Experimental and simulation studies for reaction enhancement of catalytic CF4 hydrolysis by consecutive HF removal using a multi-stage catalyst-adsorbent reactor

Author:

Han Jae-Yun12,Kim Chang-Hyun3,Lee Boreum4,Jeong Seonju4,Lim Hankwon4ORCID,Lee Kwan-Young2,Ryi Shin-Kun3

Affiliation:

1. Separation and Conversion Materials Laboratory; Korea Institute of Energy Research (KIER); Daejeon Republic of Korea

2. Department of Chemical and Biological Engineering; Korea University; Seoul Republic of Korea

3. Separation and Conversion Materials Laboratory; KIER; Daejeon Republic of Korea

4. Department of Advanced Materials and Chemical Engineering; Catholic University of Daegu; Gyeongbuk Republic of Korea

Funder

Ministry of Environment

Publisher

Wiley

Subject

Environmental Chemistry,Environmental Engineering

Reference31 articles.

1. Intergovernmental Panel on Climate Change Climate change 2007: Synthesis report 2008 https://www.ipcc.ch/pdf/assessment-report/ar4/syr/ar4_syr_full_report.pdf

2. Possible greenhouse effects of tetrafluoromethane and carbon dioxide emitted from aluminum production;Weston;Atmos Environ,1996

3. Hydrolysis of CF4 over alumina-based binary metal oxide catalysts;El-Bahy;Appl Catal B,2003

4. The modification and stability of γ-Al2O3 based catalysts for hydrolytic decomposition of CF4;Xu;J Molec Catal A,2007

5. Decomposition of tetrafluoromethane by water plasma generated under atmospheric pressure;Narengerile;Thin Solid Films,2009

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