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Experimental investigation of woody and non-woody biomass combustion in a bubbling fluidised bed combustor focusing on gaseous emissions and temperature profiles

机译:鼓泡流化床燃烧器中木质和非木质生物质燃烧的实验研究,重点是气体排放和温度曲线

摘要

Air staging is a well-known effective method to control NOx emissions from solid fuel combustion boilers. However, further research is still needed to clarify the effect of air staging at different injection locations on the gaseous emissions of Fluidised Bed Combustion (FBC) boilers that fire 100% biomass fuels, particularly non-woody biomass fuels. The main objective of this work is to investigate the effect of the staging air injection location on the gaseous emissions (NOx and CO) and temperature profiles of a 20 kWth bubbling fluidised bed combustor firing three non-woody (straw, miscanthus and peanuts) and two woody biomass fuels. The experimental results showed that injecting the secondary air at the higher location could lead to a greater NOx reduction due to the fact that the biomass combustion reaction mainly took place in the splash zone and/or beginning of the freeboard. Up to 30% of NOx reduction, compared with no air staging, was achieved for the non-woody fuels when the staging air was injected at the higher position. Air staging also significantly reduced the CO emissions as a result of the higher temperatures in the freeboard and longer residence time in the primary combustion zone.
机译:空气分级是控制固体燃料燃烧锅炉的NOx排放的众所周知的有效方法。但是,仍需要进一步的研究来阐明不同喷射位置处的空气分级对流化床燃烧(FBC)锅炉燃烧100%生物质燃料,特别是非木质生物质燃料的气体排放的影响。这项工作的主要目的是研究分段注气位置对20 kWth鼓泡流化床燃烧器燃烧3种非木质(稻草,桔梗和花生)的气体排放(NOx和CO)和温度分布的影响,以及两种木质生物质燃料。实验结果表明,由于生物质燃烧反应主要发生在飞溅区和/或干舷开始处,在较高位置注入二次空气可导致更大的NOx还原。当非分级木质燃料在较高位置喷射时,与非分级燃烧相比,NOx减少量最多可达到30%。由于干舷温度较高和在主要燃烧区的停留时间较长,空气分级还显着减少了CO排放。

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