LaCo1−x Pd x O3 Perovskite-Type Oxides: Synthesis, Characterization and Simultaneous Removal of NO x and Diesel Soot

Catalysis Letters - Tập 130 - Trang 613-621 - 2009
Wensheng Yao1,2, Rijie Wang1, Xiaoxia Yang1
1Tianjin Key Laboratory of Applied Catalysis Science and Engineering, School of Chemical Engineering and Technology, Tianjin University, Tianjin, People’s Republic of China
2College of Chemistry and Chemical Engineering, Bohai University, Jinzhou, People’s Republic of China

Tóm tắt

A series of naometric perovskite catalysts LaCo1−x Pd x O3 (x = 0, 0.01, 0.03) were prepared via a solution combustion synthesis route using metal nitrates as oxidizers and urea as fuel. It is essential to add a certain amount of ammonia aqueous solution to Pd2+ ions solution in the catalyst preparation process. Homogeneous nanoparticles LaCo1−x Pd x O3 catalysts with the sizes in the range of 68–122 nm were obtained and characterized by using of XRD, BET, H2-TPR, XPS, SEM and TEM. Pd was successfully introduced into the LaCoO3 perovskite lattices. Further information was obtained by using XPS upon the LaCo0.97Pd0.03O3 (with NH4OH) sample after H2-TPR. The results revealed that surface Pd was reduced to the metallic state at the end of the first step in the H2-TPR experiment, and some surface Co could be reduced to metallic Co simultaneously. The catalytic properties were investigated for simultaneous NO x -soot removal reaction. The performance of LaCo1−x Pd x O3 catalysts were greatly improved by the partial substitution of Pd. The maximum NO conversion into N2 and the ignition temperature of soot are 32.8% and 265 °C, respectively.

Tài liệu tham khảo

Merino NA, Barbero BP, Grange P, Cadús LE (2005) J Catal 231:232 Berger D, Matei C, Papa F, Voicu G, Fruth V (2007) Prog Solid State Ch 35:183 Shiono M, Kobayashia K, Nguyen TL, Hosoda K, Kato T, Ota K, Dokiya M (2004) Solid State Ionics 170:1 Pena MA, Fierro JLG (2001) Chem Rev 101:1981 Civera A, Pavese M, Saracco G, Specchia V (2003) Catal Today 83:199 Royer S, Berube F, Kaliaguine S (2005) Appl Catal A 282:273–284 Bialobok B, Trawczynski J, Rzadki T, Mista W, Zawadzki M (2007) Catal Today 119:278 Tanaka H, Misono M (2001) Curr Opin Solid State Mater Sci 5:381 Koponena MJ, Suvantoa M, Pakkanena TA, Kallinenb K, Kinnunenb TJJ, Härkönenb M (2005) Solid State Sci 7:7 Giebeler L, Kießling D, Wendt G (2007) Chem Eng Technol 30:889 Tanaka H, Tan I, Uenishi M, Taniguchi M, Kimura M, Nishihata Y, Mizuki J (2006) J Alloy Compd 408–412:1071 Tanaka H (2005) Catal Surv Asia 9:63 Sorenson SC, Wronkiewicz JA, Sis LB, Wirtz GP (1974) Ceram Bull 53:446 Guilhaume N, Primet M (1997) J Catal 165:197 Wu XD, Xu LH, Weng D (2004) Catal Today 90:199 Wang H, Zhao Z, Liang P, Xu CM, Duan AJ, Jiang GY, Xu J, Liu J (2008) Catal Lett 124:91 Natile MM, Ugel E, Maccato C, Glisenti A (2007) Appl Catal B 72:351 Armelao L, Bandoli G, Barreca D, Bettinelli M, Bottaro G, Caneschi A (2002) Surf Interface Anal 34:112 Yin SH, Chen DH, Tang W (2007) J Alloy Compd 441:327 Patil KC, Aruna ST, Mimani T (2002) Solid State Mater Sci 6:507 Dinka P, Mukasyan AS (2007) J. Power Sources 167:472 Wang H, Zhao Z, Xu CM (2005) J Liu Catal Lett 102:251 Peng XS, Lin H, Shangguan WF, Huang Z (2007) Catal Commun 8:157 Peng XS, Lin H, Shangguan WF, Huang Z (2006) Ind Eng Chem Res 45:8822 Liu J, Zhao Z, Xu CM, Duan AJ, Meng T, Bao XJ (2007) Catal Today 119:267 Peng XS, Lin H, Shangguan WF, Huang Z (2007) Chem Eng Technol 30:99 Crespin M, Hall WK (1981) J Catal 69:359 Fierro JLG, Pena MA, Tejuca LG (1988) J Mater Sci 23:1018 Simono L, Garin F, Maire G (1997) Appl Catal 11:167 Tanaka H, Tana I, Uenishi M, Kimura M, Dohmae K (2001) Top Catal 16/17:63 Tanaka H, Uenishi M, Taniguchi M, Tan I, Narita K, Kimura M, Kaneko K, Nishihata Y (2006) J Mizuki Catal Today 117:321