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Effect of operating conditions on emission concentration of PAHs during fluidized bed air gasification of biomass

机译:生物质流化床空气气化过程中PAHS发射浓度的影响

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With the concern of future energy use, hydrogen is taken as an important role in energy alternatives. In addition, biomass air gasification by using fluidized bed is an efficient and advanced method for hydrogen production. Despite of energy product generation, some pollutants such as PAHs easily formed in gasification process because of tar decomposition. Accordingly. this study provides a fundamental work of emission behavior of PAHs generated under different operating conditions such as temperature, air factor, and addition of catalysts. The experimental result shows the emission concentration of PAHs decreases with the operating temperature increases, but PAHs increases with increasing of air factor. Besides, addition of Ca0 resulting a reduce influence on PAHs emission, but Al203 added in fluidized bed cause bimodal particle size segregate and reduce fluidized bed quality that leads PAHs formation during biomass air gasification.
机译:随着未来能源使用的关注,氢被认为是能源替代品中的重要作用。此外,使用流化床的生物质空气气化是一种有效和先进的氢生产方法。尽管产品产生了能源,但由于焦油分解,一些污染物如PAHS在气化过程中易于形成。因此。本研究提供了在温度,空气因子等不同操作条件下产生的PAHS的排放行为的基本作品,如催化剂。实验结果表明,PAHS的发射浓度随工作温度的增加而降低,但是随着空气因子的增加而增加。此外,加入Ca0导致对PAHS排放的影响,但在流化床中添加了Al203,导致双峰粒度隔离并降低流化床质量,以在生物质空气气化过程中引导PAHS形成。

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