Claims
- 1. A process for preparing a mesophase pitch for the production of high-performance carbon fibers which comprises
- A. a first continuous step of heat-treating a combined feed consisting of
- a. a heavy oil or pitch of coal or petroleum origin which is substantially free from a material insoluble in a monocyclic aromatic hydrocarbon solvent, and
- b. the component substantially soluble in the monocyclic aromatic hydrocarbon solvent which is recycled from the fourth continuous step hereinafter described, in a tubular heater under an increased pressure at a temperature of 400.degree.-600.degree. C., thus producing 3-50 wt % of xylene-insoluble component in the heat-treated material without substantially producing a quinoline-insoluble component,
- B. a second continuous step of distilling or flashing said heat-treated material obtained in the first step at a temperature below 350.degree. C. under normal pressure, or at equivalent conditions, to remove a portion of light fractions, thus obtaining a thermal-cracked heavy component,
- C. a third continuous step of adding to said thermal-cracked heavy component 1-5 times by weight of a monocyclic aromatic hydrocarbon solvent or other solvent having the same degree of dissolving ability with the monocyclic aromatic hydrocarbon solvent and separating and collecting an insoluble component to obtain a high-molecular-weight bituminous material,
- D. a fourth continuous step of removing the solvent from the mother liquor which has been obtained from the mixture of the solvent and the thermal-cracked heavy component by removing the insoluble component contained therein in the third step, thus obtaining a component substantially soluble in said monocyclic aromatic hydrocarbon solvent, recycling whole or a portion of said component substantially soluble in said monocyclic aromatic hydrocarbon solvent to the first step,
- E. a fifth step of hydrogenating said high-molecular-weight bituminous material obtained in said third step by heat-treating the same in the presence of a hydrogen-donating solvent and removing said hydrogen-donating solvent to obtain a substantially optically isotropic hydrogenating pitch, and
- F. a sixth step of heat-treating said substantially isotropic hydrogenated pitch under the conditions of a reduced or normal pressure and a temperature of 350.degree.-500.degree. C. while flowing an inert gas or a super-heated vapor, thereby converting said hydrogenated pitch into a mesophase pitch.
- 2. The process as defined in claim 1, wherein said combined feed used as the raw material contains 10-70% by weight of an aromatic oil having a boiling range of within 200.degree.-350.degree. C. which does not substantially produce a component insoluble in a monocyclic aromatic hydrocarbon solvent in said heat treatment within the tubular heater.
- 3. The process as claimed in claim 1, wherein the first continuous step is conducted in the addition of not more than equivalent amount by weight of an aromatic oil to the amount of said combined feed, said aromatic oil has a boiling range of within 200.degree.-350.degree. C. and does not substantially produce a component insoluble in a monocyclic aromatic hydrocarbon solvent in said heat treatment within the tubular heater.
- 4. The process as claimed in claim 1, wherein said heat treatment using a tubular heater in said first step is carried out under the conditions of a temperature of 400.degree.-600.degree. C. and pressure of 1-100 Kg/cm.sup.2 G at the outlet of said tubular heater.
- 5. The process as claimed in claim 4, wherein said temperature is 450.degree.-550.degree. C. and said pressure is 2-50 Kg/cm.sup.2 G.
- 6. The process as claimed in claim 1, wherein the amount of said component substantially soluble in the monocyclic aromatic hydrocarbon solvent produced in the fourth step to be recycled to the first step is equivalent or more by weight of the amount of the heavy oil or pitch.
- 7. The process as claimed in claim 6, wherein said amount to be recycled is 2-6 times the amount by weight of said raw material.
- 8. The process as claimed in claim 1, wherein said fifth step is carried out continuously using a tubular heater in the presence of a hydrogen-donating solvent of 1-5 times by weight of said high-molecular-weight bituminous material under the conditions of a temperature of 350.degree.-500.degree. C. and pressure of 20-100 Kg/cm.sup.2 G, and the hydro-treated liquid thus obtained is subjected to distillation using a distillation column under the conditions of a pressure of 0-3 Kg/cm.sup.2 A and temperature of 300.degree.-530.degree. C., thus continuously obtaining a hydrogenated pitch from the bottom of said distillation column.
- 9. The process as claimed in claim 1, wherein said monocyclic aromatic hydrocarbon solvent is at least one selected from the group consisting of benzene, toluene, and xylene.
- 10. The process as claimed in claim 1, wherein said solvent used in said third step is a monocyclic aromatic hydrocarbon solvent.
- 11. The process as claimed in claim 1, wherein said heavy oil or pitch charged to said first step as a raw material and said thermal-cracked heavy component obtained in said second step contain at least 10 wt % of a light fraction having a boiling range of within 200.degree.-350.degree. C., and have a viscosity of not more than 1,000 cSt at 100.degree. C.
- 12. The process as claimed in claim 1, wherein said high-molecular-weight bituminous material obtained in said third step contains not more than 1 wt % of quinoline-insoluble component and at least 40 wt % of xylene-insoluble component, and is a substantially optically isotropic high-molecular-weight bituminous material.
- 13. The process as defined in claim 1, wherein said hydrogenated pitch is a substantially optically isotropic, has a softening point measured by the Ring and Ball method of 100.degree.-200.degree. C., and contains not more than 1 wt % of quinoline-insoluble component and at least 40 wt % of xylene-insoluble component.
- 14. The process as claimed in claim 1, wherein said mesophase pitch has characteristics of a Mettler method softening point of below 310.degree. C., mesophase content of not less than 90% in terms of the area percentage of the portion exhibiting optical anisotropy when observed by a polarizing microscope, and of not more than 10 wt % of quinoline-insoluble content, not more than 10 wt % of xylene-soluble content and not less than 25 wt % of pyridine-insoluble content.
- 15. A process for preparing a mesophase pitch for the production of high-performance carbon fibers which comprises
- A. a first continuous step of heat-treating a combined feed consisting of
- a. a heavy oil or pitch of coal or petroleum origin which is substantially free form a material insoluble in a monocyclic aromatic hydrocarbon solvent, and
- b. the component substantially soluble in the monocyclic aromatic hydrocarbon solvent which is recycled form the fourth continuous step hereinafter described in a tubular heater under an increased pressure at a temperature of 400.degree.-600.degree. C., thus producing 3-30 wt % of xylene-insoluble component in the heat-treated material without substantially producing a quinoline-insoluble component,
- B. a second continuous step of distilling or flashing said heat-treated material obtained in the first step at a temperature below 350.degree. C. under normal pressure, or at equivalent conditions, to remove a portion of light fractions, thus obtaining a thermal-cracked heavy component,
- C. a third continuous step of adding to said thermal-cracked heavy component 1-5 times by weight of a monocyclic aromatic hydrocarbon solvent or other solvent having the same degree of dissolving ability with the monocyclic aromatic hydrocarbon solvent, and separating and collecting an insoluble component to obtain a high-molecular-weight bituminous material,
- D. a fourth continuous step of removing the solvent from the mother liquor which has been obtained from the mixture of the solvent and the thermal-cracked heavy component by removing the insoluble component contained therein in the third step, thus obtaining a component substantially soluble in said monocyclic aromatic hydrocarbon solvent, recycling whole or a portion of said component substantially soluble in said monocyclic aromatic hydrocarbon solvent to the first step,
- E. a fifth step of hydrogenating said high-molecular-weight bituminous material obtained in said third step by heat-treating the same in the presence of a hydrogen-donating solvent, thereby obtaining a hydro-treated liquid, or further removing said hydrogen-donating solvent from said hydro-treated liquid to obtain a substantially optically isotropic hydrogenated pitch, and
- F. a sixth step of heat-treating said hydro-treated liquid or hydrogenated pitch by dispersing it by centrifugal force generated by a rotating structure in a gas stream of an inert gas or super-heated vapor as fine oil droplets at 350.degree.-500.degree. C. under a reduced or normal pressure, and bringing the dispersed fine oil droplets into contact with the inert gas or super-heated vapor, collecting said dispersed fine droplets and repeating said dispersing and collecting operations at least once more under the same condition as above, thereby converting said hydro-treated liquid or hydrogenated pitch into a mesophase pitch.
- 16. The process as claimed in claim 15, wherein said combined feed used as the raw material contains 10-70% by weight of an aromatic oil having a boiling range of within 200.degree.-350.degree. C. which does not substantially produce a component insoluble in a monocyclic aromatic hydrocarbon solvent in said heat treatment within the tubular heater.
- 17. The process as claimed in claim 15, wherein the first continuous step is conducted in the addition of not more than equivalent amount by weight of an aromatic oil to the amount of said combined feed, said aromatic oil has a boiling range of within 200.degree.-350.degree. C. and does not substantially produce a component insoluble in a monocyclic aromatic hydrocarbon solvent in said heat treatment within the tubular heater.
- 18. The process as claimed in claim 15, wherein said heat treatment using a tubular heater in said first step is carried out under the conditions of a temperature of 400.degree.-600.degree. C. and pressure of 1-100 Kg/cm.sup.2 G at the outlet of said tubular heater.
- 19. The process as claimed in claim 18, wherein said temperature is 450.degree.-550.degree. C. and said pressure is 2-50 Kg/cm.sup.2 G.
- 20. The process as claimed in claim 15, wherein the amount of said component substantially soluble in the monocyclic aromatic hydrocarbon solvent produced in the fourth step to be recycled to the first step is equivalent or more by weight of the amount of the heavy oil or pitch.
- 21. The process as claimed in claim 20, wherein said amount to be recycled is 2-6 times the amount by weight of said raw material.
- 22. The process as claimed in claim 15, wherein said fifth step is carried out continuously using a tubular heater in the presence of a hydrogen-donating solvent of 1-5 times by weight of said high-molecular-weight bituminous material under the conditions of a temperature of 350.degree.-500.degree. C. and pressure of 20-100 Kg/cm.sup.2 G, thus continuously obtaining a hydro-treated liquid.
- 23. The process as claimed in claim 15, wherein said fifth step is carried out continuously using a tubular heater int eh presence of a hydrogen-donating solvent of 1-5 times by weight of said high molecular-weight bituminous material under the conditions of a temperature of 350.degree.-500.degree. C. and pressure of 20-100 Kg/cm.sup.2 G, and the hydro-treated liquid thus obtained is subjected to distillation using a distillation column under the conditions of a pressure of 0-3 Kg/cm.sup.2 A and temperature of 300.degree.-530.degree. C., thus continuously obtaining a hydrogenated pitch form the bottom of said distillation column.
- 24. The process as claimed in claim 15, wherein said monocyclic aromatic hydrocarbon solvent is at least one selected from the group consisting of benzene, toluene, and xylene.
- 25. The process as claimed in claim 15, wherein said solvent used in said third step is a monocyclic aromatic hydrocarbon solvent.
- 26. The process as claimed in claim 15, wherein said heavy oil or pitch charged to said first step as a raw material and said thermal-cracked heavy component obtained in said second step contain at least 10 wt % of a light fraction having a boiling range of within 200.degree.-350.degree. C., and have a viscosity of not more than 1,000 cSt at 100.degree. C.
- 27. The process as claimed in claim 15, wherein said high-molecular weight bituminous material obtained in said third step contains not more than 1 wt % of quinoline-insoluble component and at least 40 wt % of xylene-insoluble component, and is a substantially optically isotropic high-molecular-weight bituminous material.
- 28. The process as claimed in claim 15, wherein said hydrogenated pitch is a substantially optically isotropic, has a softening point measured by the Ring and Ball method of 100.degree.-200.degree. C., and contains not more than 1 wt % of quinoline-insoluble component and at least 40 wt % of xylene-insoluble component.
- 29. The process as claimed in claim 15, wherein said mesophase pitch has characteristics of a Mettler method softening point of below 310.degree. C., mesophase content of not less than 90% in terms of the area percentage of the portion exhibiting optical anisotropy when observed by a polarizing microscope, and of not more than 10 wt % of quinoline-insoluble content, not more than 10 wt % of xylene-soluble content and not less than 25 wt % of pyridine-insoluble content.
Priority Claims (2)
Number |
Date |
Country |
Kind |
62-152064 |
Jun 1987 |
JPX |
|
62-287173 |
Nov 1987 |
JPX |
|
Parent Case Info
This application is a division of application Ser. No. 07/504,723, filed Apr. 3,1990, now abandoned, which is a continuation of U.S. Ser. No. 07/202,126, filed Jun. 2, 1988 now abandoned.
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4663021 |
Arai et al. |
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4820401 |
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Divisions (1)
|
Number |
Date |
Country |
Parent |
504723 |
Apr 1990 |
|
Continuations (1)
|
Number |
Date |
Country |
Parent |
202126 |
Jun 1988 |
|