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Synergetic NO reduction by biomass pyrolysis products simulating their reburning in circulating fluidized bed decoupling combustion 被引量:1

Synergetic NO reduction by biomass pyrolysis products simulating their reburning in circulating fluidized bed decoupling combustion
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摘要 The present work investigated the synergetic effect of pyrolysis-derived char,tar and gas(py-gas)on NO reduction,which may occur in circulating fluidized-bed decoupling combustion(CFBDC)system treating N-rich fuel.Experiments were carried out in a lab-scale drop-tube reactor for NO reduction by some binary mixtures of reagents including char/py-gas,tar/py-gas and tar/char.At a specified total mass rate of0.15 g·min^-1 for NO-reduction reagent,the char/py-gas(binary reagent)enabled the best synergetic NO reduction in comparison with the others.There existed effective interactions between char and some species in py-gas(i.e.,H2,CxHy)during NO reduction by pyrolysis products,meanwhile the tar/py-gas or tar/char mixture only caused a positive effect when tar proportion was necessarily lowered to about 26%.On the other hand,the synergetic effects were not improved for all tested binary reagents by increasing the reaction temperature and residence time. The present work investigated the synergetic effect of pyrolysis-derived char,tar and gas(py-gas) on NO reduction,which may occur in circulating fluidized-bed decoupling combustion(CFBDC) system treating N-rich fuel.Experiments were carried out in a lab-scale drop-tube reactor for NO reduction by some binary mixtures of reagents including char/py-gas,tar/py-gas and tar/char.At a specified total mass rate of0.15 g·min-1 for NO-reduction reagent,the char/py-gas(binary reagent) enabled the best synergetic NO reduction in comparison with the others.There existed effective interactions between char and some species in py-gas(i.e.,H2,CxHy) during NO reduction by pyrolysis products,meanwhile the tar/py-gas or tar/char mixture only caused a positive effect when tar proportion was necessarily lowered to about 26%.On the other hand,the synergetic effects were not improved for all tested binary reagents by increasing the reaction temperature and residence time.
出处 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2019年第7期1680-1689,共10页 中国化学工程学报(英文版)
基金 Supported by the National Basic Research Program of China(2014BAC26B04,2014CB744303) the National Natural Science Foundation of China(U1302273)
关键词 Biomass PYROLYSIS CIRCULATING fluidized bed NO reduction Synergetic effect DECOUPLING COMBUSTION Biomass Pyrolysis Circulating fluidized bed NO reduction Synergetic effect Decoupling combustion
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