Claims
        
                - 1. A honeycomb-shaped adsorptive monolith having a plurality of passages therethrough for receiving a flow of fluid, having an open frontal area greater than 70% and up to 85%, and comprising a fired ceramic material and activated carbon dispersed throughout the ceramic material, the ceramic material forming a matrix and the activated carbon being supported by the matrix, wherein the fired ceramic material is comprised of ceramic forming material and a feldspathic mineral flux material and wherein the monolith has an axial crushing strength from about 500 to about 1600 psi.
 
                - 2. An adsorptive monolith as in claim 1 wherein the activated carbon is present in an amount from about 20 to about 70 parts by weight and the ceramic material is present in an amount from about 20 to about 60 parts, by weight.
 
                - 3. An adsorptive monolith as in claim 1 wherein the activated carbon is derived from materials selected from the group consisting of bituminous coal, lignite, peat, synthetic polymers, petroleum pitch, petroleum coke, coal tar pitch, and lignocellulosic materials.
 
                - 4. An adsorptive monolith as in claim 1 wherein the activated carbon is derived from lignocellulosic materials selected from the group consisting of wood, wood dust, wood flour, sawdust, coconut shell, fruit pits, nut shell, and fruit stones.
 
                - 5. An adsorptive monolith as in claim 1 wherein the activated carbon is characterized by a nitrogen B.E.T. surface area from about 600 to about 2000 m2/g.
 
                - 6. An adsorptive monolith as in claim 1 wherein the activated carbon is characterized by a nitrogen B.E.T. surface area from about 800 to 1800 m2/g.
 
                - 7. An adsorptive monolith as in claim 1 wherein the activated carbon is characterized by a nitrogen B.E.T. surface area from about 1000 to 1600 m2/g.
 
                - 8. An adsorptive monolith as in claim 1 wherein the activated carbon is characterized by having a particle size such that more than 40% by weight of the activated carbon passes through a 325 mesh screen.
 
                - 9. An adsorptive monolith as in claim 1 wherein the activated carbon is characterized by having a particle size such that more than 65% by weight of the activated carbon passes through a 325 mesh screen.
 
                - 10. An adsorptive monolith as in claim 1 wherein the feldspathic mineral is nepheline syenite.
 
                - 11. An adsorptive monolith as in claim 1 wherein the flux material further comprises sodium silicate.
 
                - 12. An adsorptive monolith as in claim 1 wherein the ceramic forming material is selected from the group consisting of ball clay, plastic kaolins, smectite clay minerals, bentonite, and combinations thereof.
 
                - 13. An adsorptive monolith as in claim 1 wherein the fired ceramic material further comprises a shrinkage reducing filler material.
 
                - 14. An adsorptive monolith as in claim 13 wherein the shrinkage reducing filler material is calcined kaolin clay.
 
        
                
                        Parent Case Info
        This application is a continuation of application Ser. No. 09/267,119 filed Mar. 10, 1999, now abandoned, which is a divisional application of application Ser. No. 08/636,700, filed Apr. 23, 1996 now U.S. Pat. No. 5,914,294 issued June 22, 1999.
                
                
                
                            US Referenced Citations (3)
            
                
                    
                        | Number | 
                        Name | 
                        Date | 
                        Kind | 
                    
                
                
                        
                            | 
4518704                             | 
                            Okabayashi et al. | 
                            May 1985 | 
                             | 
                        
                        
                            | 
5376609                             | 
                            Guile | 
                            Dec 1994 | 
                             | 
                        
                        
                            | 
5403809                             | 
                            Miller et al. | 
                            Apr 1995 | 
                             | 
                        
                
            
                        Continuations (1)
        
            
                
                     | 
                    Number | 
                    Date | 
                    Country | 
                
            
            
    
        | Parent | 
            09/267119 | 
        Mar 1999 | 
        US | 
    
    
        | Child | 
            09/535336 | 
         | 
        US |