• Title/Summary/Keyword: refined oil

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Effects of Phospholipid Extract from Squid Viscera on Lipid Oxidation of Fish Oil

  • Hong, Jeong-Hwa;Jeong, Yong-Sil;Kim, In-Soo;Byun, Dae-Seok
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.24 no.3
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    • pp.378-383
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    • 1995
  • Phospholipid(PL), phosphatidylcholine(PC) and phosphatidylcholine free PL(PCF) were extracted from squid viscera and the antioxidant effects of each fraction on the oxidation of refined fish oil were evaluated. Polyunsaturated fatty acid contents were the highest in PC(46.7%) followed by PL(44.8%) and PCF(40.9%). The effects of each phospholipid fraction on stabilizing fish oil were compared by incubating at 40$^{\circ}C$ for 10 days. At the initial period(2 days), changes in peroxide value did not show any significant difference ; however, as incubation time was extended, PC fraction showed the strongest antioxidant activity. PL and PCF added to fish oils also resulted in increased stability against oxidation. Antioxidative effect of PC at the 5% level was equivalent to 0.05% BHT, 1% catechin and 1% tocopherol.

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Analysis of Benzo[α]pyrene Content in Edible Oils from Korean Market (시중에 유통되는 식용유지 중 benzo[α]pyrene 함량 분석)

  • Nam, Hejung;Seo, Ilwon;Lee, Kyueun;Lee, Songyoung;Shin, Han-Seung
    • Food Engineering Progress
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    • v.13 no.3
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    • pp.211-215
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    • 2009
  • Concentrations of benzo[$\alpha$]pyrene in edible oils from Korean market were evaluated by high performance liquid chromatography. Benzo[$\alpha$]pyrene known of the carcinogenic polycyclic aromatic hydrocarbons(PAHs), has been found at variable concentrations in several foods. This is associated with several factors during the process including contaminated raw materials, exposure of environment, and procedure of process or cooking. The levels of benzo[$\alpha$]pyrene were ranged from 0.5 to 1.4 $\mu$g/kg in virgin olive oil. Benzo[$\alpha$]pyrene contents in refined and virgin olive oil, sesame oil, soybean oil, corn oil, sunflower oil, safflower oil, and processed oil were 0.6-1.0 $\mu$g/kg, 0.9-1.3 $\mu$g/kg, 0.6-3.3 $\mu$g/kg, 0.5-1.1 $\mu$g/kg, 1.2-1.7 $\mu$g/kg, 1.0-2.1 $\mu$g/kg, and 1.0-1.4 $\mu$g/kg, respectively.

An Analytical Study on the Youngjeob Dogam Bansunsek Euigwae of Choson Dynasty (1609, 1626, 1634 year) (조선왕조(朝鮮王朝)의 영접도감(迎接都監) 반선색의궤(盤膳色儀軌)에 관한 분석적(分析的) 연구(硏究) (1609년(年), 1626년(年), 1634년(年)의 의궤(儀軌)를 중심(中心)으로))

  • Kim, Sang-Bo;Lee, Sung-Woo
    • Journal of the Korean Society of Food Culture
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    • v.6 no.4
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    • pp.433-443
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    • 1991
  • To analyse reception dishes of Choson Dynasty the author studied historic book-Youngjeob Dogam Bansunsek Euigwae (1609, 1626, 1634 year) in which the daily reception dishes for Chinese envoy in Choson Dynasty were described. The results obtained from this study were as follows. 1. The daily food items for reception of Chinese envoy were refined rice wine, rice, large fish, fish, Zogi, Driedjogi, mullet, pork, beef, chicken, egg, salt, soysauce, sweet soy sauce, refined soy sauce, sesame oil, vinegar, bean curd, stone leek, parsley, ginger and gaslic etc. 2. The daily tablewares used for reception of Chinese envoy were ricebowl (bari), small bowl of porcelain (boa), water bowl (daejeop), soup bowl (tang gi), plate (jeopsi), small dish (jong gi), small earthen ware jar (dong hae), jar (hang), pottery (ong gi), wine glass (jan), water cup, chopsticks, kettle, cauldron, bottle, table, knife, napkin, dish towel, brazier, washbowl and meter etc.

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Flavor Characteristics according to Parts of Raw Materials on Allium fistulosum L. Seasoning Oil (대파 향미유의 원재료 부위별 향미특성)

  • Koo, Bon-Soon
    • Food Science and Preservation
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    • v.12 no.5
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    • pp.465-469
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    • 2005
  • Allium fistulosum L. seasoning oils were manufactured by autoclaving method. Materials were from total, leaf, trunk and root part of Allium fistulosum L. with refined soybean oil. Physicochemical characteristics of these Allium fistulosum L. seasoning oils of 4 kinds were not much different, but seasoning oil from leaf part was more green color. Total 35 volatile components were detected, in which propenyl trisulfide and propenyl propyl trisulfide were the major components. They were found as 26.94 ppm and 26.26 ppm in seasening oil from root with the highest level, respectively. Propenyl propyl disulfide was the major component as flavor characteristics in Allium fistulosum L. seasoning oils. Main component of original roasted flavor in Allium fistulosum L. seasoning oils would be confirmed the root part.

The Physico-Chemical Properties of Korean Red Pepper Seed Oil by Species and Dried methods (품종 및 건조방법에 따른 고추씨 기름의 이화학적 특성)

  • 김복자;안명수
    • Korean journal of food and cookery science
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    • v.14 no.4
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    • pp.375-379
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    • 1998
  • Some Physico-chemical properties of korean red pepper seed oil were evaluated to find available method to utilize red pepper seeds used as useful cooking oil resources. Samples of red pepper seeds used as oil meterials were native, improved species and they were named such as NS (native spicies dried under sunlight), IS (improved spicies dried under sunlight), NF (native spicies dried by heating), and IF(improved spicies dried by heating), respectively. Moisture, ash, crude protein and crude fat contents of all red pepper seeds were 6.6%∼7.7%, 3.3∼3.5%, 18.25∼19.4% and 26.8∼27.5% in all samples, showing the specially high crude fat and crude protein content in NS. Capsaicin contents in crude red pepper seed oils were shown from 0.06 to 0.08% but after refining process, capsaicin contents were mostly tossed as 0∼0.006%. The types of tocopherol found in crude and refined red pepper seed oils were ${\gamma}$-, ${\alpha}$-, $\delta$-analogues, the amount of total tocopherol in IF was 2.10 mg/g oil which were the highest value of all red pepper seeds. In all red pepper seeds oils main fatty acids were linoleic acid (68∼70%), palmitic acid (14∼16%), oleic acid (10∼11%), and linolenic acid were extemely small amounts. The specific gravity (SG) 0.916∼0.919, refractive index (RI) 1.4724, acid value (AV) 0.26∼0.36, peroxide value (POV) 0.73∼1.19 and Iodine value (IV) 134.35∼134.92 were measured in all red pepper seed oils.

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Deodorization of Fish Oil Using Adsorption Method (흡착법을 이용한 어유의 탈취)

  • 김귀식;배태진
    • Journal of Life Science
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    • v.13 no.3
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    • pp.365-373
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    • 2003
  • Instead of deodorization appararus of fish oil, an adsorbent such as activated charcoal, activated alumina, silicagel, bamboo charcoal was packed in column alone or mixed with preparative ratio, and then test the effective deodorization with bleaching. In the progress of degumming, the effective method was 18 ml of 2.5% oxalic acid per 100m1 of crude large anchovy oil. The optical condition to deacidified was treating for 30 min at $40^{\circ}C$ with 2.5% sodium hydroride solution. The effective deodorization was added with 3% silicagel under the alone treating adsorbent, and mixed treating was 30% activated alumina and 10% silicagel but added to green tea powder was not effective. The major fatty acid of total lipid were 16:0, 20:5n-3, 18:1n-9, 16:1n-7 and 22:6n-3 after treatment of degumming, deacidfication and deodorizing in the large anchovy oil. The oxidative stability of refined anchovy oil added to $\alpha$-tocopherol was validated 20 days under the control, and 30 days in the case of $\alpha$-tocopherol. The 0.01% $\alpha$-tocopherol was more effective than 0.02% $\alpha$-tocopherol.

Quality Characteristics of Cold-pressed Rapeseed Oils according to Different Varieties in Republic of Korea (국내 유채 품종별 저온압착유의 품질특성 비교)

  • Da-Hee An;Gyeong-Dan Yu;Jae-Hee Jeong;Ji-Bong Choi;Hyun-Min Cho;Dong-Sung Kim;Young-Lok Cha
    • The Korean Journal of Food And Nutrition
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    • v.37 no.4
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    • pp.171-179
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    • 2024
  • Rapeseed (Brassica napus L.) oil is mostly refined oil (RO). However, with increasing interest in health, the consumption of cold-pressed oil (CPO) without chemical refining is increasing in Korea. In this study, quality characteristics of CPO from rapeseed varieties 'Jungmo7001', 'Jungmo7002', 'Jungmo7003', and 'Yuryeo' were evaluated and compared with RO, a commercial product. L-value and a-value were lower while b-value was significantly higher for CPO than those for RO. Analysis of fatty acid compositions of each oil revealed that CPO from 'Yuryeo' contained the highest oleic acid at 74%. Analyses of contents of bioactive compounds in CPOs and RO revealed that contents of tocopherol, 𝛽-carotene, and canolol were the highest in CPOs from 'Jungmo7003', 'Jungmo7002', and 'Jungmo7001' at 55.5, 0.3, and 0.2 mg/100 g, respectively. In addition, CPOs contained higher contents of bioactive compounds than RO, suggesting that CPO could provide health benefits. The induction period of CPOs measured using Rancimat were 9~52% longer than that for RO, indicating that CPOs had a higher oxidative stability under given conditions. These results could be used to obtain basic data on quality of domestic rapeseed varieties.

Analysis of Physicochemical Characterization and Volatiles in Pure or Refined Olive Oils (국내 유통되는 퓨어 및 정제 올리브유의 이화학적 특성 및 향기 분석)

  • Nam, Ha-Young;Lee, Ju-Woon;Hong, Jang-Hwan;Lee, Ki-Teak
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.36 no.11
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    • pp.1409-1416
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    • 2007
  • Seven selected commercial pure or refined olive oils were obtained from the market, and their physicochemical properties and volatile characterizations were investigated. Fatty acid profiles of the analyzed olive oils showed oleic $(61.2{\sim}74.7mole%)$, palmitic $(10.2{\sim}16.8mole%)$, linoleic $(9.4{\sim}18.0mole%)$, stearic $(1.9{\sim}3.0mole%)$, palmitoleic $(0.7{\sim}2.4mole%)$ and linolenic acid $(0.5{\sim}0.9mole%)$. According to Hunter#s color measurement, pure or refined olive oils showed $L^*$ value of $92.2{\sim}99.0$, $a^*$ value of $-22.2{\sim}-3.2$, and $b^*$ value of $18.5{\sim}55.0$. Their total phenol contents ranged from 1.9 to $13.3mg/100g$ while ${\alpha}-tocopherol$ content showed $7.91{\sim}13.88mg/100g$. Oxidation stability of the pure or refined olive oils were observed by Rancimat. The induction period ranged from 17.37 to 34.72 hr while their POV were $6.83{\sim}20.31meq/kg$ oil. Electronic nose and gas chromatograph-mass spectrometry with head-space solid phase microextraction were applied to identify and discriminate the volatile compounds and flavors in pure or refined olive oils, respectively.

Hydrotreating for Stabilization of Bio-oil Mixture over Ni-based Bimetallic Catalysts (Ni계 이원금속 촉매에 의한 혼합 바이오오일의 안정화를 위한 수소첨가 반응)

  • Lee, Seong Chan;Zuo, Hao;Woo, Hee Chul
    • Clean Technology
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    • v.27 no.1
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    • pp.69-78
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    • 2021
  • Vegetable oils, such as palm oil and cashew nut shell liquid (CNSL), are used as major raw materials for bio-diesel in transportation and bio-heavy oil in power generation in South Korea. However, due to the high unsaturation degree caused by hydrocarbon double bonds and a high content of oxygen originating from the presence of carboxylic acid, the range of applications as fuel oil is limited. In this study, hydrotreating to saturate unsaturated hydrocarbons and remove oxygen in mixed bio-oil containing 1/1 v/v% palm oil and CNSL on monometallic catalysts (Ni and Cu) and bimetallic catalysts (Ni-Zn, Ni-Fe, Ni-Cu Ni-Co, Ni-Pd, and Ni-Pt) was perform under mild conditions (T = 250 ~ 400 ℃, P = 5 ~ 80 bar and LHSV = 1 h-1). The addition of noble metals and transition metals to Ni showed synergistic effects to improve both hydrogenation (HYD) and hydrodeoxygenation (HDO) activities. The most promising catalyst was Ni-Cu/��-Al2O3, and in the wide range of the Ni/Cu atomic ratio of 9/1~1/4, the conversion for HYD and HDO reactions of the catalysts were 90-93% and 95-99%, respectively. The tendency to exhibit almost constant reaction activity in these catalysts of different Ni/Cu atomic ratios implies a typical structure-insensitive reaction. The refined bio-oil produced by hydrotreating (HDY and HDO) had significantly lower iodine value, acid value, and kinetic viscosity than the raw bio-oil and the higher heating value (HHV) was increased by about 10%.

Physical Property and Extraction of Squalene and Alkoxyglycerol from Shark Liver Oil (상어간유에서 스쿠알렌과 알콕시글리세롤의 물성 및 추출)

  • Lee, Su Il;Heo, Hyo Jung;Row, Kyung Ho
    • Korean Chemical Engineering Research
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    • v.49 no.5
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    • pp.617-622
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    • 2011
  • A simple method has been successfully applied to extract squalene and its byproducts alkoxyglycerol from deep-sea shark liver oil. GC-MS was used to determine the extraction amount of the squalene and alkoxyglycerol, and the content of them in rough product and refined product were compared. The physical property of squalene was identified by measuring the pH value, peroxide value and iodine value. Under optimum extraction conditions, the amount of squalene and alkoxyglycerol increased 35.0% and 21.9%, respectively, while the amount of fatty acid decreased from 61% to 4%, especially, the amount of palmitic acid and oleic acid remarkably decreased. Large amount of peroxide and acid were removed from shark liver oil after refining process. Because squalene contains lots of double bond, so the value of iodine is much higher than squalane.