Preparation of supported ruthenium-based hydrogenation catalyst and its application in catalytic hydrogenation of dimethyl terephthalate
A hydrogenation catalyst and supported technology, which is applied in the field of hydrogenation catalyst and its preparation and application, can solve the problems of no breakthrough, activity and selectivity to be improved, and achieve the effect of easy operation, low cost and high selectivity
- Summary
- Abstract
- Description
- Claims
- Application Information
AI Technical Summary
Problems solved by technology
Method used
Image
Examples
Embodiment 1
[0044] A ruthenium-based hydrogenation catalyst having a ruthenium load is configured. The specific process is as follows:
[0045] 1) The ratio of ruthenium, potassium hydroxide and potassium hydroxide and potassium hydroxide were added to the crucible in the ratio of 1: 2.1: 3.2, and fired at 650 ° C to melt 1 h. Then it was added to 80 ° C to add an appropriate amount of hot water, stir until all solids dissolved.
[0046] 2) Pour the solution prepared in the three flask A and dropped into 15 wt% sodium hypochlorite solution by the funnel, and the amount of sodium hypochlorite is 1.5 times the amount of ruthenium. Then the temperature is warmed to 80 ° C, stirred, and the reaction is slowly added from the funnel from the funnel from the funnel for about 30 minutes. At this time, there will be a golden quadruple hydrazine gas.
[0047] 3) Weigh activated carbon corresponding to 5% load (France Arkema Ceca (3SW, Particle Size: 250-300MESH, N) 2 -BET: 980M 2 G -1 ASH Content: <3%)...
Embodiment 12
[0066] 100 g of terephthalate, 200 ml of THF and 5G Example 1 was put into high pressure hydrogenation reactor, and the reaction kettle was sealed, and the air was charged and stirred and stirred, at a temperature of 100 ° C, The hydrogen pressure is carried out under conditions of 4.0 MPa. Pre-reactions and in progress, in real time, the hydrogen-hydrogen-mixed pH is monitored online, ensuring that the hydrogen solution in the kettle is maintained at 7.5 to 8.0, and real-time regulation is carried out by the concentrated juice of the tea. After the hydrogen is not suction, the reactant is stopped in the hydrogenation content of 0 after the hydrogenation solution, resulting in 1,4-cyclohexyl methylene methyl methyl. The reaction time is 3 h, the conversion rate is 100%, and the selectivity is 99.4%.
Embodiment 13
[0068] 100 g of terephthalate, 100 ml of THF and 1G Example 6 was put into high pressure hydrogenation reactor, and the reactor was sealed, and the air was charged into hydrogen and stirred at the temperature of 120 ° C, Catalytic hydrogenation is carried out under conditions of 6.0 MPa of hydrogen pressure. Pre-reactions and in progress, real-time online pH, ensure that the hydrogen solution in the kettle is maintained at 7.5 to 8.0, and real-time regulation is carried out by linkage of Ruoya lobes. After the hydrogen is not suction, the reactant is stopped in the hydrogenation content of 0 after the hydrogenation solution, resulting in 1,4-cyclohexyl methylene methyl methyl. The reaction time is 4 h, the conversion rate is 100%, and the selectivity is 99.4%.
PUM
Property | Measurement | Unit |
---|---|---|
boiling point | aaaaa | aaaaa |
Abstract
Description
Claims
Application Information
- R&D Engineer
- R&D Manager
- IP Professional
- Industry Leading Data Capabilities
- Powerful AI technology
- Patent DNA Extraction
Browse by: Latest US Patents, China's latest patents, Technical Efficacy Thesaurus, Application Domain, Technology Topic, Popular Technical Reports.
© 2024 PatSnap. All rights reserved.Legal|Privacy policy|Modern Slavery Act Transparency Statement|Sitemap|About US| Contact US: help@patsnap.com