The Academic Perspective Procedia publishes Academic Platform symposiums papers as three volumes in a year. DOI number is given to all of our papers.
Publisher : Academic Perspective
Journal DOI : 10.33793/acperpro
Journal eISSN : 2667-5862
[1] Tarhan İ. Zeytinyağı distilatındaki biyoaktif bileşenlerin monolitik kolonlarla incelenmesi. Ph.D. Selcuk Universitesi Konya, Turkiye 2019.
[2] Asl PJ, Niazmand R, Jahani M. Theoretical and experimental assessment of supercritical CO2 in extracting phytosterols from rapeseed oil deodorizer distillates. Journal of Food Engineering. 2020;269:109748.
[3] Mendes M, Pessoa F, Coelho G, Uller A. Recovery of the highly aggregated compounds present in the deodoriser distillate of the vegetable oils using supercritical fluids. The Journal of Supercritical Fluids. 2005;34(2):157-162.
[4] Eitenmiller RR. Vitamin E content of fats and oils: nutritional implications. Food technology (Chicago). 1997;51(5):78-81.
[5] Mendes M, Pessoa F, Uller A. An economic evaluation based on an experimental study of the vitamin E concentration present in deodoriser distillate of soybean oil using supercritical CO2. The Journal of Supercritical Fluids. 2002;23(3):257-265.
[6] Speek A, Schrijver J, Schreurs W. Vitamin E composition of some seed oils as determined by high‐performance liquid chromatography with fluorometric detection. Journal of Food Science. 1985;50(1):121-124.
[7] Wyatt CJ, Carballido SP, Mendez R. α-and γ-Tocopherol content of selected foods in the Mexican diet: effect of cooking losses. Journal of Agricultural and Food Chemistry. 1998;46(11):4657-4661.
[8] Bakır DS. Türkiye’de yetişen Kapari (Capparis ovata L.) Bitki Tohumundaki Tokoferollerin Ve Tokotrienollerin Izolasyonu ve Kromatografik yöntemle Tayini. Marmara Universitesi (Turkey); 2019.
[9] Tarhan İ, Kara H. A new HPLC method for simultaneous analysis of sterols, tocopherols, tocotrienols, and squalene in olive oil deodorizer distillates using a monolithic column with chemometric techniques. Analytical Methods. 2019;11(36):4681-4692.
[10] Konuşkan DB, Altan A. Zeytin ve zeytinyağında doğal olarak bulunan biyoaktif bileşikler ve fizyolojik etkileri. Gıda. 2008;33(6):297-302.
[11] Trichopoulou A, Katsouyanni K, Stuver S, et al. Consumption of olive oil and specific food groups and breast cancer risk in Greece. JNCI: Journal of the National Cancer Institute. 1995;87(2):110-116.
[12] Hoe BC, Chan ES, Nagasundara Ramanan R, Ooi CW. Recent development and challenges in extraction of phytonutrients from palm oil. Comprehensive reviews in food science and food safety. 2020;19(6):4031-4061.
[13] He H-P, Corke H, Cai J-G. Supercritical carbon dioxide extraction of oil and squalene from Amaranthus grain. Journal of Agricultural and Food Chemistry. 2003;51(27):7921-7925.
[14] Akgün NA. Separation of squalene from olive oil deodorizer distillate using supercritical fluids. European journal of lipid science and technology. 2011;113(12):1558-1565.
[15] Bhattacharjee P, Chatterjee D, Singhal RS. Supercritical carbon dioxide extraction of squalene from Amaranthus paniculatus: experiments and process characterization. Food and Bioprocess Technology. 2012;5(6):2506-2521.
[16] Ahmadi K, Wulansari A, Subroto Y, Estiasih T. Protective effect of food products enriched with unsaponifiable matter from palm fatty acid distillate on the aorta of hypercholesterolemic rats. Journal of Applied Pharmaceutical Science. 2017;7(12):090-096.
[17] Carvalho PJ, Coutinho JA. On the nonideality of CO2 solutions in ionic liquids and other low volatile solvents. The Journal of Physical Chemistry Letters. 2010;1(4):774-780.
[18] Ni X, Xing H, Yang Q, et al. Selective liquid–liquid extraction of natural phenolic compounds using amino acid ionic liquids: a case of α-tocopherol and methyl linoleate separation. Industrial & engineering chemistry research. 2012;51(18):6480-6488.
[19] Qin L, Zhang J, Cheng H, Chen L, Qi Z, Yuan W. Selection of imidazolium-based ionic liquids for vitamin E extraction from deodorizer distillate. ACS Sustainable Chemistry & Engineering. 2016;4(2):583-590.
[20] Ratti R. Ionic liquids: synthesis and applications in catalysis. Adv Chem. 2014;2014(3):1-16.
[21] Yang Q, Xing H, Cao Y, Su B, Yang Y, Ren Q. Selective separation of tocopherol homologues by liquid− liquid extraction using ionic liquids. Industrial & Engineering Chemistry Research. 2009;48(13):6417-6422.
[22] Martins P, Ito V, Batistella C, Maciel MW. Free fatty acid separation from vegetable oil deodorizer distillate using molecular distillation process. Separation and Purification Technology. 2006;48(1):78-84.
[23] Yemişçioğlu F, Özdikicierler O, Gümüşkesen AS, Sönmez AE. BİTKİSEL YAĞ RAFİNASYON ARTIKLARININ DEĞERLENDİRİLMESİ. GIDA/The Journal of FOOD. 2013;38(6)
[24] Çakir Taş H. Bitkisel yağ deodorize distilatındaki E vitamininin karakterizasyonu ve yarı-preparatif HPLC ile geri kazanımı. Fen Bilimleri Enstitüsü;
[25] Bondioli P, Mariani C, Lanzani A, Fedeli E, Muller A. Squalene recovery from olive oil deodorizer distillates. Journal of the American Oil Chemists' Society. 1993;70(8):763-766.
[26] Vachiraanan K, Rattanapisit J, Sridang P. Hybrid Processes for Extraction–separation of Tocopherols from Crude Palm Oil. Journal of Applied Membrane Science & Technology. 2008;8(1)
[27] Naz S, Sherazi S, Talpur FN, Talpur MY, Kara H. Determination of unsaponifiable constituents of deodorizer distillates by GC–MS. Journal of the American Oil Chemists' Society. 2012;89:973-977.
[28] Naz S, Sherazi STH, Talpur FN, Mahesar SA, Kara H. Rapid determination of free fatty acid content in waste deodorizer distillates using single bounce-attenuated total reflectance-FTIR spectroscopy. Journal of AOAC International. 2012;95(6):1570-1573.