4.8 Article

Satisfactory Anti-Interference and High Performance of the 1Co-1Ce/Mn@ZSM-5 Catalyst for Simultaneous Removal of NO and Hg0 in Abominable Flue Gas

Journal

ENVIRONMENTAL SCIENCE & TECHNOLOGY
Volume 56, Issue 6, Pages 3596-3603

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acs.est.2c00143

Keywords

Co-Ce doping; NO conversion; Hg-0 removal; SO2 resistance; H2O tolerance

Funding

  1. National Natural Science Foundation of China [22078168, 21776164]
  2. Qingchuang Science and Technology Program of Shandong Province University [2019KJD004]
  3. Natural Science Foundation of Shandong Province [ZR2019MEE023]

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The performance of Mn@ZSM-5 catalyst was improved by doping with different molar ratios of Co/Ce, resulting in better removal efficiency of NO and Hg-0 in high-temperature flue gas. The doping of Co and Ce also enhanced the resistance of the catalyst to SO2 and H2O.
The removal performance of NO and Hg-0, the operating temperature window, and the resistance of SO2 and H2O on Mn@ZSM-5 catalyst, which was synthesized by a one-step hydrothermal method with manganese oxide as the active component, were improved by doping different molar ratios of Co/Ce. Co and Ce doping increased the content of Mn4+ as well as of chemisorbed oxygen and promoted the NO and Hg-0 removal performance, which reached 96.7 and 98.9%, respectively, in flue gas over the 1Co-lCe/Mn@ZSM-5 catalyst. Furthermore, with SO2 and H2O addition, it decreased slightly to 88.4 and 89.3%, respectively, and then remained stable. The coexistence of SO2 and H2O had a synergistic poisoning effect on the activity of the catalyst, while the doping of Co and Ce had a positive influence on the tolerance to SO2 and H2O. The excellent anti-interference and high performance of the 1Co-1Ce/MngZSM-5 catalyst in the abominable flue gas were mainly due to the outer surface modification of organosilane and because the sacrificial element Co protected the active sites of Ce and Mn from poisoning, which prevented the redox ability of the catalyst from getting affected.

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