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SO2 and NO removal from flue gas over V2O5/AC at lower temperatures — role of V2O5 on SO2 removal

机译:在较低温度下通过V2O5 / AC从烟气中去除SO2和NO — V2O5在去除SO2中的作用

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Supporting V2O5 onto an activated coke (AC) has been reported to significantly increase the AC's activity in simultaneous SO2 and NO removal from flue gas. To understand the role of V2O5 on SO2 removal, V2O5/AC is studied through SO2 removal reaction, surface analysis, X-ray diffraction (XRD), X-ray photoelectron spectroscopy (XPS) and Fourier transform infrared (FTIR) techniques. It is found that the main role of V2O5 in SO2 removal over V2O5/AC is to catalyze SO2 oxidation through a VOSO4-like intermediate species, which reacts with O2 to form SO3 and V2O5. The SO3 formed transfers from the V sites to AC sites and then reacts with H2O to form H2SO4. At low V2O5 loadings, a V atom is able to catalyze as many as 8 SO2 molecules to SO3. At high V2O5 loadings, however, the number of SO2 molecules catalyzed by a V atom is much less, due possibly to excessive amounts of V2O5 sites in comparison to the pores available for SO3 and H2SO4 storage.
机译:据报道,将V2O5负载到活性焦炭(AC)上可显着提高AC在同时从烟气中去除SO2和NO的活性。为了了解V2O5在SO2去除中的作用,通过SO2去除反应,表面分析,X射线衍射(XRD),X射线光电子能谱(XPS)和傅立叶变换红外(FTIR)技术研究了V2O5 / AC。发现V2O5在通过V2O5 / AC去除SO2中的主要作用是通过VOSO4类中间物质催化SO2氧化,该中间物质与O2反应形成SO3和V2O5。形成的SO3从V位转移到AC位,然后与H2O反应形成H2SO4。在低V2O5负载下,V原子能够催化多达8个SO2分子转化为SO3。但是,在高V2O5负载下,与可用于SO3和H2SO4储存的孔相比,可能是由于过量的V2O5位置,所以V原子催化的SO2分子数量要少得多。

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