• Title/Summary/Keyword: 나노촉매

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Effect of Impregnation and Modification on Activated Carbon for Acetaldehyde Adsorption (아세트알데하이드 흡착을 위한 활성탄의 첨착 및 개질 효과)

  • Jin Chan Park;Dong Min Kim;Jong Dae Lee
    • Korean Chemical Engineering Research
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    • v.61 no.3
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    • pp.472-478
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    • 2023
  • In this study, the acetaldehyde removal characteristics of activated carbon (AC) for air purifier filters were investigated using metal catalysts-impregnation and functional group-modification method. The AC with a high specific surface area(1700 m2/g) and micropores was prepared by KOH activation of coconut charcoal and the efficiency of catalyst and functional group immobilization was examined by varying the drying conditions within the pores after immersion. The physical properties of the prepared activated carbon were analyzed by BET, ICP, EA, and FT-IR, and the acetaldehyde adsorption performances were investigated using gas chromatography (GC) at various impregnation and modified conditions. As the concentration of impregnation solution increased, the amount of impregnated metal catalysts increased, while the specific surface area showed a decreasing trend. The adsorption tests of the metal catalyst-impregnated and functional group-modified activated carbons revealed that excellent adsorption performance in compositions MgO10@AC, CaO10@AC, EU10@AC, and H-U3N1@AC, respectively. The MgO10@AC, which showed the highest adsorption performance, had a breakthrough time of 533.8 minutes and adsorption capacity of 57.4 mg/g for acetaldehyde adsorption. It was found that the nano-sized MgO catalyst on the activated carbon improved the adsorption performance by interacting with carbonyl groups of acetaldehyde.

Particle Characteristics of Flame-Synthesized γ-Al2O3 Nanoparticles (화염법으로 제조된 감마-Al2O3 나노입자의 화염조건에 따른 입자특성 연구)

  • Lee, Gyo-Woo
    • Transactions of the Korean Society of Mechanical Engineers B
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    • v.36 no.5
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    • pp.509-515
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    • 2012
  • In this study, ${\gamma}-Al_2O_3$ nanoparticles were synthesized by using coflow hydrogen diffusion flames. The synthesis conditions were varied with using several oxygen concentrations in the oxidizing air. The particle characteristics of the flame-synthesized $Al_2O_3$ nanoparticles were determined by examining the crystalline structure, shape, and specific surface area of the nanoparticles. The measured maximum centerline temperature of the flames ranged from 1507.8 K to 1998.7 K. The morphology and crystal structure of the $Al_2O_3$ nanoparticles were determined from SEM images and XRD analyses, respectively. The particle sizes were calculated from measured BET specific surface areas and ranged from 25 nm to 52 nm. From XRD analyses, it was inferred that a large number of the synthesized nanoparticles were ${\gamma}-Al_2O_3$ nanoparticles including ${\theta}-Al_2O_3$ nanoparticles.

SO2 Adsorption Characteristics of PAN-based Activated Carbon Fiber Impregnated with Palladium and Gold Nanoparticles (팔라듐과 금 나노입자를 첨착한 PAN계 활성탄소섬유의 SO2 흡착특성)

  • Lee, Jin-Jae;Jun, Moon-Gue;Kim, Young-Chai
    • Applied Chemistry for Engineering
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    • v.18 no.5
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    • pp.467-474
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    • 2007
  • The palladium and gold nanoparticles containing PAN-based active carbon fiber (ACF) with a high specific surface area were prepared. Using the BET, TEM, FE-SEM, and XPS, their specific surface area and pore volume, pore structure, and the change in surface oxygen groups with time were analyzed and $SO_2$ adsorption performances were investigated. Because of the impregnating process, the micropore volume was mostly decreased from 95.5% to 30.5~43.7% compared with the total pore volume. And the change in surface oxygen groups with time was higher for the metal salt than the nanoparticles. Also, $SO_2$ breakthrough time of PAN-ACFs impregnated with Au nanoparticles and metal salts did not change compared with that of the non-impregnated PAN-ACF. But the PAN-ACF impregnated with Pd nanoparticles (100 ppm) showed good $SO_2$ adsorption performance as the breakthrough time of 880 sec. These results indicated that the $SO_2$ adsorption performance depended on the change in surface oxygen groups with time and the moderate impregnation of Pd nanoparticles on the PAN-ACF caused the increase in the $SO_2$ adsorption performance by a catalytic action.

Investigation of the influence of substrate surface on the ZnO nanostructures growth (기판 표면의 영향에 의한 ZnO 나노 구조 성장에 관한 연구)

  • Ha, Seon-Yeo;Jung, Mi-Na;Park, Seung-Hwan;Yang, Min;Kim, Hong-Seung;Lee, Uk-Hyeon;Yao, Takafumi;Jang, Ji-Ho
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • v.9 no.1
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    • pp.1022-1025
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    • 2005
  • The effect of substrate surface to the formation of ZnO nanostructures has been investigated using Si (111), $Al_2O_3$(C-plane) $Al_2O_3$(A-plane), and $Al_2O_3$(R-plane) substrates. The growth temperature was controlled from 500$^{\circ}C$ ${\sim}$ 600$^{\circ}C$, and the luminescence properties were investigated by a series of photoluminescence (PL) measurements at the elevating temperatures. ZnO nanostructures grown on Si substrate show strong UV emission intensity along with green emission positioned at 3.22 eV and 2.5 eV, respectively. However, green emission was not observed from the ZnO nanostructures grown on $Al_2O_3$ substrates. It is explained in terms of the difference of the surface energy between Si and $Al_2O_3$. Also, the origin of UV emissions has been discussed by using the temperature-dependent PL. The distinction of the PL spectra is interpreted in terms of the difference of the impurity included in the nanostructures.

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Synthesis of Polymer-Silica Hybrid Particle by Using Polyamine Nano Complex (폴리아민 나노 복합체를 이용한 고분자-실리카 복합체 입자 합성)

  • Kim, Dong-Yeong;Seo, Jun-Hee;Lee, Byungjin;Kang, Kyoung-Ku;Lee, Chang-Soo
    • Clean Technology
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    • v.27 no.2
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    • pp.115-123
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    • 2021
  • This study demonstrates a new method for the synthesis of organic-inorganic hybrid particles composed of an inorganic silica shell and organic core particles. The organic core particles are prepared with a uniform size using droplet-based microfluidic technology. In the process of preparing the organic core particles, uniform droplets are generated by independently controlling the flow rates of the dispersed phase containing photocurable resins and the continuous phase. After the generation of droplets in a microfluidic device, the droplets are photo-polymerized as particles by ultraviolet irradiation at the ends of microfluidic channels. The core particle is coated with a nano complex composed of polyallylamine hydrochloride (PAH) and phosphate ion (Pi) through strong non-covalent interactions such as hydrogen bonding and electrostatic interaction under optimized pH conditions. The polyamine nano complex rapidly induces the condensation reaction of silicic acid through the arranged amine groups of the main chain of PAH. Therefore, this method enabled the preparation of organic-inorganic hybrid particles coated with inorganic silica nanoparticles on the organic core. Finally, we demonstrated the synthesis of organic-inorganic hybrid particles in a short time under ambient and environmentally friendly conditions, and this is applicable to the production of organic-inorganic hybrid particles having various sizes and shapes.

MEMS based on nanoparticle gas sensor for air quality system (유해가스 차단시스템용 MEMS 가스 센서)

  • Lee, Eui-Bok;Park, Young-Wook;Hwang, In-Sung;Kim, Sun-Jung;Cha, Jun-Gho;Lee, Ho-Jun;Lee, Jong-Heun;Ju, Byeong-Kwon
    • Journal of IKEEE
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    • v.13 no.4
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    • pp.37-42
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    • 2009
  • In this study, nanopower ZnO and $SnO_2$ as sensing materials were prepared by hydrazine and hydrothermal routes, respectively, and were doped with Pd, Ru catalyst. The CO and $NO_2$ sensors were fabricated by coating of sensing materials on the MEMS-based structure with electrodes and heaters. The 0.1 wt% Pd doped $SnO_2$ sensor and Ru doped ZnO sensor showed the high sensor response to CO 30 ppm and $NO_2$ 1 ppm, respectively. The sensor signal was stable. This can be used for the detection of pollutant gases emitted from gasoline engine.

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Mechanical and Thermal Properties of Epoxy/Organically Modified Mica Type Silicate (OMTS) Nanocomposites (에폭시/유기치환된 실리케이트 나노복합체의 기계적 및 열적 성질에 관한 연구)

  • 노진영;김진환
    • Polymer(Korea)
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    • v.25 no.5
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    • pp.691-698
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    • 2001
  • Nanocomposites based on epoxy acid nanoclay were prepared employing organically modified mica type silicate (OMTS), diglycidyl ether of bisphenol A (DGEBA) type epoxy. curing agent (dicyandiamide; DICY), and catalyst (benzyl dimethyl amine; BDMA). Both melt mixing and solution mixing were und for the sample preparation and structural developments with curing reaction were analyzed using X-ray diffractometer (XRD) and small angle X-ray scattering (SAXS). Because of the different curing rate between extra-gallery and intra-gallery reactions of epoxy mixtures, only intercalated structure was observed for the sample prepared by melt mixing while fully exfoliated structure was observed for the sample prepared by solution mixing. Mechanical properties of exfoliated epoxy nanocomposite were investigated using a dynamic mechanical analyzer (DMA). The dynamic storage modulus of the nanocomposite in both glass and rubbery plateau regions were increased with increasing OMTS contents, but glass transition temperatures ($T_g$) remained unchanged. Thermal properties of epoxy nanocomposite were investigated using thermogravimetric (TGA) and limit oxygen index (LOI) methods. Thermal decomposition onset points and LOI values were increased with increasing OMTS contents due to barrier effects of OMTS sheets.

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Influence of particle size on sensing characteristics of hydrothermally treated nano-sized $SnO_2$ (수열합성법으로 제조한 나노 크기의 $SnO_2$ 입자 크기에 따른 반응 특성)

  • ;Anh-Hoa Bui
    • Proceedings of the Materials Research Society of Korea Conference
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    • 2003.03a
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    • pp.134-134
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    • 2003
  • SnO$_2$를 모물질로 하는 가스센서는 n형 산화물 반도체로서 공기중의 산소의 흡탈착 및 전자의 수수에 의해 전기전도도의 변화로 특정 가스를 감지한다. 지금까지 반도체식 가스센서의 모물질로 가장 많이 연구되어 왔지만 아직도 선택성, 안정성 등 여러 가지 문제를 안고 있다. 그리고 개선방안으로 귀금속 촉매의 첨가 및 입자의 크기의 조절 등이 흔히 연구되어 왔다. 따라서 본 연구에서는 순수한 SnO$_2$ 를 이용하여 소결 온도 및 입자 크기에 의한 영향을 CO가스 및 수분에 대한 감도, 반응 시간을 통해 알아보았다. 수열 합성 및 침전 법으로 나노 크기의 SnO$_2$ 분말을 합성하여 스크린 인쇄법으로 후막 가스센서를 제조하였다 침전법에서 SnCl$_4$에 암모니아수로 pH=10.5로 적정하여 SnO$_2$ 분말을 얻었다. 그리고 입자 크기를 조절하기 위해 수열 합성 시 autoclave 내의 수열처리 온도를 100, 150, 20$0^{\circ}C$로 조절하여 SnO$_2$ 분말을 제조하고 입자 크기와 성분분석을 위해 XRD, SEM, TEM, BET 측정을 하였다. 그 결과 침전법으로 제조한 입자의 크기는 20nm 정도였으며 수열 처리한 SnO$_2$ 입자는 10nm이하의 미세한 입자를 얻을 수 있었다. 수열 합성 시 온도가 높아질수록 더 작은 입자 크기를 얻을 수 있었고 600, 7()0, 80$0^{\circ}C$ 열처리 후 입자성장이 침전법에 의한 SnO$_2$ 분말보다 더 작게 일어났다. 이렇게 제조한 나노크기의 SnO$_2$ 분말을 이용하여 습도 및 CO 가스에 대한 그 특실을 평가하였다. CO 20ppm에 대하여 40%정도의 감도를 보였으며 입자가 작아질수록 높은 감도를 보이는 것을 확인 할 수 있었다. 반면 CO 가스와 반응 후 회복 시 입자 의기가 작아질수록 회복이 늦어짐을 알 수 있었다. 그리고 15$0^{\circ}C$에서 습도에 대한 반응 후 회복시간을 조사해보니 같은 결과를 얻을 수 있었다. 이것은 입자 필기가 작아질수록 많은 흡착 사이트를 제공함으로써 높은 감도를 가지지만 반면 다량의 흡착된 가스들이 탈착 하는데 더 많은 시간이 소요되었기 때문이다.

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Effect of Injection Stage of SF6 Gas Incorporation on the Limitation of Carbon Coils Geometries (육불화황 기체의 주입단계에 따른 탄소코일 기하구조의 제약)

  • Kim, Sung-Hoon
    • Journal of the Korean Vacuum Society
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    • v.20 no.5
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    • pp.374-380
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    • 2011
  • Carbon coils could be synthesized on nickel catalyst layer-deposited silicon oxide substrate using $C_2H_2$ and $H_2$ as source gases and $SF_6$ as an additive gas under thermal chemical vapor deposition system. The characteristics (formation density and morphology) of as-grown carbon coils according to the injection stage of $SF_6$ gas incorporation were investigated. A continuous injecting of $SF_6$ gas flow could give rise to many types of carbon coils-related geometries, namely linear tub, micro-sized coil, nano-sized coil, and wave-like nano-sized coil. However, the limitation of the geometry as the nano-sized geometries of carbon coils could be achieved by the incorporation of $SF_6$ in a short time (1 min) during the initial deposition stage. A delayed injection of a short time $SF_6$ gas flow can deteriorate the limitation of the geometries. It confirms that the injection time and its starting point of $SF_6$ gas flow would be very important to determine the geometries of carbon coils.

A Study on Optimization of Manufacture Conditions for Water Treatment Membrane by Using Electrospinning Method (전기방사법을 이용한 수처리용 막 제조 조건 최적화 연구)

  • Lee, Sang Hyun;Choi, Sung Yeol;Chang, Soon Woong;Kim, Sung Su
    • Journal of Korean Society of Environmental Engineers
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    • v.39 no.8
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    • pp.456-461
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    • 2017
  • In this study, nano fibers with various physical properties were materialized by using a variety of polymers [PAN (Polyacrylonitrile), PU (Polyuretane), PSU (Polysulfone)] which are raw materials of dope solution manufactured for electrospinning and solvents [NMP (N-methyl-2 pyrrolidone), DMF (Dimethylformamide)] and evaluated characteristics of their flux and SS (Suspended Solids) separation and then ascertained application of manufactured fibers as separation membrane for water treatment. In this study, analysis of surface of manufactured material was carried out through SEM analysis to ascertain the cause of flux and SS separation performance by checking diameter, uniformity and straightness of fiber. If additive is used in manufacturing nano fiber water treatment separation membrane, it is expected to solve problems such as membrane fouling and mechanical strength and to be used as basic factor for manufacturing separation membrane with catalyst function added.