Gas distributor nozzle system with sintered metal filter media
US-2024075443-A1 · Mar 7, 2024 · US
US9382174B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9382174-B2 |
| Application number | US-201214007193-A |
| Country | US |
| Kind code | B2 |
| Filing date | Mar 23, 2012 |
| Priority date | Mar 25, 2011 |
| Publication date | Jul 5, 2016 |
| Grant date | Jul 5, 2016 |
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A method for producing monocyclic aromatic hydrocarbons includes a cracking reforming reaction step of bringing an oil feedstock into contact with a catalyst for monocyclic aromatic hydrocarbon production containing a crystalline aluminosilicate, and causing the oil feedstock to react, thereby obtaining a product containing monocyclic aromatic hydrocarbons having 6 to 8 carbon atoms, a hydrogenation reaction step of hydrogenating a product produced in the cracking reforming reaction step, a monocyclic aromatic hydrocarbon recovery step of recovering monocyclic aromatic hydrocarbons having 6 to 8 carbon atoms separated from a hydrogenation product obtained in the hydrogenation reaction step and a recycling step of returning a heavy fraction having 9 or more carbon atoms separated from the hydrogenation product obtained in the hydrogenation reaction step to the cracking reforming reaction step.
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The invention claimed is: 1. A method for producing monocyclic aromatic hydrocarbons having 6 to 8 carbon atoms from an oil feedstock having a 10 vol % distillation temperature of 140° C. or higher and a 90 vol % distillation temperature of 380° C. or lower, the method comprising: a cracking reforming reaction step of bringing the oil feedstock into contact with a catalyst for monocyclic aromatic hydrocarbon production containing a crystalline aluminosilicate, and causing the oil feedstock to react, thereby obtaining a product containing monocyclic aromatic hydrocarbons having 6 to 8 carbon atoms, a heavy fraction having 9 or more carbon atoms including polycyclic aromatic hydrocarbons, hydrogen, methane, ethane, ethylene and LPG; a hydrogenation reaction step of hydrogenating the product produced in the cracking reforming reaction step; a monocyclic aromatic hydrocarbon recovery step of recovering monocyclic aromatic hydrocarbons having 6 to 8 carbon atoms separated from a hydrogenation product obtained in the hydrogenation reaction step; and a recycling step of returning a heavy fraction having 9 or more carbon atoms separated from the hydrogenation product obtained in the hydrogenation reaction step to the cracking reforming reaction step, wherein, in the hydrogenation reaction step, the product produced in the cracking reforming reaction step is subjected to hydrogenation without separating the monocyclic aromatic hydrocarbons having 6 to 8 carbon atoms from the product, such that a concentration of the polycyclic aromatic hydrocarbons decreases and heat generation is suppressed in the hydrogenation reaction step. 2. The method for producing monocyclic aromatic hydrocarbons according to claim 1 , further comprising: a raw material mixing step of mixing a portion of the oil feedstock with the product produced in the cracking reforming reaction step. 3. The method for producing monocyclic aromatic hydrocarbons according to claim 1 , wherein the crystalline aluminosilicate contained in the catalyst for monocyclic aromatic hydrocarbon production used in the cracking reforming reaction step contains a medium-pore zeolite and/or a large-pore zeolite as main components. 4. The method for producing monocyclic aromatic hydrocarbons according to claim 1 , further comprising: a hydrogen recovery step of recovering hydrogen produced as a by-product in the cracking reforming reaction step from the hydrogenation product obtained in the hydrogenation reaction step; and a hydrogen supply step of supplying the hydrogen collected in the hydrogen recovery step to the hydrogenation reaction step. 5. The method for producing monocyclic aromatic hydrocarbons according to claim 1 , wherein a reaction temperature in the cracking reforming reaction step is set to 50 to 400° C. higher than a reaction temperature in the hydrogenation reaction step. 6. The method for producing monocyclic aromatic hydrocarbons according to claim 1 , wherein an amount of aromatic hydrocarbons having three or more rings in the oil feedstock is 25 vol % or less.
the catalyst containing other metals or compounds thereof · CPC title
according to the "fluidised-bed" technique · CPC title
with catalysts containing platinum group metals or compounds thereof · CPC title
Kerosene having a boiling range of about 180 - 230 °C · CPC title
of aromatic six-membered rings · CPC title
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