Please use this identifier to cite or link to this item:
https://hdl.handle.net/1959.11/20133
Full metadata record
DC Field | Value | Language |
---|---|---|
dc.contributor.author | Brown, Trevor C | en |
dc.contributor.author | Miron, David J | en |
dc.contributor.author | Brown, Susannah L | en |
dc.contributor.author | Kendell, Shane M | en |
dc.date.accessioned | 2017-03-08T12:00:00Z | - |
dc.date.issued | 2016 | - |
dc.identifier.citation | Catalysts, 6(9), p. 1-16 | en |
dc.identifier.issn | 2073-4344 | en |
dc.identifier.uri | https://hdl.handle.net/1959.11/20133 | - |
dc.description.abstract | The selective oxidation energetics of isobutane to methacrolein over phosphomolybdic acid and copper(II) phosphomolybdates have been investigated using low-pressure, pseudo-steady-state and temperature-programming techniques. Time-varying flexible least squares methods were used to determine variations in oxidation activation energies as the temperature increases at 5°C.min⁻¹. Catalyst activity stabilizes by the fourth consecutive temperature-programmed run. Rate parameters increase linearly with temperature in two sinusoidal, oscillating wave packets. For H₃PMo₁₂O₄₀, three distinct reaction pathways are apparent in the fourth run with activation energies 76 ± 3, 93 ± 7 and 130 ± 3 kJ.mol⁻¹, and under these experimental conditions are observed at the optimum temperatures 704 ± 7 K, 667 ± 25 K and 745 ± 7 K, respectively. Over the copper-containing catalysts, two pathways are apparent: 76 ± 3 kJ.mol⁻¹ at 665 ± 9 K and 130 ± 3 kJ.mol⁻¹ at 706 ± 9 K. The three activation energies indicate either different reaction pathways leading to methacrolein or distinct active sites on the catalyst surface. The intermediate activation energy, 93 kJ.mol⁻¹, only observed over phosphomolybdic acid, may be linked to hydrogen bonding. Differences in optimum temperatures for the same activation energies for H₃PMO₁₂O₄₀ and for the copper catalysts indicate that compensating entropy changes are smaller over H₃PMo₁₂O₄₀. The inclusion of copper enhances catalyst stability and activity. | en |
dc.language | en | en |
dc.publisher | MDPI AG | en |
dc.relation.ispartof | Catalysts | en |
dc.title | Time- and Temperature-Varying Activation Energies: Isobutane Selective Oxidation to Methacrolein over Phosphomolybdic Acid and Copper(II) Phosphomolybdates | en |
dc.type | Journal Article | en |
dc.identifier.doi | 10.3390/catal6090137 | en |
dcterms.accessRights | Gold | en |
dc.subject.keywords | Catalysis and Mechanisms of Reactions | en |
dc.subject.keywords | Physical Chemistry of Materials | en |
dc.subject.keywords | Chemical Characterisation of Materials | en |
local.contributor.firstname | Trevor C | en |
local.contributor.firstname | David J | en |
local.contributor.firstname | Susannah L | en |
local.contributor.firstname | Shane M | en |
local.subject.for2008 | 030601 Catalysis and Mechanisms of Reactions | en |
local.subject.for2008 | 030304 Physical Chemistry of Materials | en |
local.subject.for2008 | 030301 Chemical Characterisation of Materials | en |
local.subject.seo2008 | 970103 Expanding Knowledge in the Chemical Sciences | en |
local.subject.seo2008 | 850703 Industrial Energy Conservation and Efficiency | en |
local.subject.seo2008 | 970109 Expanding Knowledge in Engineering | en |
local.profile.school | School of Science and Technology | en |
local.profile.school | Research Services | en |
local.profile.email | tbrown3@une.edu.au | en |
local.profile.email | dmiron@une.edu.au | en |
local.output.category | C1 | en |
local.record.place | au | en |
local.record.institution | University of New England | en |
local.identifier.epublicationsrecord | une-chute-20170306-113417 | en |
local.publisher.place | Switzerland | en |
local.identifier.runningnumber | 137 | en |
local.format.startpage | 1 | en |
local.format.endpage | 16 | en |
local.identifier.scopusid | 84988311232 | en |
local.peerreviewed | Yes | en |
local.identifier.volume | 6 | en |
local.identifier.issue | 9 | en |
local.title.subtitle | Isobutane Selective Oxidation to Methacrolein over Phosphomolybdic Acid and Copper(II) Phosphomolybdates | en |
local.access.fulltext | Yes | en |
local.contributor.lastname | Brown | en |
local.contributor.lastname | Miron | en |
local.contributor.lastname | Brown | en |
local.contributor.lastname | Kendell | en |
dc.identifier.staff | une-id:tbrown3 | en |
dc.identifier.staff | une-id:dmiron | en |
local.profile.orcid | 0000-0002-8277-2498 | en |
local.profile.orcid | 0000-0003-2157-5439 | en |
local.profile.role | author | en |
local.profile.role | author | en |
local.profile.role | author | en |
local.profile.role | author | en |
local.identifier.unepublicationid | une:20331 | en |
dc.identifier.academiclevel | Academic | en |
dc.identifier.academiclevel | Academic | en |
local.title.maintitle | Time- and Temperature-Varying Activation Energies | en |
local.output.categorydescription | C1 Refereed Article in a Scholarly Journal | en |
local.search.author | Brown, Trevor C | en |
local.search.author | Miron, David J | en |
local.search.author | Brown, Susannah L | en |
local.search.author | Kendell, Shane M | en |
local.uneassociation | Unknown | en |
local.identifier.wosid | 000384675300011 | en |
local.year.published | 2016 | en |
local.fileurl.closedpublished | https://rune.une.edu.au/web/retrieve/86c75b77-afd0-4cbd-ac37-6fadec0c7271 | en |
local.subject.for2020 | 340302 Macromolecular materials | en |
local.subject.for2020 | 340307 Structure and dynamics of materials | en |
local.subject.for2020 | 340601 Catalysis and mechanisms of reactions | en |
local.subject.seo2020 | 280105 Expanding knowledge in the chemical sciences | en |
local.subject.seo2020 | 170102 Industrial energy efficiency | en |
local.codeupdate.date | 2022-02-11T13:31:14.634 | en |
local.codeupdate.eperson | tbrown3@une.edu.au | en |
local.codeupdate.finalised | true | en |
local.original.for2020 | undefined | en |
local.original.for2020 | 340302 Macromolecular materials | en |
local.original.for2020 | 340307 Structure and dynamics of materials | en |
local.original.for2020 | 340301 Inorganic materials (incl. nanomaterials) | en |
local.original.for2020 | 340601 Catalysis and mechanisms of reactions | en |
local.original.seo2020 | 280110 Expanding knowledge in engineering | en |
local.original.seo2020 | 280105 Expanding knowledge in the chemical sciences | en |
local.original.seo2020 | 170102 Industrial energy efficiency | en |
Appears in Collections: | Journal Article |
Files in This Item:
File | Description | Size | Format |
---|
SCOPUSTM
Citations
2
checked on May 18, 2024
Page view(s)
1,474
checked on May 19, 2024
Items in Research UNE are protected by copyright, with all rights reserved, unless otherwise indicated.