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Mechanism of NO removal by CO + NH3 coupling in iron–manganese/activated carbon catalysts at medium and low temperatures

  • Fu Yuan,
  • Bangfu Huang,
  • Zhe Shi,
  • Liubin Luo,
  • Gaoyong Zi,
  • Keying Zhu,
  • Xinchao Fan,
  • Linjing Yang

摘要

In this study, Fe–Mn/activated carbon (AC) catalysts were prepared to investigate the CO + NH3 coupling for deducing the NO removal mechanism by iron and manganese supported on AC catalysts under moderate to low-moderate aerobic conditions. Through the catalyst surface morphology, phase analysis, and other test results, we propose a mechanism for the CO + NH3 coupling that results in NO removal at medium to low temperatures. The results indicate that NO conversion initially decreases and then increases in the range of 150–300 °C with 9% oxygen content. The NO conversion of the 3.5Fe–7.0Mn/AC catalyst reached 95%, surpassing other catalysts, with an inflection point near 230 °C. Characterization of the 3.5Fe–7.0Mn/AC catalyst revealed a smooth surface, uniform pore development, a high number of micro and medium pores, and elevated surface oxygen species (Oα) content. Mn2O3 and Fe3O4 are uniformly distributed on the surface, enhancing the reaction gas contact area and thereby improving NO conversion. Fe2+ is identified as the primary active site for NO removal. Increased Mn loading raises the Fe2+ and Mn3+ levels, with Mn3+ improving the NO conversion rate.