one with ag 2 o/sio 2 A Method for Removing Thiophene Sulfur from Fuel Oil Using Composite Airgel as Adsorbent
A composite aerogel and adsorbent technology, which is applied in the direction of solid adsorbent liquid separation, separation methods, chemical instruments and methods, etc. Low requirements, easy operation, mild adsorption conditions
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Embodiment 1~6
[0027] Embodiment 1~6: Ag of different silicon source and silver source 2 O / SiO 2 Adsorption Performance of Composite Airgel on Thiophene Sulfides in Simulated Gasoline
[0028] Ag prepared by sol-gel method 2 O / SiO 2 In the composite airgel, the silicon sources used include methyl orthosilicate, ethyl orthosilicate, silica sol, and water glass, and the silver sources include silver nitrate and silver acetate. The prepared Ag 2 O / SiO 2 The composite aerogel was subjected to the penetration adsorption desulfurization experiment, and the specific operation was as follows: In the fixed bed reactor, the bottom layer was filled with an appropriate amount of absorbent cotton, and then filled with 1 g of Ag 2 O / SiO 2 Airgel with appropriate amount of quartz sand. Before the adsorption experiment started, the packed adsorbent was fully wetted with n-heptane. Feed simulated gasoline, collect the adsorbed simulated gasoline at the outlet of the lower end of the reactor, and carr...
Embodiment 7~13
[0034] Embodiment 7~13: the Ag of different silicon-silver molar ratio 2 O / SiO 2 Adsorption Performance of Composite Airgel on Thiophene Sulfides in Simulated Gasoline
[0035] Choose Ag with silicon-silver molar ratio of 1, 2, 5, 20, 50, 100, 200 respectively 2 O / SiO 2 Airgel, through adsorption experiments on thiophene sulfides in simulated gasoline. The operation of the breakthrough adsorption experiment is the same as in Examples 1-6, and the adsorption results are shown in Table 3.
[0036] Table 3 Ag with different molar ratios of silicon to silver 2 O / SiO 2 Adsorption Performance of Composite Airgel on Thiophene Sulfides in Simulated Gasoline
[0037] Example
[0038] As can be seen from Table 3, Ag 2 O / SiO 2 The breakthrough adsorption capacity of airgel for thiophene and benzothiophene increases with the decrease of the molar ratio of silicon to silver, that is, the increase of silver content. When the silicon-silver molar ratio is less than 20, the...
Embodiment example 14~18
[0039] Implementation Cases 14~18: Effects of Different Space Velocities on Ag 2 O / SiO 2 Adsorption Performance of Composite Airgel on Thiophene Sulfides in Simulated Gasoline
[0040] Ag with a molar ratio of silicon to silver of 5 2 O / SiO 2 Composite airgel. at an airspeed of 1 h -1 、3h -1 、5h -1 , 8 hours -1 、10 h -1 Next, the breakthrough adsorption experiment was carried out on thiophene sulfides in simulated gasoline. The operation of the breakthrough adsorption experiment is the same as in Examples 1-6, and the adsorption results are shown in Table 4.
[0041] Table 4 Ag at different space velocities 2 O / SiO 2 Adsorption Performance of Composite Airgel on Thiophene Sulfides in Simulated Gasoline
[0042] Example
[0043] It can be seen from Table 4 that the breakthrough adsorption capacity of thiophene and benzothiophene will gradually increase with the decrease of space velocity. When the space velocity decreases to 5 h -1 After that, the breakth...
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