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Spectroscopy Letters
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Volume 53, 2020 - Issue 2
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Articles

Spectra and carbonyl index changes on processed beef fats using fourier transform infrared spectrometer and principal component analysis

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Pages 114-122 | Received 16 Aug 2019, Accepted 01 Dec 2019, Published online: 17 Dec 2019

Reference

  • Sartika, R. A. D. Pengaruh Suhu Dan Lama Proses Menggoreng (Deep Frying) Terhadap Pembentukan Asam Lemak Trans. Jurnal Makara Sains 2009, 13, 23–28. In Indonesian
  • Salirawati , Pengaruh Cara Pengolahan terhadap Kadar Kolesterol pada Daging Ayam Broiler. Thesis, Universitas Negeri Yogyakarta: Yogyakarta, Indonesia, 2005.
  • Bastin, S. Heat in Cooking; University of Kentucky: Lexington, 2011.
  • Palupi, N. S.; Zakaria, F. R.; Prangdimurti, E. Pengaruh Pengolahan Terhadap Nilai Gizi Pangan; Institut Pertanian Bogor: Bogor, 2007. In Indonesian
  • Hardini, D. Angka Peroksida Telur Omega Selama Proses Pengolahan. Jurnal Protein 2006, 13, 57–62. In Indonesian
  • Scheirs, J. A Guide to Polymeric Geomembranes. John Wiley and Sons, Ltd.: Chichester, 2009.
  • Galliard, T. Enzymic degradation of cereal lipid. In Lipids and Cereal Technology (Food Science and Technology: A Series of Monograph). Academic Press: London, 1983; 111–147 pp.
  • Ketaren, S. Pengantar Teknologi Minyak Dan Lemak Pangan; UI Press: Jakarta, 2008. In Indonesian
  • Rodriguez-Saona, L. E.; Allendorf, M. E. Use of FTIR for Rapid Authentication and Detection of Adulteration of Food. Annual Review of Food Science and Technology 2011, 2, 467–483. DOI: 10.1146/annurev-food-022510-133750.
  • Nurrulhidayah, A. F.; Che Man, Y. B.; Rohman, A.; Amin, I.; Shuhaimi, M.; Khatib, A. Authentication Analysis of Butter from Beef Fat Using Fourier Transform Infrared (FTIR) Spectroscopy Coupled with Chemometrics. International Food Research Journal 2013, 20, 1383–1388.
  • Zahir, E.; Saeed, R.; Hameed, M. A.; Yousuf, A. Study of Physicochemical Properties of Edible Oil and Evaluation of Frying Oil Quality by Fourier Transform-Infrared (FT-IR) Spectroscopy. Arabian Journal of Chemistry 2017, 10, S3870–S3876. DOI: 10.1016/j.arabjc.2014.05.025.
  • Faridah, D. N.; Lioe, H. N.; Palupi, N. S.; Kahfi, J. Detection of FFA and PV Values Using FTIR for Quality Measurement in Palm Oil Frying Activities. Journal of Oil Palm Research 2015, 27, 156–167.
  • Mueller, D.; Ferrão, M. F.; Marder, L.; da Costa, A. B.; Schneider, R. C. S. Fourier Transform Infrared Spectroscopy (FTIR) and Multivariate Analysis for Identification of Different Vegetable Oils Used in Biodiesel Production. Sensors 2013, 13, 4258–4271. DOI: 10.3390/s130404258.
  • Selaimia, R.; Oumeddour, R.; Nigri, S. The Chemometrics Approach Applied to FTIR Spectral Data for the Oxidation Study of Algerian Extra Virgin Olive Oil. International Food Research Journal 2017, 24, 1301–1307.
  • Dupuy, N.; Duponchel, L.; Huvenne, J. P.; Sombret, B.; Legrand, P. Classification of Edible Fats and Oils by Principal Component Analysis of Fourier Transform Infrared Spectra. Food Chemistry 1996, 57, 245–251. DOI: 10.1016/0308-8146(95)00213-8.
  • Aminullah, A.; Mardiah, M.; Hakim, L.; Argani, A. P.; Syahbirin, G. Effect of Fat Extraction Methods on Fatty Acid and Infrared Profiles Using GC-MS and FTIR. Asian Journal of Chemistry 2018, 30, 1317–1320.
  • Aminullah, A.; Mardiah, M.; Sutsuga, H.; Kemala, T. Study of Different Extraction Methods on Finger Print and Fatty Acid of Raw Beef Fat Using Fourier Transform Infrared and Gas Chromatography-Mass Spectrometry. Open Chemistry 2018, 16, 1099–1105.
  • Susilawati, M. Agustina, Ragam asam-asam lemak daging kambing dan sapi segar serta olahannya pada lokasi karkas yang berbeda. In Prosiding Seminar Agroindustri Dan Lokakarya Nasional FKPT-TPI, Program Studi TIP-UTM; Ulya, M.; Wulandari, N.; Efendi, M.; Iswanto, H., Eds.; UTM Press: Bangkalan, Madura, Indonesia, 2015, 100–107 pp. In Indonesian
  • Adiyastiti, B. E. T.; Suryanto, E.; Rusman, R. Pengaruh Lama Pembakaran Dan Jenis Bahan Bakar Terhadap Kualitas Sensoris Dan Kadar Benzo(a)Piren Sate Daging Kambing. Buletin Peternakan 2014, 38, 189–196. In Indonesian
  • Folch, J.; Lees, M.; Sloane Stanley, G. H. A Simple Method for the Isolation and Purification of Total lipides from animal tissues. The Journal of Biological Chemistry 1957, 226, 497–509.
  • Permanyer, A.; Douifi, L.; Lahcini, A.; Lamontagne, J.; Kister, J. FTIR and SUVF Spectroscopy Applied to Reservoir Compartmentalization: A Comparative Study with Gas Chromatography Fingerprints Results. Fuel 2002, 81, 861–866. DOI: 10.1016/S0016-2361(01)00211-3.
  • Boskou, G.; Salta, F. N.; Chiou, A.; Troullidou, E.; Andrikopoulos, N. K. Content of Trans, Trans-2,4-Decadienal in Deep-Fried and Pan-Fried Potatoes. European Journal of Lipid Science and Technology 2006, 108, 109–115. DOI: 10.1002/ejlt.200500236.
  • Juárez, M.; Failla, S.; Ficco, A.; Peña, F.; Avilés, C.; Polvillo, O. Buffalo Meat Composition as Affected by Different Cooking Methods. Food and Bioproducts Processing 2010, 88, 145–148. DOI: 10.1016/j.fbp.2009.05.001.
  • Paramudhita, P. S. Perubahan Komposisi Asam Lemak dan Kolesterol Ikan Cakalang (Katsuwonus pelamis) Akibat Proses Penggorengan. Thesis, Institut Pertanian Bogor: Bogor, Indonesia, 2014.
  • Nurmala, I.; Rachmawan, O.; Suryaningsih, L. Pengaruh Metode Pemasakan Terhadap Komposisi Kimia Daging Itik Jantan Hasil Budidaya Secara Intensif. Students E-Journal 2014, 3(2), 1–10. In Indonesian.
  • Prabandari, R.; Mangalik, A.; Achmad, J., Agustiana, D. Nutrition Evaluation of Indonesian Shortfin Eel. Enviro Scieniteae 2005, 1, 24–28. In Indonesian
  • Asmaa, A. A.; Zzaman, W.; Tajul, A. Y. Effect of Superheated Steam Cooking on Fat and Fatty Acid Composition of Chicken Sausage. International Food Research Journal 2015, 22, 598–605.
  • Devi, W. S.; Sarojnalini, C. Impact of Different Cooking Methods on Proximate and Mineral Composition of Amblypharyngodon Mola of Manipur. International Journal of Advanced Biological Research 2012, 2, 641–645.
  • Saraswati, A. Efek Pengukusan terhadap Kandungan Asam Lemak dan Kolesterol Kakap Merah (Lutjanus bohar). Thesis, Institut Pertanian Bogor: Bogor, Indonesia, 2013.
  • Dewi, Y. P. Perubahan Kandungan Asam Lemak dan Kolesterol Keong Mas (Pomacea canaliculata) Akibat Proses Pengolahan. Thesis, Institut Pertanian Bogor: Bogor, Indonesia, 2012.
  • Saldanha, T.; Bragagnolo, N. Effects of Grilling on Cholesterol Oxide Formation and Fatty Acids Alterations in Fish. Ciência e Tecnologia de Alimentos 2010, 30, 385–390. DOI: 10.1590/S0101-20612010000200015.
  • Silverstein, R. M.; Bassler, G. C.; Morrill, T. C. Spectrometric Identification of Organic Compounds, 4th ed.; J. Wiley and Sons: New York, 1981.
  • Guntarti, A.; Martono, S.; Yuswanto, A.; Rohman, A. FTIR Spectroscopy in Combination with Chemometrics for Analysis of Wild Boar Meat in Meatball Formulation. Asian Journal of Biochemistry 2015, 10, 165–172. DOI: 10.3923/ajb.2015.165.172.
  • Kapitan, O. B. Analisis Kandungan Asam Lemak Trans (Trans Fat) Dalam Minyak Bekas Penggorengan Jajanan di Pinggir Jalan Kota Kupang. Jurnal Kimia Terapan 2013, 1, 17–31. In Indonesian
  • Song, J.; Park, J.; Jung, J.; Lee, C.; Gim, S. Y.; Ka, H. J.; Yi, B. R.; Kim, M. J.; Kim, C. I.; Lee, J. H. Analysis of Trans Fat in Edible Oils with Cooking Process. Toxicological Research 2015, 31, 307–312. DOI: 10.5487/TR.2015.31.3.307.
  • Żyżelewicz, D.; Budryn, G.; Krysiak, W.; Oracz, J.; Nebesny, E.; Bojczuk, M. Influence of Roasting Conditions on Fatty Acid Composition and Oxidative Changes of Cocoa Butter Extracted from Cocoa Bean of Forastero Variety Cultivated in Togo. Food Research International 2014, 63, 328–343. DOI: 10.1016/j.foodres.2014.04.053.
  • Tsuzuki, W.; Matsuoka, A.; Ushida, K. Formation of Trans Fatty Acids in Edible Oils during the Frying and Heating Process. Food Chemistry 2010, 123, 976–982. DOI: 10.1016/j.foodchem.2010.05.048.
  • Choe, E.; Min, D. B. Mechanisms and Factors for Edible Oil Oxidation. Comprehensive Reviews in Food Science and Food Safety 2006, 5, 169–186. DOI: 10.1111/j.1541-4337.2006.00009.x.
  • Guillén, M. D.; Cabo, N. Infrared Spectroscopy in the Study of Edible Oils and Fats. Journal of the Science of Food and Agriculture 1997, 75, 1–11. DOI: 10.1002/(SICI)1097-0010(199709)75:1<1::AID-JSFA842>3.0.CO;2-R.
  • Barthel, G.; Grosch, W. Peroxide Value Determination: Comparison of Some Methods. Journal of the American Oil Chemists Society 1974, 51, 540–544. DOI: 10.1007/BF02636025.
  • Coates, J. Interpretation of Infrared Spectra, A Practical Approach. In Encyclopedia of Analytical Chemistry; Meyers, R. A., Ed.; John Wiley and Sons Ltd: Chichester, 2000, 10815–10837 pp.
  • Brimberg, U. I. On the Kinetics of the Autoxidation of Fats. Journal of the American Oil Chemists’ Society 1993, 70, 249–254. DOI: 10.1007/BF02545304.
  • Ahmed, M.; Pickova, J.; Ahmad, T.; Liaquat, M.; Farid, A.; Jahangir, M. Oxidation of Lipids in Foods. Sarhad Journal of Agriculture 2016, 32, 230–238. DOI: 10.17582/journal.sja/2016.32.3.230.238.
  • Ohyabu, D.; Mukai, A.; Ohta, S. A. Simple Method for Determining the Carbonyl Value of Volatile Carbonyl Compounds. Journal of Japan Oil Chemists’ Society 1979, 28, 28–36. DOI: 10.5650/jos1956.28.317.
  • Belitz, H. D.; Grosch, W.; Schieberle, P. Food Chemistry, 4th ed.; Springer: Heidelberg, 2009.
  • Peng, C. Y.; Lan, C. H.; Lin, P. C.; Kuo, Y. C. Effects of Cooking Method, Cooking Oil, and Food Type on Aldehyde Emissions in Cooking Oil Fumes. Journal of Hazardous Materials 2017, 324, 160–167. DOI: 10.1016/j.jhazmat.2016.10.045.
  • Umano, K.; Shibamoto, T. Analysis of Acrolein from Heated Cooking Oils and Beef Fat. Journal of Agricultural and Food Chemistry 1987, 35, 909–912. DOI: 10.1021/jf00078a014.
  • Zhu, X.; Wang, K.; Zhu, J.; Koga, M. Analysis of Cooking Oil Fumes by Ultraviolet Spectrometry and Gas Chromatographymass Spectrometry. Journal of Agricultural and Food Chemistry 2001, 49, 4790–4794. DOI: 10.1021/jf001084y.
  • Fullana, A.; Carbonell-Barrachina, A. A.; Sidhu, S. Volatile Aldehyde Emissions from Heated Cooking Oils. Journal of the Science of Food and Agriculture 2004, 84, 2015–2021. DOI: 10.1002/jsfa.1904.
  • Kosowska, M.; Majcher, M. A.; Fortuna, T. Volatile Compounds in Meat and Meat Products. Food Science and Technology 2017, 37, 1–7. (Campinas). DOI: 10.1590/1678-457x.08416.
  • Kadegowda, A. K. G.; Piperova, L. S.; Erdman, R. A. Principal Component and Multivariate Analysis of Milk Long-Chain Fatty Acid Composition during Diet-Induced Milk Fat Depression. Journal of Dairy Science 2008, 91, 749–759. DOI: 10.3168/jds.2007-0265.
  • Coltro, W. K. T.; Ferreira, M. M. C.; Macedo, F. A. F.; Oliveira, C. C.; Visentainer, J. V.; Souza, N. E.; Matsushita, M. Correlation of Animal Diet and Fatty Acid Content in Young Goat Meat by Gas Chromatography and Chemometrics. Meat Science 2005, 71, 358–363. DOI: 10.1016/j.meatsci.2005.04.016.
  • Rohman, A.; Triyana, K.; Sismindari,   Erwanto, Y. Differentiation of Lard and Other Animal Fats Based on Triacylglycerols Composition and Principal Component Analysis. International Food Research Journal 2012, 19, 475–479.

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