Structure-performance relationship in CuO/SBA-15-type SOxadsorbent: evolution of copper-based species under different regenerative treatments

Author:

Berger M.12345,Fioux P.56783,Dorge S.1234ORCID,Nouali H.56783,Habermacher D.1234,Fiani E.9104,Vierling M.11124,Moliere M.131415164,Brilhac J. F.1234,Patarin J.56783

Affiliation:

1. Laboratoire Gestion des Risques et Environnement (GRE)

2. Université de Haute-Alsace (UHA)

3. 68093 Mulhouse Cedex

4. France

5. Institut de Science des Matériaux de Mulhouse (IS2M)

6. Axe Matériaux à Porosité Contrôlée (MPC)

7. UMR 7361 CNRS

8. UHA

9. ADEME

10. 49004 Angers Cedex 01

11. GE Energy

12. 90007 Belfort Cedex

13. Institut Carnot de Bourgogne (ICB)

14. UTBM

15. équipe LERMPS

16. 9010 Belfort Cedex

Abstract

Desulfurization of industrial flue gas stream: characterization of the evolution of copper active sites along SOxadsorption/regeneration cycling experiments in CuO/SBA-15-type adsorbent.

Publisher

Royal Society of Chemistry (RSC)

Subject

Catalysis

Reference51 articles.

1. R. C. Flagan and J. H.Seinfeld, Fundamentals of Air Pollution Engineering, Englewood Cliffs, New Jersey, 1988

2. OECD , Environment at a Glance 2015: OECD Indicators, Paris, 2015

3. Response of Inorganic Fine Particulate Matter to Emission Changes of Sulfur Dioxide and Ammonia: The Eastern United States as a Case Study

4. Adsorption of SOx by oxide materials: A review

5. European Commission, Integrated Pollution Prevention and Control-Reference Document on Best Available Techniques for Large Combustion Plants, 2006

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