151
Views
9
CrossRef citations to date
0
Altmetric
Articles

Optimization of gas production and efficiency of supercritical glycerol gasification using response surface methodology

, &
Pages 625-633 | Received 12 Sep 2017, Accepted 18 Jan 2018, Published online: 20 Feb 2018

References

  • Hao X, Guo L, Zhang X, et al. Hydrogen production by catalytic gasification of cellulose in supercritical water. Chem Eng J. 2005;110:57–65.
  • Salimi M, Safari F, Tavasoli A, et al. Hydrothermal gasification of different agricultural wastes in supercritical water media for hydrogen production: a comparative study. Int J Ind Chem. 2016;7(3):277–285.
  • Qiuhui Y, Liejin G, Xing L, et al. Hydrogen production from co-gasification of coal and biomass in supercritical water by continuous flow thermal-catalytic reaction system. Front Energy Power Eng China. 2007;1(3):327–330.
  • Havilah PR, Sharma PK, Gopinath M. Combustion characteristics and kinetic parameterestimation of Lantana camara by thermogravimetric analysis. Biofuels. 2016; 1–8.
  • Mansur D, Tago T, Masuda T. Utilization of DDGS using ethanol solution for biocrude oil production by hydrothermal liquefaction. Biofuels. 2016;1–6.
  • Kapoor L, Bose D, Mekala A. Biomass pyrolysis in a twin-srew reactor to produce green fuels. Biofuels. 2017;1–7. DOI: 10.1080/17597269.2017.2345360.
  • Vaish B, Sharma B, Srivastava V, et al. Energy recorvery potential and environemental impact of gasification for municipal solid waste. Biofuels. 2017;1–14. DOI: 10.1080/17597269.2017.1368061.
  • Tamošiūnas A, Valatkevičius P, Gimžauskaitė D, et al. Energy recovery from waste glycerol by utilizing thermal water vapor plasma. Environ Sci Pollut Res. 2016;24(11):10030–10040.
  • May A, Salvadó J, Torras C, et al. Catalytic gasification of glycerol in supercritical water. Chem Eng J. 2010;160:751–759.
  • Ruiz JC, Boutin O. Gazéification de biomasse en eau supercritique [Biomass gasification in supercritical water]. French: Ed. Technique de l'ingénieur; 2013. Saint Denis. France
  • Osada M, Sato O, Watanabe M, et al. Water density effect on lignin gasification over supported noble metal catalysts in supercritical water. Energy Fuels. 2006;20:930–935.
  • Withag JAM. On the gasification of wet biomass in supercritical water: over de vergassing van natte biomassa in superkritiek water. Enschede, The Netherlands: University of Twente; 2013.
  • Loppinet-Serani A, Aymonier C, Cansell F. Current and foreseeable applications of supercritical water for energy and the environment. Chem Sus Chem. 2008;1(6):486–503.
  • Modell M. Gasification and liquefaction of forest products in supercritical water. Fundamentals of thermochemical biomass conversion. London: Elsevier Applied Science Publication; 1985. p. 95–119.
  • Lu YJ, Jin H, Guo LJ, et al. Hydrogen production by biomass gasification in supercritical water with a fluidized bed reactor. Int J Hydrogen Ener. 2008;33(21):6066–6075.
  • Antal MJ, Allen SG, Schulman D, et al. Biomass gasification in supercritical water. Ind Eng Chem Res. 2000;11 460(39):4040–4053.
  • Antal MJ, Matsumurn Y, Xu X, et al. Catalytic gasification of wet biomass in supercritical water. American Chemical Society (ACS) National Meeting. 1995 Apr 2–6; Anaheim, CA (United States).
  • Wu M. Etude de procédés de conversion de biomasse en eau supercritique pour l'obtention d'hydrogène. Application au glucose, glycérol et bio-glycérol. [Study of process of conversion of biomass to supercritical water to obtain hydrogen. Application to glucose, glycerol and bio-glycerol.]. French: Université de Toulouse Unité de recherche RAPSODEE; Toulouse France, 2012.
  • Su X, Jin H, Guo S, et al. Numerical study on biomass model compound gasification in a supercritical water fluidized bed reactor. Chem Eng Sci. 2015;134:737–745.
  • Mozaffarian M, Deurwaarder EP, Kerste SRA. Green gas (SNG) production by supercritical gasification of biomass. The Netherlands Energy Research Foundation report ECN-C-04-081. November. 2004.
  • Ferreira LS, Trierweile JO. Modeling and simulation of the polymeric nanocapsule formation process. IFAC Proc. 2009;7(1):405–410.
  • Jin H, Guo S, Guo L, et al. A mathematical model and numerical investigation for glycerol gasification in supercritical water with a tubular reactor. J Supercrit Fluids. 2016;107:526–533.
  • Guo S, Guo L, Yin J, et al. Supercritical water gasification of glycerol: Intermediates and kinetics. J Supercrit Fluids. 2013;78:95–102.
  • Guo Y, Wang S, Huelsman CM, et al. Kinetic model for reactions of indole under supercritical water gasification conditions. Chem Eng J. 2014;241:327–335.
  • Tushar MSHK, Dutta A, Xu C. Simulation of supercritical water gasification of biomass by aspenplus. Am Soc Agric Biol Eng Annu Int Meet. 2014;1:453–466.
  • Jin H, Wu Y, Guo L, et al. Molecular dynamic investigation on hydrogen production by polycyclic aromatic hydrocarbon gasification in supercritical water. Int J Hydrogen Energy. 2016;41(6):3837–3843.
  • Jin H, Liu S, Wei W, et al. Experimental investigation on hydrogen production by anthracene gasification in supercritical water. Energy Fuels. 2015;29(10):6342–6346.
  • Ferreira-Pinto L, Feirhrmann AC, Corazza ML, et al. Hydrogen production and TOC reduction from gasification of lactose by supercritical water. Int J Hydrogen Energy. 2015;40(36):12162–12168.
  • Jin H, Guo L, Guo J, et al. Study on gasification kinetics of hydrogen production from lignite in supercritical water. Int. J. Hydrogen Energy. 2015;40(24):7523–7529.
  • Jin H, Chen Y, Ge Z, et al. Hydrogen production by Zhundong coal gasification in supercritical water. Int J Hydrogen Energy. 2015;40(46):16096–16103.
  • Lan R, Jin H, Guo L, et al. Hydrogen Production by Catalytic Gasification of Coal in Supercritical Water. Energy Fuels. 2014;28(11):6911–6917.
  • Matsumura Y, Yoshida T. Gasification of cellulose, xylan, and lignin mixtures in supercritical water. Ind Eng Chem Res. 2001;40:5469–5474.
  • Castello D, Fiori L. Supercritical water gasification of biomass: Thermodynamic constraints. Bioressource Technol. 2011;102(16):7574–7582.
  • Dianningrum LW, Choi H, Kim Y, et al. Hydrothermal gasification of pure and crude glycerol in supercritical water: A comparative study. Int J Hydrogen Energy. 2014;39(3):1262–1273.
  • Sivamohan NR, Nandaa S, Kozinski JA. Supercritical water gasification of glycerol and methanol mixtures as model waste residues from biodiesel refinery. Chem Eng Res Des. 2016;113:17–27.
  • Guo S, Guo L, Cao C, et al. Hydrogen production from glycerol by supercritical water gasification in a continuous flow tubular reactor. Int J Hydrogen Energy. 2012;37(7):5559–5568.
  • Yang F, Hanna MA, Marx DB, et al. Optimisation of hydrogen production from supercritical water gasification of crude glycerol-byproduct of biodiesel production. Int J Energy Res. 2013;37:1600–1609.
  • Azzaz AA, Jellali A, Akrout H, et al. Optimisation of a cationic dye removal by chemically modified agriculture by-product using response surface methodology: biomasses characterization and adsorption properties. Environ Sci Pollut Res. 2016;24(11):9831–9846.
  • Rojey A, Cornot-Gandolphe S, Durand B, et al. Le gaz naturel : de la production aux marchés [Natural gas : from production to markets]. French: Ed Technip; Paris, France. 2013.
  • Roy-Auberger M, Marion P, Boudet N. Gazéification du charbon[Coal gasification]. French: Ed Techniques de l'Ingénieur; Saint Denis, France; 2016.
  • Buhler W, Dinjus E, Ederer HJ, et al. Ionic reactions and pyrolysis of glycerol as competing reaction pathways in near- and supercritical water. J Supercrit Fluids. 2002;22:37–53.
  • Antal MJ Jr., Mok WSL, Roy JC, et al. Pyrolytic sources of hydrocarbons from biomass. J Anal Appl Pyrol. 1985;8:291–303.
  • Muhler JB, Vogel F. Tar and coke formation during hydrothermal processing of glycerol and glucose Influence of temperature, residence time and feed concentration. J Supercrit Fluids. 2012;70:126–136.
  • Benmakhlouf N, Outili N, Meniai AH. Modeling and optimization of phenol hydrothermal oxidation in supercritical water. Int J Hydrogen Energy. 2017;42(17):12926–12932.
  • Tamošiūnas A, Valatkevičius P, Gimžauskaitė D, et al. Glycerol steam reforming for hydrogen and synthesis gas production. Int J Hydrogen Energy. 2017;1–9. Article in press.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.