决方案。在此背景下,正在提出一种基于粉煤电厂的富氧烟气再循环的新燃烧过程,以提供一种易于实施的多污染物控制方案,包括二氧化碳捕获。迄今为止,已经报道了理论分析和实验室规模的实验,没有大规模的实施。本文介绍了从粉煤锅炉上富氧烟气再循环燃烧过程的中试示范获得的实验结果。该演示是在使用伊利诺伊州煤炭的1.5MW锅炉模拟器上进行的。中试锅炉的测量结果证明了该工艺对于大型锅炉的技术可行性,突出了对NO_x,SO_x和汞排放的有利影响,同时使烟道气中的二氧化碳富集。结果还表明,由于使用氧气,粉煤灰未燃烧的可燃物含量大大降低,从而提高了锅炉效率。本文的结论是,富氧代表了一种用于多污染物控制的技术上合理的技术。会议期间发表的一篇论文讨论了与该技术有关的经济方面,表明富氧是超清洁煤基发电的有吸引力的解决方案。

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