• 제목/요약/키워드: Cellulose Hydrolysis

검색결과 239건 처리시간 0.026초

Enhanced Hydrolysis of Cellulose by Combination of Humicola insolens Cellulase with Immobilized Glucose Isomerase

  • Hur, Sung-Ho;Lee, Ho-Jae;Lee, Jae-Kwon
    • Preventive Nutrition and Food Science
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    • 제1권1호
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    • pp.117-120
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    • 1996
  • To enhance cellulose hydrolysis f Humicola insolens cellulase (HIC) was empolyed with immobilized glucose isomerase(IGI). Optimun pH and temperature for HIC were 6.5 and 55$^{\circ}C$, respectively, whereas those for IGI were 7.0 and 60$^{\circ}C$, respectively. Optimun loading size of IGI was 200mg(130 untis) with 15units of HIC. Reaction conditions were determined to be as follows: 55$^{\circ}C$,pH 6.5, HIC 15 units and IGI 130 units. After 24h hydrolysis, more than 65% of avicel was converted to glucose and fructose; in contrast, the conversion ratio of control was 40%.

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Improving Endoglucanase Activity by Adding the Carbohydrate-Binding Module from Corticium rolfsii

  • Tang, Zizhong;Chen, Hui;Chen, Lijiao;Liu, San;Han, Xueyi;Wu, Qi
    • Journal of Microbiology and Biotechnology
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    • 제24권4호
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    • pp.440-446
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    • 2014
  • The carbohydrate-binding module (CBM) is an important domain of most cellulases that plays a key role in the hydrolysis of cellulose. The neutral endoglucanase (EG1) gene was reconstructed. A redesigned endoglucanase, named EG2, was constructed with a CBM containing a linker from Corticium rolfsii (GenBank Accession No. D49448). The redesigned EG genes were expressed in Escherichia coli, and their characteristics are discussed. Results showed that the degradation of cellulose by EG2 was about double that by EG1. The specific activities of EG1 and EG2 were tested under optimal conditions, and EG2 had higher activity ($169.1{\pm}2.74$ U/mg) toward CMC-Na than did EG1 ($84.0{\pm}1.98$) in the process of cellulose degradation. The optimal pH and temperature, pH stability, and heat stability of EG1 and EG2 were similar. Results indicated that the CBM plays an essential role in the hydrolysis of cellulose. We can improve EG's catalytic power by adding the CBM from Corticium rolfsii.

투고증발을 이용한 섬유성바이오매스의 동시당화 및 추출발효 (Simultaneous Saccharification and Pervaporative Fermentation of Cellulosic Biomass)

  • 공창범;윤현희
    • KSBB Journal
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    • 제13권1호
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    • pp.38-43
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    • 1998
  • Application of pervaporative extraction of ethanol to simultaneous saccharification and fermentation(SSF) of cellulose was investigated. From batch experiments, optimum cellulose substrate and enzyme loadings were found to be 10% and 15 IFPU/g cellulose, respectively. The cellulose conversion was lowered in fed-batch system due to the ethanol accumulation. The activity of the yeast Saccharomyces uvarum used in this study was significantly reduced at ethanol concentrations above around 40 g/L. From pervaporation experiments using PDMS membrane, ethanol was efficiently separated at 38$^\circ C$ and 10 mmHg of a down stream pressure. The pervaporation unit with 240 cm$^2$ of surface area was combined into the SSF reactor. The continuous removal of ethanol by pervaporation during SSF resulted in an improved cellulose conversion. Within the scope of this experiment, ethanol yields in the pervaporative SSF and simple SSF were 68.3% and 56.6%, respectively. The permeate flux for SSF broth pervaporation was about one-half that for the pervaporation of aqueous ethanol solution. Accordingly, the development of a membrane with higher ethanol selectivity and flux will increase the feasibility of this technology.

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1H-NMR 분광분석을 통한 진한 산 가수분해 반응 2차 반응 조건 분석 (Analysis of secondary reactions in concentrated sulfuric acid hydrolysis of hollocellulose by 1H-NMR spectroscopy)

  • 이재성;신수정
    • 펄프종이기술
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    • 제46권3호
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    • pp.37-43
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    • 2014
  • Kinetics of holocellulose hydrolysis in concentrated sulfuric acid was analyzed using $^1H$-NMR spectroscopy with different reaction time, temperature and acid concentration in secondary hydrolysis. In this work, reaction condition of secondary hydrolysis was similar to concentrated sulfuric acid process with electrodialysis or simulated moving bed chromatography process for sulfuric acid recycling. By $^1H$-NMR spectroscopy, acid hydrolyzates from higher secondary acid hydrolysis (25-35% acid concentration) was successfully analyzed without any difficulties in neutralization or adsorption of acid hydrolyzate to solid salt. Higher acid concentration, higher temperature and longer reaction time led to more cellulose for glucose conversion but accompanied with glucose to galactose isomerization, glucose to unknown compounds and degradation of glucose to organic acid via furans.

Biomass의 고효율 효소당화에 적합한 Attrition Coupled Bioreactor 개발에 관한 연구;Horizontal Paddle Type Bioreactor를 활용한 섬유소 당화 (Development and Evaluation of the Attrition Coupled Bioreactors for Enzymatic Hydrolysis of Biomass ; Horizontal Paddle Type Bioreactor for Enzymatic Hydrolysis of Cellulose)

  • 이용현;박진서
    • KSBB Journal
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    • 제4권3호
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    • pp.215-220
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    • 1989
  • 불용성 기질인 섬유소의 고효율 효소당화에 적합한 저에너지 소모형 분쇄마찰매체 함유 효소반응기의 개발을 목표로 수평형 회전축에 부착된 paddle에 의해 반응조 내부의 섬유소-분쇄마찰매체-효소의 혼합액을 교반 마찰시키는 horizontal paddle type bioreactor를 제작하여 효용성과 당화조건을 검토하였다. 여러 실험조건하에서 당생성효율과 분쇄마찰매체의 교반시 소모되는 에너지를 다른 두 형태의 bioreactor와 비교 분석함으로서 공업적 활용을 위한 기술적, 경제적 타당성을 비교평가하였다. 표준당화조건은 3mm의 분쇄마찰매체를 500g / L로 첨가하여 200rpm에서 교반할 때였으며, 특히 HPTB는 고농도 기질의 당화에 적합한 bioreactor로 판단된다. 표준당화조건에서 분쇄마찰매체의 교반시 소모되는 동력은 1.7watch/g였으며, 고농도 기질을 이용할 경우 더욱 낮은 동력소모로 당을 생산할 수 있었다. 뿐만 아니라 scale up이 용이할 것으로 예상되는 등 섬유소의 고농도 당화에 적합한 고효율 분쇄마찰매체함유 효소반응기로 판단된다.

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표면가수분해된 셀룰로오스 아세테이트 섬유의 제조 및 LCD 러빙포로의 응용 (Preparation of Surface-Hydrolyzed Cellulose Acetate Fibers and Their Applications to LCD Rubbing Cloth)

  • 김현선;김영호
    • 폴리머
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    • 제37권1호
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    • pp.52-60
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    • 2013
  • 셀룰로오스 아세테이트(CA) 섬유를 $Na_2CO_3$ 용액으로 가수분해하여 탈아세테이트 반응시키면 레이온 섬유로 전환된다. 이때 처리조건을 조절함으로써 표면만 가수분해시켜, 표면은 레이온 성분이고 내부는 CA 성분으로 된 sheath-core형 표면가수분해 CA(SH-CA) 섬유를 얻었다. 시료들의 가수분해는 FTIR 스펙트럼 및 WAXD 패턴으로 분석하였으며, CA 성분을 아세톤으로 용출시킨 시료들의 SEM 사진으로부터 sheath-core 구조를 확인하였다. 이 sheath-core 형태의 SH-CA 섬유로 된 벨벳 직물을 사용하여, 액정디스플레이(LCD)용 폴리이미드 배향막을 러빙시키고 편광 FTIR 스펙트럼으로 분석하여 이 SH-CA 섬유 벨벳직물이 LCD용 러빙포로 사용될 수 있음을 확인하였다.

순수 섬유소에 대한 고농도 당화공정의 동력학적 모사 (Kinetic Modeling of the Enzymatic Hydrolysis of $\alpha$-Cellulose at High Sugar Concentration)

  • 오경근;정용섭홍석인
    • KSBB Journal
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    • 제11권2호
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    • pp.151-158
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    • 1996
  • 섬유소는 효소에 의한 가수분해에 의하여 유용한 화학물질이냐 연료 등으로 전환될 수 있다. 그러나 효소가 온도나 전단응력에 의해 쉽게 비활성화 되고 생성물인 당에 의한 억제 효과가 심각하기 때문에 효과적인 당화공정이 이루어지지 못하는 실정이다. 본 실험에서는 섬유소 가수분해에서의 두 효소, 즉 셀룰라아제 와 ${\beta}$-glucosidase의 통력학적 특정틀 을 이해하고, 생성물 억제영향 빛 효소의 비활성화 를 관찰하여, 섬유소의 고농도 당화 공정에 적용가 능한 통력학적 이론을 규명하고자 하였다. 셀룰라아제 벚 ${\beta}$-glucosidase는 다양한 통력학적 특정들을 보였으며, 반응기내에 5gN 의 포도당이 존재하여도 $\beta$glucosidase의 역가가 70% 이상 감소하는 것으로 나타나, 포도탕에 의한 ${\beta}$-glucosi­d dase의 억 제 영향이 가장 심각한 것으로 나타났다. 또한 셀로바이오스의 농도가 109/p 일때 역시 셀롤 라야제의 역가가 약 70% 감소하였다. ${\beta}$-glucosi dase의 경우 셀룰라아제와 비교하여 약 1.6배 정도 비활성화에 더 민강한 것으로 밝혀졌다. 당화 공정 모사 결과는 대체척으로 신뢰할 수 있는 범위의 결 과를 얻었으며, 가수분해가 진행되는동안 실험결과 와 모사에 의한 계산값은 잘 일치하였다.

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Intein을 이용한 대장균에서의 Trichoderma reesei 유래의 Cellobiohydrolase I 섬유소 결합 도메인의 발현 (Intein-mediated expression of Trichoderma reesei Cellobiohydrolase I Cellulose Binding Domain in E. coli)

  • 최신건
    • 산업기술연구
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    • 제36권
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    • pp.33-37
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    • 2016
  • Cellulose binding domains (CBDs) of cellulases are thought to assist in the hydrolysis of insoluble crystalline cellulose. To gain sufficient amount of CBDs, the self-cleavable intein tag was used for expression and purification of Trichoderma reesei cellobiohydrolase I CBD in E. coli. Synthetic CBD genes, CBD or linker-CBD were cloned into expression vector pTYB11. Recombinant CBDs were successfully purified by intein mediated purification with an affinity chitin-binding domain. The final yields of recombinant CBD and linker-CBD were 3.2 mg/L and 1.4 mg/L, respectively. The functional bindings of recombinant CBDs were confirmed by Avicel binding experiments. The simple and easy purification method using self-cleavable intein tag can be further used in pretreatment of crystalline cellulose or characterization of engineered CBDs.

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Modification of Acetobacter xylinum Bacterial Cellulose Using Dextransucrase and Alternansucrase

  • Kim, Do-Man;Kim, Young-Min;Park, Mi-Ran;Park, Don-Hee
    • Journal of Microbiology and Biotechnology
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    • 제9권6호
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    • pp.704-708
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    • 1999
  • In addition to catalyzing the synthesis of glucan from sucrose as a primary reaction, glucansucrase also catalyzes the transfer of glucose from sucrose to other carbohydrates that are present or are added to the reaction digest. Using dextransucrase and altemansucrase, prepared from Leuconostoc mesenteroides B-742CBM and B-1355C, respectively, we modified the bacterial cellulose in Acetobacter xylinum ATCC10821 culture, and then produced a characteristic cellulose that is soluble and has a new structure. There were also some partially modified insoluble cellulose and oligosaccharides in the modification culture. After methylation and following acid hydrolysis of both the soluble and insoluble glucans, there were ($1{\rightarrow}4$) as well as ($1{\rightarrow}6$) and ($1{\rightarrow}3$) glycosidic linkages in the soluble glucan.

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Purification of Low Mole-cular Weight Endo-glucanase from Cellulase and Its Action on Cellulose

  • Ryu, Wang-Shick;Ryu, D.Y.
    • 한국미생물생명공학회:학술대회논문집
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    • 한국미생물생명공학회 1979년도 추계학술대회 심포지움
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    • pp.243.3-244
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    • 1979
  • Low molecular weight endo-glucanase fraction of cellulase from Trichoderma reesei was purified using Sephadex G-100 and concanavalin A-Sepha-rose 4B affinity chromatography. Its biochemical characteristics including pH profile, temperature profile and kinetic behavior were studied. The optimum conditions for enzymatic reaction were pH 6.0 and $5^{\circ}C.$ The activation energy for CMC (carboxymethylcellulose) was 10,800 cal/mole. Its adsorption to amorhous and crystalline cellulose was observed. Adsorption to amorphous cellulose was more rapid and greater than that of crystalline cellulose. Reconstitution study was performed. Significance of low molecular weight endo-glucanase on cellulose hydrolysis will be further discussed.

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