• Title/Summary/Keyword: Surface-active property

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황화수소(H2S) 흡착을 위한 금속산화물 기반 흡착제의 활성물질 최적화 및 입상형 흡착제 제조에 대한 연구 (A Study on the Optimization of Active Material and Preparation of Granular Adsorbent of Metal Oxide-based Adsorbent for Adsorption of Hydrogen Sulfide (H2S))

  • 최성열;한동희;김성수
    • 공업화학
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    • 제30권4호
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    • pp.460-465
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    • 2019
  • 본 연구에서는 각종 산업시설에서 발생하는 $H_2S$를 처리하기 위하여 금속산화물 기반의 흡착제의 활성물질 최적화 및 입상형 흡착제 제조에 관한 연구를 진행하였다. 적용되는 흡착제는 금속산화물 중 높은 물리화학적 안정성과 비교적 큰 비표면적을 가지는 $TiO_2$를 이용하여 활성물질의 종류와 함량을 다르게 제조하였다. 이러한 흡착제의 물리화학적 특성과 흡착성능과의 상관관계를 확인한 결과 활성금속 중 대표적인 알칼리 물질인 KI를 첨착한 흡착제의 흡착성능이 가장 우수하였으며, 함량과 흡착성능의 관계는 비례하지 않고 volcano plot을 나타냈다. XRD, SEM, BET 분석을 통해 특정 함량 이상부터 활성물질이 표면에 노출됨을 확인하였으며, 비표면적은 $40{\sim}100m^2/g$, 기공의 부피는 $0.1{\sim}0.3cm^3/g$의 기공 특성을 가질 때 흡착성능이 가장 우수한 것으로 판단하였다. 실 공정 적용을 위해 흡착제를 입상형으로 성형 또는 세라믹 지지체에 코팅을 진행하였으며, 성형보다는 세라믹 지지체에 흡착제를 코팅하였을 때 우수한 흡착성능을 나타내는 것으로 확인하였다.

Mesoporous Carbon as a Metal-Free Catalyst for the Reduction of Nitroaromatics with Hydrazine Hydrate

  • Wang, Hui-Chun;Li, Bao-Lin;Zheng, Yan-Jun;Wang, Wen-Ying
    • Bulletin of the Korean Chemical Society
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    • 제33권9호
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    • pp.2961-2965
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    • 2012
  • Mesoporous carbons with tailored pore size were prepared by using sucrose as the carbon source and silicas as the templates. The silica templates were obtained from a hydroxypropyl-${\beta}$-cyclodextrin-silica hybrids using ammonium perchlorate oxidation at different temperatures to remove the organic matter. The structures and surface chemistry properties of these carbon materials were characterized by $N_2$ adsorption, TEM, SEM and FTIR measurements. The catalytic performances of these carbon materials were investigated through the reduction of nitroaromatic using hydrazine hydrate as the reducing agent. Compared with other carbon materials, such as active carbon, and carbon materials from the silica templates obtained by using calcination to remove the organic matter, these carbon materials exhibited much higher catalytic activity, no obvious deactivation was observed after recycling the catalyst four times. Higher surface area and pore volume, and the presence of abundant surface oxygen-containing functional groups, which originate from the special preparation process of carbon material, are likely responsible for the high catalytic property of these mesoporous carbon materials.

나일론 66 나노섬유의 염색성에 관한 연구(1) -균염성 산성염료- (Study on Dyeing Properties of Nylon 66 Nano Fiber (1) -Levelling Type Acid Dyes-)

  • 이권선;이범수;박영환;김성동;김용민;오명준;정성훈
    • 한국염색가공학회지
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    • 제16권4호
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    • pp.1-9
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    • 2004
  • In recent, development of nano fiber has been one of the most active subjects in the world. Nano fiber is defined as a ultra fine yarn with a diameter unit of $10-100\times10^{-9}meter$, which is possible to be produced by an electro-spinning technology. In this study, physical characteristics and dyeing properties of nylon 66 nano fiber were investigated. Nylon 66 nano fiber was dyed with levelling type acid dyes. X-ray diffraction method and DSC analysis were used for the measurement of the degree of crystallization. Analysis of amino end groups was also performed in order to examine a relationship between number of amino groups and its dyeing property as well as water absorption behavior. The maximum exhaustion % of dyes and dyeing rate under various dyeing conditions, such as dyeing temperature and pH in dye bath, along with build-up properties for 2 acid dyes were evaluated. It was found that the degree of crystallization of nano fiber was smaller than that of regular fiber, and amino end groups of nano fiber were less than regular fiber. Half dyeing time of nano fiber was shorter than regular fiber because of the bigger specific surface area. Effect of pH on exhaustion % was small in case of nano fiber. Exhaustion of nano fiber increased with higher concentration of dye.

코발트 산화물 전극의 수퍼커페시터 성질에 미치는 니켈 폼 집전체 효과 (Effect of Nickel Foam Current Collector on the Supercapacitive Properties of Cobalt Oxide Electrode)

  • 윤여일;김광만;고장면
    • 한국세라믹학회지
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    • 제45권6호
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    • pp.368-373
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    • 2008
  • An electrode for supercapacitor using 3-dimensional porous nickel foam as a current collector and cobalt oxide as an active material was prepared and characterized in terms of morphology observation, crystalline property analysis, and the investigation of electrochemical property. The electrode surface showed that the cobalt oxide was homogeneously coated as the crystalline phase of $Co_3O_4$. Cyclic voltammetry for the $Co_3O_4$/nickel foam electrode exhibited higher specific capacitance values (445 F/g at 10 mV/s and 350 F/g at 200 mV/s) and excellent capacitance retention ratio (99% after $10^4$ cycles). It was proved that the nickel foam substrate played the roles in reducing the interfacial resistance with cobalt oxide and in improving the electrode density by embedding greater amount of cobalt oxide within it.

LSC/GDC (50 : 50 vol%) 활성층이 LSCF/GDC (20 : 80 vol%) 복합 분리막의 산소투과 거동에 미치는 영향 (The Effect of LSC/GDC (50 : 50 vol%) Active Layers on Oxygen Transport Properties of LSCF/GDC (20 : 80 vol%) Dual-phase Membrane)

  • 차다솜;유충열;주종훈;유지행;한문희;조철희
    • 멤브레인
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    • 제24권5호
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    • pp.367-374
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    • 2014
  • 본 연구에서는 LSCF/GDC (20 : 80 vol%) 복합 분리막 표면에 LSC/GDC (50 : 50 vol%) 활성층을 코팅한 후 활성층의 열처리 온도, 두께, 침투법을 이용한 STF 도입이 산소투과 특성에 미치는 영향을 고찰하였다. 활성층 도입은 복합 분리막의 산소 투과 유속을 급격히 증진시켰으며 이는 활성층 성분인 LSC/GDC (50 : 50 vol%)가 전자 전도성 및 표면 산소 분해 반응을 증진시켰기 때문이었다. 활성층의 열처리 온도가 $900^{\circ}C$에서 $1000^{\circ}C$로 증가한 경우, 산소 투과 유속은 증가하였고 이는 분리막과 활성층 사이 그리고 활성층의 결정입간 접촉이 증진하여 산소이온과 전자 흐름을 증진시켰기 때문으로 설명되었다. 코팅층의 두께가 약 $10{\mu}m$에서 약 $20{\mu}m$로 증가한 경우, 산소 투과 유속은 오히려 감소하였는데 이는 코팅층의 두께가 증가할수록 기공을 통한 공기 중의 산소 유입이 어려워지기 때문으로 설명되었다. 또한, 코팅층에 침투법을 이용하여 STF를 도입한 경우가 STF를 도입하지 않은 경우 보다 높은 산소 투과 유속을 보였는데 이는 도입된 STF가 산소 분해하는 표면 반응 속도를 촉진시키기 때문이다. 본 연구로부터 LSC/GDC (50 : 50 vol%) 활성층 코팅 및 특성 제어는 LSCF/GDC (20 : 80 vol%) 복합 분리막의 산소투과 증진에 매우 중요함을 확인하였다.

탄소나노섬유의 밀링에 따른 전기화학적 에너지 저장 특성 (Electrochemical Energy Storage of Milled Carbon Nanofiber)

  • 이혜민;전현;최원경;조태환
    • 한국수소및신에너지학회논문집
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    • 제22권4호
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    • pp.527-533
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    • 2011
  • CNFs had been well addressed due to numerous promising applications in science and technology. Besides the same physicochemical properties of ordinary carbon materials such as active carbons and carbon black, they exhibit specific, e.g., tubular or fibrous structures, a large surface area, high electrical conductivity stability, as well as extremely high mechanical strengh and modulus, which make them a superior material for electrochemical capacitors. In this study, CNFs were pretreated by mechanical milling with different time in mortar and pestle. The milled CNFs were used as active material of electrode whose electrochemical property was tested to find physicochemical characterization variation. CNF electrode milled for 5 min has the highest electric capacitance. XPS spectrum were employed to explore changes in functional group induced from mechanical milling. Crystal size was calculated to analyze change of peak from different milling time by XRD. The CNF milled for 5 min has the largest crystal size and the highest electric capacitance.

무안 피서리구석기유적의 지질.고고학적 특성 (Geoarchaeology of the Piseo-ri Paleolithic site, Muan)

  • 이헌종;정철환;박성탄
    • 한국제4기학회지
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    • 제24권2호
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    • pp.13-21
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    • 2010
  • 무안 피서리유적은 최근 서남해안 일대에서 확인되고 있는 구석기시대 유적들에 대한 의미 있는 자료들을 제공하고 있다. 무안 피서리유적에 대한 층위 및 지질학적 분석결과는 토양쐐기의 특성이 토양의 굳기나 토양내부의 성분 함량 및 고지표면의 기복에 따라 차이가 있을 수 있다는 것을 지시해주고 있다. 피서리유적에서 중기 구석기 늦은 단계 또는 후기 구석기 이른 단계의 석기들이 함께 출토되었는데 이는 이들 석기가 산출되는 문화층이 최대 빙하 발달시기 이후에 형성되었다는 것을 고려해 볼 때 활발한 침식과 재퇴적에 의해 여러 시기의 유물이 함께 재퇴적된 결과일 가능성을 지시해 주고 있다. 이번 연구를 통해 구석기 유물의 분포와 토양쐐기와 같은 토양층의 특성은 고지표면의 기복 및 기후환경과 같은 자연환경적 조건에 의해 영향 받을 수 있다는 것을 고찰하였다.

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An atomistic model for hierarchical nanostructured porous carbons in molecular dynamics simulations

  • Chae, Kisung;Huang, Liping
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2016년도 제50회 동계 정기학술대회 초록집
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    • pp.403.2-403.2
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    • 2016
  • Porous materials play a significant role in energy storage and conversion applications such as catalyst support for polymer electrolyte membrane fuel cell. In particular, hierarchical porous materials with both micropores (poresize, ${\delta}$ < 2 nm) and regularly arranged mesopores (2 nm < ${\delta}$ < 50 nm) are known to greatly enhance the efficiency of catalytic reactions by providing enormous surface area as well as fast mass transport channels for both reactants and products from/to active sites. Although it is generally agreed that the microscopic structure of the porous materials directly affects the performance of these catalytic reactions, neither detailed mechanisms nor fundamental understanding are available at hand. In this study, we propose an atomistic model of hierarchical nanostructured porous carbons (HNPCs) in molecular dynamics simulations. By performing a systematic study, we found that structural features of the HNPC can be independently altered by tuning specific synthesis parameters, while remaining other structures unchanged. In addition, we show some structure-property relations including mechanical and gas transport properties.

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Direct Electrode Reaction of Fe(III)-Reducing Bacterium, Shewanella putrefaciens

  • Kim, Byung-Hong;Kim, Hyung-Joo;Hyun, Moon-Sik;Park, Doo-Hyun
    • Journal of Microbiology and Biotechnology
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    • 제9권2호
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    • pp.127-131
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    • 1999
  • Anaerobically grown cells of an Fe(III)-reducing bacterium, Shewanella putrefaciens IR-l, were electrochemically active with an apparent reduction potential of about 0.15 V against a saturated calomel electrode in the cyclic voltammetry. The bacterium did not grow fermentatively on lactate, but grew in an anode compartment of a three-electrode electrochemical cell using lactate as an electron donor and the electrode as the electron acceptor. This property was shared by a large number of Fe(III)-reducing bacterial isolates. This is the first observation of a direct electrochemical reaction by an intact bacterial cell, which is believed to be possible due to the electron carrier(s) located at the cell surface involved in the reduction of the natural water insoluble electron acceptor, Fe(III).

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도핑농도의 선택도를 이용한 국부적 다공질 실리콘의 형성 (Localized formation of porous silicon usin gdoping concentration selectivity)

  • 이주혁;김성진;이성필;이철진;최복길;박천만;심관수
    • 대한전자공학회:학술대회논문집
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    • 대한전자공학회 1998년도 하계종합학술대회논문집
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    • pp.465-468
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    • 1998
  • For porous silicon layer to be used as active layer in various devices, it is necessary to be formed locally along with a designed pattern on the wafer. However, there is still no suitable masking layer to withstand against the high concentration of HF for a time of some minutes up to some hours during the anodic process effectively. In this work, we investigated the property of selectivity between p$^{+}$ and n layers to form localized porous silicon even without a mask by the difference of the anodic I-V characteristics on the doping level and doping type. The width of the pattern made in the sample was 2mm, and the formed porous silicon layer was observed by SEM to see the morphology on the cross section below the surface. As the results, it was found that the selectivity was reasonable for the pattern size over 100.mu.m.m.

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