4.2 Article

In situ fabrication of Au-CoFe2O4: an efficient catalyst for soot oxidation

Journal

APPLIED NANOSCIENCE
Volume 10, Issue 10, Pages 3901-3910

Publisher

SPRINGER HEIDELBERG
DOI: 10.1007/s13204-020-01502-y

Keywords

Au-CoFe2O4; Catalytic oxidation; Durability; Oxygenated species

Funding

  1. Program of Introducing Talents of Discipline to Universities (111 Project) [B13005]
  2. Fundamental research Funds for the Central Universities [ylkxj03]
  3. National Natural Science Foundation of China [21636001]

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Diesel soot particulate is one of the main sources of air pollution, which should be eliminated effectively to minimize the carcinogenic and lethal effect of air. Herein, an effort has been made to synthesize Au-CoFe(2)O(4)nanocomposite by a facile route and use as an effective catalyst for soot oxidation. The physicochemical properties of Au-CoFe(2)O(4)were carried out through SEM, EDX mapping, HRTEM, XRD, XPS, hydrogen temperature-programmed reduction (H-2-TPR), and NO temperature-programmed oxidation (NO-TPO). Au-CoFe(2)O(4)catalyst showed a remarkable catalytic property for soot oxidation in both NO + O(2)and O(2)owing to the formation of oxygenated species that enhanced the oxidizing properties of the catalyst. The CoFe(2)O(4)composite showed a remarkable and stable catalytic property for soot oxidation, and low T-50(50% soot conversion) 411 degrees C value has been achieved in the presence of O-2. While as we introduced gold (Au) to form Au-CoFe(2)O(4)then its catalytic performance for soot oxidation was found to be tremendously increased to T(50)341 degrees C owing to the formation of surface-oxygenated species that enhanced the oxidizing properties of the catalyst surface. The durability performance of the catalyst including reusability, this catalyst showed even better soot oxidation activity after sulfur and hydrothermal aging. Owing to the tremendous soot oxidation activity, this catalyst can be used as an environmentally friendly and efficient soot oxidizer for the removal of soot.

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