• Title/Summary/Keyword: citric acid treatment

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Improvement of Quality and Prolongation in Chopped Ginger Storage (다진 생강의 저장성 증진에 관한 연구)

  • Lee, Sang-Bok;Kim, Myeong-Sook;Choi, Yoon-Hee
    • Applied Biological Chemistry
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    • v.40 no.2
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    • pp.123-127
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    • 1997
  • To improve the quality and prolongation of chopped ginger, they were treated with NaCl, citric acid, ascorbic acid alone or combination of them at $5^{\circ}C$. The browning and stink of chopped ginger were prevented by adding 10% NaCl, $0.5{\sim}2.0%$ citric acid, but the control became severely browned and deteriorated after 1 month storage. The application of 0.5% citric acid maintained citrine color and decreased the activity of polyphenol oxidase(PPO) more significantly compared to 5.0% NaCl or 0.5% ascorbic acid. Ascorbic acid treatment become browned at $1.0{\sim}2.0%$ and easily deteriorated compared to citric acid. Citric acid(0.5%) or ascorbic acid (0.5%) treatment was largely variation of pH compared to NaCl(5.0%)+citric acid(0.5%) or NaCl(5.0%)+ascorbic acid(0.5%) treatment during 8 month storage. The activity of PPO in NaCl(5.0%)+ascorbic acid(0.5%) treatment was elevated after 4 month storage. In chopped ginger, NaCl(5.0%)+citric acid(0.5%)+ascorbic acid(0.25%) treatment was more effective than 5.0%+0.1%+0.1%, 5.0%+0.5%+0.1% during 12 month storage.

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Efficacy of Aqueous Chlorine Dioxide and Citric Acid in Reducing Escherichia coli on the Radish Seeds Used for Sprout Production

  • Lim, Jeong-Ho;Jeong, Jin-Woong;Kim, Jee-Hye;Park, Kee-Jai
    • Food Science and Biotechnology
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    • v.17 no.4
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    • pp.878-882
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    • 2008
  • The efficacy of citric acid-aqueous chlorine dioxide ($ClO_2$) treatment of radish seeds artificially contaminated with Escherichia coli was studied. Radish seeds were inoculated with E. coli. Following inoculation, samples were stored at $4^{\circ}C$ and soaked in citric acid or aqueous $ClO_2$ for 10 min. The treatment of radish seeds using 200 ppm aqueous $ClO_2$ solution caused a 1.5 log CFU/g reduction in the population of E. coli. Compared to the aqueous $ClO_2$ treatment, soaking radish seeds in 2.0% citric acid solution for 10 min was more effective in reducing E. coli populations on radish seeds. The efficacy of spray application of chlorine (100 ppm) or 0.5% citric acid to eliminate E. coli during the germination and growth of radish was investigated. Radish seed inoculated with E. coli was treated for the duration of the growth period. Although it resulted in a decrease in the E. coli population, the spray application of 100 ppm chlorine during the growth period was not significantly effective. In contrast, the combined treatment of seeds using 200 ppm aqueous $ClO_2$ and treatment of sprouts with 0.5% citric acid solution during sprout growth was hardly effective in eliminating E. coli.

Variation of Phenolic Ingredient and Ginsenoside Content in Red ginseng Extract by Acid Treatment (Ascorbic acid 및 citric acid 처리에 따른 홍삼추출물의 페놀성 성분 및 ginsenoside 함량 변화)

  • Kong, Yeon-Hee;Rho, Jeong-Hae;Cho, Chang-Won;Kim, Mi-Hyun;Lee, Young-Chul;Kim, Sung-Soo;Lee, Pyeong-Jae;Choi, Sang-Yoon
    • Journal of Ginseng Research
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    • v.33 no.3
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    • pp.194-198
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    • 2009
  • The changes that would occur in a content of five phenolic ingredients and eight ginsenosides in acid-treatedred ginseng extracts were measured in this study. Acid-treated-red ginseng was prepared by treating with 1 M ascorbic acid or citric acid for 20 min. As a result, the contents of esculetin and quercetin in citric acid-treated-red ginseng increased by 3.5 times and 2.0 times, respectively, compared with control red ginseng. However, all phenolic ingredients decreased after treatment with ascorbic acid. In addition, the contents of ginsenoside Rg$_3$, Rh$_2$, Rd increased but those of Rb$_1$, Rc, Re, Rf, Rg$_1$ decreased after acid treatment. Although these tendency of results are similar, the rate of change of ginsenosides in citric acid-treated-red ginseng was higher than in ascorbic acid-treated-red ginseng. These results indicated that citric acid is more effective in the conversion of ginseng ingredients than ascorbic acid.

Effect of Chemical Treatment with Citric Acid or Ozonated Water on Microbial Growth and Polyphenoloxidase Activity in Lettuce and Cabbage

  • Youm, Hyoung-Jun;Jang, Jae-Won;Kim, Kyu-Ri;Kim, Hyo--Jjung;Jeon, Eun-Hee;Park, Eun-Kyoung;Kim, Mee-Ree;Song, Kyung-Bin
    • Preventive Nutrition and Food Science
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    • v.9 no.2
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    • pp.121-125
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    • 2004
  • Effects of chemical treatment with a citric acid solution or ozonated water on microbiological changes in lettuce and cabbage during storage were studied. Fresh lettuce and cabbage samples were cut into small pieces and treated by soaking in either ozonated water or a citric acid solution. After treatment, populations of total bacteria, yeast and mold, and E. coli were determined. Numbers of microorganisms increased during storage, but ozonated water and citric acid treatments retarded the increase in microbial growth. Among treatments, 1 % citric acid treatment was the most effective in terms of microbiological change and inhibition of polyphenoloxidase (PPO). For lettuce, citric acid treatment decreased the microbial growth overall by 1.5 log CFU/g and inhibited the PPO activity by 80%. These results indicate that chemical-treated lettuce and cabbage retained a better quality than those of the control during storage.

Effect of Organic Acid Treatment on the Quality Attributes of Buckwheat Sprout during Storage (유기산 전처리에 따른 메밀 새싹의 저장중 품질변화)

  • Chang, Su-Kyung;Lee, Hyun-Hee;Hong, Seok-In;Han, Young-So
    • Korean Journal of Food Science and Technology
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    • v.42 no.2
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    • pp.190-197
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    • 2010
  • Changes in the quality of buckwheat sprout treated with organic acid solutions such as ascorbic, citric and acetic acid were examined during storage in order to judge the feasibility of acid dipping as a pretreatment for extending shelf-life. Quality attributes of buckwheat sprout stored at $5^{\circ}C$ were measured in terms of microbial cell count, moisture content, soluble solids content, chromaticity, and sensory evaluation over different storage times. For microbial growth inhibition, combinations of 0.05% acetic acid and 0.5% citric acid or 1% ascorbic acid and 0.5% citric acid were more effective than other treatments. Slight changes were observed in moisture content among the treatments, whereas soluble solids content of each treatment was increased during storage. In chromaticity, the Hunter's a value of buckwheat sprout treated with acetic acid alone or acetic acid combinations showed the largest increase. Dipping treatment with ascorbic acid and citric acid produced only slight changes in color of the sprout. In the sensory evaluation of discoloration (head, stem and root), wilting and overall quality, ascorbic acid and citric acid treatments gave the highest scores. These results suggest that dipping treatment of buckwheat sprout with citric acid can confer more positive effects on storage stability than others.

Effect of Aqueous Chlorine Dioxide and Citric Acid on Reduction of Salmonella typhimurium on Sprouting Radish Seeds (이산화염소수 및 구연산처리에 따른 무(Raphanus sativus L.) 새싹과 종자의 미생물 제어 효과)

  • Park, Kee-Jai;Lim, Jeong-Ho;Kim, Bum-Keum;Kim, Jong-Chan;Jeong, Jin-Woong;Jeong, Seong-Weon
    • Food Science and Preservation
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    • v.15 no.5
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    • pp.754-759
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    • 2008
  • The effect of citric acid-aqueous chlorine dioxide ($ClO_2$) treatment of radish seeds artificially contaminated with Salmonella typhimurium was studied. Radish seeds were inoculated by immersion, in more than 106 log CFU/g seed, of a suspension of S. typhimurium, dried, and stored sealed at $4^{\circ}C$ Radish seeds soaked in 200 ppm aqueous ClO2 solution for 10 min showed a bacterial reduction of 1.08 log CFU/g seed, and the lowering of microbial burden noted in seeds soaked in 2% (w/v) citric acid solution for 10 min was 2.89 log CFU/g seed. Next, radish seeds were exposed to 0.5% (v/v) glycerol solution for 10 min either before or after treatment with 200 ppm aqueous ClO2 or 2% (w/v) citric acid for 10 min. Glycerol exposure after citric acid treatment reduced bacteria by 3.46 log CFU/g seed, and glycerol treatment after aqueous $ClO_2$ treatment reduced the microbial burden by 2.14 log CFU/g seed. Both glycerol treatments yielded better elimination of S. typhimurium than did a single treatment with either citric acid or aqueous $ClO_2$. Radish seeds inoculated with S. typhimurium were treated throughout the entire growth period. Although radish seed treatment was effective, treatment by citric acid and aqueous $ClO_2$ after sprouting was not effective to eliminate S. typhimurium.

Effect of Sulfur Powder and Citric Acid on Arsenic Phytoremediation Using Pteris multifida in Forest Soil (봉의 꼬리를 이용한 수림지 토양의 비소정화에 미치는 유황분말과 구연산의 영향)

  • Kwon, Hyuk Joon;Cho, Ju Sung;Lee, Cheol Hee
    • Journal of the Korean Society of Environmental Restoration Technology
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    • v.17 no.1
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    • pp.1-12
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    • 2014
  • This study was carried out not only to identify the optimum concentrations of sulfur powder and citric acid treated for improving arsenic absorption of Pteris multifuda known as hyperaccumulator of arsenic, but also to develop arsenic purification model in the forest soil. After applying sulfur powder (0, 30, 45, $60g{\cdot}m^{-2}$) and citric acid (0, 200, 400, $800g{\cdot}m^{-2}$) in the forest soil contaminated with heavy metals, P. multifuda was planted and cultivated for 16 weeks. And then the growth and arsenic contents of plants were analyzed. In the result of research, the growth of P. mulifuda, except plant width, cultivated in soils treated with sulfur powder and citric acid was relatively lower than control. The accumulated amount of arsenic in aerial parts of P. multifuda ($1822.2mg{\cdot}kg^{-1}$) cultivated in soils treated with $200g{\cdot}m^{-2}$ citric acid was improved 62.5% against the control. And the accumulated amount of arsenic per 1 $m^2$ ($20.1mg{\cdot}m^{-2}$) was the greatest in $200g{\cdot}m^{-2}$ citric acid treatment. Translocation rate (TR) was higher in all acid treatment compare to control, and was the best in $200g{\cdot}m^{-2}$ citric acid treatment (0.95) especially. It showed that the arsenic absorbed in underground parts was transferred fast to aerial parts. Therefore, $200g{\cdot}m^{-2}$ citric acid treatment in the soil is recommended for arsenic purification using P. multifuda.

Combination effect of acetic acid and citric acid on calcium and phosphorus extraction from shank bone (초산과 구연산의 조합이 사골로부터 칼슘과 인의 용출에 미치는 영향)

  • Kim, Dong Chung;Won, Sun Im;In, Man-Jin
    • Journal of Applied Biological Chemistry
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    • v.60 no.1
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    • pp.19-22
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    • 2017
  • This study was conducted to investigate the effect of acetic acid and citric acid treatments on amount and content ratio of calcium (Ca) and phosphorus (P) which were extracted from beef shank bones. The amount of Ca in shank bone extracts significantly increased with increasing citric acid and acetic acid concentration, whereas the amount of P increased with only adding citric acid to extraction media. In the case of combined treatment with 0.2 % acetic acid and 0.1 % citric acid, the amounts of Ca and P increased to 30 and 400 %, respectively and Ca and P ratio were drastically improved from 7.53 to 1.85 compared with treatment of 0.2 % acetic acid. The sensory score of shank bone extract prepared with 0.2 % acetic acid and 0.1 % citric acid treatment showed the highest values in taste and overall acceptability among the tested shank bone extracts.

The Changes of Ginsenoside Patterns in Red Ginseng Processed by Organic Acid Impregnation Pretreatment

  • Kim, Mi-Hyun;Lee, Young-Chul;Choi, Sang-Yoon;Cho, Chang-Won;Rho, Jeong-Hae;Lee, Kwang-Won
    • Journal of Ginseng Research
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    • v.35 no.4
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    • pp.497-503
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    • 2011
  • In order to enhance bioactive functionalities of ginseng, an acid impregnation processing was applied as a pre-treatment in producing red ginseng. Acid impregnation studies were conducted, and acids (ascorbic, malic, and citric acid) were selected. The optimal concentration of each acid was investigated in this study in terms of ginsenoside contents. The most concerned ginsenoside, $Rg_3$ was increased by ascorbic, malic, and citric acid pre-treated red ginseng up to 1 M acid concentration. In the case of ascorbic acid pre-treated red ginseng, $Rg_2$ concentration was increased depending on acid concentrations. Citric acid pre-treatment enhanced $Rg_2$, $Rg_3$, and $Rh_1+Rh_2$ formation in red ginseng. Therefore, ginsenoside patterns in red ginseng could be changed by acid impregnation pre-treatment depending on acid concentration and acid types. This research is expected to contribute to the development of the ginseng industry via new red ginseng products with selective and intensified functionality.

Effects of Organic Acids on Availability of Phosphate and Growth of Corn in Phosphate and Salts Accumulated Soil

  • Kim, Myung-Sook;Park, Seong-Jin;Lee, Chang-Hoon;Yun, Sun-Gang;Ko, Byong-Gu;Yang, Jae E.
    • Korean Journal of Soil Science and Fertilizer
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    • v.49 no.3
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    • pp.265-270
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    • 2016
  • Accumulated Phosphate can be released by ligand exchange reaction of organic acids. The objective of this study was to evaluate effects of the organic acids on the availability of phosphate and the growth of crop in phosphate and salts accumulated soil. Soil samples were collected from farmer's plastic film house. Available phosphate and electrical conductivity of soil were $3,005mg\;kg^{-1}$ and $16.63mg\;kg^{-1}$ which were 6 and 8 times higher than the optimum range of soil for crop growth, respectively. Corns were cultivated in pots for 2 months. Treatments were no treatment (control), phosphate fertilizer (P), citric acid (CA) 1, 5, 10 mM, and oxalic acid (OA) 1, 5, 10 mM. Water soluble phosphorus, available phosphate, corn growth and uptake were determined after cultivation. Results showed that organic acids increased water soluble phosphorus and available phosphate. For the level of 10 mM, the order of effectiveness of organic acids for water soluble P was citric acid (44%) > oxalic acid (32%). Height and dry weight of corns were increased significantly by the treatment of citric acid 1 and 5 mM. Also, corn absorbed more phosphorus, nitrogen, potassium, calcium and magnesium in the treatment of citric acid 1 mM than these of other treatments. Even though phosphate availability of soil was enhanced by addition of citric acid 10 mM, the growth of corns decreased because high concentration of citric acid caused salt damage by increasement of electrical conductivity. Thus, the citric acid of 1 mM has the potential to improve the availability of phosphate and the healthy growth of corns.