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Original Articles

Effect of moisture content on oil extraction from spent coffee grounds

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References

  • Abdullah, M., and A. B. Koc. 2013. Oil removal from waste coffee grounds using two-phase solvent extraction enhanced with ultrasonication. Renew Energy 50 (February):965–70.
  • Adam, F., M. Albert-Vian, G. Peltier, and F. Chemat. 2012. Solvent-free ultrasound-assisted extraction of lips from fresh microalgae cells: A green, clean and scalable process. Bioresource Technology 114 (June):457–65.
  • Ahangar, B., and J. Sargolzaei. 2012. Extraction of lips from spent coffee grounds using organic solvents and supercritical carbon dioxide. Journal Food Processing 37 (2013):1014–21.
  • Al-Hamamre, Z., S. Foerster, F. Hartmann, M. Kröger, and M. Kaltschmitt. 2012. Oil extracted from spent coffee grounds as a renewable source for fatty acid methyl ester manufacturing. Fuel 96 (June):70–76.
  • Andradea, K. S., R. T. Gonc¸, M. Maraschinb, R. M. Ribeiro-do-Vallec, J. S. Martínezd, and R. S. Ferreiraa. 2012. Supercritical fluid extraction from spent coffee grounds and coffee husks: Antioxidant activity and effect of operational variables on extract composition. Talanta 88 (January):544–52.
  • Anon. 1943. Brazil uses vegetable oil for diesel fuel. Chemical Metall Engineering 50:225.
  • Cheng, F. W. 1945. China produces fuels from vegetable oils. Chemical Metall Engineering 52:99.
  • Chopra, V. L., and K. V. Peter, eds. 2005. Handbook of Industrial Crops. New York: The Haworth Press.
  • Christie, W. W. 1982. Lipid Analysis. 2nd Edn. 17–19. Oxford, UK: Pergamon Press.
  • Couto, R. M., J. Fernandes, M. D. R. Gomes Da Silva, and P. C. Simões. 2009. Supercritical fluid extraction of lipids from spent coffee grounds. Journal Supercrit Fluids 51 (2):51159–66.
  • De Vedia, M. 1944. Vegetable oils as diesel fuels. Diesel Power Diesel Transp 22:1298–301.
  • Graboski, M. S., and R. L. McCormick. 1998. Combustion of fat and vegetable oil derived fuels in diesel engines. Progress Energy Combustion Sciences 24 (2):125–64.
  • Gross, G., E. Jaccaud, and A. C. Huggett. 1997. Analysis of the content of the diterpenes cafestol and kahweol in coffee brews. Food and Chemical Toxicology 35 (6):547–54.
  • Helrich, K. 2010. Official methods of analysis, 17th ed. Washington, DC: Association of Official Analytical Chemists.
  • Jordanov, D. I., P. S. Petkov, Y. K. Dimitrov, and S. K. Ivanov. 2007. Methanol transesterification of different vegetable oils. Petroleum & Coal 49 (9):21–23.
  • Jucker, E. 1987. Progress in drug research, 275. Boston: Birkhauser Verlag-Basel.
  • Kondamudi, N., S. K. Mohapatra, and M. Misra. 2008. Spent coffee grounds as a versatile source of green energy. Journal Agricultural Food Chemical 56 (24):11757–61.
  • Kwon, E. E., H. Yi, and Y. J. Jeon. 2013. Sequential co-production of biodiesel and bioethanol with spent coffee grounds. Bioresource Technology 136 (May):475–80.
  • Liu, C. Z., S. Zheng, L. Xu, F. Wang, and C. Guo. 2013. Algal oil extraction from wet biomass of Botryococcus braunii by 1,2-dimethoxyethane. Applied Energy 102 (February):971–74.
  • Moradi, G. R., S. Dehghani, and R. Ghanei. 2012. Measurements of physical properties during transesterification of soybean oil to biodiesel for prediction of reaction progress. Energy Conversion and Management 61 (September):67–70.
  • Nehdi, I. 2011. Characteristics, chemical composition and utilisation of Albizia julibrissin seed oil. Industrial Crop Products 33 (1):30–34.
  • Njoroge, J. M., C. O. Agwanda, P. N. Kingori, A. M. Karanja, and M. P. H. Gathaara. 2005. Coffee. In: Handbook of Industrial Crops, eds. Chopra, V. L. and K. V. Peter, 295–333. New York, USA: The Haworth Press.
  • Rao, R. K., M. G. Krishna, S. H. Zaheer, and L. K. Arnold. 1955. Alcoholic extraction of vegetable oils. I. Solubilities of cottonseed, peanut,: sesame,and soybean oils in aqueous ethanol. Journal American Oil Chemical Social 32 (7):420–23.
  • Sakai, T., A. Kawashima, and T. Koshikawa. 2009. Economic assessment of batch biodiesel production processes using homogeneous and heterogeneous alkali catalysts. Bioresource Technology 100 (13):3268–76.
  • Setyaningrum, D. L., S. Riyanto, and A. Rohman. 2013. Analysis of corn and soybean oils in red fruit oil using FTIR spectroscopy in combination with partial least square. International Food Researcher Journal 20 (4):1977–81.
  • Shah, Z. H., and Q. A. Tahir. 2011. Dielectric properties of vegetable oils. Journal Sciences Researcher 3 (3):481–92.
  • Urget, R., and M. B. Katan. 1996. The cholesterol-raising factor from coffee beans. Journal R Social Medica 89 (11):618–23.
  • Walter, A., J. R. Pons, and P. H. Eaves. 1964. Aqueous acetone extraction of cottonseed. Journal American Oil Chemical Social 44 (7):460–64.

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