• Title/Summary/Keyword: mandarin juice

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Pulsed electric field pasteurization of mandarin and carrot juices (Pulsed electric field 공정을 이용한 감귤 주스와 당근 주스 살균)

  • Lee, Seung Jo;Choi, Hyuk Joon;Min, Sea Cheol
    • Korean Journal of Food Science and Technology
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    • v.49 no.4
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    • pp.408-414
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    • 2017
  • Effects of pulsed electric field (PEF) processing on growth inhibition of indigenous aerobic microorganisms and the quality of mandarin and carrot juices were investigated. Mandarin juice was PEF-treated at 15-23 kV/cm for $23-241{\mu}s$, whereas carrot juice was treated at 13-14 kV/cm for 127-198 s. At $25^{\circ}C$ (inlet temperature), PEF treatments at 23 kV/cm for $104{\mu}s$ and 14 kV/cm for $198{\mu}s$ reduced the numbers of total mesophilic aerobes by $6.3{\pm}0.8$ and $5.5{\pm}0.9{\log}\;CFU/mL$ in mandarin juice and carrot juice, respectively. Elevation of inlet temperature to $40^{\circ}C$ increased the reduction rates in both juices. In general, the treatments resulting in the highest microbial inhibition at 25 and $40^{\circ}C$ did not alter the physicochemical and nutritional properties of both juices (p>0.05). PEF is a feasible technology to pasteurize mandarin and carrot juices commercially, with minimal quality deterioration.

Survival of Listeria monocytogenes and Salmonella Typhimurium in Retail Mandarin Orange, Prunus mume (Maesil) and Kiwi Extracts (시판 감귤주스, 매실주스 및 키위 즙에서 Listeria monocytogenes와 Salmonella Typhimurium의 생존성)

  • Kim, Mi-Ryung;Woo, Ho-Chun;Son, Won-Geun
    • Journal of Food Hygiene and Safety
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    • v.23 no.1
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    • pp.62-67
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    • 2008
  • Inactivation of Salmonella Typhimurium and Listeria monocytogenenes in mandarin orange, Prunus mume (maesil), and kiwi juices was evaluated. A three-strain mixture of S. Typhimurium or L. monocytogenes was inoculated (7 log CFU/ml) into a commercial mandarin orange juice and maesil juice, and home-maid kiwi extract. The inactivation effect of Maesil juice was estimated by the addition into the other two fruit juices. All fruit juices had acidic pH, ranging from 2.8 to 3.5 and it was not variable during all experimental period, being at $4^{\circ}C$ for 14 days, The present study demonstrated that Maesil juice inactivated throughly L. monocytogenes within 7 days, while kiwi extract and mandarin orange juice archived 3.0-log inactivation and 1.0-log inactivation, respectively, until 14 days of storage. S. Typhimurium was completely reduced by Maesil juice and kiwi extract within 14 days, but mandarin orange juice showed only 1.4-log inactivation. The inactivation of L. monocytogenes and S. Typhimurium was increased by adding 10% maesil juice to both mandarin orange juice and kiwi extract.

Comparison of the Effects of Blending and Juicing on the Phytochemicals Contents and Antioxidant Capacity of Typical Korean Kernel Fruit Juices

  • Pyo, Young-Hee;Jin, Yoo-Jeong;Hwang, Ji-Young
    • Preventive Nutrition and Food Science
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    • v.19 no.2
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    • pp.108-114
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    • 2014
  • Four Korean kernel fruit (apple, pear, persimmon, and mandarin orange) juices were obtained by household processing techniques (i.e., blending, juicing). Whole and flesh fractions of each fruit were extracted by a blender or a juicer and then examined for phytochemical content (i.e., organic acids, polyphenol compounds). The antioxidant capacity of each juice was determined by ferric reducing antioxidant power (FRAP) and 2,2-diphenyl-1-picrylhydrazyl (DPPH) assays. Results revealed that juices that had been prepared by blending whole fruits had stronger antioxidant activities and contained larger amounts of phenolic compounds than juices that had been prepared by juicing the flesh fraction of the fruit. However, the concentration of ascorbic acid in apple, pear, and mandarin orange juices was significantly (P<0.05) higher in juice that had been processed by juicing, rather than blending. The juices with the highest ascorbic acid (233.9 mg/serving), total polyphenols (862.3 mg gallic acid equivalents/serving), and flavonoids (295.1 mg quercetin equivalents/serving) concentrations were blended persimmon juice, blended mandarin orange juice, and juiced apple juice, respectively. These results indicate that juice extraction techniques significantly (P<0.05) influences the phytochemical levels and antioxidant capacity of fruit juices.

Deacidification of Mandarin Orange Juice by Electrodialysis Combined with Ultrafiltration

  • Kang, Yeung-Joo;Rhee, Khee-Choon
    • Preventive Nutrition and Food Science
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    • v.7 no.4
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    • pp.411-416
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    • 2002
  • The effects of electrodialysis (ED) alone or ED plus ultrafiltration (UF) on deacidification of mandarin orange juice were studied by using a commercial ED stack with ion exchange membranes. ED processing, reduced the total acidity of the juices by 30% (0.6~0.7% as total acidity) after 50 min and by about 60~70% (0.23~0.4% as total acidity) after 100 min, as compared to the control juice. However, the acidity reduction after 50 min of ED was determined to be suitable, when considering total acidity (0.6~0.7%, w/w) and current efficiency. There was no color change in the juices following ED, and the pH and Brix were only slightly decreased. Furthermore, ascorbic acid and citric acid concentrations showed only minor decreases, and amino-N, free sugar, and flavonoid contents remained almost unchanged. Therefore, we concluded that the nutritional integrity of the juice was maintained. ED combined with UF may be effective, not only in preventing membrane fouling, but also in preserving the nutrients, such as ascorbic acid, in citrus juice.

Continuous High Pressure Carbon Dioxide Processing of Mandarin Juice

  • Lim, Sang-Bin;Yagiz, Yavuz;Balaban, Murat O.
    • Food Science and Biotechnology
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    • v.15 no.1
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    • pp.13-18
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    • 2006
  • Mandarin juice was processed using a continuous high pressure $CO_2$ system. Response surface methodology was used to investigate the effects of the processing parameters such as temperature, pressure, residence time, and %(w/w) ratio of $CO_2$ to juice on total aerobic count (TAC), pectinesterase (PE) activity, cloud level, $^{\circ}Brix$, pH, and titratable acidity (TA) of the juices. Maximum log reduction (3.47) of TAC was observed at $35^{\circ}C$, 41.1 MPa, 9 min residence time, and 7% $CO_2$. PE was inactivated by 7-51%. The cloud was not only retained but was also enhanced by 38%. Lightness and yellowness increased, and redness decreased. The processing temperature and % $CO_2$/juice ratio significantly affected high pressure $CO_2$ processing of the juice in terms of pasteurization, PE inactivation, cloud increase, and color change. The $^{\circ}Brix$, pH, and TA before and after treatment remained unchanged.

Phenolic Components and Antioxidant Capacity of Some Selected Fruit Juices and Fermented Grape Juices (과일즙 및 발효 포도즙의 페놀성 화합물 함량과 항산화 활성)

  • Nam Jin-Hee;Joo Kwang-Jee
    • Journal of the East Asian Society of Dietary Life
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    • v.14 no.5
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    • pp.501-507
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    • 2004
  • Some selected fruit juices and fermented red grape juices were investigated to determine the phenolic components by the Folin-Ciocalteu method and antioxidant capacity using α, α-diphenyl-β-picrylhydrazyl(DPPH) method. Commercial red grape beverages and red wines were also analyzed as control groups. In the juice, kiwi fruit had the highest phenolic components followed by orange(summer), red grape(Cambell Early:Yonng-Chun), mandarin orange(autumn), apple(Hong-Ok), cherry tomato, tomato and water melon. Whereas, on the antioxidant efficiency, tomato showed the highest free radical scavenging effect followed by orange(summer), cherry tomato, mandarin orange(autumn), apple(Aori) red grape(Cambell Early:Sung-Ju), kiwi fruit and water melon. The amount of pheonlic components of red wine was 2 times of that of fermented sugar added grape juice, however, the antioxidant efficiency of fermented sugar added grape juice was almost the same as that of red wine. It was found that no clear relationship could be shown between the content of phenolic component and antioxidant capacity of fruit juices and fermented red grape juices. The fruit juices from tomato, orange, cherry tomato, mandarin orange, red grape and fermented sugar added red grape juice showed high free radical scavenging effect and should be regarded as a valuable source of antioxidant.

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In Vitro Sugar Accumulation in Juice Sacs of 'Shiranuhi' Mandarin

  • Moon, Doo-Gyung;Han, Sung-Gap;Joa, Jae-Ho;Kim, Chun-Hwan;Seong, Ki-Cheol
    • Horticultural Science & Technology
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    • v.31 no.3
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    • pp.269-274
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    • 2013
  • To further our understanding of sugar accumulation in 'Shiranuhi' mandarin [(C. unshiu ${\times}$ C. sinensis) ${\times}$ C. reticulate], we investigated the patterns of sugar uptake in juice sacs exposed to different concentrations of sucrose, fructose and glucose in vitro. Data was also collected on the change in weight and shape of the in vitro juice sacs over time. Soluble solids content, sugar content and acidity content were highest at 20% sucrose, fructose and glucose solution content; while fructose content was highest at 5% sucrose concentration. Furthermore, the juice sac's fresh weight was highest at 5% sucrose and lowest at 20% fructose content. The shape of the juice sacs also differed in different sugar concentration and type. Overall, sucrose, fructose and glucose content in juice sacs increased with the sugar concentration. These results suggest that sugar translocation into juice sacs is actively induced by high sugar concentration in the medium. Thus, it can be concluded that sugar and acid accumulation in juice sacs increased with sugar concentration in vitro culture.

Partial Purification and Characterization of Limonoate Dehydrogenase from Rhodococcus fascians for the Degradation of Limonin

  • Puri, Munish;Kaur, Lakhwinder;Marwaha, Satwinder-Singh
    • Journal of Microbiology and Biotechnology
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    • v.12 no.4
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    • pp.669-673
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    • 2002
  • An extracellular limonoate dehydrogenase was purified 10-fold from a cell-free extract of Rhodococcus fascians by ammonium sulfate precipitation, dialysis, and ultrafiltration. This purified dehydrogenase catalyzed the conversion of limonoate to 17-dehydrolimonoate. The enzyme showed optimum activity at pH 8.0 and $40^{\circ}C$, with $K_m$ value of 0.9$\muM$, and requires Zn ions and sulfhydryl groups for catalytic action. The enzyme activity was inhibited by $Hg^{2+}\;and\;NaN_3$ ions. The degradation of limonin (66%) in Kinnow mandarin juice was successfully demonstrated with partially purified limonoate dehydrogenase. With scale-up preparation of limonoate dehydrogenase, a successful debittering operation of fruit juices appears feasible.

Characteristics of Flavonoids in Juice and Cluster Analysis of Satsuma Mandarin Germplasms (온주밀감 유전자원의 과즙 중 플라보노이드 특성 및 군집 분석)

  • Park, Young-Chul;Yang, Young-Tack;Kim, Jin-Yeong;Lee, Chang-Hoon;Kang, Sang-Hoon;Kang, Jong-Hoon
    • Korean Journal of Plant Resources
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    • v.28 no.1
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    • pp.16-25
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    • 2015
  • This research was conducted to analyze flavonoids in juice and to investigate correlation between 60 germplasms of satsuma mandarin (Citrus unshiu Marc.) on the basis of the result of flavonoid analysis. Juice of satsuma mandarin contained 6 flavonoids, 2 flavanones such as narirutin and hesperidin, 1 flavone such as rutin and 3 polymethoxylated flavones such as sinensetin, tangeretin and nobiletin. Hesperidin content ranged from 41 to 196 mg/L. Narirutin content ranged from 25 to 230 mg/L. The average of rutin content was 2.2 mg/L but it was not detected in some cultivars. Polymethoxylated flavone which is known as a citrus specific flavonoid, was detected in all germplasms in small quantities. Cluster analysis using R program (Version 3.1.1) was carried out with the results of the flavonoid analysis and harvesting time of satsuma mandarin germplasms. All germplasms were grouped as A, B1 or B2. But all 3 groups contained very early-ripening type, early-ripening type and commonly-ripening type cultivars. This showed there was no correlation between flavonoids in juce and their harvest time.