Biodiesel Production from Waste Cooking Grease: Optimization and Comparative Productivity Assessment

被引:0
作者
Ji Won Na
Jae-Cheol Lee
Hyun-Woo Kim
机构
[1] Chonbuk National University,Dept. of Environmental Engineering
来源
KSCE Journal of Civil Engineering | 2019年 / 23卷
关键词
transesterification; waste cooking grease; biodiesel; response surface methodology; waste to energy;
D O I
暂无
中图分类号
学科分类号
摘要
This study evaluated the recovery rate of Fatty Acids Methyl Ester (FAME) using various waste cooking greases from local restaurants. The productivity of biodiesel was analyzed based on the FAME contents and profiles according to the source of greases. Adapting a statistical approach, Response Surface Methodology (RSM), various transesterification based on the ratio of catalyst (KOH) and methanol was evaluated experimentally. Results presented a significant difference in total FAME recovery depending on reaction condition. RSM revealed the optimal blending condition of methanol (59−100 ml) and KOH (2.2−3.2 g) for waste cooking greases of bovine, swine, and poultry, which presented similar FAME characteristics when compared with other biodiesels. Optimal conditions for bovine, swine and poultry made the potential of biodiesel recovery from greases as high as 57.0%, 55.3%, and 53.7%, respectively. Overall, suggested optimized transesterification of waste cooking grease prevents unnecessary resource waste and enables the concept of waste-to-energy. It is also eco-friendly due to reduced pollutant emission and fossil fuel substitution.
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页码:1000 / 1006
页数:6
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[1]  
Benjumea P.(2011)Effect of the degree of unsaturation of biodiesel fuels on engine performance, combustion characteristics, and emissions Energy & Fuels, ACS Publications 25 77-85
[2]  
Agudelo J. R.(2007)The potential of restaurant waste lipids as biodiesel feedstocks Bioresource Technology 98 183-190
[3]  
Agudelo A. F.(2008)Biodiesel from low-grade animal fat: Production process assessment and biodiesel properties characterization Industrial & Engineering Chemistry Research 47 7997-8004
[4]  
Canakci M.(2009)Biodiesel production from waste animal fat and improvement of its characteristics by synthesized nickel and magnesium additive Energy conversion and Management 50 498-502
[5]  
Canoira L.(2010)Biodiesel production from waste chicken fat based sources and evaluation with Mg based additive in a diesel engine Renewable Energy 35 637-643
[6]  
Rodriguez-Gamero M.(2012)Review of biodiesel composition, properties, and specifications Renewable & Sustainable Energy Reviews 16 143-169
[7]  
Querol E.(2007)Response surface optimization of substrates for thermophilic anaerobic codigestion of sewage sludge and food waste Journal of the Air & Waste Management Association 57 309-318
[8]  
Alcantara R.(2002)Structure indices in FA chemistry. How relevant is the iodine value Journal of the American Oil Chemists’ Society 79 847-854
[9]  
Lapuerta M.(1986)A simple method for estimation of cetane index of vegetable oil methyl-esters Journal of the American Oil Chemists Society 63 552-553
[10]  
Oliva F.(2012)Yield and characterization of various biodiesel from vegetable oils and animal fats Journal of the Korean society for New and Renewable Energy 8 30-37