Felita Dwinanda Putri REFERENCES
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Badhani, B., Sharma, N. and Kakkar, R. (2015) ‘Gallic acid: A versatile antioxidant with promising therapeutic and industrial applications’, RSC Advances. doi:
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Belinda, R. (2018) Modification of Pyrogallol With Palmitic Acid As A Soluble Biodiesel Additive. Swiss German University.
Bhal, S. (2007) ‘Log P — Making Sense of the Value’, Advanced Chemistry Development.
CAMEO (no date) TERT-BUTYLHYDROQUINONE. Available at:
https://cameochemicals.noaa.gov/chemical/19931 (Accessed: 2 November 2018).
Chemical Book (no date) METHYL LINOLEATE. Available at:
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Domingos, A. K. et al. (2007) ‘The influence of BHA, BHT and TBHQ on the oxidation stability of soybean oil ethyl esters (biodiesel)’, Journal of the Brazilian Chemical Society, 18(2), pp. 416–423. doi: 10.1590/S0103-50532007000200026.
EIA (2017) ‘International Energy Outlook Executive Summary’. Available at:
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Etim, A. O. et al. (2018) ‘Potential of ripe plantain fruit peels as an ecofriendly catalyst for biodiesel synthesis: Optimization by artificial neural network integrated with genetic algorithm’, Sustainability (Switzerland), 10(3). doi: 10.3390/su10030707.
‘Final Report on the Safety Assessment of t-Butyl Hydroquinone’ (1991) Journal of
Felita Dwinanda Putri The American College of Toxicology, 10(1), pp. 1–7. doi:
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Fox, M. A. and Whitesell, J. K. (2004) Organic Chemistry. third edit. North Carolina:
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Ishido, E. et al. (2001) ‘Oxidation of Linoleic Acid and Methyl Linoleate Mixed with Saturated Fatty Acid or its Methyl Ester’, LWT - Food Science and Technology, 34(4), pp. 234–238. doi: 10.1006/fstl.2001.0755.
Issariyakul, T. and Dalai, A. K. (2014) ‘Biodiesel from vegetable oils’, Renewable and Sustainable Energy Reviews. doi: 10.1016/j.rser.2013.11.001.
J. C. Bevington (1957) ‘The Nature of the Initiation Reaction in the Polymerization of Styrene Sensitized by Benzoyl Peroxide’, 239(1218). doi:
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Jain, S. and Sharma, M. P. (2013) ‘Effect of metal contaminants and antioxidants on the storage stability of Jatropha curcas biodiesel’, Fuel. doi:
10.1016/j.fuel.2013.03.050.
Kang, J.-S. (2012) ‘Principles and Applications of LC-MS/MS for the Quantitative
Felita Dwinanda Putri Bioanalysis of Analytes in Various Biological Samples’, Tandem Mass Spectrometry - Applications and Principles. doi: 10.5772/32085.
Klein, D. (Johns H. U. (2011) Organic Chemistry as a Second Language. John Wiley
& Sons.
Knothe, G., Krahl, J. and Van Gerpen, J. (2010) The Biodiesel Handbook: Second Edition, The Biodiesel Handbook: Second Edition. doi: 10.1016/C2015-0-02453-4.
Kurechi, T., Aizawa, M. and Kunugi, A. (1983) ‘Studies on the antioxidants XVIII:
Oxidation product of tertiary butyl hydroquinone (TBHQ) (I)’, Journal of the American Oil Chemists’ Society, 60(11), pp. 1878–1882. doi: 10.1007/BF02901542.
Matyjaszewski, K. and Gaynor, S. G. (2000) ‘FREE RADICAL
POLYMERIZATION’, in Applied Polymer Science: 21st Century. Elsevier, pp. 929–
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McPherson, R. A. and Pincus, M. R. (2011) Henry’s Clinical Diagnosis and Management by Laboratory Methods. 22nd edn. Elsevier Saunders.
Mishra, V. K. and Goswami, R. (2018) ‘A review of production, properties and advantages of biodiesel’, Biofuels. doi: 10.1080/17597269.2017.1336350.
NTP (1997) Toxicology And Carcinogenesis Studies of t-Buthylhydroquinone. North Carolina. Available at: https://ntp.niehs.nih.gov/ntp/htdocs/lt_rpts/tr459.pdf.
Odian, G. (2004) Radical Chain Polymerization, Principles of Polymerization. doi:
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Felita Dwinanda Putri Pramastiani, A. J. (2018) Modification of Tert-Butylhydroquinone With Palmitic Acid As A Soluble Antioxidant For Biodiesel Additive. Swiss German University.
Pubchem (2018) Tert-butylhydroquinone, National Center for Biotechnology Information. Available at:
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PubChem (2018a) Benzoyl Peroxide. Available at:
https://pubchem.ncbi.nlm.nih.gov/compound/benzoyl_peroxide#section=Top (Accessed: 4 November 2018).
PubChem (2018b) ‘Linoleic Acid’. Available at:
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Pullen, J. and Saeed, K. (2012) ‘An overview of biodiesel oxidation stability’, Renewable and Sustainable Energy Reviews. doi: 10.1016/j.rser.2012.06.024.
Rahmanulloh Arif (2018) Indonesia Biofuels Annual 2018. Available at:
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Rashed, M. M. et al. (2015) ‘Stability of biodiesel, its improvement and the effect of antioxidant treated blends on engine performance and emission’, RSC Advances.
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Ryu, K. (2010) ‘Effect of antioxidants on the oxidative stability and combustion characteristics of biodiesel fuels in an indirect-injection (IDI) diesel engine’, Journal of Mechanical Science and Technology, 23(11), pp. 3105–3113. doi: 10.1007/s12206- 009-0902-6.
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Su, C. et al. (2015) ‘Oil-solubility property of 10 kinds of antixoidants in biodiesel’, Journal of the Chinese Cereals and Oils Association, 30(5).
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Susanto, B. H. et al. (2018) ‘The effect of pyrogallol antioxidant addition and storage temperature to the change of biodiesel quality during storage period’, in IOP
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Sutanto, H. (2016) ‘Synthesis of Pyrogallol Derivative as Antioxidant for Biodiesel’.
Sutanto, H. et al. (2018) ‘Reaction product of pyrogallol with methyl linoleate and its antioxidant potential for biodiesel’, IOP Conference Series: Materials Science and Engineering, 316(1). doi: 10.1088/1757-899X/316/1/012019.
Tajau, R. et al. (2014) ‘Development of palm oil-based UV-curable epoxy acrylate and urethane acrylate resins for wood coating application’, in, pp. 164–169. doi:
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