• 제목/요약/키워드: acid saccharification

검색결과 116건 처리시간 0.028초

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

  • 차은정;김경자
    • 한국식품조리과학회지
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    • 제12권4호
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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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Evaluation of 2,3-Butanediol Production from Red Seaweed Gelidium amansii Hydrolysates Using Engineered Saccharomyces cerevisiae

  • Ra, Chae Hun;Seo, Jin-Ho;Jeong, Gwi-Taek;Kim, Sung-Koo
    • Journal of Microbiology and Biotechnology
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    • 제30권12호
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    • pp.1912-1918
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    • 2020
  • Hyper-thermal (HT) acid hydrolysis of red seaweed Gelidium amansii was performed using 12% (w/v) slurry and an acid mix concentration of 180 mM at 150℃ for 10 min. Enzymatic saccharification when using a combination of Celluclast 1.5 L and CTec2 at a dose of 16 U/ml led to the production of 12.0 g/l of reducing sugar with an efficiency of enzymatic saccharification of 13.2%. After the enzymatic saccharification, 2,3-butanediol (2,3-BD) fermentation was carried out using an engineered S. cerevisiae strain. The use of HT acid-hydrolyzed medium with 1.9 g/l of 5-hydroxymethylfurfural showed a reduction in the lag time from 48 to 24 h. The 2,3-BD concentration and yield coefficient at 72 h were 14.8 g/l and 0.30, respectively. Therefore, HT acid hydrolysis and the use of the engineered S. cerevisiae strain can enhance the overall 2,3-BD yields from G. amansii seaweed.

과일껍질을 이용한 바이오에탄올 생산 공정에서 산 가수분해 및 효소당화의 영향 (The Effect of Acid Hydrolysis and Enzymatic Saccharification in Bioethanol Production Process Using Fruit Peels)

  • 이승범;김형진
    • 공업화학
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    • 제25권6호
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    • pp.619-623
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    • 2014
  • 산 가수분해공정과 효소당화공정을 이용하여 사과, 귤, 수박껍질로부터 셀룰로오스 에탄올을 생산하고, 그 최적조건을 결정함으로써 과일껍질을 원료로 한 바이오에너지 생산가능성을 평가하고자 하였다. 산 가수분해공정을 이용하여 과일껍질로부터 셀룰로오스 에탄올을 생산하기 위한 최적조건은 사과껍질의 경우 황산농도 20 wt%에서 90 min, 귤껍질과 수박껍질의 경우에는 각각 산 가수분해시간 60 min에서 황산의 농도가 15, 10 wt%인 것으로 나타났다. 효소당화공정을 이용하여 과일껍질로부터 셀룰로오스 에탄올을 생산할 경우 효소로는 Viscozyme이 가장 우수한 전환특성을 나타내었으며, 최적 효소당화시간은 사과껍질(180 min), 귤껍질(60 min), 수박껍질(120 min)인 것을 알 수 있었다.

Nitrogen Adsorption Analysis of Wood Saccharification Residues

  • Yang, Han-Seung;Tze, William Tai Yin
    • Journal of the Korean Wood Science and Technology
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    • 제45권2호
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    • pp.232-242
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    • 2017
  • The objective of this study was to examine changes in the porosity and internal structure of wood as it goes through the process of saccharification (extraction of fermentable sugars). This study also examined the use of different drying methods to prepare samples for characterization of internal pores, with particular emphasis on the partially disrupted cell wall. Aspen wood flour samples after dilute acid pretreatment followed by enzymatic hydrolysis were examined for nitrogen adsorption. The resulting isotherms were analyzed for surface area, pore size distribution, and total pore volume. Results showed that freeze drying (with sample pre-freezing) maintains the cell wall structure, allowing for examination of saccharification effects. Acid pretreatment (hemicellulose removal) doubled the surface area and tripled the total volume of pores, which were mostly 10-20 nm wide. Subsequent enzymatic hydrolysis (cellulose removal) caused a 5-fold increase in the surface area and a ~ 11-fold increase in the total volume of pores, which ranged from 5 to 100 nm in width. These results indicate that nitrogen adsorption analysis is a feasible technique to examine the internal pore structure of lignocellulosic residues after saccharification. The information on the pore structure will be useful when considering value-adding options for utilizing the solid waste for biofuel production.

Simultaneous Saccharification and Fermentation of Ground Corn Stover for the Production of Fuel Ethanol Using Phanerochaete chrysosporium, Gloeophyllum trabeum, Saccharomyces cerevisiae, and Escherichia coli K011

  • Vincent, Micky;Pometto III, Anthony L.;Leeuwen, J. (Hans) Van
    • Journal of Microbiology and Biotechnology
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    • 제21권7호
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    • pp.703-710
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    • 2011
  • Enzymatic saccharification of corn stover using Phanerochaete chrysosporium and Gloeophyllum trabeum and subsequent fermentation of the saccharification products to ethanol by Saccharomyces cerevisiae and Escherichia coli K011 were achieved. Prior to simultaneous saccharification and fermentation (SSF) for ethanol production, solid-state fermentation was performed for four days on ground corn stover using either P. chrysosporium or G. trabeum to induce in situ cellulase production. During SSF with S. cerevisiae or E. coli, ethanol production was the highest on day 4 for all samples. For corn stover treated with P. chrysosporium, the conversion to ethanol was 2.29 g/100 g corn stover with S. cerevisiae as the fermenting organism, whereas for the sample inoculated with E. coli K011, the ethanol production was 4.14 g/100 g corn stover. Corn stover treated with G. trabeum showed a conversion 1.90 and 4.79 g/100 g corn stover with S. cerevisiae and E. coli K011 as the fermenting organisms, respectively. Other fermentation co-products, such as acetic acid and lactic acid, were also monitored. Acetic acid production ranged between 0.45 and 0.78 g/100 g corn stover, while no lactic acid production was detected throughout the 5 days of SSF. The results of our experiment suggest that it is possible to perform SSF of corn stover using P. chrysosporium, G. trabeum, S. cerevisiae and E. coli K011 for the production of fuel ethanol.

동시당화 및 추출발효에 의한 Lactic Acid 생산 (Simultaneous Saccharification and Extractive Fermentation for Lactic Acid Production)

  • 공창범;우창호;최실호;윤현희
    • KSBB Journal
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    • 제14권2호
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    • pp.212-219
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    • 1999
  • 섬유성바이오매스로부터 lactic acid를 생산하기 위한 동시당화 및 추출발효공정의 성능과 조업특성을 조사하였다. 섬유소 가수분해효소 Cytolase CL과 lactic acid 발효군주 L. delbruecku를 사용한 동시당화발효(SSF)에서 생성물인 lactic acid의 저해작용이 심각하였다. SSF 도중 lactic acid의 제거를 위하여 선정한 IRA-400 수지의 lactic acid 흡착성능은 200mg/g dry resin 이었다 Lactic acid 제거의 효과는 초기 기질(cellulose)의 농도에 따라 Lactic acid 제거의 효과는 초기 기질(cellulose)의 농도에 따라 다르게 나타난다. 기질의 농도가 50g/L인 경우 단순 SSF의 반응시간 72시간에서 lactic acid의 농도가 304g/L이었고, 이온교환수지를 첨가한 SSF에서는 32.0g/L이었다. 반면에, 모사실험 결과, 초기 기질사용량이 100g/L 인 경우에는 수지첨가에 의한 lactic acid 제거시 lactic acid 생산수율이 약 60%에서 90%이상까지 증가된다. SSF의 각 반응식에서 pH의 의존성을 조사하여 실험식으로 표현하였다. pH에 따라 lactic aic의 생산량이 크게 변화하였으며, pH 4.5-5.0에서 최대의 생산량을 나타내었다.

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노화된 전분식품을 이용한 당화고추장의 제조 및 숙성 중 성분 분석 연구 (Study on the preparation of the saccharification kochujang with retrogradated starch food and changes in physiochemical properties during the aging)

  • 김경자;차은정
    • 대한영양사협회학술지
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    • 제3권1호
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    • pp.23-29
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    • 1997
  • This study was attempted to investigate changes in physiochemical properties of the preparation of saccharification kochujang with retrogradated cooked rice, bread, rice cake and sensory evaluation during 60days aging. 1. Moisture content in 4 samples were slowly increased and pH of kochujang was slowly decreased during aging. 2. Reducing sugar content were about 1.4~2 times higer than $T_3$ and $T_2$ at 50days of aging. 3. In no significant difference 4 samples, the level of adipic acid, citric acid, malic acid was the most and that of acetic acid, iso-butyric acid, fumaric acid, lactic acid, tartaric acid was smaller. 4. Sensory evaluation conducted by fifteen university students as panelist showed that their were more significant difference among four samples and notable preferance for $T_3$ over $T_0$, $T_1$, $T_2$.

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Simultanceous Saccharification and Fermentation of Cellulose for Lactic Acid Production

  • Yoon, Hyon-Hee
    • Biotechnology and Bioprocess Engineering:BBE
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    • 제2권2호
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    • pp.101-104
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    • 1997
  • Lactic acid production from ${\alpha}$-cellulose by simultaneous saccharification and fermentation (SSF) was studied. The cellulose was converted in a batch SSF using cellulase enzyme Cytolase CL to produce glucose sugar and Lactobacillus delbrueckii to ferment the glucose to lactic acid. The effects of temperature, PH, yeast extract loading, and lactic acid inhibition were studied to determine the optimum conditions for the batch processing. Cellulose was converted efficiently to lactic acid, and enzymatic hydrolysis was the rate controlling step in the SSF. The highest conversion rate was obtained at 46$^{\circ}C$ and pH 5.0. The observed yield of lactic acid from ${\alpha}$-cellulose was 0.90 at 72 hours. The optimum pH of the SSF was coincident with that of enzymatic hydrolysis. The optimum temperature of the SSF was chosen as the highest temperature the microoraganism could withstand. The optimum yeast extract loading was found to be 2.5g/L. Lactic acid was observed to be inhibitory to the microorganisms' activity.

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섬유성 바이오매스를 이용한 Acetic Acid 생산 (Production of Acetic Acid from Cellulosic Biomass)

  • 우창호;박준호;윤현희
    • KSBB Journal
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    • 제15권5호
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    • pp.458-463
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    • 2000
  • Production of acetic acid from cellulosic biomass by Simultaneous Saccharification and Extractive Fermentation (SSEF) was investigated. The homoacetate organism used in this study was a strain of Clostridium thermoaceticum, ATCC # 49707. A batch operation of Simultaneous Saccharification and Fermentation(SSF) using ${\alpha}$-cellulose at pH 5.5 and 55$^{\circ}C$ yielded 40% conversion of cellulose to acetic acid, while a fed-batch SSF operation produced a maximum acetic acid concentration of 25 g/L, with 50% overall yield. In-situ extractive fermentation to reduce the end-product inhibition on both bacteria and enzyme was carried out. in a batch SSEF using 200 g/L IRA-400 resin, acetic acid concentration reached to 23.9 g/L and acetic acid yield and productivity were observed to be 48% and 0.20 g/L-hr, respectively.

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목질계 셀룰로오스 에탄올 생산공정에서 전처리과정의 설계 (Design of Pretreatment Process in Cellulosic Ethanol Production)

  • 김형진;이승범
    • 공업화학
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    • 제26권4호
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    • pp.511-514
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    • 2015
  • 차세대 바이오에탄올로 주목받고 있는 목질계 바이오매스를 이용한 셀룰로오스 에탄올 생산과정은 셀룰로오스를 단당류로 분해하는 전처리과정이 가장 중요한 역할을 한다. 본 연구에서는 산가수분해와 효소당화과정을 이용하여 볏짚, 톱밥, 복사지, 신문지 등과 같은 목질계 바이오매스로부터 셀룰로오스에탄올을 제조하였다. 전처리과정으로 10~30 wt% 황산을 이용한 산가수분해($100^{\circ}C$, 1 h), celluclast ($55^{\circ}C$, pH = 5.0), AMG ($60^{\circ}C$, pH = 4.5), spirizyme ($60^{\circ}C$, pH = 4.2)을 이용한 효소당화과정(30 min), 산가수분해 후 효소당화과정을 비교하였다. 전처리과정의 수율은 hybrid 과정 > 산가수분해 > 효소당화 순으로 셀룰로오스 에탄올로의 전환이 잘 이루어지는 것으로 나타났으며, 최적 발효시간은 2일이었다. 또한 20 wt% 황산을 이용한 산가수분해 후 celluclast를 이용하여 효소당화를 수행할 경우 톱밥 > 볏짚 > 복사지 > 신문지 순으로 셀룰로오스 에탄올 전환특성이 높게 나타났다.