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Comparative study of nitrogen migration among the products from catalytic pyrolysis and gasification of waste rigid polyurethane foam

机译:废硬质聚氨酯泡沫催化热解和气化产物中氮迁移的比较研究

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Pyrolysis and gasification of waste rigid polyurethane foam (WRPUF) were performed in fixed-bed reactor to investigate the nitrogen migration among the products in the thermal conversion process. The influences of the temperatures and catalysts on the product distribution were also studied. Through the thorough analysis of nitrogenous products, the nitrogen migration mechanism in the pyrolysis and gasification of WRPUF was investigated so as to find out the selectivity of fuel-N migration. As the results have shown, the higher the temperature is, the more gas products are generated from catalytic pyrolysis and gasification; gas productive rate is higher in gasification process than in pyrolysis; compared with pyrolysis, more volatile N is generated in gasification process; N-2 is the main gaseous nitrogen containing product in gas-phase product, followed by ammonia and hydrogen cyanide; the productions of nitrogen dioxide and nitric oxide are relatively small; among all the additives, calcium oxide is the best catalyst which facilitates the migration of fuel-N in WRPUF into the pollution-free N-2 in thermal conversion. (C) 2016 Elsevier B.V. All rights reserved.
机译:在固定床反应器中对废硬质聚氨酯泡沫塑料(WRPUF)进行热解和气化,以研究热转化过程中产物之间的氮迁移。还研究了温度和催化剂对产物分布的影响。通过对含氮产物的透彻分析,研究了WRPUF热解和气化过程中氮的迁移机理,以求出燃料氮迁移的选择性。结果表明,温度越高,催化热解和气化产生的气体产物越多。气化过程中的气体生产率高于热解过程。与热解相比,气化过程中会产生更多的挥发性氮。 N-2是气相产物中主要的气态含氮产物,其次是氨和氰化氢。二氧化氮和一氧化氮的产量相对较小;在所有添加剂中,氧化钙是最好的催化剂,可以促进WRPUF中的燃料N在热转化过程中迁移到无污染的N-2中。 (C)2016 Elsevier B.V.保留所有权利。

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