BibTex RIS Kaynak Göster

Use of Pd/Activated Carbon Fiber Catalyst to Dehydrogenate Cyclohexane

Yıl 2009, Cilt: 37 Sayı: 3, 249 - 257, 01.08.2009

Öz

In this work, activated carbon fibers ACFs were prepared from polyacrylonitrile fibers, Pd catalyst was loaded onto the ACFs. The BET surface areas noted before activation were in the range of 120-140 m2/g. Activation of the fibers with carbon dioxide increased the surface areas of the fibers to about 150-190 m2 /g. Diameters of metallic Pd particles loaded along the fibers ranged from 50 nm to 100 nm. The shape of the Pd particles was generally spherical albeit some non-spherical Pd particles were also noted. The catalytic activity of the Pd/ACF system in dehydrogenating cyclohexane at 350oC under liquid-phase conditions was investigated. Utilizing the Pd/ACF system in the micro-autoclave of a differential scanning calorimetric system was described for the liquid-phase catalytic dehydrogenation of cyclohexane. The DSC thermogram of the non-catalytic system yielded fewer endothermic events compared to the catalytic dehydrogenation of cyclohexane in the presence of Pd/ACF. The dehydrogenation of cyclohexane at 350oC was a first-order reaction with a rate constant, k = 3.5 x 10-4 s-1. GC-MS analyses of the products of catalytic dehydrogenation revealed a wide distribution of saturated and unsaturated hydrocarbons that were not present in the corresponding non-catalytic experiment. The presence of high molecular weight products could be explained by the recombination of carbon radicals during reaction.

Kaynakça

  • Tien, P. D., Satoh, T., Miura, M., Nomura, M., “Efficient and reusable palladium catalysts supported on activated carbon fibers for dehydrogenation of tetrahydro- naphthalene”, Energy Fuels 2005, 19, 731-735.
  • Tien, P. D., Satoh, T., Miura, M., Nomura, M., “Continuous hydrogen evolution from tetrahydronaphthalene over palladium catalysts supported on activated carbon fibers”, Energy Fuels 2005, 19, 2110-2113.
  • Auer, E., Freund, A., Pietsch, J., Tacke, T., “Carbons as supports for industrial precious metal catalysts”, Appl. Catal. A: General 1998, 173, 259-271.
  • Sato, K., Aoki, M., Noyori, R.A., “ A green route to adipic acid: direct oxidation of cyclohexenes with 30 percent hydrogen peroxide”, Science 1998, 281, 1646-1647.
  • Deng, Y. Q., Ma, Z. F., Wang, K., Chen, J., “Clean synthesis of adipic acid by direct oxidation of cyclohexene with H2O2 over peroxytungstate–organic complex catalysts”, Green Chem. 1999, 1, 275-276.
  • Schuchardt, U., Cardoso, D., Sercheli, R., Pereira, R., Cruz, R.S., Guerreiro, M.C., Mandelli, D., Spinace, E.V., Pires, E.L., “Cyclohexane oxidation continues to be a challenge”, Appl. Catal. A: Gen. 2001, 211, 1-17.
  • Atkins, P., de Paula, J., “Atkins’ Physical Chemistry”, 8th Edition, 2006, Oxford University Press, Oxford, p. 791.
  • McNaught, A.D., Wilkinson, A., “IUPAC Compendium of Chemical Terminology”, Gold Book, 2nd Edition, 1997, Blackwell Science, p. 1976.
Yıl 2009, Cilt: 37 Sayı: 3, 249 - 257, 01.08.2009

Öz

Kaynakça

  • Tien, P. D., Satoh, T., Miura, M., Nomura, M., “Efficient and reusable palladium catalysts supported on activated carbon fibers for dehydrogenation of tetrahydro- naphthalene”, Energy Fuels 2005, 19, 731-735.
  • Tien, P. D., Satoh, T., Miura, M., Nomura, M., “Continuous hydrogen evolution from tetrahydronaphthalene over palladium catalysts supported on activated carbon fibers”, Energy Fuels 2005, 19, 2110-2113.
  • Auer, E., Freund, A., Pietsch, J., Tacke, T., “Carbons as supports for industrial precious metal catalysts”, Appl. Catal. A: General 1998, 173, 259-271.
  • Sato, K., Aoki, M., Noyori, R.A., “ A green route to adipic acid: direct oxidation of cyclohexenes with 30 percent hydrogen peroxide”, Science 1998, 281, 1646-1647.
  • Deng, Y. Q., Ma, Z. F., Wang, K., Chen, J., “Clean synthesis of adipic acid by direct oxidation of cyclohexene with H2O2 over peroxytungstate–organic complex catalysts”, Green Chem. 1999, 1, 275-276.
  • Schuchardt, U., Cardoso, D., Sercheli, R., Pereira, R., Cruz, R.S., Guerreiro, M.C., Mandelli, D., Spinace, E.V., Pires, E.L., “Cyclohexane oxidation continues to be a challenge”, Appl. Catal. A: Gen. 2001, 211, 1-17.
  • Atkins, P., de Paula, J., “Atkins’ Physical Chemistry”, 8th Edition, 2006, Oxford University Press, Oxford, p. 791.
  • McNaught, A.D., Wilkinson, A., “IUPAC Compendium of Chemical Terminology”, Gold Book, 2nd Edition, 1997, Blackwell Science, p. 1976.
Toplam 8 adet kaynakça vardır.

Ayrıntılar

Birincil Dil İngilizce
Bölüm Research Article
Yazarlar

Serkan Baş Bu kişi benim

Yuda Yürüm Bu kişi benim

Yayımlanma Tarihi 1 Ağustos 2009
Yayımlandığı Sayı Yıl 2009 Cilt: 37 Sayı: 3

Kaynak Göster

APA Baş, S., & Yürüm, Y. (2009). Use of Pd/Activated Carbon Fiber Catalyst to Dehydrogenate Cyclohexane. Hacettepe Journal of Biology and Chemistry, 37(3), 249-257.
AMA Baş S, Yürüm Y. Use of Pd/Activated Carbon Fiber Catalyst to Dehydrogenate Cyclohexane. HJBC. Ağustos 2009;37(3):249-257.
Chicago Baş, Serkan, ve Yuda Yürüm. “Use of Pd/Activated Carbon Fiber Catalyst to Dehydrogenate Cyclohexane”. Hacettepe Journal of Biology and Chemistry 37, sy. 3 (Ağustos 2009): 249-57.
EndNote Baş S, Yürüm Y (01 Ağustos 2009) Use of Pd/Activated Carbon Fiber Catalyst to Dehydrogenate Cyclohexane. Hacettepe Journal of Biology and Chemistry 37 3 249–257.
IEEE S. Baş ve Y. Yürüm, “Use of Pd/Activated Carbon Fiber Catalyst to Dehydrogenate Cyclohexane”, HJBC, c. 37, sy. 3, ss. 249–257, 2009.
ISNAD Baş, Serkan - Yürüm, Yuda. “Use of Pd/Activated Carbon Fiber Catalyst to Dehydrogenate Cyclohexane”. Hacettepe Journal of Biology and Chemistry 37/3 (Ağustos 2009), 249-257.
JAMA Baş S, Yürüm Y. Use of Pd/Activated Carbon Fiber Catalyst to Dehydrogenate Cyclohexane. HJBC. 2009;37:249–257.
MLA Baş, Serkan ve Yuda Yürüm. “Use of Pd/Activated Carbon Fiber Catalyst to Dehydrogenate Cyclohexane”. Hacettepe Journal of Biology and Chemistry, c. 37, sy. 3, 2009, ss. 249-57.
Vancouver Baş S, Yürüm Y. Use of Pd/Activated Carbon Fiber Catalyst to Dehydrogenate Cyclohexane. HJBC. 2009;37(3):249-57.

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