Effect of Extraction Methods on Bioactive Compounds of Plant Origin

The use of bioactive compounds has been maintaining its significance from nutritional aspects. Due to the increasing demand for them in potential markets, researchers struggle to create new sources and improve their methods. Plant materials possess plenty and a diverse range of these compounds. However, their availability strongly depends on the extraction techniques in addition to the sampling methods and the applicability of the method to the specific parts of the plant. Thus, it is crucial to develop a common, precise way which will enable to extract all the active components regardless of their origin and their location in the plant material. Besides, the new method ought to have the highest economic value in comparison to the present applications which means that the efficiency of the extraction should be acceptable on industrial scale as well. Even though numerous methods have been improved so far, it seems to be unlikely to achieve a standardized solution with high valorization for the extraction of bioactive compounds from plants until now. This review aims to discuss the novel extraction methods in addition to the conventional techniques focusing on the critical parameters such as the cost, time, yield, feasibility and eco-friendliness of the process.

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Adil I, Bayındırlı A. 2006. Pressurized Liquid Extraction of Phenolic Compounds From Fruit Pomaces. Natural and Applied Sciences, Middle East Technical University. Ph. D. Thesis, 122 pp, Ankara, TURKEY.

Altiok E, Baycin D, Bayraktar O, Ulku S. 2008. Isolation of polyphenols from the extracts of olive leaves (Olea europaea L.) by adsorption on silk fibroin. Separation and Purification Technology. 62(2): 342-348. doi:10.1016/ j.seppur.2008.01.022

Alupului A, Calinescu I, Lavric V. 2012. Microwave extraction of active principles from medicinal plants. U.P.B. Science Bulletin, Series B 74(2): 130-142. Available at https://www.researchgate.net/publication/309347562 [accessed on 23/07/2017]

Amr A, Al-Tamimi E. 2007. Stability of the crude extracts of Ranunculus asiaticus anthocyanins and their use as food colourants. International Journal of Food Science and Technology, 42, 985–991. doi:10.1111/j.1365- 2621.2006.01334.x

Artık N, Anlı RE, Konar N, Vural N. 2016. Gıdalarda Bulunan Fenolik Bileşikler. Izmir: Sidas Medya Ltd Şti.-141 pages. 67-94. ISBN NO: 978-605-5267-29-2

Asfaw N, Licence P, Novitskii AA, Poliakoff M. 2005. Green chemistry in Ethiopia: the cleaner extraction of essential oils from Artemisia afra: a comparison of clean technology with conventional methodology. Green Chem. 7 352–356. DOI: 10.1039/b417961g

Awika J M, Rooney LW, Waniska RD. 2004. Anthocyanins from black sorghum and their antioxidant properties. Food Chemistry, 90, 293–301. doi:10.1016/j.foodchem. 2004.03.058

Azmir J, Zaidul ISM, Rahman MM, Sharif KM, Mohamed A, Sahena F, Jahurul MHA, Ghafoor K, Norulaini NAN, Omar, AKM. 2013. “Techniques for extraction of bioactive compounds from plant materials: A review” Journal of Food Engineering 117; 426–436. Available at http://dx.doi.org/10.1016/j.jfoodeng.2013.01.014 [accessed on 05/09/2017]

Balas A, Popa VI. 2007. Bioactive aromatic compounds – The influences of natural aromatic compounds on the development of Lycopersicon esculentum plantlets. BioResources, 2(3): 363–370. DOI: 10.15376/biores.2. 3.363-370. Available at http://ojs. cnr.ncsu.edu/ index.php/BioRes/article/viewFile/BioRes_2_3_363_370_A romatic_Compounds/149 [accessed on 19/03/2017]

Benthin B, Danz H, Hamburger M. 1999. Pressurized liquid extraction of medicinal plants. Journal of Chromatography A, 837, 211–219. PII: S0021-9673(99)00071-0

Biesaga M. 2011. Influence of extraction methods on stability of flavonoids. J.Chromatogr. A 1218, 2505-2512. doi:10.1016/j.chroma.2011.02.059

Bleve M, Ciurlia L, Erroi E, Lionetto G, Longo L, Rescio L, Schettino T, Vasapollo G. 2008. An innovative method for the purification of anthocyanins from grape skin extracts by using liquid and sub-critical carbon dioxide. Separation and Purification Technology, 64, 192–197. doi:10.1016/ j.seppur.2008.10.012

Bucic-Kojic A, Planinic M, Tomas S, Jokic S, Mujic I, Bilic M, Velic D. 2011. Effect of extraction conditions on the extractability of phenolic compounds from lyophilized fig fruits (Ficus carica L.). Polish Journal of Food and Nutrition Sciences, 61, No.3 195–199. Available at http://journal.pan. olsztyn.pl/ DOI:10.2478/v10222-011-0021-9 [accessed on 25/11/2017]

Cabredo-Pinillos S, Cedron-Fernandez T, Gonzalez-Briongos M, Puente-Pascual L, Saenz-Barrio C. 2006 “Ultrasoundassisted extraction of volatile compounds from wine samples: optimisation of the method, Talanta 69 1123–1129. doi:10.1016/j.talanta.2005.12.011

Caldeira I, Pereira R, Climaco MC, Belchior AP, Bruno de Sousa R. 2004. “Improved method for extraction of aroma compounds in aged brandies and aqueous alcoholic wood extracts using ultrasound”, Anal. Chim. Acta 513 125–134. doi:10.1016/j.aca.2003.10.011

Carabias-Martinez R, Rodriguez-Gonzalo E, Revilla-Ruiz P, Hernandez-Mendez J. 2005. Pressurized liquid extraction in the analysis of food and biological samples, Journal of Chromatography A, 1089: 1-17. doi:10.1016/j.chroma. 2005.06.072

Cardoso CL, Serrano CM, Quintero ET, Lopez CP, Antezana, RM, Martinez de la Ossa EJ. 2013. High Pressure Extraction of Antioxidants from Solanum stenotomun Peel. Molecules, 18: 3137-3151. doi:10.3390/molecules18033137.

Caridi D, Trenerry VC, Rochfort S, Duong S, Laugher D, Jones R. 2007. Profiling and quantifying quercetin glucosides in onion (Allium cepa L.) varieties using capillary zone electrophoresis and high performance liquid chromatography. Food Chemistry, 105: 691–699. doi:10.1016/j.foodchem.2006.12.063

Castro MDL, Capote FP. 2010. Soxhlet extraction: Past and present panacea- Journal of Chromatography A, 1217 2383– 2389. doi:10.1016/j.chroma.2009.11.027

Chan CH, Yusoff R, Ngoh GC, Lee Kung FW. 2011. Microwave-assisted extractions of active ingredients from plants. Journal of Chromatography A-1218., 6213-6225. doi:10.1016/j.chroma.2011.07.040

Chemat F, Huma Z, Khan MK. 2011. Applications of ultrasound in food technology: Processing, preservation and extraction. Ultrasonics Sonochemistry 18: 813–835. doi:10.1016/j. ultsonch.2010.11.023

Chemat F, Tomao V, Virot M., 2008. Ultrasound-Assisted Extraction in Food Analysis. In: Otles, S. (Ed.), Handbook of Food Analysis Instruments. CRC Press, pp. 85–94. ISBN: 13:978-1-4200-4566-6

Chisti Y. 2003. Sonobioreactors: Using ultrasound to enhance microbial productivity. Trends in Biotechnology, 21, 89−93. PII: S0167-7799(02)00033-1

Chiu KL, Cheng YC, Chen JH, Chang CJ, Yang PW. 2002. Supercritical fluids extraction of Ginkgo ginkgolides and flavonoids. The Journal of Supercritical Fluids, 24: 77–87. PII: S 0 8 9 6 - 8 4 4 6 ( 0 2 ) 0 0 0 1 4 - 1

Concha J, Soto C, Chamy R, Hansen MEZ. 2004. Enzymatic pretreatment on Rose- Hip oil extraction: hydrolysis and pressing conditions. Journal of American Oil Chemist’s Society 81 (6), 549–552. DOI: 10.1007/s11746-006-0939-y

Corrales M, Fernández García A, Butz P, Tauscher B. 2009. Extraction of anthocyanins from grape skins assisted by high hydrostatic pressure. Journal of Food Engineering, 90: 415– 421. doi:10.1016/j.jfoodeng.2008.07.003

Corrales M, Toepfl S, Butz P, Knorr D, Tauscher B. 2008. Extraction of anthocyanins from grape by-products assisted by ultrasonics, high hydrostatic pressure or pulsed electric fields: a comparison. Innovative Food Science and Emerging Technologies 9 (1): 85–91. DOI: 10.1016/ j.ifset.2007.06.002

Costa P, Grosso C, Goncalves S, Andrade PB, Valentao P, Bernardo-Gil MG, Romano A. 2012. Supercritical fluid extraction and hydrodistillation for the recovery of bioactive compounds from Lavandula viridis L’Her, Food Chemistry 135. 112–121. Available at http://dx.doi.org/10.1016/ j.foodchem.2012.04.108 [accessed on 28/02/2017]

Çam M, Hışıl Y. 2009. Basınçlı solvent Ekstraktörü kullanılarak nar Kabuğu ve çekirdeğinin antioksidan bileşiklerinin su ile ekstraksiyonu, (Extraction of Antioxidant Compounds of Pomegranate Peels and Seeds Using Pressurized Liquid Extractor With Water), Ph. D. Thesis- Ege University Food Engineering Department, Izmir- Turkey. 245 pages.

Dawidowicz AL, Wianowska D, Baraniak B. 2006. The antioxidant properties of alcoholic extracts from Sambucus nigra L. (antioxidant properties of extracts), Lebensmittel Wissenschaft und Technologie, 39: 308-315. doi:10.1016/j.lwt.2005.01.005

De Lucas A, Martinez de la Ossa E, Rincon J, Blanco MA, Gracia I. 2002. Supercritical fluid extraction of tocopherol concentrates from olive tree leaves, J. Supercrit. Fluids 22: 221–228. PII: S 0 8 9 6 - 8 4 4 6 ( 0 1 ) 0 0 1 3 2 - 2

Denery JR, Dragull K, Tang CS, Li QX. 2004. Pressurized fluid extraction of carotenoids from Haematococcus pluvialis and Dunaliella salina and kavalactones from Piper methysticum, Analytica Chimica Acta 501 (2) 175–181. doi:10.1016/ j.aca.2003.09.026

Diouf PN, Stevanovic T, Cloutier A. 2009. Study on chemical composition, antioxidant and anti-inflammatory activities of hot water extract from Picea mariana bark and its proanthocyanidin-rich fractions. Food Chemistry, 113: 897– 902. doi:10.1016/j.foodchem.2008.08.016

Dominguez H, Nunez MJ, Lema JM. 1995. Enzyme-assisted hexane extraction of soybean oil. Food Chemistry 54 (2): 223–231.

Elamin WM, Endan JB, Yosuf YA, Shamsudin R, Ahmedov A. 2015. High Pressure Processing Technology and Equipment Evolution: A Review. Journal of Engineering Science and Technology Review 8 (5): 75- 83. ISSN: 1791-2377 © 2015 Kavala Institute of Technology

Escarpa A, Morales MD, Gonzalez MC. 2002. Analytical performance of commercially available and unavailable phenolic compounds using real samples by highperformance liquid chromatography-diode array detection. Analytica Chimica Acta, 460, 61–72. PII: S0003- 2670(02)00140-X

Garcia-Salas P, Morales-Soto A, Segura-Carretero A, Fernandez-Gutierrez A. 2010. Phenolic-Compound- Extraction Systems for Fruit and Vegetable Samples. Molecules, 15: 8813-8826; doi:10.3390/molecules15128813.

Ghafoor K, Park J, Choi YH. 2010. Optimization of supercritical carbon dioxide extraction of bioactive compounds from grape peel (Vitis labrusca B.) by using response surface methodology. Innovative Food Science and Emerging Technologies 11 (3): 485–490. doi:10.1016/j.ifset. 2010.01.013

Gomez-Caravaca AM, Carrasco-Pancorbo A, Canabate-Diaz B, Segura-Carretero A, Fernandez-Gutierrez A. 2005. Electrophoretic identification and quantitation of compounds in the polyphenolic fraction of extra-virgin olive oil. Electrophoresis, 26: 3538-3551. DOI 10.1002/elps. 200500202

Haghi G, Hatami A. 2010. Simultaneous Quantification of Flavonoids and Phenolic Acids in Plant Materials by a Newly Developed Isocratic High-Performance Liquid Chromatography Approach. J. Agric. Food Chem. 2010, 58, 10812–10816. DOI:10.1021/jf102175x

Hamburger M, Baumann D, Adler S. 2004. Supercritical carbon dioxide extraction of selected medicinal plants—Effects of high pressure and added ethanol on yield of extracted substances. Phytochemical Analysis, 15: 46–54. DOI: 10.1002.pca.743

Hanmoungjai P, Pyle DL, Niranjan K. 2001. Enzymatic process for extracting oil and protein from rice bran. Journal of the American Oil Chemists Society 78 (8): 817–821.

Harborne J. 1982. Introduction to ecological biochemistry. Second Edition. London: Academic Press, ISBN 13:9780123246820

Hayouni EA, Abedrabba M, Bouix M, Hamdi M. 2007. The effects of solvents and extraction method on the phenolic contents and biological activities in vitro of Tunisian Quercus coccifera L. and Juniperus phoenicea L. fruit extracts. Food Chemistry, 105: 1126–1134. doi:10.1016/ j.foodchem.2007.02.010

Heinz V, Toepfl S, Knorr D. 2003. Impact of temperature on lethality and energy efficiency of apple juice pasteurization by pulsed electric fields treatment. Innovative Food Science and Emerging Technologies 4 (2): 167–175. doi:10.1016/ S1466-8564(03)00017-1

Ibanez E, Herrero M, Mendiola JA, Castro-Puyana M. 2012. Extraction and characterization of bioactive compounds with health benefits from marine resources: macro and micro algae, cyanobacteria, and invertebrates. In: Hayes, M. (Ed.), Marine Bioactive Compounds: Sources, Characterization and Applications. Springer, pp. 55–98. DOI 10.1007/978-1- 4614-1247-2_2

IFS. 2006.-Innovation Fluides Supercritiques, Supercritical Fluid Applications available at: http://www.supercriticalfluid.org /Applications.149.0.html [accessed on 24/11/2017]

Ignat I, Volf I, Popa VI. 2011. A critical review of methods for characterisation of polyphenolic compounds in fruits and vegetables. Food Chemistry 126: 1821–1835. doi:10.1016/ j.foodchem.2010.12.026

Ilter I, Ertekin F. 2017. Siyanobakterilerden Doğal Renk maddesi Fikosiyaninin Farklı yöntemlerle Ekstrakte edilmesi, Enkapsülasyonu, Model Gıda sistemleri için kullanımı ve stabilitesinin belirlenmesi (Extraction and Encapsulation of natural colorant Phycocyanin obtained from cyanobacteria with different methods and its storage stability and use in model foods) M.Sc. Thesis. Food Eng. Dept. Ege University, Izmir-TURKEY. 203 pages.

Jain T, Jain V. Pandey R, Vyas A, Shukla SS. 2009. Microwave assisted extraction for phytoconstituents – an overview. Asian Journal of Research in Chemistry 2 (1): 19–25.

Ju ZY, Howard LR. 2005. Subcritical water and sulfured water extraction of anthocyanins and other phenolics from dried grape skin. J.Food Sci., 70: 270-276.

Jun X. 2006. Application of high hydrostatic pressure processing of food to extracting lycopene from tomato paste waste. High Pressure Research 26(1): 33–41. DOI:10.1080/08957950600608741

Jun X, Deji S, Shou Z, Bingbing L, Ye L, Rui Z. 2009. Characterization of polyphenols from green tea leaves using a high hydrostatic pressure extraction. Int. J. Pharm. 382, 139-143. doi:10.1016/j.ijpharm.2009.08.023.

Kannan V. 2011. Extraction of Bioactive Compounds from Whole Red Cabbage and Beetroot using Pulsed Electric Fields and Evaluation of their Functionality. Dissertations and Theses in Food Science and Technology. Paper 11. 147 pages, 67-95. Available at http://digitalcommons.unl.edu/ foodscidiss/11 [accessed on 08/12/2017]

Kapasakalidis PG, Rastall RA, Gordon MH. 2006. Extraction of polyphenols from processed black currant (Ribes nigrum L.) residues. Journal of Agricultural and Food Chemistry, 54, 4016–4021. DOI: 10.1021/jf052999l

Kaufmann B, Christen P. 2002. Recent extraction techniques for natural products: microwave-assisted extraction and pressurized solvent extraction. Phytochemical Analysis 13 (2): 105–113. DOI: 10.1002/pca.631

Kempkes MA. 2017. Industrial Pulsed Electric Field Systems. in: Miklavcic, D. (Ed.). Handbook of Electroporation, Springer International Publishing AG, 2-20. DOI 10.1007/978-3-319-26779-1_211.

Kempkes MA, Tokuşoğlu Ö. 2014. PEF Systems for Industrial Food Processing and Related Applications. in: Tokuşoğlu, Ö. and Swanson, B.G. (Eds) Improving Food Quality with Novel Food Processing Technologies. Boca Raton: CRC Press pp. 427-454. ISBN: 9781138199880. Available at https://www.researchgate.net/publication/290128572 DOI: 10.1201/b17780-23 [accessed on 02/12/2017]

Khoddami A, Wilkes MA, Roberts TH. 2013. Techniques for Analysis of Plant Phenolic Compounds. Molecules, 18(2): 2328-2375; doi:10.3390/molecules18022328

Kim WJ, Kim J, Veriansyah B, Kim JD, Lee YW, Oh SG, Tjandrawinata RR. 2009. Extraction of bioactive components from Centella -asiatica using subcritical water, The Journal of Supercritical Fluids 48 (3): 211–216. doi:10.1016/j.supflu.2008.11.007

Kimbaris AC, Siatis NG, Daferera DJ, Tarantilis PA, Pappas CS, Polissiou MG. 2006. Comparison of distillation and ultrasound-assisted extraction methods for the isolation of sensitive aroma compounds from garlic (Allium sativum), Ultrason. Sonochem. 13: 54–60. doi:10.1016/ j.ultsonch.2004.12.003

Kındır Ö, Güvenç A. 2010. Siyah üzüm posasının antioksidan kaynağı olarak değerlendirilmesinde proses parametrelerinin incelenmesi. (Investigation of Process Parameters on Recycling of Black Grape Pulp as Antioxidant Source). M.Sc. Thesis. Department of Chemical Engineering, Graduate School of Natural and Applied Sciences, Ankara University, Ankara-TURKEY, pp 26-35

Koutchma T. 2014. Adapting High Hydrostatic Pressure (Hpp) for Food Processing Operations. San Diego: Academic Press., 41-55. ISBN: 978-0-12-420091-3

Kris-Etherton PM, Hecker KD, Bonanome A, Coval SM, Binkoski AE, Hilpert KF, Griel AE, Etherton TD. 2002. Bioactive compounds in foods: Their role in the prevention of cardiovascular disease and cancer. American Journal of Medicine, 113: 71-83. Available at https://doi.org/10.1016/ S0002-9343(01)00995- [accessed on 15/05/2017]

Lang Q, Wai CM. 2001. Supercritical fluid extraction in herbal and natural product studies—a practical review. Talanta 53 (4): 771–782. PII: S0039-9140(00)00557-9

Lapornik B, Prosek M, Wondra AG. 2005. Comparison of Extracts Prepared from Plant By-Products Using Different Solvents and Extraction Time. Journal of Food Engineering, 71: 214-222. Available at http://dx.doi.org/10.1016/ j.jfoodeng.2004.10.036 [accessed on 26/06/2017]

Latif S, Anwar F. 2009. Physicochemical studies of hemp (Cannabis sativa) seed oil using enzyme-assisted coldpressing. European Journal of Lipid Science and Technology 111 (10): 1042–1048. DOI 10.1002/ ejlt.200900008

Lee HJ, Kim CY. 2010. Simultaneous determination of nine lignans using pressurized liquid extraction and HPLC-DAD in the fruits of Schisandra chinensis, Food Chemistry 120 (4): 1224–1228. doi:10.1016/j.foodchem.2009.11.068

Lopez-Avila V, Young R, Teplitsky N. 1996. Microwaveassisted extraction as an alternative to soxhlet, sonication, and supercritical fluid extraction, J. AOAC Int. 79: 142–156.

Luque de Castro MD, Garcia-Ayuso LE. 1998. Soxhlet extraction of solid materials: an outdated technique with a promising innovative future. Analytica Chimica Acta 369 (1–2): 1–10.

Luque-Garcia JL, Luque De Castro MD. 2003. Ultrasound: a powerful tool for leaching, Trend. Anal. Chem. 22: 41–47. doi:10.1016/S0165-9936(03)00102-X

Luthria DL, Biswas R, Natarajan S. 2007. Comparison of extraction solvents and techniques used for the assay of isoflavones from soybean. Food Chemistry 105: 325–333. doi:10.1016/j.foodchem.2006.11.047

Luthria DL, Mukhopadhyay S. 2006. Influence of Sample Preparation on Assay of Phenolic Acids from Eggplant. J.Agric. Food. Chem. 45: 2291-2296. DOI: 10.1021/jf0522457I:

Mattila P, Kumpulainen JJ. 2002. Determination of free and total phenolic acids in plant derived foods by HPLC and diode array detection. Journal of Agricultural and Food Chemistry, 48: 3660–3667. DOI: 10.1021/jf020028p

Max B, Salgado MJ, Cortes S, Dominguez JM. 2010. Manuel extraction of Phenolic Acids by Alkaline Hydrolysis from the Solid Residue Obtained after Prehydrolysis Of Trimming Vine Shoots, J.Agric. Food Chem., 58(3): pp 1909-1917. DOI:10.1021/jf903441d

Mc Nally MEP. 2000. “Industrial Analytical Applications: Supercritical Fluid Extraction” Wilmington: Academic press pp. 3094-3101

Miller DJ, Hawthorne SB, Gizir AM, Clifford AA. 1998. Solubility of polycyclic aromatics in subcritical water, Journal of Chemical & Engineering Data 43: 1043–1047. DOI: 10.1021/je980094g

Min JY, Kang SM, Park DJ, Kim YD, Jung HN, Yang JK, Seo WT, Kim SW, Karigar CS, Choi MS. 2006. Enzymatic release of ferulic acid from Ipomoea batatas (sweet potato) stem. Biotech. Bioprocessing E 11: 372-376.

Murga R, Sanz MT, Beltran S, Cabezas JL. 2002. Solubility of Some Phenolic Compounds contained in Grape Seeds in Supercritical Carbondioxide. J. Supercritical Fluids, 23: 113-121. PII: S 0 8 9 6 - 8 4 4 6 ( 0 2 ) 0 0 0 3 3 - 5

Mustafa A, Turner C. 2011. Pressurized liquid extraction as a green approach in food and herbal plants extraction: A review. Analytica Chimica Acta, 703: 8-18. doi:10.1016/j.aca.2011.07.018

Naczk M, Shahidi F. 2006. Phenolics in cereals, fruits and vegetables: Occurrence, extraction and analysis. Journal of Pharmaceutical and Biomedical Analysis, 41: 1523–1542. doi:10.1016/j.jpba.2006.04.002

Nardini M, Cirillo E, Natella F, Mencarelli D, Comisso A, Scaccini C. 2002. Detection of bound phenolic acids: Prevention by ascorbic acid and ethylenediaminetetraacetic acid. Food Chemistry, 79: 119–124. PII: S0308- 8146(02)00213-3

Niranjan K, Hanmoungjai P. 2004. Enzyme-aided aquous extraction. In: Dunford, N.T., Dunford, H.B. (Eds.), Nutritionally Enhanced Edible Oil Processing, New York: AOCS Publishing. 314 pages. ISBN: 9781439822272

Patist A, Bates D. 2008. Ultrasonic innovations in the food industry: From the laboratory to commercial production. Innovative Food Science and Emerging Technologies 9; 147–154. doi:10.1016/j.ifset.2007.07.004

Pavlovic DM, Babic S, Horvat AJM, Kastelan-Macan M. 2007. Sample preparation in analysis of pharmaceauticals, Trends in Analytical Chemistry, 26: 1062-1075. doi:10.1016/ j.trac.2007.09.010

Pinelo M, Rubilar M, Sineiro J, Nunez MJ. 2004. Extraction of antioxidant phenolics from almond hulls (Prunus amygdalus) and pine sawdust (Pinus pinaster). Food Chemistry, 85: 267–273. doi:10.1016/j.foodchem. 2003.06.020

Pinelo M, Zornoza B, Meyer AS. 2008. Selective release of phenols from apple skin: Mass transfer kinetics during solvent and enzyme-assisted extraction. Separation and Purification Technology 63: 620–627. doi:10.1016/j.seppur. 2008.07.007.

Pizzichemi M. 2007. Application of pulsed electric fields to food treatment. Nuclear Physics B (Proc. Suppl.), 172: 314- 316. doi:10.1016/j.nuclphysbps.2007.08.070

Popa VI, Dumitru M, Volf I, Anghel N. 2008. Lignin and polyphenols as allelochemicals. Industrial Crops and Products, 27: 144–149. doi:10.1016/j.indcrop.2007.07.019

Porto CD, Decorti D, Kikic I. 2009. Flavour compounds of Lavandula angustifolia L. to use in food manufacturing: comparison of three different extraction methods, Food Chem. 112: 1072–1078. doi:10.1016/j.foodchem. 2008.07.015

Puri M, Sharma D, Barrow CJ. 2012. Enzyme-assisted extraction of bioactives from plants. Trends in Biotechnology 30 (1): 37–44. doi:10.1016/j.tibtech. 2011.06.014

Reis-Vasco EMC, Coelho JAP, Palavra AMF. 1999. Comparison of pennyroyal oils obtained by supercritical CO2 extraction and hydrodistillation. Flavour and Fragrance Journal, 14: 156-160.

Reverchon E, De Marco I. 2006. Supercritical fluid extraction and fractionation of natural matter, J. of Supercritical Fluids 38 (2006) 146–166. doi:10.1016/j.supflu.2006.03.020

Richter BE, Jones BA, Ezzell JL, Porter NL, Avdalovic N, Pohl C. 1996. Accelerated extraction: A technique for sample preparation. Ann. Che. 68: 1033-1039

Rosenthal A, Pyle DL, Niranjan K. 1996. Aqueous and enzymatic processes for edible oil extraction. Enzyme Microbial Technology 19 (6): 402–420.

Ross KA, Beta T, Arntfield SD. 2009. A comparative study on the phenolic acids identified and quantified in dry beans using HPLC as affected by different extraction and hydrolysis methods. Food Chemistry, 113: 336–344. doi:10.1016/j.foodchem.2008.07.064

Russell WR, Labat A, Scobbie L, Duncan GJ, Duthie GG. 2009. Phenolic acid content of fruits commonly consumed and locally produced in Scotland. Food Chemistry. doi: 10.1016/j.foodchem.2008.11.086.

Sampedro F, McAloon A, Yee W, Fan X, Geveke DJ. 2014. Cost Analysis and Environmental Impact of Pulsed Electric Fields and High Pressure Processing in Comparison with Thermal Pasteurization, Food and Bioprocess Technology, vol. 7, pp. 1928-1937, 2014/07/01. DOI 10.1007/s11947- 014-1298-6

Sanal IS, Bayraktar E, Mehmetoglu U, Calimli A. 2005. Determination of optimum conditions for SC-(CO2 + ethanol) extraction of beta-carotene from apricot pomace using response surface methodology, J. Supercrit. Fluids 34: 331–338. doi:10.1016/j.supflu.2004.08.005

Schieber A, Hilt P, Streker P, Endress HU, Rentschler C, Carle R. 2003. A new process for the combined recovery of pectin and phenolic compounds from apple pomace. Innovative Food Science and Emerging Technologies 4: 99–107 . PII: S1466-8564 Ž02 .00087-5

Seçkin AK, Özgören E. 2011. Gıda Endüstrisinde Darbeli Elektrik Alan Uygulamaları. Gıda ve Yem Bilimi - Teknolojisi Dergisi / Journal of Food and Feed Science - Technology 11: 39-48

Sharififar F, Dehghn-Nudeh G, Mirtajaldini M. 2009. Major flavonoids with antioxidant activity from Teucrium polium L. Food Chemistry, 112: 885–888. doi:10.1016/j.foodchem. 2008.06.064

Sharma A, Khare SK, Gupta MN. 2002. Enzyme-Assisted Aqueous Extraction of Peanut Oil. JAOCS Press. 79(3): 215-217. DOI: 10.1007/s11746-002-0463-0

Shotipruk A, Kaufman PB, Wang HY. 2001. Feasibility study of repeated harvesting of menthol from biologically viable Mentha x piperata using ultrasonic extraction, Biotechnol. Prog. 17: 924–928. DOI: 10.1021/bp010074u

Shouqin Z, Jun X, Changzheng W. 2005. High hydrostatic pressure extraction of flavonoids from propolis. Journal of Chemical Technology and Biotechnology, 80: 50–54. DOI: 10.1002/jctb.1153

Sihvonen M, Järvenpää E, Hietaniemi V, Huopalahti R. 1999. Advances in supercritical carbon dioxide technologies. Trends in Food Science and Technology 10 (6–7): 217–222. PII: S0924-2244(99)00049-7

Silva LV, Nelson DL, Drummond MFB, Dufosse L, Gloria MBA. 2005. Comparison of hydrodistillation methods for the deodorization of turmeric. Food Research International 38 (8–9): 1087–1096. doi:10.1016/j.foodres.2005.02.025

Smith RM. 2003. Before the injection—modern methods of sample preparation for separation techniques. Journal of Chromatography A 1000 (1–2): 3–27. doi:10.1016/S0021- 9673(03)00511-9

Soria AC, Villamiel M. 2010. Effect of ultrasound on the technological properties and bioactivity of food: a review. Trends in Food Science & Technology 21: 323-331. doi:10.1016/j.tifs.2010.04.003

Sun H, Ge X, Lv Y, Wang A. 2012. Application of accelerated solvent extraction in the analysis of organic contaminants, bioactive and nutritional compounds in food and feed, Journal of Chromatography A, 1237: 1–23. doi:10.1016/ j.chroma.2012.03.003

Sun M, Temelli F. 2006. Supercritical carbon extraction of carotenoids from carrot using canola oil as a continuous cosolvent. The Journal of Supercritical Fluids, 37: 397–408. doi:10.1016/j.supflu.2006.01.008

Temelli F, Güçlü-Üstündag Ö. 2005. Supercritical Technologies for Further Processing of Edible Oils In: Shahidi, F. (Ed.) Bailey’s Industrial Oil and Fat Products. Sixth Edition, Volume 5. John Wiley and Sons, Inc. p. 397-432. Available at http://dx.doi.org/10.1002/047167849X.bio057. [accessed on 01/12/2017]

Vankar PS. 2004. Essential oils and fragrances from natural sources. Resonance 9(4): 30–41.

Vilkhu K, Mawson R, Simons L, Bates D. 2008. Applications and opportunities for ultrasound assisted extraction in the food industry — A review. Innovative Food Science and Emerging Technologies 9. 161–169. doi:10.1016/ j.ifset.2007.04.014.

Vinatoru M. 2001. An overview of the ultrasonically assisted extraction of bioactive principles from herbs. Ultrasonics Sonochemistry 8 (3): 303–313. P II:S1350-477(01)00071-2

Wang L, Weller CL. 2006. Recent advances in extraction of nutraceuticals from plants. Trends in Food Science and Technology, 17: 300-312. doi:10.1016/j.tifs.2005.12.004

Wang ZH, Hsu CC, Yin MC. 2009. Antioxidative characteristics of aqueous and ethanol extracts of glossy privet fruit. Food Chemistry, 112: 914–918. DOI: 10.1016/j.foodchem. 2008.06.078

Weidner S, Amarowicz R, Karamac M, Dabrowski G. 1999. Phenolic acids in caryopses of two cultivars of wheat, rye and triticale that display different resistance to pre-harvest sprouting. Eur Food Res Technol., 210:109–113.

Wijngaard H, Hossain MB, Rai DK, Brunton N. 2012. Techniques to extract bioactive compounds from food byproducts of plant origin. Food Research International 46: 505–513. doi:10.1016/j.foodres.2011.09.027

Xia T, Shi S, Wan X. 2006 Impact of ultrasonic-assisted extraction on the chemical and sensory quality of tea infusion, J. Food Eng. 74: 557–560. doi:10.1016/j.jfoodeng. 2005.03.043

Zderic A, Zondervan E. 2016. Polyphenol extraction from fresh tea leaves by pulsed electric field: A study of mechanisms., Chemical engineering research and design 1 0 9, 586–592.

Zu G, Zhang R, Yang L, Ma C, Zu Y, Wang W, Zhao C. 2012. Ultrasound assisted extraction of carnosic acid and rosmarinic acid using ionic liquid solution from Rosmarinus officinalis. International Journal of Molecular Science 13(9): 11027–11043. doi:10.3390/ijms130911027.
Türk Tarım - Gıda Bilim ve Teknoloji dergisi-Cover
  • ISSN: 2148-127X
  • Yayın Aralığı: Aylık
  • Başlangıç: 2013
  • Yayıncı: Turkish Science and Technology Publishing (TURSTEP)
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