A review of recent advances in selective catalytic NOx reduction reactor technologies

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Research on NO_x treatment is extensive in recent years due to growing environmental awareness.Selective catalytic reduction(SCR) of NO_x,as a proven technology,offers higher NO_x control efficiency than many other NO_x treatment methods.The present work reviews the recent development of SCR reactor technologies.Firstly,catalysts and mechanism of different SCRs were briefly summarized.Different SCR reactors,e.g.structured reactor,fluidized bed reactor and moving bed reactor,were then discussed.As a more advanced technology,multifunctional reactors were also developed for SCR process and could be divided into two categories:decoupled adsorption-reaction process and combined SCR system.The mechanism and properties of these processes were discussed in detail.Some recommendations were given for the future work in SCR reactor design.SCR reactor technology for emerging energy processes was also addressed,such as oxyfuel combustion and biofuel conversion processes,which put forward new requirements for SCR technologies and also open new opportunities for advanced design of SCR reactors. Selective catalytic reduction (SCR) of NO_x, as a proven technology, offers NO_x control efficiency than many other NO_x treatment methods. The present work reviews the recent development of SCR reactor technologies. Firstly, catalysts and mechanism of different SCRs were briefly summarized. Different SCR reactors, egstructured reactors, eg, fluidized bed reactor and moving bed reactor, were then discussed. As a more advanced technology, multifunctional reactors were also developed for SCR process and could be divided into two categories: decoupled adsorption-reaction process and combined SCR system. mechanism and properties of these processes were discussed in detail. Home recommendations were for the future work in SCR reactor design. SCR reactor technology for emerging energy processes was also addressed, such as oxyfuel combustion and biofuel conversion processes, which put forward new requir ements for SCR technologies and also open new opportunities for advanced design of SCR reactors.
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