Claims
- 1. A sulfide catalyst for the conversion of sulfur dioxide to elemental sulfur comprising a catalyst selected from the group consisting of Fe4Co2Ni2Mo1Mn4O17.66-ySy, Fe4Co1Ni1Mo1Mn4O15.33-ySy, Fe4Co1Ni1Mo1Cr2Mn2O17.55-ySy, Fe4Co2Ni2Mo1Mn2S17.66, Fe4Co1Ni1Mn1Cu2V8O32.33-ySy, Fe4Co1Ni1Mo1Pr6Mn2O26.33-ySy, Fe4Co1Ni1Mo1La6Mn2O26.33-ySy, Fe4Co1Ni1Mo1Ce6Mn2O26.33-ySy, Fe4Co1Ni1Mo1Nd6Mn2O26.33-ySy, Fe4Co1Ni1Mn1Cu5Pr5O24.5-ySy, Fe1Co1Ni1Bi5Cu5O16.33-ySy, Fe1Co1Ni1Zn5Cu5O16.33-ySy, Fe1Co1Ni1Mg5Cu5O16.33-ySy, Fe1Co1Ni1Ca5Cu5O16.33-ySy, Fe1Co1Ni1Se5Cu5O16.33-ySy, Fe2Mg1Li1Pr2Cu2Bi2O12.67-ySy, Fe4Co1Ni1Mn1Cu2Li8O15.33-ySy, Fe2Mg1Na1Pr2Cu2Bi2O12.67-ySy, and Fe4Co1Ni1Mn1Cu2Na8O15.33-ySy.
- 2. A method for the conversion of sulfur dioxide to elemental sulfur comprising contacting a mixture of sulfur dioxide and a reducing gas with a catalyst comprising:A. Fe, Co or Ni sulfides, either singly or in combination, B. Mo, Mn, Cu, W, V or Cr sulfides, either singly or in combination, and C. a carrier, the composition of said catalyst being represented by the formula: FeaCobNicCraMneMofVgCuhWiOxSy wherein a, b, c, d, e and f are independently ranged between 0 and 30,g and h are between 0 and 10, i is between 0 and 5, wherein at least one of a, b, c≠0 and at least one of d, e, f, g, h, i≠0, andx+y is determined by the charge balance of the catalyst, and the proportion of x:y at the active surface of the catalyst is between about 0:1 and 1:0.1.
- 3. The method of claim 2, wherein the proportion of x:y is in the range of about 0:1 to 1:0.5.
- 4. The method of claim 3, wherein the proportion of x:y is in the range of about 0:1 to 1:1.
- 5. The method of claim 2, wherein the formulation of the catalyst is selected from the group consisting of Fe4Co2Ni2Mo1Mn4O17.66-ySy, Fe4Co1Ni1Mo1Mn4O15.33-ySy, Fe4Co1Ni1Mo1Cr2Mn2O17.55-ySy, Fe4Co2Ni2Mo1Mn2S17.66, an Fe4Co1Ni1Mn1Cu2V8O32.33-ySy.
- 6. The method of claim 2, additionally comprising a rare earth metal sulfide.
- 7. The method of claim 6, wherein the rare earth metal sulfide La, Ce, Pr, and Nd is selected from the group consisting of sulfides.
- 8. The method of claim 7, wherein the formulation of the catalyst is selected from the group consisting of Fe4Co1Ni1Mo1Pr6Mn2O26.33-ySy, Fe4Co1Ni1Mo1La6Mn2O26.33-ySy, Fe4Co1Ni1Mo1Ce6Mn2O26.33-ySy, Fe4Co1Ni1Mo1Nd6Mn2O26.33-ySy, and Fe4Co1Ni1Mn1Cu5Pr5O24.5-ySy.
- 9. The method of claim 2, additionally comprising an active metal sulfide.
- 10. The method of claim 9, wherein said active metal sulfide is selected from the group consisting of Zn, Mg, Ca, Se, Bi, Li, Na, K, and Cs sulfides.
- 11. The method of claim 10, wherein the formulation of the catalyst is selected from the group consisting of Fe1Co1Ni1Bi5Cu5O16.33-ySy, Fe1Co1Ni1Zn5Cu5O16.33-ySy, Fe1Co1Ni1Mg5Cu5O16.33-ySy, Fe1Co1Ni1Ca5Cu5O16.33-ySy, Fe1Co1Ni1Se5Cu5O16.33-ySy, Fe2Mg1Li1Pr2Cu2Bi2O12.67-ySy, Fe4Co1Ni1Mn1Cu2Li8O15.33-ySy, Fe2Mg1Na1Pr2Cu2Bi2O12.67-ySy, and Fe4Co1Ni1Mn1Cu2Na8O15.33-ySy.
- 12. A method for the conversion of sulfur dioxide to elemental sulfur which has a high conversion rate in the presence of low levels or in the absence of H2O and H2, comprising contacting a mixture of sulfur dioxide and a reducing gas with a catalyst comprising:A. a component selected from Li, Na, K, Cs, La, Ce, Pr, sulfides, or mixtures thereof, and B. a carrier, the composition of said catalyst being represented by the formula: AaRbOxSy where A is an alkali metal selected from the group consisting of Li, Na, K, and Cs,R is a rare earth metal selected from the group consisting of La, Ce, and Pr, a and b are independently ranged between 0 and 30, and at least one of a, b≠0, x+y is determined by the charge balance of the catalyst, and the proportion of x:y is between about 0:1 and 1:0.1, wherein the formulation is selected from the group consisting of Li2O1-ySy, Na2O1-ySy,K2O1-ySy, Cs2O1-ySy, Pr6O11-ySy, Ce6O11-ySy, and La6O11-ySy.
Government Interests
This invention was made with Government support under Contract No. DE-ACO3-76SF00098 between the U.S. Department of Energy and the University of California for the operation of Lawrence Berkeley National Laboratory. The Government has certain rights in this invention.
US Referenced Citations (13)