Monolith metal-oxide-supported catalysts: sorbent for environmental application
The emission of untreated environmental harmful gases such as sulfur and nitrogen oxide (SOx and NOx) emissions is considered old fashioned, since industries are compelled by governments and legislations to meet the minimum threshold before emitting such substances into the atmosphere. Numerous rese...
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Multidisciplinary Digital Publishing Institute
2020
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my.upm.eprints.868262021-11-19T10:05:27Z http://psasir.upm.edu.my/id/eprint/86826/ Monolith metal-oxide-supported catalysts: sorbent for environmental application Silas, Kiman Wan Ab. Karim Ghani, Wan Azlina Shean, Thomas Yaw Choong Rashid, Umer The emission of untreated environmental harmful gases such as sulfur and nitrogen oxide (SOx and NOx) emissions is considered old fashioned, since industries are compelled by governments and legislations to meet the minimum threshold before emitting such substances into the atmosphere. Numerous research has been done and is ongoing to come up with both cost-effective equipment and regenerable catalysts that are adsorbent—or with enhanced sorption capacity—and with safer disposal methods. This work presents the general idea of a monolith/catalyst for environmental application and the technicality for improving the surface area for fast and efficient adsorption–desorption reactions. The chemical reactions, adsorption kinetics, and other properties, including deactivation, regeneration, and the disposal of a catalyst in view of environmental application, are extensively discussed. Multidisciplinary Digital Publishing Institute 2020-09-04 Article PeerReviewed text en http://psasir.upm.edu.my/id/eprint/86826/1/Monolith%20metal.pdf Silas, Kiman and Wan Ab. Karim Ghani, Wan Azlina and Shean, Thomas Yaw Choong and Rashid, Umer (2020) Monolith metal-oxide-supported catalysts: sorbent for environmental application. Catalysts, 10 (9). pp. 1-25. ISSN 2073-4344 https://www.mdpi.com/2073-4344/10/9/1018 10.3390/catal10091018 |
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The emission of untreated environmental harmful gases such as sulfur and nitrogen oxide (SOx and NOx) emissions is considered old fashioned, since industries are compelled by governments and legislations to meet the minimum threshold before emitting such substances into the atmosphere. Numerous research has been done and is ongoing to come up with both cost-effective equipment and regenerable catalysts that are adsorbent—or with enhanced sorption capacity—and with safer disposal methods. This work presents the general idea of a monolith/catalyst for environmental application and the technicality for improving the surface area for fast and efficient adsorption–desorption reactions. The chemical reactions, adsorption kinetics, and other properties, including deactivation, regeneration, and the disposal of a catalyst in view of environmental application, are extensively discussed. |
format |
Article |
author |
Silas, Kiman Wan Ab. Karim Ghani, Wan Azlina Shean, Thomas Yaw Choong Rashid, Umer |
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Silas, Kiman Wan Ab. Karim Ghani, Wan Azlina Shean, Thomas Yaw Choong Rashid, Umer Monolith metal-oxide-supported catalysts: sorbent for environmental application |
author_facet |
Silas, Kiman Wan Ab. Karim Ghani, Wan Azlina Shean, Thomas Yaw Choong Rashid, Umer |
author_sort |
Silas, Kiman |
title |
Monolith metal-oxide-supported catalysts: sorbent for environmental application |
title_short |
Monolith metal-oxide-supported catalysts: sorbent for environmental application |
title_full |
Monolith metal-oxide-supported catalysts: sorbent for environmental application |
title_fullStr |
Monolith metal-oxide-supported catalysts: sorbent for environmental application |
title_full_unstemmed |
Monolith metal-oxide-supported catalysts: sorbent for environmental application |
title_sort |
monolith metal-oxide-supported catalysts: sorbent for environmental application |
publisher |
Multidisciplinary Digital Publishing Institute |
publishDate |
2020 |
url |
http://psasir.upm.edu.my/id/eprint/86826/1/Monolith%20metal.pdf http://psasir.upm.edu.my/id/eprint/86826/ https://www.mdpi.com/2073-4344/10/9/1018 |
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