• Title/Summary/Keyword: 효소공정

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Lipase-Catalyzed Reactions for Fats and Oils in Non-Polar Solvent (유기용매 내에서의 유지의 리파제 촉매반응)

  • Daeseok Han;Kwon, Dae-Young;Rhee, Joon-Shick
    • Microbiology and Biotechnology Letters
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    • v.16 no.3
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    • pp.250-258
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    • 1988
  • Lipases are well known as the enzymes which catalyze the hydrolysis of ester bonds combining aliphatic chains and glycerol on mono-, di- and triglycerides. Their reactions are characterized by be-ing heterogeneous and catalyzing the water-insoluble substrates. This property has been one of the Hurdles which delayed the application of lipases in fats and oils industry, However, with the development of biological reaction system of which organic solvent is introduced in part or whole as the reaction media, enzymatic manipulation of fats and oils is attracting increasing attention from the academic and industrial sectors. Trials in two-phase system and reversed micellar system to produce fatty acids through enzymatic hydrolysis of triglycerides preyed to be efficient in respect to volumetric productivity, fat hydrolysis rate, product separation, etc. In organic solvent system lipases have been found to have the ability to catalyze aminolysis, transesterification, esterification, thiotransesterification and oximolysis that are virtually impossible to catalyze in water. The organic solvent system is being extensively used in interesterifying glycerides to produce a fat with the modified physical and chemical nature.

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Quantitative Analysis of Microencapsulation of $\beta$-Galactosidase (유당분해효소의 미세캡슐화 수율 측정)

  • Shin, Myung Gon;Chang, Pahn Shick;Min, Bong Kee;Kwak, Hae Soo
    • Analytical Science and Technology
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    • v.5 no.4
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    • pp.471-475
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    • 1992
  • We have developed the methodology for the quantitative analysis of microencapsulation yield and optimized the conditions for the microencapsulation of ${\beta}$-galactosidase by butter oil. The degree of ${\beta}$-galactosidase deactivation by the microencapsulation process was the value of 5.2% of initial activity. And the yield for the microencapsulation of ${\beta}$-galactosidase by the indirect, heat treatment, and enzymatic methodology were 92.6%, 88.6%, and 94.1%, respectively.

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생물공정의 최적화 및 제어

  • 유영제
    • The Microorganisms and Industry
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    • v.16 no.2
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    • pp.22-25
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    • 1990
  • 1970년대의 유전자재조합 및 세포융합 기술개발에 의하여 insulin, interferon 등의 많은 의약품이 개발되고 있으며, 최근에는 아미노산, 효소 등 정밀 화학 제품의 개발, 석유화학 대체공정의 개발, 환경 보존에의 응용, 대체에너지의 개발등을 목표로 많은 연구가 수행되고 있어 생물공학의 분야가 계속 영역을 넓혀가고 있다. 실험실에서 개발한 생물공학의 연구결과를 실용화하기 위하여는 경제성있는 생물 공정기술이 뒷받침되어야 하는데 이러한 생물공정 기술 중에서 핵심이 되는 부분의 하나가 생물반응기 기술이라고 하겠다. 우수한 생물반응기를 설계하고 경제적으로 운전하기 위해서는 공정연구및 개발단계에서 최적화 및 제어에 대한 개념을 포함시켜야하며, 실제 조업을 하는 경우에도 제품 품질의 균일성, 에너지 및 자원의 절약, 운전실수의 방지및 안전을 목적으로 조업조건을 최적화하고 제어하여야한다. 또한 접종상태 및 생물반응 조건의 사소한 차이에도 원하는 제품의 생합성이 다륵 변화하므로 생물공정을 monitoring하여 사소한 변화라도 공정의 최적화및 제어전략에 반영되도록 하여야 한다. 본고에서는 생물반응기의 최적화 및 제어기술에 대하여 몇가지 예를 들어 그 필요성과 최근의 연구동향을 간단히 소개하고자 한다.

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Principles of Simulated Moving Bed Reactor(SMBR) (Simulated Moving Bed Reactor(SMBR)의 원리)

  • Song, Jae-Ryong;Kim, Jin-Il;Koo, Yoon-Mo
    • Korean Chemical Engineering Research
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    • v.49 no.2
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    • pp.129-136
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    • 2011
  • Simulated Moving Bed(SMB) process consists of multiple chromatographic columns, which are usually partitioned into four zones. Such a process characteristic allows a continuous binary separations those are impracticable in conventional batch chromatographic processes. Compared with batch chromatography, SMB has advantages of continuity, high purity and productivity. Various researches have been reported for the integration of reaction and recovery during process operation on the purpose of economics and effectiveness. Simulated Moving Bed Reactor(SMBR) is introduced to combine SMB as a continuous separation process and reactor. Several cases of SMBR have been reported for diverse reactions with catalytic, enzymatic and chemical reaction on ion exchange resin as main streams. With an early type of fixed bed using catalyst, SMBR has been developed as SMB using fluidized enzyme, SMB with immobilized enzyme and SMB with discrete reaction region. For simple modeling and optimization of SMBR, a method considering convection only is possible. A complex method considering axial dispersion and mass transfer resistance is needed to explain the real behavior of solutes in SMBR. By combining reaction and separation, SMBR has benefits of lower installation cost by minimizing equipment use, higher purity and yield by avoiding the equilibrium restriction in case of reversible reaction.

진공 발효에 의한 조미 명란의 가공 및 저장 중 이화학적 품질 변화

  • 김동수;이헌옥;조진호
    • Proceedings of the Korean Society of Fisheries Technology Conference
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    • 2000.05a
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    • pp.116-117
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    • 2000
  • 명란 젓갈은 명란에 식염 등을 가하여 염장함으로써 부패균의 번식을 억제하고 자가소화효소 및 미생물의 효소작용에 의해 분해, 숙성시킨 우리 나라 전통의 발효식품으로 독특한 감칠맛을 가지고 있어 옛부터 밥반찬으로 많이 이용되어 왔다. 그러나 저장 유통 중 품질의 변화가 심하여 현재 유통되는 조미 명란 제품은 냉장 및 냉동 보관해야 하므로 고품질 젓갈제품의 생산을 위해서는 새로운 공정 개발이 필요한 품목이다. (중략)

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Enhancement of Enzymatic Hydrolysis of Cellulosic Biomass by Organosolv Pretreatment Using High Concentration of Ethanol (효소당화 효율 향상을 위한 섬유소계 바이오매스의 고농도 유기용매 전처리 공정)

  • Kim, Jun Seok
    • Korean Chemical Engineering Research
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    • v.59 no.1
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    • pp.54-59
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    • 2021
  • The pretreatment of cellulosic biomass is essentially needed because it has more lignin compared with a starch biomass. Ethanol as an organosolv for pretreatment can easily separate some components which can inhibit enzymatic hydrolysis and be re-usuable by distillation. The flow-through process have some strength, separating components continuously, development for scale up. In this research, two-kinds (wheat straw, miscanthus) of biomass was pretreated for development of enzymatic hydrolysis by adoption of pretreatment process of corn stover.

Enzymatic Synthesis of Meth.yl Fructoside by Immobilized Invertase (고정화 전화당 효소에 의한 메틸 프룩토시드의 합성)

  • 허주형;김해성
    • KSBB Journal
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    • v.8 no.4
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    • pp.313-319
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    • 1993
  • Methyl fructoside was synthesized from sucrose and methanol using an immobilized invertase. The enzyme was covalently bound by glutaraldehyde on porous silica coated with polyethyleneimine to give loading capacity of 120mg of invertase per one gram of dry porous silica and effective activity of 100U per one milligram of bound invertase. Polyethyleneimine coating imparted a hydrophillic character, good activity retention and high loading capacity to the surface of porous silica as well as hydrophillic microenviroment in the vicinity of bound invertase. The immobilized enzyme was formed into an alginate-enclosed silica bead to have enough activity for methyl fructoside synthesis from aqueous methanol-sucrose solution. Using the alginate-enclosed biocatalyst the yield of methyl fructoside was obtained as high as 55.9% from aqueous 30% (v/v) methanol and 0.291mo1/l sucrose with 2U/ml activity at $25^{\circ}C$, pH 4.8.

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