Citation:
Yarong Fang, Yanbing Guo. Copper-based non-precious metal heterogeneous catalysts for environmental remediation[J]. Chinese Journal of Catalysis,
;2018, 39(4): 566-582.
doi:
10.1016/S1872-2067(17)62996-6
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This paper presents a detailed review of copper-based catalysts used in wide-ranging environmental remediation, including gas, liquid and solid phase pollutant elimination. Latest advances in the remarkable catalytic activity of copper-based catalysts, including bulk CuOx, supported CuOx, and solid solution CuOx-X are emphasized. The structure-activity relationships among the crystal structure, morphology, catalyst support, and catalytic performance in specific catalytic reactions for environmental remediation are discussed. Furthermore, current obstacles faced by Cu-based catalysts and potential strategies to address them have been proposed, which may aid the future research and development of highly efficient Cu-based non-precious metal catalysts.
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[15]
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[17]
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[18]
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[19]
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[20]
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[21]
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[22]
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[23]
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[24]
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[25]
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[70]
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[72]
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[73]
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[74]
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[75]
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[77]
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[78]
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[79]
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[80]
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[81]
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[85]
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[88]
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[90]
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[105]
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-
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-
[115]
-
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-
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-
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-
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-
[120]
-
[121]
-
[122]
-
[123]
-
[124]
-
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-
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[128]
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[129]
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[130]
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[131]
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[132]
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