Impact of potassium content on the structure of molybdenum nanophases in alumina supported catalysts and their performance in carbon monoxide hydrogenation
-
Add time:08/02/2019 Source:sciencedirect.com
The paper focuses on the effect of potassium content on the structure of alumina supported molybdenum sulphide catalysts and their performance in carbon monoxide hydrogenation at the conditions favouring olefin production. Molybdenum oxide is a major phase in the unpromoted calcined catalyst. The formation of mixed K–Mo, Mo–Al and K–Mo–Al oxides occurs in the calcined catalysts in the presence of relatively small amounts of potassium. The mixed potassium molybdenum oxides readily convert into mixed molybdenum sulphides after pre-treatment with H2S. The presence of potassium results in a signification increase in the concentration of basic sites in the sulphided catalyst, while their strength is not much affected by the promotion.The catalytic results suggest the presence of two types of sites associated to unpromoted molybdenum sulphide and K–Mo–S species. Higher olefin (and alcohol) production rates were observed on the mixed K–Mo sulphides, while carbon monoxide hydrogenation on upromoted molybdenum sulphide leads to methane. Molybdenum oxysulphide seems not to be relevant to olefin synthesis.
We also recommend Trading Suppliers and Manufacturers of Potassium monoxide (cas 12136-45-7). Pls Click Website Link as below: cas 12136-45-7 suppliers
Prev:Gaseous and particulate emissions from a chimneyless biomass cookstove equipped with a potassium catalyst
Next:Towards carbon monoxide sensors based on europium doped cerium dioxide) - 【Back】【Close 】【Print】【Add to favorite 】
- Related Information
- Potassium promotion effects in carbon nanotube supported molybdenum sulfide catalysts for carbon monoxide hydrogenation08/07/2019
- Outcome and prognostic factors of patients treated in the intensive care unit for carbon monoxide poisoning08/06/2019
- Serum lactate as a predictor of neurologic outcome in ED patients with acute carbon monoxide poisoning08/05/2019
- Potassium channels contribute to the increased sensitivity of the rabbit carotid artery to hydrogen sulfide in diabetes08/04/2019
- Towards carbon monoxide sensors based on europium doped cerium dioxide08/03/2019
- Gaseous and particulate emissions from a chimneyless biomass cookstove equipped with a potassium catalyst08/01/2019
- Carbon monoxide hydrogenation on potassium promoted Mo2N catalysts07/31/2019
- Inhaled carbon monoxide increases vasodilation in the microvascular circulation07/30/2019
-
Health and Chemical more >
-
Related Products
- Potassium (2S,3S)-3-(ethoxycarbonyl)oxirane-2-carboxylate
- Potassium (4-formylphenyl)trifluoroborate
- Potassium (bromomethyl)trifluoroborate
- Potassium (R)-((3-ethoxy-1-methyl-3-oxoprop-1-enyl)amino)(4-hydroxyphenyl)acetate
- Potassium (R)-(4-hydroxyphenyl)((3-methoxy-1-methyl-3-oxoprop-1-enyl)amino)acetate
- Potassium (R)-[(3-ethoxy-1-methyl-3-oxoprop-1-enyl)amino]phenylacetate
- Potassium [(cyanomethyl)thio]acetate
- Potassium 1,2,3,6-tetrahydro-5-nitro-2,6-dioxopyrimidine-4-carboxylate
- Potassium 2,2-dimethyl-1,3-dioxolane-4-carboxylate
- Potassium 2,3,3-trimethyl-3H-indole-5-sulfonate


