Optimization of the Technological Parameters for Obtaining Zn-Ti Based Composites to Increase the Performance of H<sub>2</sub>S Removal from Syngas
The realization of some composite materials that allow the best removal of H<sub>2</sub>S from syngas was the main objective of this work. Thus, the optimization of the technological parameters for obtaining composites based on Zn-Ti was achieved. The paper studies the influence of calci...
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doaj-e552f75ceb17441fa522345bb73816a32020-11-25T02:12:10ZengMDPI AGProcesses2227-97172020-05-01856256210.3390/pr8050562Optimization of the Technological Parameters for Obtaining Zn-Ti Based Composites to Increase the Performance of H<sub>2</sub>S Removal from SyngasAnnette Madelene Dăncilă0Simona Căprărescu1Constantin Bobiricǎ2Violeta Purcar3Gabriel Gârleanu4Eugeniu Vasile5Cristina Modrogan6Claudia Borda7Dan Dobrotǎ8Faculty of Applied Chemistry and Materials Science, University POLITEHNICA of Bucharest, Polizu 1-7, RO-060042 Bucharest, RomaniaFaculty of Applied Chemistry and Materials Science, University POLITEHNICA of Bucharest, Polizu 1-7, RO-060042 Bucharest, RomaniaFaculty of Applied Chemistry and Materials Science, University POLITEHNICA of Bucharest, Polizu 1-7, RO-060042 Bucharest, RomaniaNational Research and Development Institute for Chemistry and Petrochemistry-ICECHIM, Splaiul Independentei 202, 060021 Bucharest, RomaniaFaculty of Industrial Engineering and Robotics, Politehnica University of Bucharest, 060042 Bucharest, RomaniaInstitute of Research and Development “METAV” SA, C.A. Rosetti 31, 020011 Bucharest, RomaniaFaculty of Applied Chemistry and Materials Science, University POLITEHNICA of Bucharest, Polizu 1-7, RO-060042 Bucharest, RomaniaFaculty of Industrial Engineering and Robotics, Politehnica University of Bucharest, 060042 Bucharest, RomaniaFaculty of Engineering, Lucian Blaga University of Sibiu, 550024 Sibiu, RomaniaThe realization of some composite materials that allow the best removal of H<sub>2</sub>S from syngas was the main objective of this work. Thus, the optimization of the technological parameters for obtaining composites based on Zn-Ti was achieved. The paper studies the influence of calcination temperature on the characteristics of the binary ZnO-TiO<sub>2</sub> system used to synthesize a composite material with suitable properties to be used subsequently for syngas treatment. The mineralogical and structural analyzes showed that starting with the calcination temperature of 700 °C the material synthetized is composed mainly of zinc orthotitanate which possess the corresponding characteristics to be finally used in the treatment of the syngas for its desulfurization. At this calcination temperature the material has a compact structure most likely due to sintering of the formed titanates. These composites have a texture that places them rather in the category of non-porous materials, the pore volume and their surface area obviously decreasing as the calcination temperature increases. A maximum sulfur removal degree of about 97% was obtained by using a composite synthetized at a temperature of 700 °C (ZT-700).https://www.mdpi.com/2227-9717/8/5/562technological parameterscompositesoptimizationsyngashydrogen sulfide |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Annette Madelene Dăncilă Simona Căprărescu Constantin Bobiricǎ Violeta Purcar Gabriel Gârleanu Eugeniu Vasile Cristina Modrogan Claudia Borda Dan Dobrotǎ |
spellingShingle |
Annette Madelene Dăncilă Simona Căprărescu Constantin Bobiricǎ Violeta Purcar Gabriel Gârleanu Eugeniu Vasile Cristina Modrogan Claudia Borda Dan Dobrotǎ Optimization of the Technological Parameters for Obtaining Zn-Ti Based Composites to Increase the Performance of H<sub>2</sub>S Removal from Syngas Processes technological parameters composites optimization syngas hydrogen sulfide |
author_facet |
Annette Madelene Dăncilă Simona Căprărescu Constantin Bobiricǎ Violeta Purcar Gabriel Gârleanu Eugeniu Vasile Cristina Modrogan Claudia Borda Dan Dobrotǎ |
author_sort |
Annette Madelene Dăncilă |
title |
Optimization of the Technological Parameters for Obtaining Zn-Ti Based Composites to Increase the Performance of H<sub>2</sub>S Removal from Syngas |
title_short |
Optimization of the Technological Parameters for Obtaining Zn-Ti Based Composites to Increase the Performance of H<sub>2</sub>S Removal from Syngas |
title_full |
Optimization of the Technological Parameters for Obtaining Zn-Ti Based Composites to Increase the Performance of H<sub>2</sub>S Removal from Syngas |
title_fullStr |
Optimization of the Technological Parameters for Obtaining Zn-Ti Based Composites to Increase the Performance of H<sub>2</sub>S Removal from Syngas |
title_full_unstemmed |
Optimization of the Technological Parameters for Obtaining Zn-Ti Based Composites to Increase the Performance of H<sub>2</sub>S Removal from Syngas |
title_sort |
optimization of the technological parameters for obtaining zn-ti based composites to increase the performance of h<sub>2</sub>s removal from syngas |
publisher |
MDPI AG |
series |
Processes |
issn |
2227-9717 |
publishDate |
2020-05-01 |
description |
The realization of some composite materials that allow the best removal of H<sub>2</sub>S from syngas was the main objective of this work. Thus, the optimization of the technological parameters for obtaining composites based on Zn-Ti was achieved. The paper studies the influence of calcination temperature on the characteristics of the binary ZnO-TiO<sub>2</sub> system used to synthesize a composite material with suitable properties to be used subsequently for syngas treatment. The mineralogical and structural analyzes showed that starting with the calcination temperature of 700 °C the material synthetized is composed mainly of zinc orthotitanate which possess the corresponding characteristics to be finally used in the treatment of the syngas for its desulfurization. At this calcination temperature the material has a compact structure most likely due to sintering of the formed titanates. These composites have a texture that places them rather in the category of non-porous materials, the pore volume and their surface area obviously decreasing as the calcination temperature increases. A maximum sulfur removal degree of about 97% was obtained by using a composite synthetized at a temperature of 700 °C (ZT-700). |
topic |
technological parameters composites optimization syngas hydrogen sulfide |
url |
https://www.mdpi.com/2227-9717/8/5/562 |
work_keys_str_mv |
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