Korean Journal of Chemical Engineering, Vol.21, No.1, 140-146, January, 2004
Nickel-Calcium Phosphate/Hydroxyapatite Catalysts for Partial Oxidation of Methane to Syngas: Effect of Composition
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Nickel-calcium phosphate/hydroxyapatite catalysts have recently been reported to exhibit high activity and selectivity in partial oxidation of methane (POM). In this work the optimum composition was determined. The optimum mole ratio of Ca/PO4 was around 10/6 and that of Ni/PO4 was in a range from 1.0/6 to 3.0/6 with the optimum Ca/PO4, and the activity could be related with the amount of metallic nickel. In a temperature range from ca. 400 to 700 K, an apparent autothermal reaction was observed to occur in some cases. This is due to the fact that the actual catalyst temperature is higher than the measured temperature, which comes from the exothermic nature of the reaction. The mixing sequence of the precursors during the catalyst preparation does little affect the catalyst activity and characteristics. Deactivation of the catalyst occurred slowly, but the catalyst could easily be regenerated. Moreover, the nickel-calcium phosphate/hydroxyapatite catalyst showed higher activity than the nickel-strontium phosphate catalyst.
Keywords:Calcium Hydroxyapatite;Calcium Phosphate;Nickel;Optimum Composition;Partial Oxidation of Methane
-
Au CT, Wang HY, J. Catal., 167(2), 337 (1997)
- Chen Y, Hu C, Gong M, Chen Y, Tian A, Stud. Surf. Sci. Catal., 130, 2543 (2000)
-
Choudhary VR, Uphade BS, Mamman AS, J. Catal., 172(2), 281 (1997)
- Diskin AM, Ormerod RM, Stud. Surf. Sci. Catal., 130, 3519 (2000)
- Dissanayake D, Rosynek MP, Kharas KCC, Lunsford JH, J. Catal., 132, 117 (1991)
- Dissanayake D, Rosynek MP, Lunsford JH, J. Phys. Chem., 97, 3644 (1993)
-
Hayakawa T, Harihara H, Andersen AG, Suzuki K, Yasuda H, Tsunoda T, Hamakawa S, York AP, Yoon YS, Shimizu M, Takehira K, Appl. Catal. A: Gen., 149(2), 391 (1997)
- Hydrocarbon Processing, "Gas Processes 2002," 103, May (2002)
- Jun JH, Lee SJ, Lee SH, Lee TJ, Kong SJ, Lim TH, Nam SW, Hong SA, Yoon KJ, Korean J. Chem. Eng., 20(5), 829 (2003)
-
Jun JH, Lee TJ, Lim TH, Nam SW, Hong SA, Yoon KJ, J. Catal., 221(1), 178 (2004)
- Lee SH, Yoon KJ, Korean J. Chem. Eng., 18(2), 228 (2001)
-
Lee SJ, Jun JH, Lee SH, Yoon KJ, Lim TH, Nam SW, Hong SA, Appl. Catal. A: Gen., 230(1-2), 61 (2002)
- Liu S, Xiong G, Dong H, Yang W, Sheng S, Chu W, Yu Z, Stud. Surf. Sci. Catal., 130, 3567 (2000)
- Liu ZW, Jun KW, Roh HS, Park SE, Oh YS, Korean J. Chem. Eng., 19(5), 735 (2002)
- Liu ZW, Roh HS, Jun KW, Park SE, Song TY, Korean J. Chem. Eng., 19(5), 742 (2002)
- Takehira K, Shishido T, Kondo M, Furukawa R, Tanabe E, Ito K, Hamakawa S, Hayakawa T, Stud. Surf. Sci. Catal., 130, 3525 (2000)
- Takehira K, Catal. Surv. Jpn., 6, 19 (2002)
-
Torniainen PM, Chu X, Schmidt LD, J. Catal., 146(1), 1 (1994)
-
Vanlooij F, Geus JW, J. Catal., 168(2), 154 (1997)