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Selective Catalytic Reduction of NO x with Ammonia over Copper Ion Exchanged SAPO‐47 Zeolites in a Wide Temperature Range
Author(s) -
Zhang Yani,
Peng Yue,
Wang Chizhong,
Li Kezhi,
Liu Shuai,
Li Xiansheng,
Chen Jianjun,
Li Junhua
Publication year - 2018
Publication title -
chemcatchem
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.497
H-Index - 106
eISSN - 1867-3899
pISSN - 1867-3880
DOI - 10.1002/cctc.201800169
Subject(s) - chabazite , chemistry , catalysis , selective catalytic reduction , inorganic chemistry , copper , lewis acids and bases , microporous material , ammonia , selectivity , ion exchange , atmospheric temperature range , adsorption , brønsted–lowry acid–base theory , desorption , aqueous solution , zeolite , ion , organic chemistry , physics , meteorology
Copper‐exchanged H‐SAPO‐47 zeolites were synthesized by an aqueous solution ion exchange method and applied in the selective catalytic reduction of NO with NH 3 (SCR). The microporous chabazite (CHA) structure of the catalysts was characterized and confirmed using synchrotron X‐ray diffraction and nitrogen adsorption–desorption experiments. The synthesized Cu x ‐SAPO‐47 catalysts exhibited excellent SCR activity and nearly 100 % N 2 selectivity in a wide temperature range. The Cu 0.1 ‐SAPO‐47 sample exhibited higher activity than the other samples below 250 °C. The weak Lewis acid sites originating from the introduction of Cu 2+ were more active than the Brønsted acid sites of the zeolites framework at low temperature. Two types of isolated Cu 2+ species with different coordination surroundings were found, namely, Cu 2+ cations bonded with the six‐membered rings and those bonded in the CHA cages. The former species exhibited good stability and activity at high temperature, whereas the latter ones were more active at low temperature. The Cu 0.1 ‐SAPO‐47 catalyst provided a considerable amount of isolated Cu 2+ bonded in the CHA cages. These results indicated that active Lewis acid sites and isolated Cu 2+ species are responsible for their excellent SCR activity.

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