A Study on the Combustion Characteristics over Pd/cordierite Catalyst
Wonihl Cho, Young-Sam Oh, Dal-Ryung Park, Youngsoon Baek, Hyo-Sun Pang, Young-Il Mok
Abstract
Wonihl Cho, Young-Sam Oh, Dal-Ryung Park, Youngsoon Baek, Hyo-Sun Pang, Young-Il Mok
Abstract
This study aims to investigate the application possibility on natural gas in relation to the catalytic combustion of methane on Pd/cordierite catalyst which is currently used as an automobile converter catalyst. The surface area of the catalyst tested was determined to be about 18.7㎡/g and to keep stable condition in structure at mid-high temperatures. The activation energy for methane combustion reaction was estimated to be 19.2 kcal/mol and a hysterisis on the catalyst activity was observed in terms of the catalyst deactivation as the reaction temperature was varied for the methane combustion. On Pd/cordierite catalyst, The characteristics of methane combustion were studied as functions of space velocity and air/fuel ratios below 700.
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This study aims to investigate the application possibility on natural gas in relation to the catalytic combustion of methane on Pd/cordierite catalyst which is currently used as an automobile converter catalyst. The surface area of the catalyst tested was determined to be about 18.7㎡/g and to keep stable condition in structure at mid-high temperatures. The activation energy for methane combustion reaction was estimated to be 19.2 kcal/mol and a hysterisis on the catalyst activity was observed in terms of the catalyst deactivation as the reaction temperature was varied for the methane combustion. On Pd/cordierite catalyst, The characteristics of methane combustion were studied as functions of space velocity and air/fuel ratios below 700.
Key concepts: Cordierite, Catalysis, Methane, Catalytic combustion, Combustion, Space velocity, Natural gas, Materials science