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Ni-based catalysts doped with Fe, Co, Cr, and Cu were successfully synthesized via an interesting impregnation method with EDTA for the catalytic decomposition of methane. XRD, N 2 sorption, SEM, H 2 -TPR, and TPO were accomplished for catalyst characterization. Among the Ni-doped catalyst series, the Ni-Cu catalyst carried out better toward the rest of the Ni catalysts, and a rising trend in the CH 4 conversion from 61 to 86 % was perceived with a rise in temperature in the range of 575 - 650 degrees C, which was associated with its high surface area (104.3 m 2 . g -1 ) and good low-temperature reducibility. Furthermore, the maximum CH 4 conversions of 28, 86, 81, and 78 % were acquired over the 50Ni-xCu/SiO 2 .MgO (x = 2.5, 5, 7.5, and 10 wt%) at 650 degrees C with a GHSV = 24000 mL h -1 g cat1 and CH 4 :N 2 = 3:17, respectively. The optimal specimen (5 wt% Cu) with a slow decline in activity depicted better durability in the stability test at 675 degrees C for 300 min compared to the quick deactivation of other Cu loadings within 150 min of reaction initiation. SEM micrograph of spent specimens with diverse Cu loadings indicated that the generated carbon is whisker type.
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FUEL
ISSN: 0016-2361
年份: 2024
卷: 372
7 . 4 0 0
JCR@2022
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