- Title
- Effect of various operating parameters on the oxidative coupling of methane over Na₂WO₄Mn/SiO₂ catalyst with N₂O as an oxidant
- Creator
- Mowla, O.; Kennedy, E.; Stockenhuber, M.
- Relation
- Chemeca 14: Processing Excellence; Powering Our Future. Proceedings from Chemeca 14: Processing Excellence; Powering Our Future (Perth, W.A. 28 September - 1 October, 2014) p. 1397-1407
- Relation
- http://www.icheme.org/chemeca2014/program/papers.aspx
- Publisher
- Engineers Australia
- Resource Type
- conference paper
- Date
- 2014
- Description
- Methane (CH₄), as the major component of natural gas, can be converted into more valuable chemicals through various catalytic methods. One route for direct conversion of CH₄ into higher hydrocarbons, especially ethylene (C₂H₄), is a catalytic oxidative coupling of methane (OCM). The major challenge with OCM is the relatively low yields of obtained C₂₊, leading to the production of COₓ especially at higher levels of CH₄ conversion. In this research, the feasibility of OCM over Na₂WO₄Mn/SiO₂ catalyst with nitrous oxide (N₂O) oxidant under varying experimental conditions is investigated. The effect of various parameters like termperature, initial catalyst surface area, gas hourly space velocity (GHSV) and N₂O/CH₄ ratio in feed stream were studies with the aim of obtaining the maximum overall C₂₊ selectivity and yield. Results demonstrate that higher C₂₊ yields can be obtained by increasing the N₂O/CH₄ ratio. Complex dependence of C₂₊ yield from initial catalyst surface area, GHSV and oxidant concentration was observed. At highest oxidant concentration, the catalyst with initial higher surface area shows a higher yield. Over the catalyst with initial BET surface area=0.5m²/g, the C₂₊ yield 12.5% and selectively=32.5% was obtained (Temperature=870 °C, GHSV=14000hr⁻¹ and N₂O/CH₄ ratio=2/1.
- Subject
- catalytic oxidative coupling of methane; Na₂WO₄Mn/SiO₂ catalyst; C₂₊ yield
- Identifier
- http://hdl.handle.net/1959.13/1293811
- Identifier
- uon:18678
- Identifier
- ISBN:9781922107381
- Language
- eng
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