The Effect of the Preparation Method of Pd-Doped Cobalt Spinel on the Catalytic Activity in Methane Oxidation Under Lean Fuel Conditions

Topics in Catalysis - Tập 60 - Trang 333-341 - 2016
G. Ercolino1, A. Grodzka2, G. Grzybek2, P. Stelmachowski2, S. Specchia1, A. Kotarba2
1Department of Applied Science and Technology, Politecnico di Torino, Turin, Italy
2Faculty of Chemistry, Jagiellonian University in Kraków, Kraków, Poland

Tóm tắt

In this work a series of cobalt spinel catalysts was synthesized by different methods and doped with 1 wt% of palladium via incipient wetness impregnation or solution combustion synthesis (SCS). Both undoped and Pd-doped spinels were characterized from the structural and surface point of view (XRD, XRF, μRS, BET, FESEM) and tested toward the oxidation of methane in lean conditions, in gas mixtures containing from 0.5 to 2 vol% of CH4. These methane concentrations are typical of processes involving combustion of CH4 in lean conditions as the after-treatment of unconverted CH4 in compressed natural gas-fed vehicle exhausts, or the treatment of fugitive CH4 from leaks in coal mines. The temperature window for the catalytic activity of the undoped Co3O4 materials spread from 350 to 600 °C. The preparation method affected the catalytic activity of undoped Co3O4, with the best catalytic activity related to the spinel prepared by SCS employing urea. The addition of 1 wt% of Pd lowered the temperature window for the catalytic activity to the range of 250–500 °C, with insignificant differences for the various preparation methods. The beneficial effect of Pd-doping was assigned to the enhancement of the reduction of cobalt in the oxide structure.

Tài liệu tham khảo

Forzatti P, Groppi G (1999) Catal Today 54:165 Specchia S, Finocchio E, Busca G, Specchia V (2010) Combustion synthesis. In: Lackner M, Winter F, Agarwal AK (eds) Handbook of combustion. Wiley-VCH Verlag GmbH & Co. KGaA, Weinheim, pp 439–472 Curran SJ, Wagner RM, Graves RL, Keller M, Green JB Jr (2014) Energy 75:194 Bielaczyc P, Woodburn J, Szczotka A (2014) Appl Energy 117:134 Özgen Karacan C, Ruiz FA, Cotè M, Phipps S (2011) Int J Coal Geol 86:121 Su S, Agnew J (2006) Fuel 85:1201 Anifowose B, Odubela M (2015) J Clean Prod 92:121 Ríos-Mercado RZ, Borraz-Sánchez C (2015) Appl Energy 147:536 Al-Sobhi SA, Elkamel A (2015) J Nat Gas Sci Eng 23:500 Stolaroff JK, Bhattacharyya S, Smith CA, Bourcier WL, Cameron-Smith PJ, Aines RD (2012) Environ Sci Technol 46:6455 Möllersten K, Grönkvist S (2007) Energy Policy 35:3675 de la Peña O’Shea VA, Alvarez-Galvan MC, Requies J, Barrio VL, Arias PL, Cambra JF, Güemez MB, Fierro JLG (2015) Appl Catal B Environ 179:313 Kinnunen NM, Hirvi JT, Suvanto M, Pakkanen TA, Molec J (2012) Catal A Chem 356:20 Amin A, Abedi A, Hayes R, Votsmeier M, Epling W (2014) Appl Catal A Gen 478:91 Bassil J, AlBarazi A, Da Costa P, Boutros M (2011) Catal Today 176:36 Miniajluk N, Trawczyński J, Zawadzki M, Tomaszewski PE, Miśta W (2015) Catal Today 257:26 Li C, Wang W, Zhao N, Liu Y, He B, Hu F, Chen C (2011) Appl Catal B Environ 102:78 Specchia S, Palmisano P, Finocchio E, Larrubia Vargas MA, Busca G (2009) Appl Catal B Environ 92:285 Zhang Y, Qin Z, Wang G, Zhu H, Dong M, Li S, Wu Z, Li Z, Wu Z, Zhang J, Hu T, Fan W, Wang J (2013) Appl Catal B Environ 129:172 Castaño MH, Molina R, Moreno S, Molec J (2015) Catal A Chem 398:358 Wu H, Wu Q, Wang L (2015) Mater Charact 103:1 Farhadi S, Pourzare K, Bazgir S (2014) J Alloy Compd 587:632 Sun H, Liu Y, Yu Y, Ahmad M, Nan D, Zhu J (2014) Electrochim Acta 118:1 Menezes PW, Indra A, Sahraie NR, Bergmann A, Strasser P, Driess M (2015) Chem Sus Chem 8:164 Zhang DE, Li F, Chen AM, Xie Q, Wang MY, Zhang XB, Li SZ, Gong JY, Han GQ, Ying AL, Tong ZW (2011) Solid State Sci 13:1221 Feng Y, Zheng X (2012) Chem Cat Chem 4:1551–1554 Bai B, Arandiyan H, Li J (2013) Appl Catal B Environ 142–143:677 Stelmachowski P, Maniak G, Kaczmarczyk J, Zasada F, Piskorz W, Kotarba A, Sojka Z (2014) Appl Catal B 146:105 Inger M, Kowalik P, Saramok M, Wilk M, Stelmachowski P, Maniak G, Granger P, Kotarba A, Sojka Z (2011) Catal Today 176:365 Chmielarz L, Jabłońska M (2015) RSC Adv 5:43408 Zwinkels MFM, Jaras SG, Menon PG, Griffin TA (1993) Catal Rev 35:319 Ren Z, Botu V, Wang S, Meng Y, Song W, Guo Y, Ramprasad R, Suib SL, Gao P-X (2014) Angew Chem Int Edit 126:7351 Jodłowski PJ, Jędrzejczyk RJ, Rogulska A, Wach A, Kuśtrowski P, Sitarz M, Łojewski T, Kołodziej A, Łojewska J (2014) Spectrochim Acta A 131:696 Wang Q, Peng Y, Fu J, Kyzas GZ, Reduwan Billah SM, An S (2015) Appl Catal B Environ 168–169:42 Ercolino G, Grzybek G, Stelmachowski P, Specchia S, Kotarba A, Specchia V (2015) Catal Today 257:66 Liotta LF, Di Carlo G, Pantaleo G, Deganello G (2007) Appl Catal B Environ 70:314 Zavyalova U, Scholz P, Ondruschka B (2007) Appl Catal A Gen 323:226 Bahlawane N (2006) Appl Catal B Environ 67:168 Wang Y, Zhong Z, Chen Y, Ng CT, Lin J (2011) Nano Res 4:695 Hu L, Peng Q, Li Y (2008) J Am Chem Soc 130:16136 Inger M, Wilk M, Saramok M, Grzybek G, Grodzka A, Stelmachowski P, Makowski W, Kotarba A, Sojka Z (2014) Ind Eng Chem Res 53:10335 Piskorz W, Zasada F, Stelmachowski P, Kotarba A, Sojka Z (2008) Catal Today 137:418 Toniolo JC, Takimi AS, Bergmann CP (2010) Mater Res Bull 45:672 Wei Y, Nam KW, Kim KB, Chen G (2006) Solid State Ionics 177:29 Gasparov LV, Tanner DB, Romero DB, Berger H, Margaritondo G, Forro L (2000) Phys Rev B 62:7939 Łojewska J, Knapik A, Jodłowski P, Łojewski T, Kołodziej A (2013) Catal Today 216:11 Zasada F, Piskorz W, Stelmachowski P, Kotarba A, Paul J-F, Płociński T, Kurzydzowski KJ, Sojka Z (2011) J Phys Chem C 115:6423