• Title/Summary/Keyword: 발효속도

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The Situation of Mushroom Cultivation Growing at High Temperature in Africa Malawi (아프리카 말라위의 고온성 버섯재배 현황)

  • Chang, Hyun-You;Kim, Seon;Baek, Soon-Jib
    • Journal of Practical Agriculture & Fisheries Research
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    • v.14 no.1
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    • pp.195-209
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    • 2012
  • 1) 버섯종균 생산 시스템 개선 버섯의 품질과 수량을 좌우하는 주요 요인은 종균의 활력이다. 그러나 말라위에서는 종균의 활력이 낮아 조그마한 350cc 음료수 병에 배양 완성하는데 20일이 소요되는 등 노동력의 비효율성을 개선하였다. 따라서 350cc 병을 3500cc 비닐봉지로 개선하여 입봉하는데 소요되는 시간을 10배 이상으로 단축 개선하였다. 또한 곡립종균을 액체종균으로 대처한 결과 균사생장 속도가 빨랐으며 작업속도가 빨라졌다. 곡립 수수를 밀로 대체하여 종균제조 노동력을 효율적으로 전환하였다. 2) 버섯재배사 환경관리 개선 버섯재배의 4대 환경조건은 온도, 습도, 환기, 광이다. 그러나 말라위의 버섯재배사는 4대 환경조건 조절을 자연상태에 의존하고 있다. 그럼에도 불구하고 비닐로 커버된 상태에서 문을 닫아두어 과습이 되고 환기가 되지않았다. 이를 개선하기 위하여 직경 5cm 환기공을 버섯재배사 당 4개씩 만들도록 지도하였다. 3) 버섯배지 개선 말라위에서는 옥수수 대를 잘라 버섯배지로 주로 이용하고 있다. 이를 개선하여 말라위 북부지역(다광)에 대규모 사탕수수 공장을 방문하여 사탕수수 박을 이용하여 버섯재배 기술을 교육하였다. 이를 이용함으로서 버섯 균사생장속도를 빠르게 하고 균사량의 축적을 높이도록 하여 고품질 다수확하는데 교육을 하고 컨설팅을 실시하여 개선하였다. 4) 버섯 배지 야외발효 후 지면재배 시도로 시간 단축과 비용절감 말라위 버섯배지 혼합제조법은 옥수수대 한가지로서 영양원이 없다. 이를 개선하여 배지를 수분을 흡수시킨 후 야외 퇴적하므로서 배지의 물리성을 개선하고 야외발효 과정 중 양분이 합성되어 양질의 배지를 만드는 방법이다. 야외발효한 배지를 봉지에 담아 균상에 입상하는 불편함과 나무로 만들어진 균상대의 과습으로 인한 곰팡이 발생과 개미 침입으로 썩는 것 등을 방지하기 위하여 지면재배 방법으로 개선하였다. 이 지면재배는 균상 만드는 나무재료와 인건비 절감. 병해충 발생 방제 뿐만아니라 고품질 다수확할 수 있는 방법으로 개선 교육과 시범 시연을 실시하였다.

Alcoholic Fermentation of Traditional Kanjang by Semi-pilot Scale Bioreactor Systems (Semi-pilot plant 규모 bioreactor를 이용한 재래식 간장의 알코올발효)

  • Kwon, Kwang-Il;Lee, Jong-Gu;Choi, Jong-Dong;Chung, Hyun-Chae;Ryu, Mun-Kyun;Im, Moo-Hyeog;Kim, Ki-Ju;Choi, Yong-Hoon;Kim, Young-Ji;Choi, Cheong;Choi, Kwang-Soo
    • Korean Journal of Food Science and Technology
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    • v.35 no.1
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    • pp.103-110
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    • 2003
  • Stable production of fermented kanjang containing 1.8% (v/v) ethanol was obtained within four days using traditional kanjang containing 4% added glucose in packed-bed bioreactor systems filled with immobilized Zygosaccharomyces rouxii and Candida versatilis on porous alumina ceramic bead carrier at $28{\pm}0.5^{\circ}C$ and aeration rate of 0.05 vvm. Specific rates of alcohol production for Z. rouxii and C. versatilis were 0.0033 and 0.0031/day, respectively, and those of glucose consumption were both -0.0087/day in the batch type of alcoholic fermentation. In semi-continuous alcoholic fermentation at a dilution rate of 0.25/day, specific rates of alcohol production for Z. rouxii and C. versatilis were 0.0045 and 0.0029/day, and those of glucose consumption were -0.01 and -0.008/day, respectively, using identical bioreactor system. Similar specific rates of alcohol production were observed both in the batch or semi-continuous process and in the continuous one at the dilution rate of 0.25/day. Sensory characteristics of all alcoholic-fermented kanjang by Z. rouxii, C. versatilis, and a mixture of both yeasts (2:1, w/w) were shown to be significantly superior to those of home-made kanjang as revealed through organoleptic evaluation tests (p<0.05).

Optimal Condition for Simultaneous Saccharification and Fermentation Using Pretreated Corncob by Oxalic Acid (옥살산 전처리 옥수숫대를 이용한 동시당화발효 최적 조건 탐색)

  • Seo, Young-Jun;Lim, Woo-Seok;Lee, Jae-Won
    • Journal of the Korean Wood Science and Technology
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    • v.39 no.6
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    • pp.490-497
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    • 2011
  • In this study, we determined optimal conditions for simultaneous saccharification and fermentation (SSF) using corncob biomass pretreated with oxalic acid. The effect of SSF temperature ($25.8{\sim}34.2^{\circ}C$) and agitation speed (80~220 rpm) were significant at a 99% confidence level in its effect on ethanol production. The highest ethanol production was expected when SSF was performed at $30^{\circ}C$, 170 rpm (22.5 g/L). The ethanol production was improved by mixture of yeast extract (1.25 g/L) and urea (1.25 g/L) as nitrogen source. However, addition of trace metal components and vitamin for SSF was not affected in the ethanol production. Optimal concentration of $KH_2PO_4$, $MgSO_4{\cdot}7H_2O$ for SSF was 1 g/L, 0.25 g/L respectively.

Gas Composition within Kimchi Package as Influenced by Temperature and Seasonal Factor (온도 및 계절요인에 따른 포장 김치의 기체조성 변화)

  • Hong, Seok-In;Lee, Myung-Ki;Park, Wan-Soo
    • Korean Journal of Food Science and Technology
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    • v.32 no.6
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    • pp.1326-1330
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    • 2000
  • Kimchi, made from seasonal baechu (Chinese cabbage), was sealed in PP trays with a Nylon/CPP lid film and stored at various temperatures (0, 10, $20^{\circ}C$) to investigate the feasibility of detecting its fermentation degree by measuring gas composition inside the packages. The gas composition inside the kimchi package continuously changed due to $CO_2$ evolution during fermentation. Regardless of temperature, the fermentative gas accumulation in the package caused $CO_2$ concentration to increase by two-stepwise pattern, but $O_2$ concentration to decrease exponentially. As $CO_2$ concentration increased secondarily, the pH values of kimchi decreased proportionally (r>0.968). The production of $CO_2$ during kimchi fermentation was stimulated at higher temperatures and affected by seasonal factor. Kimchi made from winter baechu produced more fermentative gas than that from summer baechu. It was suggested that the changes in $CO_2$ concentration could be used as a characteristic index for indicating the fermentation course of packaged kimchi products.

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Manufacture of the Red Ginseng Vinegar Fermented with Red Ginseng Concentrate and Rice Wine, and its Quality Evaluation (홍삼 농축액과 쌀막걸리의 동시 발효를 통한 홍삼 식초의 제조 및 품질평가)

  • Kim, Dong-Kuk;Baik, Moo-Yeul;Kim, Hae-Kyung;Hahm, Young-Tae;Kim, Byung-Yong
    • Korean Journal of Food Science and Technology
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    • v.44 no.2
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    • pp.179-184
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    • 2012
  • The objectives of this study were to manufacture the red ginseng vinegar based on rice wine and red ginseng concentrate (RGC) using $Acetobacter$ $aceti$ and to evaluate its quality with remaining crude saponin contents and sensory score. The maximum prosapogenin (ginsenoside-Rh1, Rh2, Rg2, and Rg3) content in RGC regarding ginseng was obtained from such processes as steaming, drying, and extraction. When RGC was added into a rice wine in the range of 0-1% before acetic fermentation, pH decreased slowly during 20 days depending on RGC contents, but total acidity was not dependent on RGC contents. Compared to the crude saponin content (71.75 mg/g) of ginseng vinegar added RGC after acetic fermentation, the fermentation with RGC produced a lower crude saponin content (16.95 mg/g) in red ginseng vinegar. Sensory scores such as odor, taste, and overall preference, however, vinegar fermented with RGC were higher than those of vinegar added RGC after acetic fermentation.

Scaling Up Study of Exopolysaccharide Production through Mycelial Submerged Cultivation of Ganoderma lucidum (영지의 액체배양에 의한 세포외 다당 생산의 Scale Up 연구)

  • Lee, Hak-Su;Lee, Shin-Young
    • KSBB Journal
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    • v.24 no.3
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    • pp.303-311
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    • 2009
  • A scaling up study for the exopolysaccharide (EPS) production by submerged culture of Ganoderma lucidum was carried out in jar fermenter systems (2.6, 20 and 75 L) under bi-staged pH process. Profiles of dissolved oxygen (DO) and volumetric coefficient of oxygen transfer ($k_La$) as a function of operating variables (agitation speed and aeration rate) was investigated, and a correlation between $k_La$ and operating variables was analysed statistically. Under bi-staged pH process, no limitation of DO was observed at agitation speeds tested in the range of 200 and 600 rpm, and the highest EPS production was obtained at the level of DO of $40{\sim}80%$. From the regression analysis, the relation between $k_La$, gas velocity (Vs), stirrer speed (N) and impeller diameter (Di) could be expressed as : $$k_La=0.555{\times}Vs^{0.42}{\times}(N^3{\times}Di^2)^{0.33}\;(R^2=0.925,\;p<0.05)$$ It was found that under 2.6 L jar fermenter, the optimum agitation speed and aeration rate was 400 rpm and 1 vvm, respectively, obtaining the EPS production of 15.43 g/L. Under the submerged cultivation of G. lucidum in jar fermenters of $2.6{\sim}75\;L$, the similar EPS yields at each fermenter were achieved during scaling up based on $k_La$, and $k_La$ value for maximum EPS production was $85.4{\pm}26.70\;h^{-1}$.

Studies on In situ and In vitro Degadabilities, Microbial Growth and Gas Production of Rice, Barley and Corn (쌀, 보리, 옥수수의 반추위내 In situ 및 In vitro 분해율, 미생물 성장과 Gas 발생량에 대한 연구)

  • 이상민;강태원;이신자;옥지운;문여황;이성실
    • Journal of Animal Science and Technology
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    • v.48 no.5
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    • pp.699-708
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    • 2006
  • Ground rice, barley and corn were fed separately to the ruminally cannulated Hanwoo (Korean native cattle) for comparing their in situ and in vitro degradabilities, microbial growth, pH and gas production. It has been found that nearly all the dry matter (DM) and organic matter (OM) in barley and rice disappeared during 24 hr suspension in the rumen, but those in corn were only reduced by around 67%. Water soluble DM and OM fractions(‘a’), ranked from highest to lowest was corn, then rice and finally barley, but the order was reversed for content ‘b’, degradable fraction during time ‘t’. Judging by the degradation parameter of ‘b’ fraction, degradation rates per hour of DM and OM for barley were 38.3% and 37.2% respectively, significantly higher than those for rice (7.7% and 5.6%) and corn (4.1% and 1.3%). In general, results obtained from in vitro degradability of DM and OM were lower than those from in situ trials, but the ranking order of degradability was in agreement between both trials. In particular, ground rice has relatively lower in vitro microbial growth than corn or barley, but exhibited higher gas production. In addition, in vitro microbial growth of ground rice increased with up to 12 hr of incubation period, thereafter experienced a decrease with extended incubation time. pH of in vitro solution of rice decreased following 9 hr of incubation but gas production increased rapidly during the same period. From the results of DM and OM degradabilities and pH changes of in vitro solution with incubation time, it is concluded that rice represents a good source of energy for stability of rumen fermentation.

Quality Characteristics of the Germinated Brown Rice Vinegar Added with Red Pepper (고추를 첨가한 발아현미 식초의 품질특성)

  • Park, Chan-Soon;Kim, Ki-Sik;Noh, Jae-Goan;Rho, Chang-Woo;Yoon, Hyang-Sik
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.39 no.4
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    • pp.567-572
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    • 2010
  • This study is to develop vinegar with germinated brown rice and red pepper (Capsicum annuum) for effective use of the rice and red pepper. The vinegar was prepared using the wine fermented from the germinated brown rice supplemented with 10~50% red pepper. Acetic acid fermentation was carried out with 6% (w/v) initial ethanol concentration, at $30^{\circ}C$. pH values decreased from 4.27~4.41 to 3.20~3.59 during acetic acid fermentation. The initial total acidity (0.29~0.41%) changed to 3.68~4.51% after fermentation. Hunter's a (redness) and b (yellowness) values also increased as the addition of red pepper increased to 30%. Major volatile compounds consisted of ethyl acetate, 3-methyl-1-butanol, acetaldehyde, ethanol and acetic acid. Capsaicin content (0.17~0.26 mg%) at the initial changed to 0.16~0.29 mg% at the final of the fermentation. Antioxidant activity decreased from 48.1~79.1% to 36.6~64.9% by the fermentation. The germinated brown rice vinegar added with red pepper had higher acceptance scores than that of the control without red pepper.

Optimization of D-\beta-hydroxybutyric Acid Fermentation Using a Mutant of Candida Rugosa IFO0750 (Candida rugosa 변아주를 이용한 D-\beta-Hydroxybutyric Acid 발효공정의 최적화)

  • 경수현;신철수
    • Microbiology and Biotechnology Letters
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    • v.28 no.6
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    • pp.355-360
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    • 2000
  • A UVmutant of Candida rugosa IF00750 was made and used to convert butYlic acid to D-$\beta$-hydroxybutyric acid(D-$\beta$-HBA). Major regulating factors for D-$\beta$-HBA fennentation were investigated via chemostat analyses. The maximum specific productivity was achieved at a specific growth rate of $0.06h^{-1}$ where the glucose and butyric acid concentrations in the fermentor were 10 g/L and 8.7 g/L. respectively. A fed-batch fennentation was performed with maintenance of the optimum glucose and butyric acid concentrations. The D-$\beta$-HBA concentration after 120 h of cultivation reached 12.4 g/L, which was 4.7 times greater illan the concentration obtained by batch fermentation.

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Effect of SAA Pretreatment on SSF at Low Temperature to Bioethanol Production from Rice Straw (암모니아수 침지 전처리 공정을 이용한 볏짚의 저온 동시당화발효)

  • Jang, Suh Yoon;Kim, Jun Seok
    • Korean Chemical Engineering Research
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    • v.52 no.4
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    • pp.430-435
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    • 2014
  • Physical and chemical barriers, caused by the close association of the main components of cellulosic biomass, hinder the hydrolysis of cellulose to fermentable sugars. Since the main goal of pretreatment is to increase the enzyme accessibility improving digestibility of cellulose, development of an effective pretreatment process has been considered to be important. In this study, SAA (Soaking in Aqueous Ammonia) was chosen as pretreatment because this is the simple and low-cost method. Rice straw of which the production is outstandingly high in domestic agriculture residues in Korea was chosen as raw material. SSA pretreatment with various reaction time of 3 h to 72 h was tested. The enzymatic hydrolysis and SSF (Simultaneous Saccharification and Fermentation) were performed at three different temperature (30, 40 and $50^{\circ}C$) to investigate performance of SSF upon various pretreatment conditions. As a result, this SAA treated-rice straw was found to have great potential for effective enzymatic hydrolysis and SSF with lower enzyme dosage at lower temperature ($30^{\circ}C$) than its conventional SSF. In SAA addition, SAA reduced fermentation time to 24 h owing to increase the initial hydrolysis rate substantially.