US2016121307A1PendingUtilityA1

Metal tungstates for use as nitrogen oxides reduction catalysts

Assignee: TOYOTA ENG & MFG NORTH AMERICAPriority: Oct 31, 2014Filed: Oct 31, 2014Published: May 5, 2016
Est. expiryOct 31, 2034(~8.3 yrs left)· nominal 20-yr term from priority
B01D 53/9413B01D 2255/20746B01J 23/002B01J 23/34B01D 2255/40B01D 2255/20738B01D 2255/20753C01G 41/00B01D 2255/20761C01G 49/0018B01D 2251/208C01P 2004/03C01P 2006/12C01G 51/00B01J 23/888C01G 53/00B01J 37/0238B01D 2255/2073B01D 2255/20776B01J 37/346C01G 45/00C01P 2004/64B01J 37/10B01J 2235/00B01J 35/45B01J 35/70B01J 2235/30B01J 35/77B01D 53/945C01G 41/02C01G 45/12B01J 35/023C01G 51/40C01G 53/40B01J 35/612B01J 35/613
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Claims

Abstract

A nitrogen oxide (NOx) reduction catalyst that includes a transition metal tungstate having the formula: MWO 4 wherein M is selected from the group consisting of Mn, Fe, Co, Ni, and Cu. The catalyst may be utilized in various environments including oxygen rich and oxygen deficient environments.

Claims

exact text as granted — not AI-modified
Having described our invention, we claim: 
     
         1 . A nitrogen oxide (NOx) reduction catalyst comprising:
 a transition metal tungstate having the formula: MWO 4  wherein M is selected from the group consisting of Mn, Fe, Co, Ni, and Cu.   
     
     
         2 . The nitrogen oxide (NOx) reduction catalyst of  claim 1  wherein the transition metal tungstate includes a crystalline structure. 
     
     
         3 . The nitrogen oxide (NOx) reduction catalyst of  claim 1  wherein M is selected from Mn, Fe, Co and Cu and the catalyst reduces nitrogen oxide (NOx) in the presence of oxygen. 
     
     
         4 . The nitrogen oxide (NOx) reduction catalyst of  claim 1  wherein M is selected from Ni and Co and the catalyst reduces nitrogen oxide (NOx) in an oxygen deficient environment. 
     
     
         5 . The nitrogen oxide (NOx) reduction catalyst of  claim 1  wherein the transition metal tungstate has a particle size of from 10 to 60 nanometers. 
     
     
         6 . The nitrogen oxide (NOx) reduction catalyst of  claim 1  wherein the catalyst has the formula: MnWO 4  and the catalyst reduces nitrogen oxide (NOx) in the presence of oxygen. 
     
     
         7 . The nitrogen oxide (NOx) reduction catalyst of  claim 6  wherein the catalyst has significant selectivity to NOx conversion in the presence of oxygen such that the nitrogen oxide (NOx) conversion and oxygen conversion are approximately equal to one another. 
     
     
         8 . The nitrogen oxide (NOx) reduction catalyst of  claim 6  wherein the catalyst has a nitrogen oxide (NOx) conversion that is greater than 90 percent. 
     
     
         9 . A nitrogen oxide (NOx) reduction catalyst comprising:
 a transition metal tungstate having the formula: MWO 4  wherein M is selected from the group consisting of Mn, Fe, Co and Cu wherein the catalyst reduces nitrogen oxide (NOx) in an oxygen rich environment including hydrocarbon fuel.   
     
     
         10 . A nitrogen oxide (NOx) reduction catalyst comprising:
 a transition metal tungstate having the formula: MWO 4  wherein M is selected from the group consisting of Ni and Co wherein the catalyst reduces nitrogen oxide (NOx) in an oxygen deficient environment including hydrocarbon fuel.   
     
     
         11 . A process of reducing nitrogen oxide (NOx) including the steps of:
 providing a gaseous exhaust mixture including nitrogen oxide (NOx) and hydrocarbon fuel;   providing a nitrogen oxide (NOx) reduction catalyst including a transition metal tungstate having the formula: MWO 4  wherein M is selected from the group consisting of Mn, Fe, Co, Ni, and Cu;   contacting the gaseous exhaust mixture with a surface of the nitrogen oxide (NOx) reduction catalyst forming nitrogen, water and carbon dioxide.   
     
     
         12 . The process of  claim 11  wherein the gaseous exhaust mixture further includes oxygen. 
     
     
         13 . The process of  claim 12  wherein the nitrogen oxide (NOx) reduction catalyst includes a transition metal tungstate having the formula: MWO 4  wherein M is selected from the group consisting of Mn, Fe, Co and Cu. 
     
     
         14 . The process of  claim 11  wherein the nitrogen oxide (NOx) reduction catalyst includes a transition metal tungstate having the formula: MWO 4  wherein M is selected from the group consisting of Ni and Co and the catalyst reduces nitrogen oxide (NOx) in an oxygen deficient environment.

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