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Original Articles

Catalytic Cracking of Biomass High-Temperature Pyrolysis Tar Using NiO/AC Catalysts

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References

  • Aksoylu, A. E., M. Madalena, A. Freitas, M. F. R. Pereira, and J. L. Figueiredo. 2001. The effects of different activated carbon supports and support modifications on the properties of Pt/AC catalysts. Carbon 39(2):175–85.
  • Ammendola, P., R. Chirone, L. Lisi, B. Piriou, and G. Russo. 2010. Investigation of the catalytic activity of Rh-LaCoO3 catalyst in the conversion of tar from biomass devolatilization products. Applied Catalysis a-General 385(1–2):123–29.
  • Ammendola, P., L. Lisi, B. Piriou, and G. Ruoppolo. 2009. Rh-perovskite catalysts for conversion of tar from biomass pyrolysis. Chemical Engineering Journal 154(1–3):361–68.
  • Bangala, D. N., N. Abatzoglou, and E. Chornet. 1998. Steam reforming of naphthalene on Ni-Cr/Al2O3 catalysts doped with MgO, TiO2, and La2O3. AIChE Journal 44(4):927–36.
  • Corella, J., A. Orío, and J.-M. Toledo. 1999. Biomass gasification with air in a fluidized bed: Exhaustive tar elimination with commercial steam reforming catalysts. Energy & Fuels 13(3):702–09.
  • Devi, L., K. J. Ptasinski, F. J. J. G. Janssen, S. V. B. van Paasen, P. C. A. Bergman, and J. H. A. Kiel. 2005. Catalytic decomposition of biomass tars: Use of dolomite and untreated olivine. Renewable Energy 30(4):565–87.
  • Furusawa, T., Y. Miura, Y. Kori, M. Sato, and N. Suzuki. 2009. The cycle usage test of Ni/MgO catalyst for the steam reforming of naphthalene/benzene as model tar compounds of biomass gasification. Catalysis Communications 10(5):552–56.
  • Gandia, L. M., and M. Montes. 1994. Effect of thermal treatments on the properties of nickel and cobalt activated-charcoal-supported catalysts. Journal of Catalysis 145(2):276–88.
  • Gezer, I., M. Doğru, and G. Akay. 2009. Gasification of apricot pit shells in a downdraft gasifier. International Journal of Green Energy 6(2):218–27.
  • Gilbert, P., C. Ryu, V. Sharifi, and J. Swithenbank. 2009. Tar reduction in pyrolysis vapours from biomass over a hot char bed. Bioresource Technology 100(23):6045–51.
  • Hacker, V. 2003. A novel process for stationary hydrogen production: The reformer sponge iron cycle (RESC). Journal of Power Sources 118(1–2):311–14.
  • Haykiri-Acma, H., and S. Yaman. 2009. Effect of the heating rate on the morphology of the pyrolytic char from hazelnut shell. International Journal of Green Energy 6(5):508–11.
  • Li, C. S., D. Hirabayashi, and K. Suzuki. 2010. Steam reforming of biomass tar producing H2-rich gases over Ni/MgOx/CaO1-x catalyst. Bioresource Technology 101:S97–100.
  • Li, D., L. Wang, M. Koike, Y. Nakagawa, and K. Tomishige. 2011. Steam reforming of tar from pyrolysis of biomass over Ni/Mg/Al catalysts prepared from hydrotalcite-like precursors. Applied Catalysis B: Environmental 102(3–4):528–38.
  • Li, J., J. Liu, S. Liao, and R. Yan. 2010. Hydrogen-rich gas production by air-steam gasification of rice husk using supported nano-NiO/γ-Al2O3 catalyst. International Journal of Hydrogen Energy 35(14):7399–04.
  • Li, J., R. Yan, B. Xiao, D. T. Liang, and L. Du. 2008. Development of nano-NiO/Al2O3 catalyst to be used for tar removal in biomass gasification. Environmental Science & Technology 42(16):6224–29.
  • Liu, H., T. Chen, D. Chang, D. Chen, H. He, and R. L. Frost. 2012. Catalytic cracking of tar derived from rice hull gasification over palygorskite-supported Fe and Ni. Journal of Molecular Catalysis A: Chemical 363–364:304–10.
  • Liu, S. X., X. Chen, X. Y. Chen, Z. F. Liu, and H. L. Wang. 2007. Activated carbon with excellent chromium(VI) adsorption performance prepared by acid-base surface modification. Journal of Hazardous Materials 141(1):315–19.
  • Miyazawa, T., T. Kimura, J. Nishikawa, K. Kunimori, and K. Tomishige. 2005. Catalytic properties of Rh/CeO2/SiO2 for synthesis gas production from biomass by catalytic partial oxidation of tar. Science and Technology of Advanced Materials 6(6):604–14.
  • Myrén, C., C. Hörnell, E. Björnbom, and K. Sjöström. 2002. Catalytic tar decomposition of biomass pyrolysis gas with a combination of dolomite and silica. Biomass and Bioenergy 23(3):217–27.
  • Park, H. J., S. H. Park, J. M. Sohn, J. Park, J.-K. Jeon, S.-S. Kim, and Y.-K. Park. 2010. Steam reforming of biomass gasification tar using benzene as a model compound over various Ni supported metal oxide catalysts. Bioresource Technology 101(1):S101–03.
  • Phuphuakrat, T., T. Namioka, and K. Yoshikawa. 2010. Tar removal from biomass pyrolysis gas in two-step function of decomposition and adsorption. Applied Energy 87(7):2203–11.
  • Stavropoulos, G. G., P. Samaras, and G. P. Sakellaropoulos. 2008. Effect of activated carbons modification on porosity, surface structure and phenol adsorption. Journal of Hazardous Materials 151(2–3):414–21.
  • Świerczyński, D., S. Libs, C. Courson, and A. Kiennemann. 2007. Steam reforming of tar from a biomass gasification process over Ni/olivine catalyst using toluene as a model compound. Applied Catalysis B: Environmental 74(3–4):211–22.
  • Torres, W., S. S. Pansare, and J. G. Goodwin. 2007. Hot gas removal of tars, ammonia, and hydrogen sulfide from biomass gasification gas. Catalysis Reviews: Science and Engineering 49(4):407–56.
  • Wang, D., W. Q. Yuan, and W. Ji. 2011. Char and char-supported nickel catalysts for secondary syngas cleanup and conditioning. Applied Energy 88(5):1656–63.
  • Wang, T. J., J. Chang, C. Z. Wu, Y. Fu, and Y. Chen. 2005. The steam reforming of naphthalene over a nickel-dolomite cracking catalyst. Biomass and Bioenergy 28(5):508–14.
  • Williams, P. T., and N. Nugranad. 2000. Comparison of products from the pyrolysis and catalytic pyrolysis of rice husks. Energy 25(6):493–13.
  • Wojcieszak, R., M. Zielinski, S. Monteverdi, and M. M. Bettahar. 2006. Study of nickel nanoparticles supported on activated carbon prepared by aqueous hydrazine reduction. Journal of Colloid and Interface Science 299(1):238–48.
  • Xiao, X., J. Cao, X. Meng, D. D. Le, L. Li, Y. Ogawa, K. Sato, and T. Takarada. 2013. Synthesis gas production from catalytic gasification of waste biomass using nickel-loaded brown coal char. Fuel 103:135–40.
  • Yu, J., F.-J. Tian, M. C. Chow, L. J. McKenzie, and C.-Z. Li. 2006. Effect of iron on the gasification of Victorian brown coal with steam: Enhancement of hydrogen production. Fuel 85(2):127–33.
  • Yu, J., F.-J. Tian, and C.-Z. Li. 2007. Novel water-gas-shift reaction catalyst from iron-loaded Victorian brown coal. Energy & Fuels 21(2):395–98.
  • Yu, Q. Z., C. Brage, T. Nordgreen, and K. Sjöström. 2009. Effects of Chinese dolomites on tar cracking in gasification of birch. Fuel 88(10):1922–26.
  • Zhang, R., H. Wang, and X. Hou. 2013. Catalytic reforming of toluene as tar model compound: Effect of Ce and Ce-Mg promoter using Ni/olivine catalyst. Chemosphere.
  • Zhang, S., M. Asadullah, L. Dong, H.-L. Tay, and C.-Z. Li. 2013. An advanced biomass gasification technology with integrated catalytic hot gas cleaning. Part II: Tar reforming using char as a catalyst or as a catalyst support. Fuel 112:646–53.
  • Zhao, H., D. J. Draelants, and G. V. Baron. 2000. Performance of a nickel-activated candle filter for naphthalene cracking in synthetic biomass gasification gas. Industrial & Engineering Chemistry Research 39(9):3195–01.

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