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Small wood pellet boiler 3-D CFD study for improved flue gas emissions employing flue gas recirculation and air staging

机译:小型木屑颗粒锅炉 3-D CFD 研究,利用烟气再循环和空气分级改善烟气排放

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Wood biomass fuels have become increasingly important in terms of achieving future sustainability targets regarding RES, especially to reduce GHG and the use of domestic energy sources, on other hand with these fuels the pulutant air emissions have to be addressed with great attention. Nowadays, air staging and flue gas recirculation are often used as a primary emission reduction measure in large scale biomass fuel fired boilers, but their combined application in small scale commercial wood pellet boilers is not so common. The implementation of this approach to the small scale burning devices can enable further development of small boilers, in order to achieve a more complete combustion and reduction of pollutant emissions, especially CO, NOx, and PM. In the presented work a comprehensive numerical and experimental study on the combustion parameters is performed, in order to determine the overall combustion properties. A commercial 32 kW small-scale hot water wood pellet boiler was modified numerically from the operating point of view. The findings of this study, like different combinations of recirculated flue gases and secondary air amount, can serve as useful guidelines for the new innovative design and optimisation of the air and recirculated flue gas injection process parameters. The scenarios of this study, where recirculated flue gas was added to the secondary air, were beneficial. Optimally, a CO reduction of 63 was achieved by adding 30 of recirculated flue gas to the secondary air stream, and a 22 reduction was achieved for the NO emissions.
机译:木材生物质燃料在实现可再生能源的未来可持续发展目标方面变得越来越重要,特别是在减少温室气体和使用国内能源方面,另一方面,对于这些燃料,必须高度重视解决废气排放问题。如今,空气暂馏和烟气再循环通常被用作大型生物质燃料锅炉的主要减排措施,但它们在小型商用木屑颗粒锅炉中的综合应用并不常见。对小型燃烧装置实施这种办法,可以使小型锅炉的进一步发展成为可能,从而实现更彻底的燃烧和减少污染物的排放,特别是CO、NOx和PM。在本文中,对燃烧参数进行了全面的数值和实验研究,以确定整体燃烧性能。从操作角度来看,对商用 32 kW 小型热水木屑颗粒锅炉进行了数值改造。这项研究的结果,如再循环烟气和二次空气量的不同组合,可以作为新的创新设计和优化空气和再循环烟气喷射工艺参数的有用指南。这项研究的情景是将再循环烟气添加到二次空气中,这是有益的。理想情况下,通过向二次气流中添加 30% 的再循环烟气,可减少 63% 的一氧化碳,而一氧化氮排放可减少 22%。

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