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The temperature-programmed desorption of N2 from a Ru/MgO catalyst used for ammonia synthesis
- Source :
- Catalysis Letters; September 1996, Vol. 36 Issue: 3-4 p229-235, 7p
- Publication Year :
- 1996
-
Abstract
- The temperature-programmed desorption (TPD) of N<subscript>2</subscript> from a Ru/MgO catalyst used for ammonia synthesis was studied in a microreactor flow system operating at atmospheric pressure. Saturation with chemisorbed atomic nitrogen (N-*) was achieved by exposure to N<subscript>2</subscript> at 573 K for 14 h and subsequent cooling in N<subscript>2</subscript> to room temperature. With a heating rate of 5 K/min in He, a narrow and fairly symmetric N<subscript>2</subscript> TPD peak at about 640 K results. From experiments with varying heating rates a preexponential factor A<subscript>des</subscript> = 1.5×10<superscript>10</superscript> molecules/(site s) and an activation energy E<subscript>des</subscript> = 158 kJ/mol was derived assuming secondorder desorption. This rate constant of desorption is in good agreement with results obtained with a Ru(0001) single crystal surface in ultra-high vacuum (UHV). The rate of dissociative chemisorption was determined by varying the N<subscript>2</subscript> exposure conditions. Determination of the coverage of N-<superscript>*</superscript> was based on the integration of the subsequently recorded N<subscript>2</subscript> TPD traces yielding A<subscript>ads</subscript> = 2×10<superscript>-6</superscript> (Pa s)<superscript>-1</superscript> and E<subscript>ads</subscript> = 27 kJ/mol. The corresponding sticking coefficient of about 10<superscript>-14</superscript> at 300 K is in agreement with the inertness of Ru(0001) in UHV towards dissociative chemisorption of N<subscript>2</subscript>. However, if the whole catalytic surface were in this state, then the resulting rate of N<subscript>2</subscript> dissociation would be several orders of magnitude lower than the observed rate of NH<subscript>3</subscript> formation. Hence only a small fraction of the total Rumetal surface area of Ru/MgO seems to be highly active dominating the rate of ammonia formation.
Details
- Language :
- English
- ISSN :
- 1011372X and 1572879X
- Volume :
- 36
- Issue :
- 3-4
- Database :
- Supplemental Index
- Journal :
- Catalysis Letters
- Publication Type :
- Periodical
- Accession number :
- ejs15206005
- Full Text :
- https://doi.org/10.1007/BF00807624