Claims
- 1. A process for the production of gaseous mixtures comprising H.sub.2 +CO by the partial oxidation of a fuel feedstock comprising sulfur-containing heavy liquid hydrocarbonaceous fuel and/or solid carbonaceous fuel, and said fuels having nickel, vanadium and silicon-containing ashes, and said feedstock includes a minimum of about 0.5 ppm nickel, a minimum of about 0.2 wt. % of sulfur, a minimum of about 1.0 ppm of vanadium, and a minimum of about 5.0 ppm of silicon; said process comprising:
- (1) mixing together a copper and/or cobalt-containing material with said fuel feedstock; wherein the weight ratio of copper and/or cobalt to nickel in said mixture is in the range of about 0.2 to 10; and the weight ratio of copper and/or cobalt to silicon in said mixture is in the range of about 0.0001 to 0.04;
- (2) reacting said mixture from (1) by partial oxidation with a free-oxygen containing gas in a reducing atmosphere and in the presence of a temperature moderator at a pressure in the range of about 2 to 250 atmospheres in a down-flowing free-flow unobstructed vertical reaction zone with refractory lined walls of a partial oxidation gas generator and at a temperature in the range of about 1800.degree. F. to 2900.degree. F., and an equilibrium oxygen concentration is provided in the gas phase in the reaction zone with a partial pressure in the range of about 1.7.times.10.sup.-15 to 2.3.times.10.sup.-2 atmospheres; an equilibrium sulfur concentration is provided in the gas phase in the reaction zone with a partial pressure in the range of about 2.53.times.10.sup.-7 to 8.1.times.10.sup.-2 atmospheres, the free O/C atomic ratio is in the range of about 0.3 to 1.2 thereby producing a hot raw effluent gas stream comprising H.sub.2 +CO and entrained slag; and converting about 90 to 99.9 wt. % of the carbon in said fuel feedstock into carbon oxides; and where in said reaction zone said copper and/or cobalt-containing material combines with at least a portion of said nickel, sulfur, and silicon constituents in the fuel feedstock to produce said slag with at least a portion depositing on the inside walls of said reaction zone and comprising the following phases in wt. %: (i) about 0.1 to 10 wt. % of a Cu-Ni alloy phase and/or Co-Ni alloy phase, wherein the weight ratio of Cu and/or Co to Ni is in the range of about 0.2 to 0.9; (ii) from about 5.0 to 85 wt. % of a copper silicate and/or cobalt silicate phase in which Cu and/or Co is present in the range of about 0.01 to 2.0 wt. %; (iii) from about 2.5 to 45 wt. % of a spinel phase in which the following are present in wt. %: V 5-60, Fe 7-65, Al 0.1-40, Mg 0.1-35, Cr 0.01-42, and others 0.1-10; and (iv) the remainder of the slag comprises a fluid oxysulfide phase comprising the sulfides of Cu and/or Co, and Fe; and wherein said slag contains substantially no Ni.sub.3 S.sub.2 and there is a reduction in the mole ratio H.sub.2 S +COS/H.sub.2 +CO in the raw effluent gas stream over said mole ratio when said partial oxidation reaction takes place in the absence of said Cu and/or Co-containing materials, and (3) separating non-gaseous materials containing substantially no Ni.sub.3 S.sub.2 from said hot raw effluent gas stream.
- 2. The process of claim 1 provided with the steps of stopping said partial oxidation reaction after about 1 to 180 days, changing the atmosphere in said reaction zone from reducing to oxidizing thereby oxidizing the slag on the walls of said reaction zone and thereby reducing its fusion temperature and viscosity, whereby molten slag containing substantially no Ni.sub.3 S.sub.2 flows by gravity down the inside walls of the reaction zone.
- 3. The process of claim wherein said copper and/or cobalt-containing material comprises compounds of copper and/or cobalt selected from the group consisting of oxides, sulfide, sulfate, carbonate, cyanide, chloride, nitrate, hydroxide, ferro or ferri cyanide, phosphate and mixtures thereof.
- 4. The process of claim 1 wherein said copper and/or cobalt-containing material is an organic compound selected from the group consisting of naphthenate, oxalate, acetate, citrate, benzoate, oleate, tartrate, citrate, butyrate, formate and mixtures thereof.
- 5. The process of claim 1 wherein said copper and/or cobalt-containing material in (1) comprises and inorganic or organic compounds of copper.
- 6. The process of claim 1 wherein said copper and/or cobalt-containing material in (1) comprises concentrated copper ore comprising at least 20 weight % of copper.
- 7. The process of claim 6 wherein said concentrated copper ore is a mixture of the sulfides of copper, copper-iron and iron with a small amount of gangue minerals.
- 8. The process of claim 1 wherein said copper and/or cobalt-containing material comprises copper sulfide and/or copper oxide minerals.
- 9. The process of claim 1 wherein said copper and/or cobalt-containing material comprises copper sulfide minerals selected from the group consisting of bornite, chalcopyrite, tetrahedrite, tennentite, chalcocite, covellite, digenite and mixtures thereof.
- 10. The process of claim 1 wherein said copper and/or cobalt-containing material comprises copper oxide minerals selected from the group consisting of cuprite, tenorite, malachite, azurite, brochantite, atacamite, chrysocolla and mixtures thereof.
- 11. The process of claim 1 wherein said sulfur-containing heavy liquid hydrocarbonaceous fuel having a nickel, vanadium, and silicon-containing ash feedstock is selected from the group consisting of virgin crude, crude residue from petroleum distillation and cracking process operations, petroleum distillate, reduced crude, whole crude, asphalt, coal tar, coal derived oil, shale oil, tar sand oil and mixture thereof.
- 12. The process of claim 1 wherein said sulfur-containing heavy liquid hydrocarbonaceous fuel having a nickel, vanadium, and silicon-containing ash is a pumpable slurry of petroleum coke in water, liquid hydrocarbon fuel or mixtures thereof.
- 13. The process of claim 1 where in step (1) said copper and/or cobalt-material is introduced into the feed to or the bottoms from a vacuum distillation unit.
- 14. The process of claim 1 wherein said mixture of copper and/or cobalt-containing material and feedstock from step (1) has a particle size so that about 100% passes through a sieve of the size ASTM E-11 Standard Sieve Designation in the range of about 424 microns to 38 microns, or below.
- 15. The process of claim 1 wherein substantially all of the sulfur in said feedstock is converted into the fluid oxysulfide phase in (2) (iv) and leaves the reaction zone in the slag.
- 16. The process of claim wherein said fuel feedstock contains about 0.2 to 6.5 wt. % sulfur and about 5.0 to 20,000 ppm of silicon or more, and the molten slag produced in step (2) comprises about 0 to 5 wt. % of said fluid oxysulfide phase, and at least about 0.1 to 10 wt. % of said Cu-Ni alloy phase.
- 17. The process of claim 1 wherein the molten slag is produced in step (2) with a reduced viscosity in comparison with molten slag produced by the same partial oxidation process but without the addition of said copper and/or cobalt-containing material.
- 18. A process for the production of gaseous mixtures comprising H.sub.2 +CO by the partial oxidation of a fuel feedstock comprising sulfur-containing petroleum coke having an ash comprising nickel, vanadium and silicon; and said feedstock includes a minimum of about 0.5 ppm nickel, a minimum of about 0.2 wt. % of sulfur, a minimum of about 1.0 ppm of vanadium, and a minimum of about 5.0 ppm of silicon; said process comprising:
- (1) mixing together a copper and/or cobalt-containing material with a sulfur-containing heavy liquid hydrocarbonaceous fuel having a nickel, vanadium and silicon containing ash; wherein the weight ratio of copper and/or cobalt to nickel in said mixture is in the range of about 0.2 to 10; and the weight ratio of copper and/or cobalt to silicon in said mixture is in the range of about 0.0001 to 0.04;
- (2) coking said mixture from step (1) to produce sulfur-containing petroleum coke having a nickel, vanadium, and silicon-containing ash and having dispersed therein said copper and/or cobalt-containing material;
- (3) introducing the petroleum coke from step (2) into a free-flow refractory lined partial oxidation reaction zone as a pumpable slurry of petroleum coke in water, liquid hydrocarbonaceous fluid or mixtures thereof, or as substantially dry petroleum coke entrained in a gaseous transport medium;
- (4) reacting said slurry of petroleum coke from step (3) by partial oxidation with a free-oxygen containing gas in a reducing atmosphere and in the presence of a temperature moderator at a pressure in the range of about 2 to 250 atmospheres in a down-flowing free-flow unobstructed vertical reaction zone with refractory lined walls of a partial oxidation gas generator and at a temperature in the range of about 1800.degree. F. to 2900.degree. F., and an equilibrium oxygen concentration is provided in the gas phase in the reaction zone with a partial pressure in the range of about 1.7.times.10.sup.-15 to 2.3.times.10.sup.-8 atmospheres; an equilibrium sulfur concentration is provided in the gas phase in the reaction zone with a partial pressure in the range of about 2.53.times.10.sup.-7 to 8.1.times.10.sup.-2 atmospheres, the free O/C atomic ratio is in the range of about 0.3 to 1.2, the H.sub.2 O/liquid hydrocarbonaceous fuel and/or solid carbonaceous fuel weight ratio is in the range of about 0.1 to 5.0; thereby producing a hot raw effluent gas stream comprising H.sub.2 +CO and entrained slag; and converting about 90 to 99.9 wt. % of the carbon in said fuel feedstock into carbon oxides; and where in said reaction zone said copper and/or cobalt-containing material combines with at least a portion of said nickel, sulfur, and silicon constituents in the fuel feedstock to produce said slag with at least a portion depositing on the inside walls of said reaction zone and comprising the following phases in wt. %: (i) about 0.1 to 10 wt. % of a Cu-Ni alloy phase and/or Co-Ni alloy phase, wherein the weight ratio of Cu and/or Co to Ni is in the range of about 0.2 to 0.9; (ii) from about 5.0 to 85 wt. % of a copper silicate and/or cobalt silicate phase in which Cu and/or Co is present in the range of about 0.01 to 2.0 wt. %; (iii) from about 2.5 to 45 wt. % of a spinel phase in which the following are present in wt. %: V 5-60, Fe 7-65, Al 0.1-40, Mg 0.1-35, Cr 0.01-42, and others 0.1-10; and (iv) the remainder of the slag comprises a fluid oxysulfide phase comprising the sulfides of Cu and/or Co, and Fe; and wherein said slag contains substantially no Ni.sub.3 S.sub.2 and there is a reduction in the mole ratio H.sub.2 S +COS/H.sub.2 +CO in the raw effluent gas stream over said mole ratio when said partial oxidation reaction takes place in the absence of said Cu and/or Co-containing materials; and
- (5) separating non-gaseous materials containing substantially no Ni.sub.3 S.sub.2 from said hot raw effluent gas stream.
- 19. The process of claim 18 wherein said copper and/or cobalt-containing material comprises copper and/or copper compounds selected from the group consisting of oxides, sulfide, sulfate, carbonate, cyanide, chloride, nitrate and mixtures thereof.
- 20. The process of claim 18 wherein said mixture of copper and/or cobalt-containing material and feedstock from step (1) has a particle size so that 100% passes through a sieve of the size ASTM E-11 Standard Designation in the range of about 425 microns to 38 microns or below.
- 21. The process of claim 18 wherein said copper and/or cobalt-containing material includes an inorganic or organic compound of copper and/or cobalt.
- 22. The process of claim 18 wherein said sulfur-containing heavy liquid hydrocarbonaceous fuel having a nickel, vanadium, and silicon-containing ash is a high boiling liquid petroleum feed to or the bottoms from a vacuum tower or a fractionator.
- 23. The process of claim 18 where in step (2) the mixture from step (1) at a temperature in the range of about 650.degree. F. to 930.degree. F. is introduced into a delayed coking zone where at a temperature in the range of about 800.degree. F. to 895.degree. F. and a pressure in the range of about 20 to 60 psig, uncondensed hydrocarbon effluent vapor and steam are removed overhead and said sulfur-containing petroleum coke having a nickel, vanadium, and silicon-containing ash and having uniformly dispersed therein said copper and/or cobalt-containing material is removed from the bottom.
- 24. The process of claim 18 where in step (2) the mixture from step (1) at a temperature in the range of about 550.degree. F. to 750.degree. F. is introduced into a fluidized bed coking zone where at a temperature in the range of about 1000.degree. F. to 1200.degree. F. and a pressure in the range of about 10 to 20 psig, uncondensed hydrocarbon effluent vapor and steam are removed overhead and said petroleum coke is removed from the bottom.
- 25. The process of claim 18 where in step (5) said nongaseous materials are separated from said hot effluent gas stream by contacting the gas stream from step (4) with a water or an oil scrubbing medium.
Parent Case Info
This is a continuation-in-part of coassigned application Ser. No. 07/032,157, filed Mar. 27, 1987 now U.S. Pat. No. 4,774,021.
US Referenced Citations (3)
Number |
Name |
Date |
Kind |
4654164 |
Najjar |
Mar 1987 |
|
4732700 |
Najjar et al. |
Mar 1988 |
|
4774021 |
Najjar et al. |
Sep 1988 |
|
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
32157 |
Mar 1987 |
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