Acid-Activated Α-Mno2 for Photothermal Co-Catalytic Oxidative Degradation of Propane: Activity and Reaction Mechanism

Author:

Wang Yadi,Bi Yuxi,Ji Guoyang,Jing Yuekun,Zhao Jingang,Sun Encheng,Wang Yongqiang,Chang Huazhen,Liu Fang

Publisher

Elsevier BV

Reference63 articles.

1. Automated dual-chamber sampling system to follow dynamics of volatile organic compounds emitted by biological specimens;C.-H Chang;Analytical Chemistry,2018

2. Adsorption materials for volatile organic compounds (VOCs) and the key factors for VOCs adsorption process: A review;X Li;Separation and Purification Technology,2020

3. Harnessing solar energy towards synergistic photothermal catalytic oxidation of volatile organic compounds;E Agbovhimen Elimian;Solar RRL,2023

4. Construction of Pd/Mn 3 O 4 heterojunction catalyst for efficient photothermal synergetic catalytic propane total oxidation;C Feng;Separation and Purification Technology,2024

5. Hydrothermal synthesis of NiCeOx nanosheets and its application to the total oxidation of propane;Z Hu;Applied Catalysis B: Environmental,2018

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