• 제목/요약/키워드: bead-milling

검색결과 31건 처리시간 0.021초

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

  • 조구형;이용현
    • 한국미생물·생명공학회지
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    • 제14권5호
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    • pp.407-413
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    • 1986
  • 분쇄마찰매체에 의한 무증자 생전분의 효소당화촉진 mechanism을 전분의 구조적 측면을 중심으로 규명하였다. 당화촉진 효과를 줄 수 있는 수준의 분쇄마찰매체의 기계적 교반운동은 생전분의 미세결정구조(microcrystalline structure) 파괴는 물론 전분입자를 붕괴 (fragmentation) 시키는 효과도 없었다. 생전분 입자구조 변화의 중요한 특징은 입자구조의 팽윤(swelling) 현상으로써 팽윤된 전분은 보수능력이 2.5배 정도까지 증가되었다. 이와 같은 기계적 충격에 의한 전분입자의 팽윤현상은 가열호화에 의한 $\alpha$-전분화에 따른 팽윤현상가는 상이하였다. 생전분을 장시간 bead-milling하여 전처리하며 팽윤시킨 생전분은 당화가 촉진되었으나 bead와 효소를 동시에 첨가시킨 경우의 당화속도와 수율에는 미치지 못하였다. 분쇄마찰 반응계에서 효소를 첨가 무증자 전분을 당화시킬 경우에는 생전분입자 2시간 전후하여 수많은 입자로 fragmentation되었다. 생전분의 당화촉진 mechanism은 분쇄마찰매체에 의하여 전분입자가 균열팽윤되고 이 팽윤된 생전분은 보다 쉽게 효소작용을 받아 침식되며 이 침식된 전분입자는 분쇄마찰매체에 의하여 더욱 가속적으로 fragmentation되어 효소작용이 촉진된다고 판단된다. 옥수수, 감자, 고구마 등 각종 생전분은 그 종류에 따라 분쇄마찰 반응계를 활용한 무증자 당화에 많은 차이가 있었으며 이를 전분입자의 구조와 연결시켜 고찰하였다.

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AlN 분말의 고에너지 밀링에 따른 소결체의 절연 특성 (Insulating Behavior of Sintered AlN Ceramics Prepared by High-Energy Bead Milling of AlN Powder)

  • 류성수;이성민
    • 한국분말재료학회지
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    • 제24권6호
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    • pp.444-449
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    • 2017
  • Aluminum nitride (AlN) powder specimens are treated by high-energy bead milling and then sintered at various temperatures. Depending on the solvent and milling time, the oxygen content in the AlN powder varies significantly. When isopropyl alcohol is used, the oxygen content increases with the milling time. In contrast, hexane is very effective at suppressing the oxygen content increase in the AlN powder, although severe particle sedimentation after the milling process is observed in the AlN slurry. With an increase in the milling time, the primary particle size remains nearly constant, but the particle agglomeration is reduced. After spark plasma sintering at $1400^{\circ}C$, the second crystalline phase changes to compounds containing more $Al_2O_3$ when the AlN raw material with an increased milling time is used. When the sintering temperature is decreased from $1750^{\circ}C$ to $1400^{\circ}C$, the DC resistivity increases by approximately two orders of magnitude, which implies that controlling the sintering temperature is a very effective way to improve the DC resistivity of AlN ceramics.

변압기 나노절연유의 열전달특성에 미치는 분산기술의 영향 (Effect of Dispersion Technique on Heat Transfer Properties of Transformer Oil with Nanoparticles)

  • 송현우;최철;오제명
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2005년도 추계학술대회 논문집 Vol.18
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    • pp.151-152
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    • 2005
  • Both $Al_2O_3$ and AlN nanopowders with diameters from ${\mu}m$ to mm were bead-milled and surface-modified by stabilizing agent. The size of bead-milled nanoparticles compared with the primary powder was effectively decreased and was dependent on milling time and bead size. The results of dispersion stability analysis indicated that chemical bonding between nanoparticles and surfactant is more effective than chemical adsorption to prepare the stable transformer oils containing nanoparticles. In this study, the thermal conductivity of the transformer oils containing nanoparticles was measured by transient hot-wire and laser flash methods.

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흄드실리카로부터 제조된 실리카졸의 분산인자 상관성 연구 (Correlation Research of Dispersion Factors on the Silica Sol Prepared from Fumed Silica)

  • 박민경;김훈;임형미;최진섭;김대성
    • 한국재료학회지
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    • 제26권3호
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    • pp.136-142
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    • 2016
  • To study the dispersion factors of silica sol prepared from fumed silica powder, we prepared silica sol under an aqueous system using a batch type bead mill. The dispersion properties of silica sol have a close relationship to dispersion factors such as pH, milling time and speed, the size and amount of zirconia beads, the solid content of fumed silica, and the shape and diameter of the milling impellers. Especially, the silica particles in silica sol were found to show dispersion stability on a pH value above 7, due to the electrostatic repulsion between the particles having a high zeta potential value. The shape and diameter of the impellers installed in the bead mill for the dispersion of fumed silica was very important in reducing the particle size of the aggregated silica. The median particle size ($D_{50}$) of silica sol obtained after milling was also optimized according to the variation of the size and amount of the zirconia beads that were used as the grinding medium, and according to the solid content of fumed silica. The dispersion properties of silica sol were investigated using zeta potential, turbiscan, particle size analyzer, and transmission electron microscopy.

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

  • 이용현;박진서;윤대모
    • KSBB Journal
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    • 제4권2호
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    • pp.78-86
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    • 1989
  • 에너지소모를 최소화하고 최대의 당화효과를 얻을 수 있는 고효율 당화장치의 개발을 목표로 impeller교반형 bioattritor를 설계, 제작하여 불용성 섬유소를 기질로 실험하였다. Bioattrotor의 효용성과 효소당화촉진 mechan-ism을 규명하였으며, 최적운전조건을 검토하였다. 분쇄 마찰매체함유 반응기에 일정한 탄성계수를 지닌 spiral spring coil을 내장한 torzue측정장치를 개발, 부하되는 torque, power, 그리고 소요에너지를 측정하여 이를 당화촉진과 비교함으로서 bioattritor의 경제성을 검토하였다. 분쇄마찰매체의 첨가량 및 종류, impeller형태, 교반속도는 중요한 요소로서 작용하였다. 비록 더 연구가 필요하나 분쇄마찰매체의 교반에 소모되는 동력은 당화 촉진효과의 증대에 따른 당화시간의 단축과 섬유소의 고효율 전환에 따른 고농도당의 확보등에 의해 보상되리라 예상된다.

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W-Cu 나노분말 합성을 위해 비드밀에서 고에너지 볼밀링 공정에 의해 제조된 WO3-CuO 혼합분말의 특성 연구 (Characteristics of WO3-CuO Powder Mixture Prepared by High-Energy Ball Milling in a Bead Mill for the Synthesis of W-Cu Nanocomposite Powder)

  • 박해룡;류성수
    • 한국분말재료학회지
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    • 제24권5호
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    • pp.406-413
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    • 2017
  • A Nanosized $WO_3$ and CuO powder mixture is prepared using novel high-energy ball milling in a bead mill to obtain a W-Cu nanocomposite powder, and the effect of milling time on the structural characteristics of $WO_3-CuO$ powder mixtures is investigated. The results show that the ball-milled $WO_3-CuO$ powder mixture reaches at steady state after 10 h milling, characterized by the uniform and narrow particle size distribution with primary crystalline sizes below 50 nm, a specific surface area of $37m^2/g$, and powder mean particle size ($D_{50}$) of $0.57{\mu}m$. The $WO_3-CuO$ powder mixtures milled for 10 h are heat-treated at different temperatures in $H_2$ atmosphere to produce W-Cu powder. The XRD results shows that both the $WO_3$ and CuO phases can be reduced to W and Cu phases at temperatures over $700^{\circ}C$. The reduced W-Cu nanocomposite powder exhibits excellent sinterability, and the ultrafine W-Cu composite can be obtained by the Cu liquid phase sintering process.

직접질화법 AlN 분말의 소결거동 및 열전도도에 미치는 고에너지 볼밀링 효과 (Effect of High Energy Ball Milling on Sintering Behavior and Thermal Conductivity of Direct Nitrided AlN Powder)

  • 박해룡;김형태;이성민;김영도;류성수
    • 한국세라믹학회지
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    • 제48권5호
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    • pp.418-425
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    • 2011
  • In this study, a high energy ball milling process was introduced in order to improve the densification of direct nitrided AlN powder. The sintering behavior and thermal conductivity of the AlN milled powder was investigated. The mixture of AlN powder and 5 wt% $Y_2O_3$ as a sintering additive was pulverized and dispersed by a bead mill with very small $ZrO_2$ bead media. The milled powders were sintered at $1700^{\circ}C-1800^{\circ}C$ for 4 h under $N_2$ atmosphere. The results showed that the sintered density was enhanced with increasing milling time due to the particle refinement as well as the increase in oxygen contents. Appropriate milling time was effective for the improvement of thermal conductivity, but the extensive millied powder formed more fractions of secondary phase during sintering, resulted in the decrease in thermal conductivity. The AlN powder milled for 10min after sintering at $1800^{\circ}C$ revealed the highest thermal conductivity, of 164W/$m{\cdot}K$ in tne densified AlN sintered at $1800^{\circ}C$.

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

  • 이용현;박진서
    • 한국미생물·생명공학회지
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    • 제17권4호
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    • pp.349-357
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    • 1989
  • 전분질을 당화시킬 때 유리구와 같은 분쇄마찰매체 (attrition-milling media)를 첨가하여 교반함으로써 생전분질 -효소 현탄액에 분쇄마찰효과를 주어 전분입자를 구조적으로 변화시켜 당화를 현저히 촉진시키는 적절한 무증자 당화법을 연구해오고 있다. 본 연구는 전분질의 무증자 당화에 적합한 고효율 및 저에너지 소모형 분쇄마찰매체 함유 효소반응기의 개발을 목포로, impeller를 갖춘 agitated bead type bloattritor를 설계 제작하여 그 효용성을 검토하였다. 무증자 옥수수전분을 기질로 당화에 적합한 bioattritor의 최적 조작조건을 검토하였고, 일정한 탄성계수를 지닌 spiral spring coil을 내장한 torque 측정장치를 개발하여 부하되는 torque 및 분쇄마찰 매체의 교반에 소요되는 energy를 측정하였고 중요 변수의 영향을 검토하였다. 또한 energy 소모와 생 전분의 효소당화 촉진효과와의 상관관계를 규명하였으며, bioattritor의 경제성을 전망하였다. 전분질의 최적 당화조건에서 분쇄마찰매체의 교반에 소요되는 동력은 1.53watt/ι로서 매우 적었다. 분쇄마찰매체 함유 효소반응계는 에너지 절약형 공정으로 사료되며, 이를 이용한 무증자 전분 효소당화공정의 산업적 활용 전망이 예상된다.

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NH3-SCR용 나노분산 TiO2 담체상에 제조된 V2O5WO3/TiO2 촉매: TiO2 분산입도와 NOx 최대 분해온도와의 상관성 (V2O5WO3/TiO2 Catalyst Prepared on Nanodispersed TiO2 for NH3-SCR: Relationship between D ispersed Particle Size of TiO2 and Maximum Decomposition Temperature of NOx)

  • 서민채;반세민;허재구;추용식;문경석;김대성
    • 한국재료학회지
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    • 제32권11호
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    • pp.496-507
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    • 2022
  • For the selective catalytic reduction of NOx with ammonia (NH3-SCR), a V2O5WO3/TiO2 (VW/nTi) catalyst was prepared using V2O5 and WO3 on a nanodispersed TiO2 (nTi) support by simple impregnation process. The nTi support was dispersed for 0~3 hrs under controlled bead-milling in ethanol. The average particle size (D50) of nTi was reduced from 582 nm to 93 nm depending on the milling time. The NOx activity of these catalysts with maximum temperature shift was influenced by the dispersion of the TiO2. For the V0.5W2/nTi-0h catalyst, prepared with 582 nm nTi-0h before milling, the decomposition temperature with over 94 % NOx conversion had a narrow temperature window, within the range of 365-391 ℃. Similarly, the V0.5W2/nTi-2h catalyst, prepared with 107 nm nTi-2h bead-milled for 2hrs, showed a broad temperature window in the range of 358~450 ℃. However, the V0.5W2/Ti catalyst (D50 = 2.4 ㎛, aqueous, without milling) was observed at 325-385 ℃. Our results could pave the way for the production of effective NOx decomposition catalysts with a higher temperature range. This approach is also better at facilitating the dispersion on the support material. NH3-TPD, H2-TPR, FT-IR, and XPS were used to investigate the role of nTi in the DeNOx catalyst.