Cargando…
Impact of Titanium in Controlling Silver Particle Size on Enhancement of Catalytic Performance of AgMoO(3)/Ti-HMS for Direct Epoxidation of Propylene
[Image: see text] In this work, direct gas-phase epoxidation of propylene (DPO) to propylene oxide by molecular oxygen has been studied by using Ag–MoO(3) supported on titanium-containing hexagonal mesoporous silica (Ti-HMS(n)) of different Si/Ti molar ratios. The promotion effect of NaCl on the syn...
Autores principales: | , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
American Chemical Society
2020
|
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7066565/ https://www.ncbi.nlm.nih.gov/pubmed/32175494 http://dx.doi.org/10.1021/acsomega.9b03645 |
_version_ | 1783505271139598336 |
---|---|
author | AbdelDayem, Hany M. Al-Shihry, Shar S. Hassan, Salah A. |
author_facet | AbdelDayem, Hany M. Al-Shihry, Shar S. Hassan, Salah A. |
author_sort | AbdelDayem, Hany M. |
collection | PubMed |
description | [Image: see text] In this work, direct gas-phase epoxidation of propylene (DPO) to propylene oxide by molecular oxygen has been studied by using Ag–MoO(3) supported on titanium-containing hexagonal mesoporous silica (Ti-HMS(n)) of different Si/Ti molar ratios. The promotion effect of NaCl on the synthesized catalysts has also been investigated. Among the studied supports, the hexagonal mesoporous silica (HMS) with a Si/Ti ratio of 10 was the most suitable one for production of propylene oxide (PO). The optimal performance of the AgMo/Ti-HMS(10) catalyst in DPO exhibited a selectivity to PO of 43.2% with a propylene conversion of 14.1%, at 400 °C, 0.1 MPa, and a space velocity of 12,000 h(–1). The catalyst verified good stability over at least 20 h on stream. Only 2.7% PO selectivity with a propylene conversion of 10.1% was achieved over the AgMo/HMS sample. The incorporation of Ti into the HMS frame could optimize the particle size distribution of Ag, producing Ag nanoparticles with an average size of 6.8 nm compared with that of Ag/HMS (24.3 nm). The in situ Raman spectrum of AgMo/Ti-HMS(10) heated in a stream of C(3)H(6)/He at 400 °C showed new bands at 616, 390, and 210 cm(–1), characteristic of the Ag(x)Mo(y)O(z) intermediate phase. The obtained results suggested that this formed AgMo/Ti-HMS(10) phase could most likely be relevant for selective epoxidation of propylene. However, during the reaction of C(3)H(6) with AgMo/HMS, the formation of this intermediate was hardly detected. On the other hand, the hydrogen temperature-programmed reduction measurements indicated improved reducibility of MoO(3) in the AgMo/Ti-HMS(10) catalyst, which acknowledged the role of Mo(6+) in gaining electrons from silver to form positively charged Ag. This could reduce the effective charge of the adsorbed oxygen on silver sites and in turn favor the epoxidation path of propylene rather than the combustion route. Also, during the reaction of C(3)H(6) with NaAgMo/Ti-HMS(10) at 400 °C, two new Raman bands were detected at 277 and 350 cm(–1), characteristic of Ag(2)MoO(4). |
format | Online Article Text |
id | pubmed-7066565 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2020 |
publisher | American Chemical Society |
record_format | MEDLINE/PubMed |
spelling | pubmed-70665652020-03-13 Impact of Titanium in Controlling Silver Particle Size on Enhancement of Catalytic Performance of AgMoO(3)/Ti-HMS for Direct Epoxidation of Propylene AbdelDayem, Hany M. Al-Shihry, Shar S. Hassan, Salah A. ACS Omega [Image: see text] In this work, direct gas-phase epoxidation of propylene (DPO) to propylene oxide by molecular oxygen has been studied by using Ag–MoO(3) supported on titanium-containing hexagonal mesoporous silica (Ti-HMS(n)) of different Si/Ti molar ratios. The promotion effect of NaCl on the synthesized catalysts has also been investigated. Among the studied supports, the hexagonal mesoporous silica (HMS) with a Si/Ti ratio of 10 was the most suitable one for production of propylene oxide (PO). The optimal performance of the AgMo/Ti-HMS(10) catalyst in DPO exhibited a selectivity to PO of 43.2% with a propylene conversion of 14.1%, at 400 °C, 0.1 MPa, and a space velocity of 12,000 h(–1). The catalyst verified good stability over at least 20 h on stream. Only 2.7% PO selectivity with a propylene conversion of 10.1% was achieved over the AgMo/HMS sample. The incorporation of Ti into the HMS frame could optimize the particle size distribution of Ag, producing Ag nanoparticles with an average size of 6.8 nm compared with that of Ag/HMS (24.3 nm). The in situ Raman spectrum of AgMo/Ti-HMS(10) heated in a stream of C(3)H(6)/He at 400 °C showed new bands at 616, 390, and 210 cm(–1), characteristic of the Ag(x)Mo(y)O(z) intermediate phase. The obtained results suggested that this formed AgMo/Ti-HMS(10) phase could most likely be relevant for selective epoxidation of propylene. However, during the reaction of C(3)H(6) with AgMo/HMS, the formation of this intermediate was hardly detected. On the other hand, the hydrogen temperature-programmed reduction measurements indicated improved reducibility of MoO(3) in the AgMo/Ti-HMS(10) catalyst, which acknowledged the role of Mo(6+) in gaining electrons from silver to form positively charged Ag. This could reduce the effective charge of the adsorbed oxygen on silver sites and in turn favor the epoxidation path of propylene rather than the combustion route. Also, during the reaction of C(3)H(6) with NaAgMo/Ti-HMS(10) at 400 °C, two new Raman bands were detected at 277 and 350 cm(–1), characteristic of Ag(2)MoO(4). American Chemical Society 2020-02-25 /pmc/articles/PMC7066565/ /pubmed/32175494 http://dx.doi.org/10.1021/acsomega.9b03645 Text en Copyright © 2020 American Chemical Society This is an open access article published under an ACS AuthorChoice License (http://pubs.acs.org/page/policy/authorchoice_termsofuse.html) , which permits copying and redistribution of the article or any adaptations for non-commercial purposes. |
spellingShingle | AbdelDayem, Hany M. Al-Shihry, Shar S. Hassan, Salah A. Impact of Titanium in Controlling Silver Particle Size on Enhancement of Catalytic Performance of AgMoO(3)/Ti-HMS for Direct Epoxidation of Propylene |
title | Impact of Titanium in Controlling Silver Particle
Size on Enhancement of Catalytic Performance of AgMoO(3)/Ti-HMS
for Direct Epoxidation of Propylene |
title_full | Impact of Titanium in Controlling Silver Particle
Size on Enhancement of Catalytic Performance of AgMoO(3)/Ti-HMS
for Direct Epoxidation of Propylene |
title_fullStr | Impact of Titanium in Controlling Silver Particle
Size on Enhancement of Catalytic Performance of AgMoO(3)/Ti-HMS
for Direct Epoxidation of Propylene |
title_full_unstemmed | Impact of Titanium in Controlling Silver Particle
Size on Enhancement of Catalytic Performance of AgMoO(3)/Ti-HMS
for Direct Epoxidation of Propylene |
title_short | Impact of Titanium in Controlling Silver Particle
Size on Enhancement of Catalytic Performance of AgMoO(3)/Ti-HMS
for Direct Epoxidation of Propylene |
title_sort | impact of titanium in controlling silver particle
size on enhancement of catalytic performance of agmoo(3)/ti-hms
for direct epoxidation of propylene |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7066565/ https://www.ncbi.nlm.nih.gov/pubmed/32175494 http://dx.doi.org/10.1021/acsomega.9b03645 |
work_keys_str_mv | AT abdeldayemhanym impactoftitaniumincontrollingsilverparticlesizeonenhancementofcatalyticperformanceofagmoo3tihmsfordirectepoxidationofpropylene AT alshihryshars impactoftitaniumincontrollingsilverparticlesizeonenhancementofcatalyticperformanceofagmoo3tihmsfordirectepoxidationofpropylene AT hassansalaha impactoftitaniumincontrollingsilverparticlesizeonenhancementofcatalyticperformanceofagmoo3tihmsfordirectepoxidationofpropylene |