Issue 32, 2015

Synthesis of functional xLayMn/KIT-6 and features in hot coal gas desulphurization

Abstract

To enhance the stability of sorbents during continuous desulphurization–regeneration cycles, KIT-6 with 3D pore channels was used as a support for the sorbents. A series of mesoporous xLayMn/KIT-6 sorbents with different La/Mn atomic ratios were fabricated using a sol–gel method and their desulphurization properties of hot coal gas were investigated at 700–850 °C. 3La97Mn/KIT-6 performed the best at 800 °C with a breakthrough sulphur capacity of 11.56 g sulphur per 100 g sorbent. The eight successive desulphurization (800 °C)–regeneration (600 °C) cycles revealed that 3La97Mn/KIT-6 with endurable regeneration abilities could retain 80% of the initial sulphur capacity. It indicated a better desulphurization performance compared to pure 3La97Mn and 3La97Mn/MCM-41. The fresh and used xLayMn/KIT-6 sorbents were characterized by means of BET, XRD, HRTEM, XPS and H2-TPR techniques. The XRD patterns and HRTEM images of fresh and used 3La97Mn/KIT-6 verified that the utilization of KIT-6 effectively suppressed the aggregation of Mn2O3 particles and improved the stability of the sorbent.

Graphical abstract: Synthesis of functional xLayMn/KIT-6 and features in hot coal gas desulphurization

Supplementary files

Article information

Article type
Paper
Submitted
18 Apr 2015
Accepted
25 Jun 2015
First published
30 Jun 2015

Phys. Chem. Chem. Phys., 2015,17, 20667-20676

Author version available

Synthesis of functional xLayMn/KIT-6 and features in hot coal gas desulphurization

H. Xia, F. Zhang, Z. Zhang and B. Liu, Phys. Chem. Chem. Phys., 2015, 17, 20667 DOI: 10.1039/C5CP02256H

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