• Title/Summary/Keyword: Enzymatic Saccharification of Uncooked Starch

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Enhancing mechanism of the saccharification of uncooked starch in an agitated bead reaction system (무증자전분의 분쇄마찰매체에 의한 효소당화촉진 Mechanism의 규명)

  • 조구형;이용현
    • Microbiology and Biotechnology Letters
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    • v.14 no.5
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    • pp.407-413
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    • 1986
  • In an agitated bead reaction system, the enzymatic saccharification of uncooked starch was substantially enhanced. The enhancement mechanism was investigated front the view of the structural aspect of starch. The mechanical impact caused by the movement of the attrition-milling media resulted neither the destruction of microcrystalline structure nor the fragmentation of starch granule. instead, the most distinct phenomenon was the swelling of starch granule up to about 2.5 times, and the swelling mechanism was not similar with that caused by cooking. However, in the case of the enzyme addition in the attrition coupled reaction system, the swollen starch was easily fragmented into the large number of small particles by the synergistic action of the enzyme and milling-media. The exposed surface area of the fragmented particles plays the major role in enhancing the saccharification. The saccharification rate was quite different depending on the source of starch, the reason was discussed in terms of the granular structure of uncooked starches.

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A Novel saccharification method of uncooked concentrated corn starch using an agitated bead reaction system (분쇄마찰매체 함유 반응계를 이용한 무증자 Corn starch의 고농도 당화와 당화액의 조성에 관한 연구)

  • 이용현;조구형
    • Microbiology and Biotechnology Letters
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    • v.14 no.5
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    • pp.399-405
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    • 1986
  • Corn starch was saccharified without cooking in an agitated bead reaction system. Uncooked corn starch was effectively hydrolyzed even at the concentration as high as 39%(w/v). After 24 hours. the extent of saccharification reached at 92%, which corresponds glucose concentration of 425g/L. Fed-batch feeding of starch was more effective than batch feeding for saccharification of uncooked corn starch. The composition of hydrolysated of uncooked starch was analyzed. which was composed of 95% glucose, 0.7% of maltose, and 4.5% of high saccharide, similar with that of cooked starch. The hydrolysate can be successfully utilized for HFCS manufacture. The starch liquefying and saccharifying enzyme was relatively stable even be the physical impact of the attrition-milling media. The enzyme stabilizer, $Ca^{++}$, played an essential role in preventing the enzyme deactivation caused by the physical impact.

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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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