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Application of red mud as a basic catalyst for biodiesel production 被引量:5

Application of red mud as a basic catalyst for biodiesel production
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摘要 Red mud was investigated in triglyceride transesterification with a view to determine its viability as a basic catalyst for use in biodiesel synthesis. The effect of calcination temperature on the structure and activity of red mud catalysts was investigated. It was found that highly active catalyst was obtained by simply drying red mud at 200℃. Utilization of red mud as a catalyst for biodiesel production not only provides a cost-effective and environmentally friendly way of recycling this solid red mud waste, significantly reducing its environmental effects, but also reduces the price of biodiesel to make biodiesel competitive with petroleum diesel. Red mud was investigated in triglyceride transesterification with a view to determine its viability as a basic catalyst for use in biodiesel synthesis. The effect of calcination temperature on the structure and activity of red mud catalysts was investigated. It was found that highly active catalyst was obtained by simply drying red mud at 200℃. Utilization of red mud as a catalyst for biodiesel production not only provides a cost-effective and environmentally friendly way of recycling this solid red mud waste, significantly reducing its environmental effects, but also reduces the price of biodiesel to make biodiesel competitive with petroleum diesel.
出处 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2013年第4期823-829,共7页 环境科学学报(英文版)
基金 supported by the Natural Science Basic Research Plan in Shaanxi Province of China (No.2010JM2003) the Fundamental Research Funds for the Central Universities (No. GK200902006)
关键词 red mud basic catalyst TRANSESTERIFICATION BIODIESEL industrial waste red mud basic catalyst transesterification biodiesel industrial waste
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  • 1Antunes M L P, Couperthwaite S J, da Conceigao F T, de Jesus C P C, Kiyohara P K, Coelho A C et al., 2012. Red mud from brazil: Thermal behavior and physical properties. Industrial and Engineering Chemistry Research, 51(2): 775-779.
  • 2Balakrishnan M, Batra V S, Hargreaves J S J, Monaghan A, Pulford I D, Rico J L et al., 2009. Hydrogen production from methane in the presence of red mud - making mud magnetic. Green Chemistry, 11(1): 42-47.
  • 3Bhatnagar A, Vilar V J P, Botelho CMS, Boaventura R A R,2011. A review of the use of red mud as adsorbent for the removal of toxic pollutants from water and wastewater. Environmental Technology, 32(3): 231-249.
  • 4Busca G, 2010. Bases and basic materials in chemical and environmental processes. Liquid versus solid basicity. Chemical Reviews, 110(4): 2217-2249.
  • 5Cengeloglu Y, Tor A, Arslan G, Ersoz M, Gezgin S, 2007. Removal of boron from aqueous solution by using neutralized red mud. Journal of Hazardous Materials, 142(1-2): 412-417.
  • 6Collazo A, Fernandez D, Izquierdo M, Novoa X R, Perez C,2005. Evaluation of red mud as surface treatment for carbon steel prior painting. Progress in Organic Coatings, 52(4): 351-358.
  • 7Gelbard G, Bres O, Vargas R M, Vielfaure F, Schuchardt U F, 1995. 'H nuclear magnetic resonance determination of the yield of the transesterification of rapeseed oil with methanol. Journal of the American Oil Chemists’ Society, 72(10): 1239-1241.
  • 8Huang W W, Wang S B, Zhu Z H, Li L, Yao X D, Rudolph V et al., 2008. Phosphate removal from wastewater using red mud. Journal of Hazardous Materials, 158(1): 35-42.
  • 9Jimenez-Morales I, Santamarfa-Gonzalez J, Maireles-Torres P, Jimenez-Lopez A, 2011. Aluminum doped SBA-15 silica as acid catalyst for the methanolysis of sunflower oil. Applied Catalysis B: Environmental, 105(1-2): 199-205.
  • 10Karimi E, Briens C, Berruti F, Moloodi S, Tzanetakis T, Thomson M J et al., 2010. Red mud as a catalyst for the upgrading of hemp-seed pyrolysis bio-oil. Energy and Fuels, 24(12): 6586-6600.

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  • 6RIBEIRO D V, LABRINCHA J A,MORELLI M R. Synthesis and characterization of red mud and rice husk ash - based geopolymercomposites[J].Cement and Concrete Research,2012, 42(1) :124- 133.
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