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Analysis of Fuel Cell Reformer Gases in Seconds Using the Agilent 3000 Micro Gas Chromatograph
Abstract:
Rapid and accurate determination of the composition of gases produced by a catalytic reformer is important for the development and optimization of new fuel cell designs. Gas chromatography, using a micro gas chromatograph and high-resolution columns, produces a complete analysis of fuel cell gases in less than 90 seconds. Connection of the gas chromatograph directly to the output of the reactor provides valuable information for evaluating performance of new catalyst formulations and reformer designs including optimization of reformer operation.
Keywords:
fuel cell, fuel cells, Micro GC, Agilent 3000, natural gas, permanent gases, CO, hydrogen linearity, backflush, molesieve, PLOT U, Fuel Cells
Publication Number:
5988-5296EN
Last Updated:
11/2/2009
Number of Pages:
8
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