• Title/Summary/Keyword: plasma activated

검색결과 341건 처리시간 0.019초

질소 플라즈마 처리된 활성탄소를 이용한 테트라사이클린의 물리 및 화학 흡착 특성 (Physical and Chemical Adsorption Properties for Tetracycline Using Activated Carbon with Nitrogen Plasma Treatment)

  • 이인우;명성재;민충기;하성민;천서영;이영석
    • 공업화학
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    • 제35권1호
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    • pp.8-15
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    • 2024
  • 본 연구에서는 활성탄소의 테트라사이클린 흡착성능을 향상시키기 위해 5, 10, 및 15분의 시간에 따른 질소 플라즈마 처리를 실시하였다. 모든 질소 플라즈마 처리된 활성탄소는 미처리 활성탄소와 비교하여 테트라사이클린 흡착성능이 개선되었다. 이는 활성탄소에 도입된 질소 작용기가 테트라사이클린과 π-π 상호작용 및 수소 결합을 통하여 화학흡착을 야기하기 때문이다. 특히, 80 W 및 50 kHz의 질소 플라즈마 처리에서, 10분 동안 처리된 활성탄소가 가장 우수한 흡착성능을 가졌다. 이 때, 활성탄소 표면의 질소 함량은 2.03%이며 비표면적은 1,483 m2/g까지 증가하였다. 이렇게 질소플라즈마 처리에 의해 개선된 활성탄소는 물리 및 화학 흡착성능이 향상되었다. 또한, 흡착 실험 결과가 Langmuir 흡착등온식과 유사 2차 반응속도식에 잘 부합하므로, 질소 플라즈마 처리된 활성탄소의 테트라사이클린 흡착은 단분자층으로 이루어지는 화학 흡착이 주도적으로 일어나는 것으로 판단하였다. 결과적으로, 질소 플라즈마 처리된 활성탄소는 주도적인 화학 흡착과 더불어 물리 흡착의 시너지 효과로 수중에서 테트라사이클린을 효율적으로 제거하는 흡착재로 사용될 수 있다.

플라즈마 활성 소결에 있어서 다이스의 온도분포에 미치는 몰드 크기의 영향 (Effect of Mold Dimensions on Temperature Distribution of Die during Plasma Activated Sintering)

  • 이길근;박익민
    • 한국분말재료학회지
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    • 제11권5호
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    • pp.363-368
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    • 2004
  • In the present study, the focus is on the analysis of the effect of the mold dimensions on the temperature distribution of a die during plasma activated sintering. The temperature distribution of a cylindrical mold with various dimensions was measured using K-type thermocouples. The temperature homogeneity of the die was studied based on the direction and dimensions of the die. A temperature gradient existed in the radial direction of the die during the plasma activated sintering. Also, the magnitude of the temperature gradient was increased with increasing sintering temperature. In the longitudinal direction, however, there was no temperature gradient. The temperature gradient of the die in the radial direction strongly depended on a ratio of die volume to punch area.

Surface Characterization of the Activated Carbon Fibers After Plasma Polymerization of Allylamine

  • Lu, Na;Tang, Shen;Ryu, Seung-Kon;Choi, Ho-Suk
    • Carbon letters
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    • 제6권4호
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    • pp.243-247
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    • 2005
  • Plasma polymerization of allylamine subsequently after plasma pre-treatment was conducted on the activated carbon fibers (ACFs) for the immobilization of amine groups in the surface of ACFs. The change of structural properties of ACFs with respect to different polymerization conditions was investigated through BET method. The change of surface morphologies of ACFs with respect to different plasma polymerization power was also studied through AFM. It was found that the structural properties such as specific surface area and micropore volume could be optimized under certain plasma deposition conditions. It was reckoned that treatment and deposition showed adverse effect on plasma polymerization, in which the former developed the micro-structures of the ACFs and the latter tended to block the micro pores. The Fourier transform infrared spectroscopy (FTIR) revealed that the poly(allylamine) was successfully immobilized on the surface of ACFs and the amount of the deposited polymer layer was related to the plasma polymerization power. SEM results showed that the plasma deposited polymer layer were small and homogenously distributed. The size and the distribution of particles deposited were closely related to the plasma polymerization power, too.

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Effect of Acvated Oxygen Plasma on the Crystallinity and Superconductivity of $Yba_2Cu_3-O_{7-x}$ Thin Films Prepated by Reactive Co-evaporation method

  • Chang, Ho-Jung;Kim, Byoung-Chul;Akihama, Ryozo;Song, Jin-Tae
    • 한국재료학회지
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    • 제4권3호
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    • pp.280-286
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    • 1994
  • As-grown $YBa_2Cu_3O_{7-x}$ films on MgO(100)substrates were prepated by a reactive co-evaporation method, and effects of activated oxygen plasma on the crystallinity and superconductivity at substrate temperature ranging from $450^{\circ}C$ to $590^{\circ}C$ were investigated. The film deposited under the activated oxygen plasma at the substrate temperature of $590^{\circ}C$ had a single crystal phase. Whereas, when films were deposited under only oxygen gas, they were not in perfect single crystal phase but with slight polycrystalline nature. When the substrate temperature was $590^{\circ}C$, $Tc_{zero}$'s were 83K and 80K for films with and without activated oxygen plasma, respectively. The critical temperature, the crystal structure and the surface morphology of as-grown films were found to be insensitive to the activated oxygen plasma which is introduced during deposition instead of oxygen gas, but the crystalline quality was improved somewhat by the introduction by the introduction of actvated oxygen plasma.

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STRUCTURAL ANALYSIS OF COPPER PHTHALOCYANINE THIN FILMS FABRICATED BY PLASMA-ACTIVATED EVAPORATION

  • Kim, Jun-Tae;Jang, Seong-Soo;Lee, Soon-Chil;Lee, Won-Jong
    • 한국표면공학회지
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    • 제29권6호
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    • pp.851-856
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    • 1996
  • Copper Phthalocyanine (CuPc) thin films were fabricated on the silicon wafers by plasma activated evaporation method and structural analysis were carried out with various spectroscopies. The CuPc films had dense and smooth morphology and they also showed good mechanical properties and chemical resistance. The main molecular structure of the CuPc, which is the conjugated aromatic heterocyclic ring structure, was maintained even in the plasma process. However, metal-ligand (Cu-N) bands were deformed by the plasma process and the structure became amorphous especially at higher process pressures. Oxygen impurities were incorporated in the film and carboxyl functional groups were formed at the peripheral benzene ring. The structure and morphology of the films were dependent on the process pressure but relatively irrespective of the RF power.

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Influence of Plasma Treatment on Hydrogen Chloride Removal of Activated Carbon Fibers

  • Park, Soo-Jin;Kim, Byung-Joo;Ryu, Seung-Kon
    • Carbon letters
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    • 제5권3호
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    • pp.103-107
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    • 2004
  • The atmospheric pressure plasma treatments ($Ar/O_2$ and $Ar/N_2$) of activated carbon fibers (ACFs) were carried out to introduce hydrophilic functional groups on carbon surfaces in order to enhance the hydrogen chloride gas (HCl) adsorption. Surface properties of the ACFs were determined by XPS and SEM. $N_2$/77 K adsorption isotherms were investigated by BET and D-R (Dubinin-Radushkevich) plot methods. The HCl removal efficiency was confirmed by HCl detecting tubes (range:1~40 or 40~1000 ppm). As experimental results, it was found that all plasma-treated ACFs showed the decrease in the pore volume, but the HCl removal efficiency showed higher level than that of the untreated ACFs. This result indicated that the plasma treatments led to the conformation of hydrophilic functional groups on the carbon surfaces, resulting in the increase of the interaction between the ACFs and HCl gas.

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