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Experimental and mechanism studies on simultaneous desulfurization and denitrification from flue gas using a flue gas circulating fluidized bed

机译:烟气循环流化床同时烟气脱硫脱氮的实验及机理研究

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The oxidizing highly reactive absorbent was prepared from fly ash, industry lime, and an oxidizing additive M. Experiments of simultaneous desulfurization and denitrification were carried out in a flue gas circulating fluidized bed (CFB). The effects of influencing factors and calcium availability were also investigated on the removal efficiencies of desulfurization and denitrification. Removal efficiencies of 95.5% for SO_2 and 64.8% for NO were obtained respectively under the optimal experimental conditions. The component of the spent absorbent was analyzed with chemical analysis methods. The results indicated that more nitrogen species appeared in the spent absorbent except sulfur species. A scanning electron microscope (SEM) and an accessory X-ray energy spectrometer were used to observe micro-properties of the samples, including fly ash, oxidizing highly reactive absorbent and spent absorbent. The simultaneous removal mechanism of SO_2 and NO based on this absorbent was proposed according to the experimental results.
机译:由粉煤灰,工业石灰和氧化添加剂M制备氧化性高反应性吸收剂。在烟气循环流化床(CFB)中进行同时脱硫和反硝化的实验。还研究了影响因素和钙有效性对脱硫和反硝化去除效率的影响。在最佳实验条件下,SO_2的去除效率为95.5%,NO的去除效率为64.8%。用化学分析方法分析废吸收剂的成分。结果表明,除硫物质外,废吸收剂中出现更多的氮物质。使用扫描电子显微镜(SEM)和辅助X射线能谱仪观察样品的微观性质,包括粉煤灰,氧化高反应性吸收剂和用过的吸收剂。根据实验结果,提出了基于该吸收剂同时去除SO_2和NO的机理。

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