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Transesterification Reaction of Waste Cooking Oil and Chicken Fat by Homogeneous Catalysis

Transesterification Reaction of Waste Cooking Oil and Chicken Fat by Homogeneous Catalysis
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摘要 In the last years, biodiesel production has been on a steady increase due to it is renewable and biodegradable fuel. The process to obtain biodiesel can be carried out using different raw materials. It is conlmonly performed by transesterification reaction of vegetable oils with methanol and using a homogeneous or heterogeneous catalyst. This work seeks to compare the results produced in transesterification of wasted cooking oil and chicken fat by homogeneous catalysis with NaOH. Due to in each case triglyceride comes from different raw materials, operation conditions differ slightly, which is more evident in the values used for the temperature. For chicken fat was used temperature variations between 35 ℃ and 55 ℃, varying catalyst in percentages between 0.3% and 0.7% with a molar ratio 6:1 in all cases and a reaction time of I h. Likewise, the conditions used in the tmnsesterification process of waste cooking oil were temperature between 50 ℃ and 60 ℃ with a molar ratio 6/1 and 9/1 for alcohol and oil, and catalyst percentage between 0.5% and 0.7% by weight. The yields obtained were between 78% and 94%, or 83% and 95%, for chicken fat and wasted cooking oil, respectively.
出处 《Journal of Chemistry and Chemical Engineering》 2014年第7期736-743,共8页 化学与化工(英文版)
关键词 BIODIESEL TRANSESTERIFICATION homogeneous catalysis cooking oil chicken fat. 非均相催化剂 酯交换反应 废食用油 脂肪 鸡油 温度变化 生物柴油 可生物降解
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  • 1Teresa, S; Jose, M. G. Biodiesel as a Motor Fuel Price Stabilization Mechanism. Energy Policy 2012,50, 689-698. 被引量:1
  • 2OECD-FAO, “OECD-FAO Agricultural Outlook 2013-2022”,2013. 被引量:1
  • 3Johan, B.; Lieve, G. Environmental Hazard and Risk Characterisation of Petroleum Substances. A Guided “Walking Tour” of Petroleum Hydrocarbons. Environment International 2014, 66, 182-193. 被引量:1
  • 4Jutika, B.; Lakhya, J. K; Dhanapati, D. Transesterification of Non-edible Feedstock with Lithium Incorporated Egg Shell Derived CaO for Biodiesel Production. Fuel Processing Technology 2014,122, 72-78. 被引量:1
  • 5Spinelli, D.; Jez, S.; Pogni, R.; Basosi, R. Environmental and Life Cycle Analysis of a Biodiesel Production Line from Sunflower in the Province of Siena (Italy). Energy^ Policy 2013, 59, 492-506. 被引量:1
  • 6Jonathan, M.; Johnny,T.; Carlos, A. C. Evolution from Biofuels to Integrated Biorefmeries. Techno-Economic and Environmental Assessment of OH Palm in Colombia 2014, 81, 51-59. 被引量:1
  • 7Maria, M. R.; Ricardo, G.; Hernandez-Cortez, J. G. Advances in the Transesterification of Triglycerides to Biodiesel Using MgO-NaOH, MgO-KOH and Mg0-Ce02 as Solid Basic Catalysts. Catalysis Today 2013, 212, 23-30. 被引量:1
  • 8Teresa, M.; Mata,A. M.; Nidia, C.; Antonio, M. Properties and Sustainability of Biodiesel from Animal Fats and Fish Oil. Chemical Engineering Transactions2014, 38, 175-180. 被引量:1
  • 9FENAVI, Poultry Production Statistics, 2013, http://www.fenavi.org/index.php?option=com_content&v vie=article&id=2472&ltemid= 1330 (accessed Oct 5, 2013). 被引量:1
  • 10Robert, W. M.; Potta, C. J.; Howeb, J. S. D. The Purification of Crude Glycerol Derived from Biodiesel Manufacture and Its Use as a Substrate by Rhodopseudomonas Palustris to Produce Hydrogen.Bioresource Technology 2013, 152, 464-470. 被引量:1

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