• Journal of Inorganic Materials
  • Vol. 34, Issue 8, 827 (2019)
Si-Han LI, Chao ZHANG, Chen-Liang WU, He-Feng ZHANG, and Xin-Huan YAN*
Author Affiliations
  • State Key Laboratory Breeding Base of Green Chemistry-Synthesis Technology, College of Chemical Engineering, Zhejiang University of Technology, Hangzhou 310014, China
  • show less
    DOI: 10.15541/jim20180523 Cite this Article
    Si-Han LI, Chao ZHANG, Chen-Liang WU, He-Feng ZHANG, Xin-Huan YAN. Pd/CeO2/γ-Al2O3 Catalyst with Low Loading for Catalytic Oxidation of VOCs[J]. Journal of Inorganic Materials, 2019, 34(8): 827 Copy Citation Text show less
    References

    [1] M J S GARCIA, V M O MARTINEZ, F J H FERNANDER et al. Ionic liquid technology to recover volatile organic compounds (VOCs). Journal of Hazardous Materials, 321, 484-499(2017).

    [2] S SCIRE, L LIOTTA. Supported gold catalysts for the total oxidation of volatile organic compounds. Applied Catalysis B: Environmental, 125, 222-246(2012).

    [3] F I KHAN, A K GHOSHAL. Removal of volatile organic compounds from polluted air. Journal of Loss Prevention in the Process Industries, 13, 527-545(2000).

    [4] H B HUANG, Y XU, Q Y FENG et al. Low temperature catalytic oxidation of volatile organic compounds: a review. Catalysis Science &Technology, 5, 2649-2669(2015).

    [5] H L TIDAHY, M HOSSENI, S SIFFERT et al. Nanostructured macro-mesoporous zirconia impregnated by noble metal for catalytic total oxidation of toluene. Catalysis Today, 137, 335-339(2008).

    [6] M S KAMAL, S A RAZZAK, M M HOSSAIN. Catalytic oxidation of volatile organic compounds (VOCs)-a review. Atmospheric Environment, 140, 117-134(2016).

    [7] S SCIRE, S MINICO, C CRISAFULLI et al. Catalytic combustion of volatile organic compounds over group IB metal catalysts on Fe2O3. Catalysis Communications, 2, 229-232(2001).

    [8] S C KIM, W G SHIM. Properties and performance of Pd based catalysts for catalytic oxidation of volatile organic compounds. Applied Catalysis B: Environmental, 92, 429-436(2009).

    [9] Z S LIU, J Y CHEN, Y H PENG. Activated carbon fibers impregnated with Pd and Pt catalysts for toluene removal. Journal of Hazardous Materials, 256-257, 49-59(2013).

    [10] P LI, C HE, J CHENG et al. Catalytic oxidation of toluene over Pd/Co3AlO catalysts derived from hydrotalcite-like compounds: effects of preparation methods. Applied Catalysis B: Environmental, 101, 570-579(2011).

    [11] L S LIU, Y SONG, Z D FU et al. Effect of preparation method on the surface characteristics and activity of the Pd/OMS-2 catalysts for the oxidation of carbon monoxide, toluene, and ethyl acetate. Applied Surface Science, 396, 599-608(2017).

    [12] J W LI, W B LI. Effect of preparation method on the catalytic activity of Au/CeO2 for VOCs oxidation. Journal of Rare Earths, 28, 547-551(2010).

    [13] J Z MAO, X H YAN, H Z GU et al. Hydrogenation of o-chloronitrobenzene by platinum nanoparticles on activated carbon. Chinese Journal of Catalysis, 30, 182-184(2009).

    [14] P AO, X S XU, X X XU et al. Low-temperature total oxidation of toluene over assembled Pt/TiO2 catalyst. Acta Phys-Chim Sin., 30, 950-956(2014).

    [15] H J SEDIAME, C FONTAINE, G LAFAYE et al. On the promoting effect of the addition of ceria to platinum based alumina catalysts for VOCs oxidation. Applied Catalysis B: Environmental, 144, 233-242(2014).

    [16] H L LIU, L MA, S B SHAO et al. Preferential CO oxidation on Ce-promoted Pt/γ-Al2O3 catalysts under H2-rich atmosphere. Chinese Journal of Catalysis, 28, 1077-1082(2007).

    [17] R R LOPEZ, I E MARTINEZ, L B TAPIA. Complete catalytic oxidation of methane over Pd/CeO2-Al2O3: the influence of different ceria loading. Catalysis Today, 150, 358-362(2010).

    [18] M HOSSEINI, M HAGHIGHI, et al. Sono- dispersion of ceria and palladium in preparation and characterization of Pd/Al2O3-clinoptilolite-CeO2 nanocatalyst for treatment of polluted air via low temperature VOC oxidation. Process Safety and Environmental Protection, 106, 284-293(2017).

    [19] B LI, B ZHOU, S H LI et al. A Self-assembled Pd/γ-Al2O3 catalyst with low loading for catalytic oxidation of toluene. Fine Chemicals, 39, 1555-1561(2018).

    [20] L DIAKOVITCH, M WAGNER, C G HARTUNG et al. Pd-catalyzed Heck arylation of cycloalkenes-studies on selectivity comparing homogeneous and heterogeneous catalysts. Journal of Molecular Catalysis A: Chemical, 219, 121-130(2004).

    [21] X W SU, L Y JIN, J Q LU et al. Pd/Ce0.9 Cu0.1O1.9-Y2O3 catalysts for catalytic combustion of toluene and ethyl acetate. Journal of Industrial and Engineering Chemistry, 15, 683-686(2009).

    [22] M F LUO, M HE, Y L XIE et al. Toluene oxidation on Pd catalysts supported by CeO2-Y2O3 washcoated cordierite honeycomb. Applied Catalysis B: Environmental, 69, 213-218(2007).

    [23] C HE, F W ZHANG, L YUE et al. Nanometric palladium confined in mesoporous silica as efficient catalysts for toluene oxidation at low temperature. Applied Catalysis B: Environmental, 111-112, 46-57(2012).

    [24] K I FUJIMOTO, F H RIBEIRO, M A BORIA et al. Structure and reactivity of PdOx/ZrO2 catalysts for methane oxidation at low temperatures. Journal of Catalysis, 179, 431-442(1998).

    [25] J M PADILLA, G D ANGEL, J NAVARRETE. Improved Pd/γ-Al2O3-Ce catalysts for benzene combustion. Catalysis Today, 133-135, 541-547(2008).

    [26] J H LI, P AO, X X LI et al. Removal of volatile organic compounds at low temperature by a self-assembled Pt/γ-Al2O3 catalyst. Acta Phys-Chim. Sin., 31, 173-180(2015).

    [27] H MARYAM, H MOHAMMAD, M PAYAM et al. Comparative sonochemically synthesis of CeO2-doped Pd/clinoptilolite and Pd/Al2O3 nanocatalysts used in total oxidation of toluene at low temperatures for polluted air treatment. Process Safety and Environmental Protection, 106, 309-318(2017).

    [28] M HANEDA, T MIZUSHIMA, N KAKUTA. Synergistic effect between Pd and nonstoichiometric cerium oxide for oxygen activation in methane oxidation. Journal of Physical Chemistry B, 102, 6579-6587(1998).

    [29] E M SLAVINSKAYA, O A STONKUS, R V GULVAEV et al. Structural and chemical states of palladium in Pd/Al2O3 catalysts underself-sustained oscillations in reaction of CO oxidation. Applied Catalysis A: General, 401, 83-97(2011).

    [30] G ZHANG, Y WANG, X WANG et al. Preparation of Pd-Au/C catalysts with different alloying degree and their electrocatalytic performance for formic acid oxidation. Applied Catalysis B: Environmental, 102, 614-619(2011).

    [31] L H CHANG, N SASIREKHA, Y W CHEN et al. Preferential oxidation of CO in H2 stream over Au/MnO2-CeO2 catalysts. Industrial & Engineering Chemistry Research, 45, 4927-4935(2006).

    [32] Z Q ZOU, M MENG, L H GUO et al. Synthesis and characterization of CuO/Ce1-x TixO2 catalysts used for low-temperature CO oxidation. Journal of Hazardous Materials, 163, 835-842(2009).

    [33] M SUN, W HU, S D YUAN et al. Effect of the loading sequence of CeO2 and Pd over Al2O3 on the catalytic performance of Pd-only close-coupled catalysts. Molecular Catalysis(2018).

    [34] Y T CHEN, H J ZHENG, Z GUO et al. Pd catalysts supported on MnCeOx mixed oxides and their catalytic application in solvent- free aerobic oxidation of benzyl alcohol: support composition and structure sensitivity. Journal of Catalysis, 283, 34-44(2011).

    [35] V FERRER, A MORONTA, J SANCHEZ et al. Effect of the reduction temperature on the catalytic activity of Pd-supported catalysts. Catalysis Today, 107-108, 487-492(2005).

    [36] H LIESKE, J VOLTER. Pd Redispersion by spreading of PdO in O2 treated Pd/Al2O3. The Journal of Physical Chemistry, 89, 1841-1842(1985).

    [37] L S F FEIO, C E HORI, S DAMYANOYA et al. The effect of ceria content on the properties of Pd/CeO2/Al2O3 catalysts for steam reforming of methane. Applied Catalysis A: General, 316, 107-116(2007).

    Si-Han LI, Chao ZHANG, Chen-Liang WU, He-Feng ZHANG, Xin-Huan YAN. Pd/CeO2/γ-Al2O3 Catalyst with Low Loading for Catalytic Oxidation of VOCs[J]. Journal of Inorganic Materials, 2019, 34(8): 827
    Download Citation