Experiment study on NOxreduction through biomass reburning in an entrained flow reactor

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Abstract

The reburning experiments with 6 kinds of biomass (including rice straw, wheat straw, maize stalk, cotton stalk, rice husk and bagasse,) and one biochar (wheat straw char) was carried out in an entrained flow reactor. The effects of biomass type, stoichiometric ratio in the reburning-zone (SR2), reaction temperature in the reburning-zone (t2), particle sizes of biomass (dp), and reburning fuel fraction (Rff) on NO reduction efficiency analysed. The NO heterogeneous reduction contribute of biochar was also analyzed. The results indicate that NO reduction efficiency behaves a trend of first increase and then decrease with decreasing of SR2 or increasing of Rff. The higher NO reduction efficiency (more than 50%) can be achieved at the range of SR2=0.7~0.8 or Rff=20%~26% during reburning with 6 tested biomass. Cotton stalk with higher volitiles and the highest contents of K, Na alkali metals behaves the best performance of NO reduction. In the range of t2= 900~1100°C NO reduction efficiency increases with increasing of reburning-zone reaction temperature at the same SR2. NO reduction efficiency increases insignificantly with decreasing of particle size of biomass while dp < 425μm. The contribution of NO heterogeneous reduction by wheat straw char to the total NO reduction is in the higher range of 59%~68% while Rff =10%~26%. © Tsinghua University Press, Beijing and Springer-Verlag Berlin Heidelberg 2012.

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Lu, P., Wang, Y., Lu, F., & Liu, Y. (2012). Experiment study on NOxreduction through biomass reburning in an entrained flow reactor. In Cleaner Combustion and Sustainable World - Proceedings of the 7th International Symposium on Coal Combustion (pp. 205–208). Springer-Verlag Berlin Heidelberg. https://doi.org/10.1007/978-3-642-30445-3_41

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