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Low Temperature Adsorption Desulfurization Performance and Mechanism of CeFe/ZSM‐5 for H 2 S and SO 2 Mixture
Author(s) -
Wang Chenyang,
Xuan Jianyu,
Zhang Lin,
Liu Zongjian,
Cui Qun,
Wang Haiyan
Publication year - 2020
Publication title -
chemistryselect
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.437
H-Index - 34
ISSN - 2365-6549
DOI - 10.1002/slct.202003414
Subject(s) - sulfur , adsorption , flue gas desulfurization , zsm 5 , selectivity , chemistry , space velocity , valence (chemistry) , oxygen , redox , inorganic chemistry , analytical chemistry (journal) , catalysis , organic chemistry , molecular sieve
3Ce5Fe/ZSM‐5 adsorbent for simultaneously removal of H 2 S and SO 2 mixture gas was prepared by wet impregnation method. The dynamic removal performance of H 2 S and SO 2 mixture was investigated in a fixed bed reactor. The simultaneous adsorption removal mechanism of 3Ce5Fe/ZSM‐5 before and after Ce addition for H 2 S and SO 2 mixture gas was discussed. Results show that the breakthrough sulfur capacity of 3Ce5Fe/ZSM‐5 is 211.4 mg S/g ads under temperature of 36 °C, space velocity of 500 h −1 , the vapor content of 4 vol. % and oxygen sulfur ratio of 1, which is 14.5 % higher than that of 5Fe/ZSM‐5 (184.6 mg S/g ads ). The sulfur species on 3Ce5Fe/ZSM‐5‐E exist in forms of S (43.5 %) and SO 4 2− (56.5 %), and the sulfur selectivity is 18.4 % higher than that of 5Fe/ZSM‐5. The addition of Ce can improve the dispersibility and redox performance of Fe 3+ , resulting in the valence state of Fe 3+ stable and increasing the selectivity of sulfur. Moreover, the addition of Ce can significantly improve low‐temperature removal activity of 3Ce5Fe/ZSM‐5 for H 2 S and SO 2 mixture gas.

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