• 제목/요약/키워드: Acetic acid

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매실을 이용한 식초산 발효에 관한 연구 (Studies on the Acetic Acid Fermentation Using Maesil Juice)

  • 김용두;강성훈;강성구
    • 한국식품영양과학회지
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    • 제25권4호
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    • pp.695-700
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    • 1996
  • 매실즙을 이용한 식초생산을 위하여 초산생성능이 우수한 초산균을 재래초로 부터 분리, 동정하고 매실 초 제조를 위한 최적 발효조건을 검토하였다. 재래초로부터 분리한 16균주 중 매실즙배지에서 가장 초산 생성능이 우수한 균주로 선정된 균주는 Acetobuter sp. VC-2로 동정 되었다. 이 균주의 증식 최적 조건을 살펴본 결과, 최적 온도는 3$0^{\circ}C$였으며 정치배양 보다는 진탕배양이 효과적으로 나타났다. 초산생성에 적합한 배지의 조성은 매실즙 30%, 초기 산도 2%, 에탄을 농도 6%, 포도당 0.2%, yeast extract 0.3%가 함유된 배지였다. 이와 같은 배양조건에서 매실식초는 8일째에 발효가 거의 완료되었으며, 이때 얻은 매실초의 총 산도는 6.5%였다. 주요 유기산으로는 acetic acid, citric acid, malic acid 및 tartaric acid였는데, 이들 함량은 4.28, 1.38, 0.48 및 0.30%로 각각 나타났다.

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Isolation and Cultural Properties of Acetic Acid Bacteria for Production of Onion Vinegar

  • Jang, Jae-Kweon;Choi, Young-Jin;Chung, Myong-Soo;Park, Hoon;Shim, Kun-Sub;Park, Young-Seo
    • Food Science and Biotechnology
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    • 제18권4호
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    • pp.939-947
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    • 2009
  • In order to produce vinegar using onions, 12 acetic acid bacteria were screened from the juice of fallen peaches, and a strain showing the highest acetic acid productivity among them was selected and identified as Acetobacter tropicalis No. 22. The culture broth containing 2.5%(w/v) of initial sugar concentration showed maximum acetic production after 10 days of cultivation, and the acetic acid was produced at the highest rate and reached the maximum acidity after 2 to 6 days of cultivation when the residual sugar and the ethanol concentration were in the range of 1.6 to 2%(w/v) and 0.6 to 1.8%(v/v), respectively. Also optimum conditions for acetic acid production by response surface method using the fractional factorial design with 3 variables and 5 levels were involved with initial ethanol content of 4.67%(v/v), initial acidity of 0.03%, and initial glucose concentration of 2.35%(w/v) and predicted level of acetic acid production at these conditions was 3.77%.

재래 식초에서 초산균의 분리와 발효특성 신속 비교 (Comparison of the fermented property and isolation of acetic-acid bacteria from traditional Korean vinegar)

  • 백성열;박혜영;이충환;여수환
    • 한국식품저장유통학회지
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    • 제21권6호
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    • pp.903-907
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    • 2014
  • 식초 제조용 종초 선발을 위해 다양한 초산균을 분리한 후, 그들의 발효특성 분석하여 종초 가능성을 검토하였다. 수집된 식초 시료에서 분리된 균주의 16S rRNA 염기서열을 분석한 결과, A. pasteurianus, A. malorum, Ga. entanii, Ga. intermedius, Ga. xylinus로 동정되었다. 식초 제조용 초산균의 발효특성을 분석한 결과, 초산의 과산화능은 모든 시험 균주에서 음성으로 나타나 과산화를 보이지 않았으며, 초산 내성은 Gluconacetobacter 속 균주만 관찰되었다. pH 내성은A. malorum V5-7 균주가 가장 높았다. 식초 품질에 해로운 영향을 주는 섬유질상의 세포외 다당체인 콜로이드 생성 균주는 Ga. intermedius V11-5, Ga. xylinus V8-1 균주로 나타났다. 초산 생성능은 A. malorum V5-7, A. pasteurianus Gam2, Ga. intermedius V11-5에서 가장 높은 산 생성능을 나타내었다. 본 연구에서는 종초용 초산균의 발효 특성 연구를 통해 국내 발효 식초의 품질 향상을 기대한다.

수침(水浸)과 Acetic Acid 처리에 따른 콩나물의 생장과 형태 변화 (Effect of Seed Imbibition into Water and Acetic Acid Solution on its Floating Rate and Growth of Soybean Sprouts)

  • 전병삼;홍동오;김홍영;이창우;강진호
    • 한국자원식물학회지
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    • 제19권2호
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    • pp.204-208
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    • 2006
  • 콩나물의 생산과정에서 야기되고 있는 부패를 방지하기 위한 다양한 방법이 제시되고 있다. 본 연구는 물에 침종하는 수침(水浸)을 이용한 종자정선과 0.1% acetic acid에 2분간 실시한 종자소독이 콩나물의 발아와 생장, 형태 및 생산수율에 미치는 영향을 조사하고자 실시하였던 바 그 결과를 요약하면 다음과 같다. 1. 물에 뜨는 부유 종자의 비율은 5분간 물에 침종시킨 종자를 건져 40분간 aeration 시켜 다시 물에 침종시킬 경우 가장 높았다. 2. 상품으로 판매가 가능한 하배축 길이가 4cm이상의 비율은 은하콩에서는 水浸(水浸)과 acetic acid 처리간 차이가 없었던 반면, 풍산 나물콩과 준저리에서는 acetic acid 처리에 비하여 가결 수침 처리(水浸 處理)에서 높았다. 3. 세근형성 비율과 개체당 세근수는 은하콩과 준저리에서는 수침 처리(水浸 處理)에서, 풍산나물콩은 acetic acid 처리에서 상대적으로 높고 많았다. 4. 개체당 전체생계중은 은하콩과 풍산나물콩에서는 수침 처리(水浸 處理) 보다는 acetic acid 처리에서 많았던 반면. 준저리는 이와 반대의 결과를 보였다. 그러나 준저리를 이용한 대량생산 체계에서의 생산 수율은 수침(水浸)을 이용한 종자정선과 acetic acid를 이용한 종자소독간에 차이가 없었다.

고온 열분해 반응법을 이용한 PbSe 나노입자의 Acetic Acid 첨가에 대한 영향 (The Effect of Acetic Acid in Synthesizing PbSe Quantum Dots by Hot Solution Chemical Process)

  • 백인찬;석상일;정용재
    • 한국세라믹학회지
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    • 제44권2호
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    • pp.89-92
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    • 2007
  • PbSe, with a band gap in the mid-infrared and a samll effective mass, is an interesting material for optical and electrical applications in infrared region. Various colloidal synthetic routes for synthesizing PbSe quantum dot nanoparticles have been developed in the last couple of years. In this work, stable colloidal solutions containing crystalline PbSe particles in the order of 5-15 nm were synthesized using different amount of acetic acid in high boiling coordinating solvents. The size and shape of PbSe nanoparticles was greatly influenced by coexistence of acetic acid in synthetic medium. It was observed by TEM that the shape of PbSe nanoparticles with different amount of acetic acid was changed from spherical to cube or star types.

Synthesis of 5-Aslkylthio (or sulfonyl) methyl-5-m-methoxy-phenylhydantion-3-acetic Acid Derivatives

  • Kwon, Soon-Kyoung;Park, Muoung-Suk;Nam, Young-Ju
    • Archives of Pharmacal Research
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    • 제16권4호
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    • pp.322-326
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    • 1993
  • For the development of new antinflammatory and analgesic drugs, new 5-alkylthio (or sulfonyl) methyl-5-m-methoxyphenylhydantoin-3-acetic acid derivatives(alkyl; ethyl, propyl, butyl) were prepared. The 5,5 -disubstituted hydantoins which were used as starting materials, were prepared acording to Bucherer-Berg method. The reaction of ethyl chloroacelate with these compounds gave 3-acetate and the subsequent hydrolysis with dilute sodium hydroxide resulted in hydantoin 3-acetate and the subsequent hydrolysis with dilute sodium hydroxide resulted in hydantoin 3-acetic acid derivatives. Through the same procedure of equivalent hydroxide resulted in hydantoin 3-acetic acid derivatives. Through the same procedure of equivelent hydantions or the oxidation of 5-alkylthiohydantoin ocmpounds described above, 5-alkylsulfonylme-thyl-5-m-methoxyphenylhydantoin-30acetic acid derivatives were also synthesized.

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마요네즈의 유동 특성과 유화 안정성에 미치는 초산 농도의 영향 (Effects of Acetic Acid Concentration on Rheological Characteristics and Emulsion Stability of Mayonnaise)

  • 배효미;오명숙
    • 한국식품조리과학회지
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    • 제5권1호
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    • pp.9-13
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    • 1989
  • 초산용액의 초산농도를 0, 1, 2, 4, 6%로 변화하여 제조한 마요네즈의 유동 특성, 유화 안정성, 색도에 대하여 조사하였다. 마요네즈의 유동은 항복응력을 가지는 소성유동이며, 초산농도가 높아질수록 항복응력 및 점주도지수가 커져서 초산농도가 높아질수록 마요네즈의 물성이 점주해지는 것을 나타내었다. 마요네즈의 유화안정성은 초산농도가 높아질수록 감소하는 경향을 보였고, 초산노도 4%일 때 가장 안정성이 낮았다. 색도는 초산함량이 증가할수록 L값(명도)이 증가하고 b값(yellowness)은 감소하였다.

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4,5-Diphenyl-Imidazolone의 合成 及 螢光效果에 關한 硏究 (Synthesis of 4,5-Diphenyl Imidazolone and Studies on its Fluorescent Effect)

  • 전풍진;김형숙
    • 대한화학회지
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    • 제4권1호
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    • pp.70-77
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    • 1957
  • 4,5-Diphenyl Imidazolone is synthesized from Benzoin, Urea, and Acetic acid catalyser. Nowadays, it is being used as an optical bleaching agent for wool and nylon textiles. Up to now, only one process of synthesis has been known. In order to find out the best conditions governing the yield were examined under various catalysers and conditions. In this experiment, the summary of results were as follows. a. On Acetic acid catalyser. The maximum yield conditions were mol ratio (Benzoin: Urea: Acetic acid) 1 : 2 : 14, Acetic acid concentration 99.9%. Reaction temperature 115$^{\circ}$. Under reaction time of 2 hours, above yield was 96.4%. b. On Mineral acid Catalyser. In using of Sulfonic acid, the color of solution was changed dark purlish black. With other mineral acid catalysers, in spite of increasing of temperature, it was proved that Benzoin floats on the solution, so that this reaction could not be continue. c. On Phosphoric acid catalyser. It was made clear that it can not be used for this reaction. d. On Sodium hydroxide catalyser. As one of Alkali catalyser, Sodium hydroxide was examined but this was unsuitable substance for this reaction. e. On Formic acid catalysers. The maximum yield conditions were mol ratio (Benzoin: Urea: Formic acid) 1: 2: 30. Formic acid concentration 85.%. Reaction temperature 150∼110$^{\circ}$. Under reaction time of 90 minutes, the best yield was 87%. Hereby, it was proved that organic acids such as Acetic acid and Formic acid can be used. When using Acetic acid, the yield was better than Formic acid, but it takes longer reaction time than Formic acid. About the fluorescent effect, the temperature of dye-bath must not be over 904,5-Diphenyl Imidazolone is synthesized from Benzoin, Urea, and Acetic acid catalyser. Nowadays, it is being used as an optical bleaching agent for wool and nylon textiles. Up to now, only one process of synthesis has been known. In order to find out the best conditions governing the yield were examined under various catalysers and conditions. In this experiment, the summary of results were as follows. a. On Acetic acid catalyser. The maximum yield conditions were mol ratio (Benzoin: Urea: Acetic acid) 1 : 2 : 14, Acetic acid concentration 99.9%. Reaction temperature 115$^{\circ}$. Under reaction time of 2 hours, above yield was 96.4%. b. On Mineral acid Catalyser. In using of Sulfonic acid, the color of solution was changed dark purlish black. With other mineral acid catalysers, in spite of increasing of temperature, it was proved that Benzoin floats on the solution, so that this reaction could not be continue. c. On Phosphoric acid catalyser. It was made clear that it can not be used for this reaction. d. On Sodium hydroxide catalyser. As one of Alkali catalyser, Sodium hydroxide was examined but this was unsuitable substance for this reaction. e. On Formic acid catalysers. The maximum yield conditions were mol ratio (Benzoin: Urea: Formic acid) 1: 2: 30. Formic acid concentration 85.%. Reaction temperature 150∼110$^{\circ}$. Under reaction time of 90 minutes, the best yield was 87%. Hereby, it was proved that organic acids such as Acetic acid and Formic acid can be used. When using Acetic acid, the yield was better than Formic acid, but it takes longer reaction time than Formic acid. About the fluorescent effect, the temperature of dye-bath must not be over 90$^{\circ}$. and the ratio of 4,5-Diphenyl Imidazolone and water should be from 1:50000. to 1:10000. It proved that the best effect on textiles, and the best condition were dye-temperature near 704,5-Diphenyl Imidazolone is synthesized from Benzoin, Urea, and Acetic acid catalyser. Nowadays, it is being used as an optical bleaching agent for wool and nylon textiles. Up to now, only one process of synthesis has been known. In order to find out the best conditions governing the yield were examined under various catalysers and conditions. In this experiment, the summary of results were as follows. a. On Acetic acid catalyser. The maximum yield conditions were mol ratio (Benzoin: Urea: Acetic acid) 1 : 2 : 14, Acetic acid concentration 99.9%. Reaction temperature 115$^{\circ}C$. . Under reaction time of 2 hours, above yield was 96.4%. b. On Mineral acid Catalyser. In using of Sulfonic acid, the color of solution was changed dark purlish black. With other mineral acid catalysers, in spite of increasing of temperature, it was proved that Benzoin floats on the solution, so that this reaction could not be continue. c. On Phosphoric acid catalyser. It was made clear that it can not be used for this reaction. d. On Sodium hydroxide catalyser. As one of Alkali catalyser, Sodium hydroxide was examined but this was unsuitable substance for this reaction. e. On Formic acid catalysers. The maximum yield conditions were mol ratio (Benzoin: Urea: Formic acid) 1: 2: 30. Formic acid concentration 85%. Reaction temperature 150∼110$^{\circ}C$. Under reaction time of 90 minutes, the best yield was 87%. Hereby, it was proved that organic acids such as Acetic acid and Formic acid can be used. When using Acetic acid, the yield was better than Formic acid, but it takes longer reaction time than Formic acid. About the fluorescent effect, the temperature of dye-bath must not be over 90$^{\circ}C$. and the ratio of 4,5-Diphenyl Imidazolone and water should be from 1:50000. to 1:10000. It proved that the best effect on textiles, and the best condition were dye-temperature near 70$^{\circ}C$. and dye-time 15 minutes. . and dye-time 15 minutes. . and the ratio of 4,5-Diphenyl Imidazolone and water should be from 1:50000. to 1:10000. It proved that the best effect on textiles, and the best condition were dye-temperature near 70$^{\circ}C$. and dye-time 15 minutes.

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인삼성분이 초산발효에 미치는 영향에 관한 연구(제2보) (Studies on the Effect of Korean Ginseng Components on Acetic acid Fermentation. [II])

  • 남성희;유태종
    • Journal of Ginseng Research
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    • 제4권2호
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    • pp.133-145
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    • 1980
  • In order to find out the inhibitors of acetic acid fermentation in Korean ginseng (Panax Sin son C. A. Meyer), total aglycone, panaxadiol, panaxadiol, oleanolic acid and ${\beta}$ -sitosterol were added to the basal medium, respectively, and a surface culture was carried out at 30$^{\circ}C$. The results were as follows: 1 . Saponins lost their activity to inhibit the acetic acid fermentation by hydrolysis. 2 Panaxadiol inhibited slightly, and the degree of inhibition was about 1/300 of that of free saponins. 3. Panaxadiol and oleanolic acid inhibited silighly similar to total aglycone. 4. Acetic acid fermentation was stimulated at the early stage when ${\beta}$-sitosterol was added to the media below the level of 0.000815%. But the fermentation was inhibited when media contained it more than that media 5. An over-oxidation of acetic acid was observed when the media contained total aglycone. panaxadiol, panaxatriol, oleanolic acid and ${\beta}$-sitosterol, respectively, while the media which contained sucrose, ginseng extracts ginseng saponins was shown not to be over-oxidized.

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배를 이용한 식포의 발효조건에 관한 연구 (A Study on Cultural Conditions for Acetic Acid Production Employing Pear Juice)

  • 오영준
    • 한국식품영양과학회지
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    • 제21권4호
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    • pp.377-380
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    • 1992
  • To produce economically important acid with pear juice, an acetic acid bacterium was selected from many isolated acetic acid bacteria. The alcohoic fermentation was conducted by inoculating pear juice with Saccharomyces cerevisiae ATCC 4124, and then the pear vinegar was prepared by batch cultivation in flaskes with the isolated Acetobacter sp. The optimum conditions for high yield of acetic acid were studied experimentally in the batch shake flask . For seed purposes the Acetobactor sp. was cultivated for 2 -days and transferred to the acid production medium . Optimum alcohol concentration, initial acidity and temperature for the acid production were 8.0% , 2.0% and 28$^{\circ}C$, respectively. Under the same conditions, the addition of yeast extract (1%) was observed to produce relatively high yield of acetic acid.

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