• Title/Summary/Keyword: Separation of particles

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표면특성이 제어된 기능성 나노 입자의 전자 및 의공학적 응용

  • 박영준;이준영;김중현
    • 한국결정학회:학술대회논문집
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    • 한국결정학회 2002년도 정기총회 및 추계학술연구발표회
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    • pp.54-55
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    • 2002
  • The fabrication, characterization and manipulation of nanoparticle system brings together physics, chemistry, materials science and biology in an unprecedented way. Phenomena occurring in such systems are fundamental to the workings of electronic devices, but also to living organisms. The ability to fabricate the surface of nanoparticles Is essential in the further development of functional devices that incorporate nanoscale features. Even more essential is the ability to introduce a wide range of chemical and materials flexibility into these structures to build up more complex nanostructures that can ultimately rival biological nanosystems. In this respect, polymers are potentially ideal nanoscale building blocks because of their length scale, well-defined architecture, controlled synthesis, ease of processing and wide range of chemical functionality that can be incorporated. In this presentation, we will look at a number of promising polymer-based nanoparticle fabrication strategies that have been developed recently, with an emphasis on those techniques that incorporate nanostructured polymeric particles into electronic devices or biomedical applications. And functional nanoparticles deliberately designed using several powerful process methods and their application will be discussed. Nanostructured nanoparticles, what we called, implies dispersed colloids with the size ranged from several nanometers to hundreds of nanometer. They have extremely large surface area, thus it is very important to control the morphology or surface functionality fitted for adequate objectives and properties. Their properties should be controlled for various kind of bio-related technologies, such as immunomagnetic cell separation, drug delivery systems, labeling and identification of lymphocyte populations, extracorporeal and hemoperfusion systems, etc. Well-defined polymeric nanoparticles can be considered as smart bomb or MEMS.

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Dielectric/Magnetic Nanowires Synthesized by the Electrospinning Method for Use as High Frequency Electromagnetic Wave Absorber

  • 좌용호
    • 한국재료학회:학술대회논문집
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    • 한국재료학회 2009년도 추계학술발표대회
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    • pp.14-14
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    • 2009
  • High frequency electromagnetic(EM) waves are increasingly being applied in industries because of saturationat lower frequency bands as a result of huge demand. However, electromagneticinterference (EMI) has become a serious problem, and as a result, highfrequency EM absorbers are now being extensively studied. Also, recentdevelopments in absorber technology have focused on producing absorbers thatare thin, flexible, and strong. Hence, one-dimension ferrous nano-materials area potential research field, because of their interesting electronic andmagnetic properties. Commercially, EM wave absorbing products are made ofcomposites, which blend the insulating polymer with magnetic fillers. Inparticular, the shape of the magnetic fillers, such flaky, acicular, or fibrousmagnetic metal particles, rather than spherical, is essential for synthesizingthin and lightweight EM wave absorbers with higher permeability. High aspectratio materials exhibit a higher permeability value and therefore betterabsorption of the EM wave, because of electromagnetic anisotropy. Nanowires areusually fabricated by drawing, template synthesis, phase separation, selfassembly, and electrospinning with a thermal treatment and reduction process.Producing nanowires by the electrospinning method involves a conventionalsol-gel process that is simple, unique, and cost-effective. In thispresentation, Magnetic nanowire and dielectric materials coated magneticnanowire with a high aspect ratio were successfully synthesized by theelectrospinning process with heat treatment and reduction. In addition toestimating the EM wave absorption ability of the synthesized magnetic anddielectric materials coated magnetic nanowire with a network analyzer, weinvestigated the possibility of using these nanowires as high-frequency EM waveabsorbers. Furthermore, a wide variety of topics will be discussed such as thetransparent conducting nanowire and semiconducting nanowire/tube with theelectrospinning process.

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조류와 유기화합물의 동시제거를 위한 흡착 - DAF 복합공정 (Adsorption-DAF Hybrid Process for the Simultaneous Removal of Algae and Organic Compounds)

  • 이재욱;곽동희;최승필;정흥조
    • 상하수도학회지
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    • 제18권2호
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    • pp.208-214
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    • 2004
  • Dissolved air flotation (DAF) is an effective solid/liquid separation process for low density floc particles such as algal, color-alum and clay-alum flocs produced from low turbidity water. The removal of taste and odor-causing organics (2-mthylisoboneol and geosmin) originating from algae in drinking water is a local and worldwide concern. Although DAF has been effectively applied for the removal of suspended solid, its application for the treatment of dissolved organic carbon is very limited. In this study, a new hybrid system consisting of adsorption and DAF processes was introduced for the simultaneous removal of algae and taste and odor-causing organics. Powdered activated carbon (PAC) was used as an adsorbent. In this proposed system, the major concern of eliminating the spent PAC from the system was also addressed. It was found that zeta potential of algae and PAC was increased with coagulant dosage, and the removal efficiency in DAF was also enhanced up to 90~95% under the given experimental conditions. Based on this study, the hybrid process was found to be a promising technology for the simultaneous removal of algae and dissolved organic pollutants.

Eudragit $RS^{\circledR}$를 이용한 지속 방출형 아스피린 마이크로캅셀의 제조 및 평가 (Preparation and Evaluation of Sustained Release Aspirin Microcapsules Using Eudragit $RS^{\circledR}$ Polymer)

  • 전인구;신동원
    • 약학회지
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    • 제32권1호
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    • pp.26-39
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    • 1988
  • Eudragit $RS^{\circledR}$ polymer was used as a wall material for the microencapsulation of aspirin by a phase separation method from chloroform-cyclohexane system with 5% polyisobutylene (PIB) in cyclohexane, and microcapsules obtained were evaluated by particle size analysis, scanning electron microscopy (SEM), drug release and drug stability test. With PIB as a coacervation inducing agent, smooth and tight microcapsules with less aggregation were obtained. Below 1 : 0.3 core-wall ratio, it was possible to coat individual particle. Variation of production conditions showed that increasing the proportion of wall material, particle size and wall thickness of microcapsules and the concentration of paraffin wax in cyclohexane as a sealant sustained drug release rates effectively. SEM confirmed that larger microcapsules after drug release did not rupture into smaller particles but contained a few small pores on the surface. Aspirin release from Eudragit $RS^{\circledR}$ coated microcapsules was independent of the pH of medium, and the mechanism of drug release from non-sealed and sealed microcapsules appeared to fit Higuchi matrix model kinetics. Aspirin in the mixture of aspirin microcapsules and sodium bicarbonate was by far more stable than that in the mixture of pure aspirin and sodium bicarbonate.

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고정상세포분리기의 개발 및 Cyclosporin A 생산을 위한 고정화 연속배양공정에의 적용

  • 이태호;박성관;장용근;전계택
    • 한국미생물·생명공학회지
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    • 제24권6호
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    • pp.717-725
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    • 1996
  • We have developed an efficient immobilized cell separator for continuous operation of immobilized fungal cell cultures, and applied this separator to actual fermentation process for the production of cyclosporin A (CyA), a powerful immunosuppressant. In the experiments employing highly viscous polymer (carboxymethyl cellulose) solution, the decantor showed good separating performances at high solution viscosites and fast dilution rates. Air duct and cylindrical separator installed inside the decantor turned out to play key roles for the efficient separation of the immobilized cells. By installing the decantor in an immobilized perfusion reactor system (IPRS), continuous immobilized culture was stably carried out even at high dilution rate for a long period, leading to high productivities of free cells and CyA. Almost no immobilized biomass existed in effuluent stream of the IPRS, demonstrating the effectiveness of the decan- tor system for a long-term continuous fermentation. It was noteworthy that we could obtain these results despite of the unfavorable fermentation conditions, i.e., reduced density of the biosupports caused by overgrowth of cells inside the bead particles and existence of high density of suspended fungal cells (10g/l) in the fermentation broth.

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가시화기법을 이용한 다단형 하이드로 사이클론 어란 (魚卵) 집진장치의 개선에 관한 연구 (An advanced study of multi-stage type hydrocyclone dust collector for fish egg collecting using Visualization)

  • 최은희;편용범;이승헌;이경훈
    • 수산해양기술연구
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    • 제53권4호
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    • pp.404-412
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    • 2017
  • A centrifugal cyclone dust collecting apparatus includes a hydro cyclone dust collecting apparatus for separating solid or liquid using liquid or suspension as a medium. In this study, the formation mechanism and improvement of air core and inner air layer were confirmed through Particle Image Velocimetry. These results showed that the modified experimental model was designed in the conventional method suitable for the separation of juvenile fish and eggs. The inlet speed of the multi-stage hydrocyclone dust collector, which can increase the inlet velocity and minimize floatage in the turbulence chamber, was increased from 0.15 to 0.30 m/s. As a result, the air core was stably formed, the inner air layer was increased with increasing speed. In addition, the dust collecting efficiency of egg and juvenile fish was 97.8% on average, It can infer that this system confirmed the ability to efficiently collect particles of $40{\mu}m$ or more.

원형분류확산화염에서의 음파가진에 의한 혼합효과 (Mixing Effect by Tone-Excitation In Round Jet Diffusion Flame)

  • 김태권;박정;신현동
    • 대한기계학회논문집B
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    • 제23권6호
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    • pp.795-801
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    • 1999
  • An experimental investigation has been conducted with the objective of studying the mixing mechanism near the nozzle exit in a tone-excited jet diffusion flame. The fuel jet was pulsed by means of a loudspeaker-driven cavity. The excitation frequencies were chosen for the two cases of the non-resonant and resonant frequency identified as a fuel tube resonance due to acoustic excitation. The effect of tone-excitations on mixing pattern near the nozzle exit and flame was visualized using various techniques, including schlieren photograph and laser light scattering photograph from $TiO_2$ seed particles. In order to clarify the details of the flame feature observed by visualization methods, hotwire measurements have been made. Excitation at the resonant frequency makes strong mixing near the nozzle. In this case, the fuel jet flow in the vicinity of nozzle exit breaks up into disturbed fuel parcels. This phenomena affects greatly the combustion characteristics of the tone excited jet and presumably occurs by flow separation from the wall inside the fuel nozzle. As a result, in the resonant frequency the flame length reduces greatly.

표면에 부착되는 스케일의 조도가 열교환기 성능에 미치는 영향에 관한 연구 (A Study on the Effect of Scale Roughness attached Surface of Heat Exchangers)

  • 김민수;최낙정
    • Journal of Advanced Marine Engineering and Technology
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    • 제34권2호
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    • pp.235-242
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    • 2010
  • 본 연구는 열교환기의 가열된 표면위에 부착된 지열수 스케일의 조도 영향을 검증하기 위한 강제 대류 열전달에 관한 실험적 연구이다. 실험은 원형 원관 위에 5종류의 실리카 스케일 입자를 균일하게 부착하여 행하였다. Reynolds수는 13,000에서 50,000의 범위에서 행하였다. 국소와 평균 열전달 특성은 스케일 입자 크기와 레이놀즈수의 함수로서 측정하였으며 평균오염저항을 이들의 결과로부터 평가하고 그들의 특성들을 분석 하였다. 원관의 열전달 특성은 지열수 스케일의 오염에 의해, 특히 입자 크기에 의해 크게 변화하였다. 또한 국소와 평균 Nusselt수는 원관 간격과 Reynolds 수에 의해 크게 의존 되었다.

Avantor® ACE® UltraCore HPLC/UHPLC 칼럼 가이드 (Avantor® ACE® UltraCore HPLC and UHPLC Columns)

  • Peter Bridge;Ian Phillips;Gemma Lo;Cassandra Rusher
    • FOCUS: LIFE SCIENCE
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    • 제1호
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    • pp.4.1-4.15
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    • 2024
  • The Avantor® ACE® UltraCore series encompasses High Performance Liquid Chromatography (HPLC) and Ultra High Performance Liquid Chromatography (UHPLC) columns designed to deliver high throughput and high-efficiency ultra-fast separations. Utilizing ultra-inert solid-core silica particles with monodisperse particle distribution, these columns combine the high efficiency of UHPLC with the operability of HPLC instrumentation, yielding lower backpressure and high-resolution separations suitable for a broad spectrum of analytes. The Avantor® ACE® UltraCore range includes three primary product types: • UltraCore BIO: Designed for large biomolecules (≥5 kDa), these columns offer exceptional performance in separating biologically derived compounds. • UltraCore: Ideal for standard small organic molecules, providing rapid separations for both synthetic and natural mixtures. • UltraCore Super: Equipped with encapsulated bonding technology for small organic molecules in extreme pH conditions, optimal for high pH buffer requirements. The Avantor® ACE® UltraCore columns present a versatile and high-efficiency solution for chromatographic separation needs, accommodating a wide range of molecular sizes and providing enhanced resolution and reduced analysis time. Their adaptability to both HPLC and UHPLC systems, combined with the advantages of solid-core technology, makes them an invaluable tool in analytical and preparative chromatography.

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중금속 오염 토양 정화를 위한 습식자력선별법 사용 시 최적 토양분산 조건 (Optimum Condition of Soil Dispersion for Remediating Heavy Metal-Contaminated Soils using Wet Magnetic Separation)

  • 전철민;박정식;박숙현;김재곤;남인현
    • 자원환경지질
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    • 제45권2호
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    • pp.121-135
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    • 2012
  • 본 연구에서는 자력선별 토양정화기술 공정에 적합한 토양의 최적 분산 조건을 도출하기 위하여 토성이 다른 중금속 오염토양 2종의 시료(US, JIK)를 대상으로 분산특성 및 중금속 용출 특성을 파악하였다. 분산제로는 인산염(pyrophosphate, hexametaphosphate, orthophosphate), 계면활성제(sodium dodecyl sulfate, SDS)가 사용되었으며, pH = 9~12와 농도변화(1~200 mM)에 따른 토양입단의 분산특성 및 중금속 함량을 파악하고, 효율적인 분산조건을 도출하였다. 분산용액의 pH변화에 따른 토양분산 특성은 입도변화 결과를 통하여 파악할 수 있는데, 분산용액의 pH가 12에 가까워질수록 현탁액의 점토함량이 증가하였다. 이는 pH가 상승함에 따라 PZC(point of zero charge)이상의 pH가 유지되면서 점토입자들이 분산된 상태로 유지된 것으로 여겨진다. 농도변화에 따른 토양분산 실험 결과, 농도가 증가함에 따라서 높은 점토함량을 나타내었는데, 이는 산화철, 산화망간의 PZC보다 높은 분산용액의 pH조건과 분산제의 흡착에 기인한 것으로 판단된다. 토양입자의 분산에 따른 중금속 용출은 pyrophosphate, hexametaphosphate, orthophosphate는 50 mM 이상의 농도에서, SDS의 경우 100 mM이상의 농도에서 비소 용출량이 일정하게 나타났다. 또한, 분산용액의 pH가 증가함에 따라 비소 용출량도 증가하였다. 인산염은 비소와 유사한 화학구조를 지니고 있어 토양입자표면에서 흡착경쟁을 하여 비소의 탈착을 유발하고, 계면활성제는 토양입자표면에 흡착하여 비소가 탈착되는 것으로 파악된다. 분산용액에 따른 분산효과는 pyrophosphate > hexametaphosphate > SDS > orthophosphate의 순으로 나타났다. 결과적으로 분산효율 및 비소용출량을 고려한 최적의 토양분산용액 조건은 pH 11, 10 mM pyrophosphate로 판단된다. 이러한 결과들은 고구배 자력선별 기술을 이용한 토양정화 공정을 최적화하는데 활용될 수 있을 것으로 기대된다.