School of Environmental Science and Engineering/Department of Chemical Engineering, Pohang University of Science and Technology (POSTECH), San 31 Hyoja-dong, Pohang 790-784, Korea.
Environ Sci Technol. 2013 Apr 16;47(8):3657-64. doi: 10.1021/es304188k. Epub 2013 Mar 25.
A photocatalytic HC/SCR system has been developed and its high deNOx performance (54.0-98.6% NOx conversion) at low temperatures (150-250 °C) demonstrated by using a representative diesel fuel hydrocarbon (dodecane) as the reductant over a hybrid SCR system of a photocatalytic reactor (PCR) and a dual-bed HC/SCR reactor. The PCR generates highly active oxidants such as O3 and NO2 from O2 and NO in the feed stream, followed by the subsequent formation of highly efficient reductants such as oxygenated hydrocarbon (OHC), NH3, and organo-nitrogen compounds. These reductants are the key components for enhancing the low temperature deNOx performance of the dual-bed HC/SCR system containing Ag/Al2O3 and CuCoY in the front and rear bed of the reactor, respectively. The OHCs are particularly effective for both NOx reduction and NH3 formation over the Ag/Al2O3 catalyst, while NH3 and organo-nitrogen compounds are effective for NOx reduction over the CuCoY catalyst. The hybrid HC/SCR system assisted by photocatalysis has shown an overall deNOx performance comparable to that of the NH3/SCR, demonstrating its potential as a promising alternative to the current urea/SCR and LNT technologies. Superior durability of HC/SCR catalysts against coking by HCs has also been demonstrated by a PCR-assisted regeneration scheme for deactivating catalysts.
已经开发出一种光催化 HC/SCR 系统,通过使用代表性的柴油燃料烃(十二烷)作为还原剂,在低温(150-250°C)下展示了其高脱氮性能(54.0-98.6%的 NOx 转化率),该系统是在光催化反应器(PCR)和双床 HC/SCR 反应器的混合 SCR 系统上进行的。PCR 从进料流中的 O2 和 NO 生成高活性氧化剂,如 O3 和 NO2,随后形成高效还原剂,如含氧烃(OHC)、NH3 和有机氮化合物。这些还原剂是增强含有 Ag/Al2O3 和 CuCoY 的前后床的双床 HC/SCR 系统在低温下脱氮性能的关键组成部分。OHC 对于 Ag/Al2O3 催化剂上的 NOx 还原和 NH3 形成特别有效,而 NH3 和有机氮化合物对于 CuCoY 催化剂上的 NOx 还原有效。光催化辅助的混合 HC/SCR 系统表现出与 NH3/SCR 相当的整体脱氮性能,表明其作为当前尿素/SCR 和 LNT 技术的有前途的替代品具有潜力。光催化辅助的再生方案也证明了 HC/SCR 催化剂对 HC 结焦的耐久性更优,可使失活的催化剂恢复活性。