• Title/Summary/Keyword: Acid Value

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Physicochemical Properties of Used Frying Oil in Foodservice Establishments (단체급식에서 재사용 튀김유의 이화학적 특성변화)

  • 송연순;장명숙
    • Korean journal of food and cookery science
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    • v.18 no.3
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    • pp.340-348
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    • 2002
  • Changes in the physicochemical properties of frying oil after single or repeated use in foodservice establishments were studied. The experiment was designed to simulate the practical frying practice based on a survey from the dieticians in the food service establishments. Used oils came from the single frying of mackerel and the sequential frying of 1) potato and mackerel, 2) battered pork and mackerel, and 3) potato, battered pork, and mackerel. The used oil samples were analyzed and compared with the fresh one. Oil quality parameters such as acid value, peroxide value, thiobarbituric acid value, iodine value, viscosity, and color were measured at each step of deep-fat frying. The physicochemical properties of the frying oils have been more or less affected by the frying conditions. However, the used oils resulted from the experimental trials were within the range of acceptance as indicated by the acid and peroxide values.

Evaluation of Inhibitory Effects of Thiobarbituric Acid Derivatives Targeting HCV NS5B Polymerase

  • Lee, Jong-Ho;Lee, Sang-Yoon;Park, Mi-Young;Ha, Hyun-Joon;Myung, Hee-Joon
    • Journal of Microbiology and Biotechnology
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    • v.20 no.3
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    • pp.510-512
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    • 2010
  • A series of thiobarbituric acid derivatives were constructed and evaluated for inhibitory activity on hepatitis C virus NS5B polymerase. In biochemical assays using purified viral polymerase and RNA template, the $IC_{50}$ value was improved to 0.41 ${\mu}M$ from the original compound's 1.7 ${\mu}M$ value. In HCV sub genomic replicon assay, the $EC_{50}$ value was improved to 3.7 ${\mu}M$ from the original compound's 12.3 ${\mu}M$ value. $CC_{50}$ was higher than 77 ${\mu}M$ for all compounds tested, suggesting that they are useful candidates for anti-HCV therapy.

Physicochemical Evaluation of Oil in Water Microemulsions (수중유형 마이크로에멀젼의 물리화학적 평가)

  • Chung, Myung-Hwa;Jheong, Yeoub;Jheong, Dae-Sik;Kwon, Jong-Won;Yang, Joong-Ik;Min, Shin-Hong
    • Journal of Pharmaceutical Investigation
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    • v.18 no.1
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    • pp.9-13
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    • 1988
  • Physicochemical properties of oil in water microemulsions containing soybean oil and egg phosphatide were observed for 3 weeks under the storage condition of $4^{\circ}C$ refrigerator. Changes in major fatty acid content, particle size distribution, rheogram, acid value and pH value were measured by gas chromatograph, laser particle sizer, Coulter counter and rheometer. From above experiments following conclusions were obtained; 1) Mean particle diameter was shifted from 240 to 266mm. 2) No significant changes were observed in the content of major fatty acids of soybean oil, rheogram, acid value and pH value.

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Characteristic of back fat and quality of longissimus dorsi muscle from soft fat pork carcasses

  • Lim, Daewoon;Song, Minho;Lee, Juri;Lee, Chulwoo;Lee, Jaechung;Lee, Wangyeol;Seo, Jihee;Jung, Samooel
    • Korean Journal of Agricultural Science
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    • v.43 no.4
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    • pp.581-588
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    • 2016
  • The objective of this study was to investigate the accuracy of visual discrimination of soft fat pork carcasses when subjecting carcasses to quality grade evaluations. In addition, the quality of the longissimus dorsi muscle from soft fat carcasses was investigated. Iodine values of back fat from soft fat carcasses evaluated by visual discrimination were significantly higher than those from firm fat carcass (p < 0.05). However, those values were lower than the standard for soft fat (iodine value = 70). There were no significant differences in linoleic acid content, b-values, and L-values (p < 0.05) of back fat between firm and soft fat carcasses evaluated by visual discrimination. Color of longissimus dorsi muscle from soft fat carcasses (iodine value higher than 70) was not different from that of firm fat carcass (iodine value lower than 70). Except for linoleic acid, there were no significant differences in any fatty acid contents between longissimus dorsi muscles from firm fat and soft fat carcasses. Monounsaturated fatty acid content of longissimus dorsi muscles from soft fat carcasses was significantly lower than those of firm fat carcass (p < 0.05). However polyunsaturated fatty acid content was significantly higher (p < 0.05) in longissimus dorsi muscles from soft fat carcasses. In conclusion, visual discrimination results for soft fat pork carcass were inaccurate. Therefore, other indicators should be required to evaluate soft fat pork carcasses. In contrast, the quality of longissimus dorsi muscle from soft fat carcasses was superior in terms of fatty acid composition compared with that of firm fat carcasses.

Comparison on the Food Quality Characteristics of Muscles from Salmonids according to Species, Imported Country, and Separated Part (연어류 근육의 종류, 수입국 및 부위별 식품학적 품질 특성 비교)

  • Heu, Min Soo;Choi, Byeong Dae;Kim, Ki Hyun;Kang, Sang In;Kim, Yong Jung;Kim, Jin-Soo
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.48 no.1
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    • pp.16-25
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    • 2015
  • This study compared the food quality of salmonid fishes according to the species, country of origin, and separated part, such as fillet and frame. The proximate composition of chum salmon from Norway (CS-N) was 74.4% moisture, 19.5% crude protein, 4.2% crude lipid, and 1.2% ash. These values were within roughly 1% for the other salmon species. There was no significant difference (at P<0.05) in the Hunter a value of salmon muscle according to sepatated parts. However, there was a significant difference (P<0.05) in Hunter a value of salmon muscle according to the species and country of origin. There were significant differences in odor intensity and hardness of the salmon according to the species. The major free amino acid in all of the salmon muscles was anserine, which ranged from 61.3 to 73.0%. The taste value was the highest for salmon imported from Alaska (CS-A), followed by pink salmon, CS-N, and muscle separated from the frame (AS-C). In the taste value of all salmon muscles, the major amino acid was glutamic acid. The total amino acid content of salmon muscles ranged from 18.36 to 19.64 g/100 g, and the major amino acids were glutamic acid and aspartic acid. There were differences in the mineral contents, including Ca, P, K, and Fe, and fatty acid composition of salmon muscle according to species.

Study on the Preparation of Kochujang with Utilization of Retrogradated Starch food (노화된 전분식품을 이용한 고추장 제조에 관한 연구)

  • 차은정;김경자
    • Korean journal of food and cookery science
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    • v.12 no.4
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    • pp.481-486
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    • 1996
  • This study was compared with conventional kochujang and the preparation of saccharification kochujanf with the utilization of waste cooked rice, rice cake, bread. Saccharification kochuiang tested to estimated the pH, reducing sugar and changes of organic acid conients, sensory evaluation during the aging at 60 days. Moisture content were increased about B-10% nd crude fat contents were decreased about 20-40% during the aging at 60 days. Change of pH value of kochujang reduces gradually from pH 5.0 up to pH 4.7 during the aging. Total reducing sugar contents of saccharification kochujang reached maximum value at 50 days. The Products of organic acids of during aging were acetic acid, lactic acid, malic acid, tartaric acid and citric acid of the chief of source. Sensory evaluation conducted by fifteen students as panelists showed that were at 1% level significant difference 7 samples in color, flavour, apperance.

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Effects of Ultrasonic Treatment Time on the Quality and Palatability of fried Chicken Meat (초음파 처리시간이 튀김 계육의 품질 및 기호성에 미치는 영향)

  • 남주현;송형익;박충균;박성하;김도완;문윤희;정인철
    • Food Science of Animal Resources
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    • v.22 no.2
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    • pp.115-121
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    • 2002
  • This study was carried out to investigate the effect of ultrasonic treatmeat time on the quality and palatability of fried chicken meat. Moisture content, U-10 treatment (chicken meat treated by ultrasonification for 10 minutes) of breast and leg were lower than those of the control, protein contents were not different between samples. Fat content was higher with increasing ultrasonic treated time. Frying loss of ultrasonic treated breast and leg were lower than those of the control, water holding capacity of ultrasonic treated breast and leg were higher than those of the control with increasing ultrasonic treated time. Rheological textures between control and ultrasonic treated samples were not different. L* value(lightness) between control and ultrasonic treated samples were not different, but L* values of breast were higher than those of the leg. And a* value(redness) was not effect by ultrasonic treatment, but a* value of leg were higher than those of the breast. Amino acid composition has included many glutamic acid, aspartic acid, lysine, leucine and arginine. Oleic acid and linoleic acid occupied beyond 50% of fatty acid composition. And taste, texture, juiciness and palatability improved with increasing ultrasonic treated time.

Quality Assessment of Commercial Doenjang Prepared by Traditional Method (시판 전통식 된장의 품질평가)

  • 박석규;서권일;최성희;문주석;이영환
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.29 no.2
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    • pp.211-217
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    • 2000
  • To standardize quality characteristics of commercial doenjang prepared by traditional method, general components, organic acids, amino acids and fatty acid composition were investigated. Moisture, crude protein, crude lipid, titratable acidity (expressed as milliliter of 0.1 N NaOH), acid value and salinity were 54.7%, 13.8%, 8.0%, 14.4mL, 45.7mg/g and 11.8%, respectively. The content of amino type nitrogen was 345.3mg% (w/w) in the range of 207.6 to 443.5mg% being 1.1~2.2-fold for all samples. Average value of Hunter color for L(lightness), a(redness) and b(yellowness) were 37.4, +9.7 and +21.3, respectively. Browning index value(expressed as optical density at 425 nm) of water-soluble compound(2.58) was above 7.1 times higher than that of the water-insoluble compound(0.38). Total contents of free and total amino acid were 3.81 and 9.72%, respectively, and then the former(1.1~3.7 times) was more different in all samples tested than that of the latter(1.1~2.0 times). Among amino acids, glutamic acid was abundant and its content of free and total amino acids was 0.57 and 1.24%, respectively. Of organic acids, lactic acid was the most abundant being 0.34%(average) and ranged from 0.15 to 0.86%. Linoleic acid(52.17%, as area%) was the highest content of the total fatty acids. Unsaturated and polyunsaturated fatty acids were 83.89 and 61.189%, respectively. Polyunsaturated fatty acid was markedly different among all samples and ranged from 51.52 to 64.91%.

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Changes in Flavor Component of Omija, Shizandra Chinensis Baillon, with Various Extraction times (오미자의 용출시간에 따른 풍미성분 변화에 관한 연구)

  • 김유미;김동희;염초애
    • Korean journal of food and cookery science
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    • v.7 no.1
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    • pp.27-34
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    • 1991
  • This study attempted to set up reasonable extraction time of Omija that was put in water for the various components to soak out. Changes of free sugars, organic acids, reducing sugar, total acid and tannin in Omija with various extraction times were investigated (together with the analysis of each components in Omija fruit). 1. High Performance Liquid Chromatography showed fructose, glucose, and sucrose to be the major free sugars of the Omija fruit. Free sugars and reducing sugar value in Omija beverage increased gradually in according with the extraction time, and marked 75.6% per total free sugars and 82.1% per total reducing sugar at 12 hours. 2. Gas Chromatography showed lactic acid, oxalic acid, fumaric acid, levulinic acid, succinic acid, malic acid, citric acid and pyroglutamic acid to be the major organic acids of the Omija fruit. Organic acids and total acids value in Omija beverage increased gradually on proportion to extraction time, and marked 97.0% per total organic acids at 9 hours and 79.0% per total acids at 12 hours. 3. Tannin content in Omija beverage was increased when extraction time was longer but it showed a low percentage as compared with the reducing sugar and total acid. Tannin content marked 48.8% per total tannin at 12 hours. 4. Sensory evaluation revealed that !1 hours of extraction produced the best quality products based in taste, flavor, color and over-all acceptability, considering the data, it seems possible to conclude that the optimum of time for extraction of Omija to water is 9 hours.

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Influence of Thermal Treatment on Chemical Changes in Cold-Pressed Perilla Seed Oil (가열산화가 냉압착 들기름의 품질특성에 미치는 영향)

  • Cho, Young-Sim;Kim, Bum-Keun;Park, Jai-Kee;Jeong, Jin-Woong;Jeong, Seung-Weon;Lim, Jeong-Ho
    • Food Science and Preservation
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    • v.16 no.6
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    • pp.884-892
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    • 2009
  • We determined the chemical changes occurring in oil after exposure to high temperatures for various periods of time. Alterations in the chemical parameters of oil after heating for 30, 60, 90, and 120 min at 120C were investigated. The study involved cold-pressed perilla oil (CPPO), virgin perilla oil (VPO), and commercial heat press-extracted perilla oil (CHPEPO), and we assessed quality properties such as Hunter's color values, browning color intensity, acid value, conjugated dienoic acid level, peroxide value, total phenolic content, electron-donating ability, and fatty acid concentration. Hunter L values were higher for CPPO than for VPO or CHPEPO, whereas browning color intensity was greatest for CHPEPO. Peroxide value data showed higher levels of oxidation products in CPPO than in VPO or CHPEPO, whereas conjugated dienoic acid level was most increased in CHPEPO. The content of total phenolics and electron-donating ability were higher in CHPEPO than in CPPO or VPO. After thermal treatment, fatty acid content was most altered in CPPO; in particular, the level of polyunsaturated fatty acids dropped significantly. Hunter L value, acid value, conjugated dienoic acid level, and peroxide concentration also increased whereas Hunter a and b values, browning color intensity, and total phenolic content were decreased in perilla seed oils after thermal oxidation treatment.