• 제목/요약/키워드: Biological Processes

검색결과 1,544건 처리시간 0.034초

대기압 플라즈마를 이용한 결정질 태양전지 표면 식각 공정 (Dry Etching Using Atmospheric Plasma for Crystalline Silicon Solar Cells)

  • 황상혁;권희태;김우재;최진우;신기원;양창실;권기청
    • 한국재료학회지
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    • 제27권4호
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    • pp.211-215
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    • 2017
  • Reactive Ion Etching (RIE) and wet etching are employed in existing texturing processes to fabricate solar cells. Laser etching is used for particular purposes such as selective etching for grooves. However, such processes require a higher level of cost and longer processing time and those factors affect the unit cost of each process of fabricating solar cells. As a way to reduce the unit cost of this process of making solar cells, an atmospheric plasma source will be employed in this study for the texturing of crystalline silicon wafers. In this study, we produced the atmospheric plasma source and examined its basic properties. Then, using the prepared atmospheric plasma source, we performed the texturing process of crystalline silicon wafers. The results obtained from texturing processes employing the atmospheric plasma source and employing RIE were examined and compared with each other. The average reflectance of the specimens obtained from the atmospheric plasma texturing process was 7.88 %, while that of specimens obtained from the texturing process employing RIE was 8.04 %. Surface morphologies of textured wafers were examined and measured through Scanning Electron Microscopy (SEM) and similar shapes of reactive ion etched wafers were found. The Power Conversion Efficiencies (PCE) of the solar cells manufactured through each process were 16.97 % (atmospheric plasma texturing) and 16.29 % (RIE texturing).

Actinobacteria Isolation from Metal Contaminated Soils for Assessment of their Metal Resistance and Plant Growth Promoting (PGP) Characteristics

  • Tekaya, Seifeddine Ben;Tipayno, Sherlyn;Chandrasekaran, Murugesan;Yim, Woo-Jong;Sa, Tong-Min
    • 한국토양비료학회지
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    • 제45권4호
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    • pp.593-601
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    • 2012
  • Heavy metals and metalloids removal can be considered as one of the most important world challenges because of their toxicity and direct impact on human health. Many processes have been introduced but biological processes of remediation seem to offer the most suitable solution in terms of efficiency and low cost. Actinobacteria constitute one of the major microbial populations in soil, and this can be attributed to their adaptive morphological structure as well as their exceptional metabolic power. Among microbes, actinobacteria are morphologic intermediate between fungi and bacteria. Studies on microbial diversities in metal contaminated lands have shown that actinobacteria may constitute a dominantly active microbiota in addition to ${\alpha}$ Proteobacteria. Furthermore, isolation studies have shown metal removal mechanisms which are reminiscent of notable multiresistant strains, such as Cupriavidus metallidurans. Apart from members of genus Streptomyces, which produce more than 90% of commercialized antibiotics, and the nitrogen fixing Frankia, little attention has been given to other members of this phylum. This is because of difficult culture condition requirements and maintenance. In this review, we focused on specific isolation of actinobacteria and their potential applications in metal bioremediation and plant growth promotion.

초임계 이산화탄소를 이용한 Ibuprofen의 용해도 측정 (Solubility of Ibuprofen in Supercritical Carbon Dioxide)

  • 김영애;주준호;임종성;김화용;이윤우
    • 청정기술
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    • 제11권3호
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    • pp.147-152
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    • 2005
  • 초임계 이산화탄소에서의 이부프로펜의 용해도를 측정하였다. 이부프로펜의 용해도는 variable volume view cell이 장착되어있는 고압장치를 사용하여 cloud point를 관찰하는 방법으로 실험하였다. 온도의 범위는 35, 40, $45^{\circ}C$로 하였고 측정된 실험값은 Peng-Robinson equation of state로 모델링 하였다. 이부프로펜의 물리적 특성은 Lydersen, Ambrose 그리고 Joback의 group contribution method를 사용하여 구한 값을 사용하였고, 각각의 결과를 비교하였다. 이산화탄소는 이부프로펜에 대해 큰 용해력을 가진다는 것을 확인하였고, 150bar 부근에서 retrograde 현상이 일어남을 알 수 있었다. 또한 Lydersen의 group contribution method를 사용하여 얻어진 이부프로펜의 물리적 특성으로 PR-EOS와 함께 모델링 한 결과가 다른 method보다 실험값과 더 잘 일치함을 확인하였다. 결과적으로 이 실험을 통해 초임계 공정으로 이부프로펜의 미세입자화 시킬 경우 용질이 용매에 용해되어야 하는 rapid expansion of supercritical solution (RESS)방법이 적용될 수 있음을 확인하였다.

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초임계 이산화탄소 함침을 이용한 연료전지용 폴리스타이렌/폴리프로필렌 복합막의 제조 (Preparation of Polypropylene Grafted Polystyrene Sulfonic Acid Membranes for DMFCs in Supercritical CO2)

  • 변정연;석준호;신우균;김화용
    • 청정기술
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    • 제11권3호
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    • pp.141-146
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    • 2005
  • 초임게 이산화탄소를 용매 및 팽윤제로 사용하여 함침 및 라디칼 중합으로 폴리프로필렌막에 스타이렌(styrene)을 그래프팅 시켰다. 모노머인 스타이렌의 양을 변수로 조절해가면서 막을 제조하였다. 초임계 함침, 중합 공정을 통해 만들어진 술폰화된 폴리스타이렌을 그래프팅한 폴리프로필렌 막 (PP-g-pssa)을 다양한 방범으로 특성화하였다. SEM과 EDS을 통하여 그래프팅 막의 표면 및 구조, 술폰화 여부를 분석하였다. 모노머의 양이 증가할수록 메탄올 투과도는 감소하고 이온 전도도와 전지 성능은 증가하다가, 스타이렌 모노머의 양이 1.5 g이상에서 제조된 막의 메탄올 투과도, 이온 전도도 및 전지 성능은 거의 유사한 값을 보였다.

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Modeling, simulation and structural analysis of a fluid catalytic cracking (FCC) process

  • Kim, Sungho;Urm, Jaejung;Kim, Dae Shik;Lee, Kihong;Lee, Jong Min
    • Korean Journal of Chemical Engineering
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    • 제35권12호
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    • pp.2327-2335
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    • 2018
  • Fluid catalytic cracking (FCC) is an important chemical process that is widely used to produce valuable petrochemical products by cracking heavier components. However, many difficulties exist in modeling the FCC process due to its complexity. In this study, a dynamic process model of a FCC process is suggested and its structural observability is analyzed. In the process modeling, yield function for the kinetic model of the riser reactor was applied to explain the product distribution. Hydrodynamics, mass balance and energy balance equations of the riser reactor and the regenerator were used to complete the modeling. The process model was tested in steady-state simulation and dynamic simulation, which gives dynamic responses to the change of process variables. The result was compared with the measured data from operating plaint. In the structural analysis, the system was analyzed using the process model and the process design to identify the structural observability of the system. The reactor and regenerator unit in the system were divided into six nodes based on their functions and modeling relationship equations were built based on nodes and edges of the directed graph of the system. Output-set assignment algorithm was demonstrated on the occurrence matrix to find observable nodes and variables. Optimal locations for minimal addition of measurements could be found by completing the whole output-set assignment algorithm of the system. The result of this study can help predict the state more accurately and improve observability of a complex chemical process with minimal cost.

화약제조 공정의 초임계 유체 응용 (Application of Supercritical Fluid in Energetic Materials Processes)

  • 송은석;김화용;김현수;이윤우
    • 한국군사과학기술학회지
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    • 제9권3호
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    • pp.77-87
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    • 2006
  • Micro- or nano-size particles are required to improve the combustion efficiency and stability in the case of solid explosives and propellants. The micro-structural properties of an energetic material strongly influence the combustion and explosion behavior. However, the traditional size reduction techniques, including milling, are not suitable for production of ultra-fine size particles. As an alternative to the traditional techniques, various re-crystallization processes based on supercritical fluids have recently been proposed. Supercritical fluids are fluids at temperatures and pressures above their critical point. In principle, they do not give problems of solvent contamination as they are completely released from the solute when the decompression occurs. Rapid Expansion Supercritical Solutions(RESS) and Supercritical Anti-Solvent Process(GAS/SAS) are representatives of a nano-size particle formation process of energetic materials using supercritical fluids. In this work, various fine particle formation processes using supercritical fluids are discussed and the results are presented.

연소배가스 중 질소산화물(NOx) 제거를 위한 생물학적 기술 (Biological Removal of Nitrogen Oxides from Combustion Flue Gases)

  • 이기세
    • 공업화학
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    • 제21권3호
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    • pp.243-251
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    • 2010
  • 연소배가스에 존재하는 질소산화물의 제거를 위해서는 촉매 환원, 흡수, 흡착 등 화학적 기술이 적용되고 있는데, 장기적으로는 환경친화적이고 에너지 소모가 적은 생물학적 공정의 개발 및 이용이 필요하다. 본 논문에서는 연소 배가스에 존재하는 질소산화물을 제거하기 위한 생물학적 공정의 기술동향을 살펴보고 각각의 장단점을 고찰하였다. 질산화와 탈질 기작을 이용하는 박테리아 시스템과 광합성 미세조류를 이용하는 시스템으로 구분하여 기술의 원리와 현재의 기술 수준을 논하였다. 두 경우 모두 처리속도를 높이기 위해서는 불용성의 일산화질소를 일단 적절한 흡수제에 고농도로 포집시킨 후 미생물에 의하여 분해 또는 고정하는 방향이 바람직하며, 배가스 중 $CO_2$와 NOx를 동시에 고정이 가능하고 별도의 탄소원이 요구되지 않는 미세조류의 활용이 기대된다.

Hydrogen Production by Biological Processes

  • Shin Jong-Hwan;Park Tai Hyun
    • 한국미생물학회:학술대회논문집
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    • 한국미생물학회 2004년도 International Meeting of the Microbiological Society of Korea
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    • pp.101-104
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    • 2004
  • Among biological hydrogen production processes, fermentative processes have some advantages. In this research, the hydrogen producing bacterium was isolated from domestic landfill area and identified as Enterobacter sp. The strain was named Enterobacter sp. SNU-1453. Important parameters for the hydrogen process include pH, temperature, concentration of initial glucose, and kind of sugars. The pH of the culture medium significantly decreased as fermentation proceeded due to the accumulation of various organic acids, and this inhibited the $H_2$ production seriously. When pH was controlled at pH 7.0, hydrogen production was 2614.5 m1/1 in 17 hours. The increase of glucose concentration resulted in higher $H_2$ production. The productivity of this strain was 6.87 mmol $H_2/l$ per hi on concentration of 25g glucose/l. Enterobacter sp. SNU-1453 could utilize various sugars. These results indicate that Enterobacter sp. SNU-1453 has a high potential as a fermentative $H_2$ producer.

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생물공학에서의 합성막 : 현실과 가능성 (Synthetic Membranes in Biotechnology: Realities and Possibilities)

  • Belfort, Georges
    • 멤브레인
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    • 제2권2호
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    • pp.91-103
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    • 1992
  • Synthetic membrane processes are being increasingly integrated into existing reaction, isolation, and recovery schemes for the production of valuable biological molecules. In many cases they are replacing traditional unit processes. The properties of membrane systems which are most often exploited for both upstream and downstream processing and their permselectivity, high surface area per unit volume, are their potential for controlling the level of contact and/or mixing between two separate phases. Advances in both membrane materials and module design and operation have led to better control of concentration polarization and membrane fouling. After presenting some recent advances in membrane materials and fluid mechanics, we demonstrate how membranes have been integrated into cellular and enzymatic reaction schemes. This is followed by a review of established and emerging synergism between biological processes and synthetic membranes.

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생물학적 하·폐수처리 공정에서 생물촉진제 첨가의 영향 (Effects of Bio-stimulant Addition on Biological Wastewater Treatment Processes)

  • 이석헌;정진영;박기영
    • 한국물환경학회지
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    • 제21권4호
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    • pp.398-402
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    • 2005
  • The enzyme Xeronine was investigated as a microbial activating substance in biological wastewater treatment processes. Xeronine as bio-stimulant was injected in the anaerobic sludge and the activated sludge treating wastewater in order to examine the effect of hidden benefits. Bio-stimulant did not show significant improvement of anaerobic treatablity. In the aerobic system, higher bio-stimulant dose condition resulted in slightly more removal of nitrogen and phosphorus. Floc aggregation and zone settling velocity as solid-liquid separation factors in activated sludge systems was enhanced by bio-stimulant. Effects of bio-stimulants injection on improvement of water quality and microbial activity did not clear in terms of normal operation conditions.