• Title/Summary/Keyword: Bioattritor

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Evaluation of Operation Condition and Power Consumption of the Rotating Drum Type Bioattritor for Direct Saccharification of Raw Starch (생전분 직접 당화용 회전 원통형 Bioattritor의 조작조건과 동력소모량의 검토)

  • 박진서;이용현
    • Microbiology and Biotechnology Letters
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    • v.21 no.2
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    • pp.157-162
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    • 1993
  • Raw starch can be effectively saccharified in an enzyme reaction system containing sttrition-milling media. In order to develop an effcient attrition-coupled bioreactor(bioattritor), a rotating drum type bioattitor was construced, and its optimal operation conditions and power consumptions were evaluated. The optimal conditions for 3l bioattritor were 4 baffled, baffle size of 1:0.05 (the ratio of drum diameter to baffle), drum rotation speed of 100 rpm, and 1.33g of 3 mm glass bead/g of raw corn starch.

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Development and Evaluation of the Attrition Coupled Bioreactors for Enzymatic Hydrolysis of Biomass; Agitated Bead Type Bioattritor for Enzymatic Hydrolysis of Cellulose (Biomass의 고효율 효소당화에 의한 적합한 Attrition Coupled Bioreactor개발에 관한 연구 ; Agitated Bead Type Bioattritor를 활용한 섬유소 당화)

  • 이용현;박진서;윤대모
    • KSBB Journal
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    • v.4 no.2
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    • pp.78-86
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    • 1989
  • The effective saccharification of cellulosic biomass to glucose is the most critical step for the conversion of renwable biomass to alternative liquid fuel. The enzymatic hydrolysis of biomass can be significantly enhanced provide the attrition milling media is added during hydrolysis. The enhancing mechanism of hydrolysis reaction in an agitated bead system was investigated. An attrition-reactor (bioattritor) which installed specially designed torque measuring apparatus was developed, and the potimal saccharification conditions of bioattritor were determined. The relationship between the power consumption required for agitation of attrition-milling media and enhanced extent of hydrolysis of biomass was compared to evaluatic economic feasibility of the process.

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Evaluation of Operational Conditions and Power Consumption of a Bioattritor for Enzymatic Saccharification of Uncooked Starch (무증자 전분당화용 분쇄마찰매체 함유 효소반응기의 조작조건과 동력소모의 검토)

  • 이용현;박진서
    • Microbiology and Biotechnology Letters
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    • v.17 no.4
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    • pp.349-357
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    • 1989
  • Uncooked starch can be effectively saccharified in an enzyme reaction system containing attrition-milling media. To develope the high efficiency bioattritor, an agitated bead type bioreactor was constructed, and its effectiveness was evaluated. The optimal operation condition of bioattritor was found to be 300 g glass bead/L, 200 rpm, standard type impeller for 220 g/L of uncooked corn starch. The torque under the various operational conditions were also measured. The interrelation-ship between energy consumption for agitation of attrition-milling media and enhanced extent of saccharification of uncooked starch was evaluated, Power consumption was measured to be around 1.53 watt/L under the optimal operation condition. The attrition coupled enzyme reaction system is identified to tie a very excellent energy saying process for saccharification of uncooked starch, and seems to have a bright prospect of industrial application.

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Direct Conversion of Raw Starch to Maltose in an Agitated Bead Enzyme Reactor using Fungal $\alpha$-Amylase (분쇄마찰 효소반응계에서 Fungal $\alpha$-Amylase를 이용한 생전분의 직접전환에 의한 Maltose 생산)

  • 이용현;박진서
    • Microbiology and Biotechnology Letters
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    • v.19 no.3
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    • pp.290-295
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    • 1991
  • Direct conversion of raw starch without liquefaction to maltose using maltose-forming fungal a-amylase (Fungamyl) was carried out in an agitated bead enzyme reactor (bioattritor). The reaction rate in bioattritor was comparable with conventional method which utilized liquefied soluble starch. Moreover the extent of maltose formation increased substantially compared with conventional method; from 150 g / I of raw starch, around 95 g/l of maltose was formed and 72% of maltose content in sugar mixture was achieved. Especially, pH influenced greatly not only on total sugar formation from raw starch in bioattritor but also on maltose content in sugar mixture. The optimal pH for maltose formation from raw starch was shifted into the weak alkaline pH, the optimal pH of 8.0~9.0 in bioattritor contrast to pH of 5.0~5.5 for liquefied starch. The maltose formation and content were also affected by the amounts of Fungamyl added and raw starch concentration. Consumption of maltose-forming Fungamyl can be substantially reduced by supplementary addition of starch liquefying a-amylase (Termamyl).

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An Innovative Process for High Fructose Corn Syrup Production Coupled with Direct Saccharification of Raw Corn Starch in a Bioattritor (생전분의 고농도 무증자당화법을 도입한 새로운 High Fructose Corn Syrup 제조공정)

  • 박동찬;이용현
    • Microbiology and Biotechnology Letters
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    • v.20 no.4
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    • pp.437-444
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    • 1992
  • An innovative process for high fructose corn syrup (HFCS) production coupled with direct saccharification of raw corn starch in the agitated bead enzyme reactor (bioattitor) was investigated. The required high concentration/purity of glucose solution suitable for isomerization was produced directly in a bioattritor. without condensation of hydrolyzate, 398 g glucose/$\ell$ and 98% glucose content from 400 g/$\ell$ (w/v) of raw corn starch after 24 hours. The unsaccharified residual starch could be separated easily upon centrifugation, and resaccharified. The obtained solution also possessed other desirable requirements as substrate for isomerization, such as. low concentrations of denatured protein and calcium ions, thereby, simplified the purification step. The obtained glucose solution was isomerized in an enzyme reactor paked with immobilized glucose isomerase to evaluate the suitability as a substrate. The proposed new HFCS process seems to have many advantages over the conventional process via liquefaction-saccharification steps. The follow-up investigations of the proposed process need to be conducted to evaluate the feasibility of industrial application.

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Transglycosylation Reaction of Cyclodextrin Glucanotransferase in the Attrition Coupled Reaction System using Raw Starch as a Donor (분쇄마찰매체 불균일상 효소반응계를 활용한 생전분을 당공여체로 하는 Cyclodextrin Glucanotransferase의 당전이 반응)

  • 이용현;백승걸;박동찬;신현동
    • Microbiology and Biotechnology Letters
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    • v.21 no.5
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    • pp.461-467
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    • 1993
  • Transglycosylation reaction of cyclodextrin glucanotransferase (CGTase) was analyzed in the attrition coupled heterogeneous reaction system using raw starch as a donor` and mono-, di-saccharide, and glycoside as acceptors. For transglycosylation reaction of stevioside, the transglycosylation rate was similar and the transglycosylation yield was increased compare with conventional process using liquefied starch as the donor. Also the accumulation of maltooligosaccharides in reaction mixture was minimized.

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Reaction Mechanism of Transglycosylation of Stevioside in the Attrition Coupled Reaction System Using Raw Starch as a Glycosyl Donor (생전분을 당공여체로 한 분쇄마찰매체 함유 효소반응계에서의 Stevioside의 당전이 반응 기작)

  • Baek, Seung-Gul;Park, Dong-Chan;Huh, Tae-Lin;Lee, Yong-Hyun
    • Microbiology and Biotechnology Letters
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    • v.22 no.3
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    • pp.252-258
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    • 1994
  • Transglycosylation of stevioside in the attrition coupled heterogeneous reaction system using raw starch as a glycosyl donor has significant advantages over conventional reaction systems using liquefied starch as a donor. The transglycosylation of stevioside under the presence of organic solvent showed that transglycosylation reaction occurs via two steps ; initially from raw starch to cyclodextrin(CD), and then followed by transglycosylation of produced CD. Comparison of the transglycosylation efficiency of c$\alpha $-, $\beta $, $\gamma $-CDs indicated that $\alpha $-, $\beta $-CD are mainly utilized as a glycosyl donor for following reaction. The reaction mechanism of transglycosylation between stevioside and CD proceeded according to random sequential bireactant mechanism. The equilibrium constant of transglycosylation reaction of cyclodextrin glucanotransferase wase also evaluated. The structure of transglycosylated stevioside was confirmed by TLC, and it was found that glycosyl group(G$_{1}, $ ~ G$_{4}$-glycosidic bond.

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Production of Cyclodextrin from Raw Starch in the Agitated Bead Reaction System and its Reaction Mechanism (분쇄마찰매체 함유 효소반응계에서의 Cyclodextrin 생성과 Cyclodextrin Glucanotransferase의 작용 Mechanism)

  • Han, Il-Keun;Lee, Yong-Hyun
    • Microbiology and Biotechnology Letters
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    • v.19 no.2
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    • pp.163-170
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    • 1991
  • Production of cyclodextrin (CD) directly from raw corn starch without liquefaction using cyclodextrin glucanotransferase (CGTase) was carried out in an agitated bead reaction system. Similar CD yield and production rate comparable with those of conventional method using liquefied starch were obtained. Especially high purity-CD in the reaction mixture without accumulation of malto-oligosaccharides was obtained. The maximum 54g/l of CD was obtained at raw starch concentration of 200g/l. CD yield was inversely proportional to raw starch concentration, and conversion yield was 0.48 at substrate concentration of 100g/l. The optimal amount of enzyme (CGTase unit/g raw starch) was found to be around 6.0. Granular structure of raw starch degraded by CGTase was observed by SEM in order to investigate the enhancing mechanism, along with those of acid or alkali pretreated raw starch, amylose, and amylopectin. Kinetic constants of CGTase on raw starch in an agitated bead reaction system were evaluated, and CGTase was competitively inhibited by CD.

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