• Title/Summary/Keyword: Surface activation

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Kinetics of Oxidative Coupling of Methane over NaCl/ZnO/α-Al2O3 Catalyst (NaCl/ZnO/α-Al2O3 촉매상에서 메탄의 Oxidative Coupling의 속도론적 고찰)

  • Kim, Sang-Chai;Seo, Ho-Joon;Sunwoo, Chang-Shin;Yu, Eui-Yeon
    • Applied Chemistry for Engineering
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    • v.3 no.2
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    • pp.256-265
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    • 1992
  • The kinetics for the oxidative coupling of methane over NaCl(30wt%)/ZnO(60wt%)/${\alpha}-Al_2O_3$ catalyst was investigated, and then the active oxygen species were discussed. The conversion rate of methane was measured at the atmospheric pressure with various combinations of partial pressure of methane and oxygen at temperature range of $650^{\circ}C{\sim}750^{\circ}C$, at conversions less than with 10%. These rate data were then used to verify the proposed Langmuir-Hinshelwood kinetic equation. The rate limiting step appeared to be the formation of the methyl radicals by the reactin of the adsorbed methane and the adsorbed oxygen, which were adsorbed on the different active sites of the catalyst. The activation energy of the methyl radical formation was estimated to be ca. 39 kcal/mol. From the kinetic studies, the oxygen species respolsible for the formation of methyl radicals was proposed to be diatomic oxygen such as $O{_2}{^{2-}}$ or $O_2{^-}$ on the surface.

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The Effect of Fluorine Based Emulsion on the Watertightness Properties of Portland Cement (시멘트 수밀성에 대한 불소계 에멀젼의 영향)

  • Kang, Hyun Ju;Song, Myong Shin;Song, Su Jae;Park, Su Haeng
    • Applied Chemistry for Engineering
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    • v.20 no.5
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    • pp.505-510
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    • 2009
  • It is well known that the properties of concrete such as the compressive strength, water permeability, water tightness and durability are affected by micro-structure in hardened cement paste. Especially, for durability of concrete, watertightness of cementitious materials is the most critical property among various properties. Recently, many types of material such as organic and/or inorganic materials are used for watertightness of concrete. In this study, we examined the effect of fluorine-based emulsion on watertightness property. And we also discussed the change of microstructure and formation of hydrates in hardened cement paste by the addition of fluorine-based emulsion. Cement paste with fluorine-based emulsion showed improvement of watertightness by the surface activation of cement paste and by formation of $CaF_2$ fine crystals in cement pore structure.

Fabrication and Characterization of LPCVD $P_2O_5-SiO_2$ Films for Inegrated Optics (1) -LPCVD of TEOS and TMPite (LPCVD $P_2O_5-SiO_2$ 집적광학박막의 제작 및 특성 연구(1) -TEOS와 TMPite의 LPCVD-)

  • 정환재
    • Korean Journal of Optics and Photonics
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    • v.4 no.3
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    • pp.266-275
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    • 1993
  • We made $P_2O_5-SiO_2$ films on silicon for integrated optics application by low pressure chemical vapor deposition using TEOS (tetraethylorthosilicate) and TMPite (trimethylphosphite) and studied the deposition characteristics. The activation energy of the reaction was changed from 54.6 kcal/mole to 39.2 kcal/mole by incorporating the TMPite into the reaction of TEOS. The deposition rate and the P concentration of films increased in proportion to the flow of TMPite. As the deposition temperature increased, the deposition rate of the films increased but the P concentration decreased. The fabricated films showed the increase of refractive index of 0.0019 per 1 wt% of P concentration. The nonuniformity of films was ${\pm}$7% in thickness and ${\pm}$0.5wt% in P concentration and we showed this'nonuniformity is due to the nonuniform transport of TMPite. The films of more than 10wt% P concentration developed phosphoric acid on its surface when exposed to air for long time.

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Comparison of Abdominal Muscle Activity during Exercises Using a Sling and Swiss-ball

  • Kim, Byung-Kon;Lee, Myoung-Hee;Kim, Gi-Chul
    • The Journal of Korean Physical Therapy
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    • v.25 no.3
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    • pp.149-154
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    • 2013
  • Purpose: Spinal instability due to weakness of abdominal muscles is one of the major causes that induces low back pain (LBP). The purpose of this study was to investigate any differences in abdominal muscle activity during curl up, roll out, and jack knife exercises using a swiss-ball or sling. Methods: Twenty healthy subjects were randomly assigned into either a swiss-ball exercise group (SBEG) or a sling exercise group (SEG). Subjects performed curl up, roll out and jack knife exercises using the swiss ball or sling. Activity of abdominal muscles (rectus abdominis and external oblique muscle) was assessed using surface EMG and normalized maximal voluntary isometric contraction (MVIC). The significance of differences between the sling exercise group and the swiss-ball exercise group was evaluated by the independent t-test. Results: These Results indicated that activities of rectus abdominis on right and left of the SEG during the curl up exercise were significantly greater than the SBEG. During the roll out exercise, activity of the abdominal muscle was not significantly different between the SEG and SBEG. In addition, during the jack knife exercise, activities of the right rectus abdominis and left external oblique muscle in the SEG were significantly greater than the SBEG. Conclusion: In conclusion, activity of the abdominal muscles was maximized when curl up and jack knife exercise were performed using the sling rather than the swiss-ball. Therefore, if increased activation of the abdominal muscle is the goal of an exercise program, curl up and jack knife exercises may be useful.

Immune-modulator Effect of Zanthoxyli Pericarpium Watet Extract (천초 추출물의 면역 조절 효과)

  • Shin, Hye-Young;Chang, In-Ae;Zhang, Wen-Ji;Kim, Youn-Chul;Yun, Yong-Gab;Park, Hyun
    • Journal of Physiology & Pathology in Korean Medicine
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    • v.22 no.2
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    • pp.410-414
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    • 2008
  • In the recently, increased concern has been focused on the pharmacology and clinical utility of herbal extracts and derivatives as a drug or adjunct to chemotherapy and immunotherapy. Here we investigated the modulatory effects of the extract of Zanthoxyli Pericarpium (ZP) in production of inflammatory mediators from Raw264.7 cells and expression of CD86, CD14, toll-like receptor (TLR)-4 from peritoneal macrophage. ZP enhanced the production of NO and $TNF-{\alpha}$ as well as mRNA expression of iNOS and $TNF-{\alpha}$. Treatment of peritoneal macrophage with ZP resulted in the enhanced cell-surface molecules expression of CD86, CD14 and TLR4. We assayed the effect of ZP in cell proliferation and production of $IFN-{\gamma},\;TNF-{\alpha}$. ZP increased Con A-induced cell proliferation and production of $IFN-{\gamma},\;TNF-{\alpha}$. These studies indicate that ZP induces macrophage activation and suggest the possible use of ZP in macrophage-based immunotherapies

Ultrathin Titania Coating for High-temperature Stable $SiO_2$/Pt Nanocatalysts

  • Reddy, A. Satyanarayana;Kim, S.;Jeong, H.Y.;Jin, S.;Qadir, K.;Jung, K.;Jung, C.H.;Yun, J.Y.;Cheon, J.Y.;Joo, S.H.;Terasaki, O.;Park, Jeong-Young
    • Proceedings of the Korean Vacuum Society Conference
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    • 2011.08a
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    • pp.217-217
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    • 2011
  • Recently, demand for thermally stable metal nanoparticles suitable for chemical reactions at high temperatures has increased to the point to require a solution to nanoparticle coalescence. Thermal stability of metal nanoparticles can be achieved by adopting core-shell models and encapsulating supported metal nanoparticles with mesoporous oxides [1,2]. However, to understand the role of metal-support interactions on catalytic activity and for surface analysis of complex structures, we developed a novel catalyst design by coating an ultra-thin layer of titania on Pt supported silica ($SiO_2/Pt@TiO_2$). This structure provides higher metal dispersion (~52% Pt/silica), high thermal stability (~600$^{\circ}C$) and maximization of the interaction between Pt and titania. The high thermal stability of $SiO_2/Pt@TiO_2$ enabled the investigation of CO oxidation studies at high temperatures, including ignition behavior, which is otherwise not possible on bare Pt nanoparticles due to sintering [3]. It was found that this hybrid catalyst exhibited a lower activation energy for CO oxidation because of the metal-support interaction. The concept of an ultra-thin active metal oxide coating on supported nanoparticles opens-up new avenues for synthesis of various hybrid nanocatalysts with combinations of different metals and oxides to investigate important model reactions at high-temperatures and in industrial reactions.

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Size Tailored Nanoparticles of ZrN Prepared by Single-Step Exothermic Chemical Route

  • Lee, Sang-Ki;Park, Kyung-Tae;Ryu, Hong-Youl;Nersisyan, Hayk H.;Lee, Kap-Ho;Lee, Jong-Hyeon
    • Korean Journal of Materials Research
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    • v.22 no.5
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    • pp.243-248
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    • 2012
  • ZrN nanoparticles were prepared by an exothermic reduction of $ZrCl_4$ with $NaN_3$ in the presence of NaCl flux in a nitrogen atmosphere. Using a solid-state combustion approach, we have demonstrated that the zirconium nitride nanoparticles synthesis process can be completed in only several minutes compared with a few hours for previous synthesis approaches. The chemistry of the combustion process is not complex and is based on a metathesis reaction between $ZrCl_4$ and $NaN_3$. Because of the low melting and boiling points of the raw materials it was possible to synthesize the ZrN phase at low combustion temperatures. It was shown that the combustion temperature and the size of the particles can be readily controlled by tuning the concentration of the NaCl flux. The results show that an increase in the NaCl concentration (from 2 to 13 M) results in a temperature decrease from 1280 to $750^{\circ}C$. ZrN nanoparticles have a high surface area (50-70 $m^2/g$), narrow pore size distribution, and nano-particle size between 10 and 30 nm. The activation energy, which can be extracted from the experimental combustion temperature data, is: E = 20 kcal/mol. The method reported here is self-sustaining, rapid, and can be scaled up for a large scale production of a transition metal nitride nanoparticle system (TiN, TaN, HfN, etc.) with suitable halide salts and alkali metal azide.

Tetramethyl orthosilicate(TMOS) Synthesis by the Copper-Catalyzed Reaction of the Metallic Silicon with Methanol (II) - The Kinetics of the Copper-Catalyzed Reaction of Silicon with Methanol - (구리 촉매하에서 규소와 메탄올의 반응에 의한 Tetramethyl orthosilicate(TMOS) 합성(제2보) - 구리촉매하에서 규소와 메탄올과의 반응의 반응속도론 -)

  • Soh, Soon-Young;Won, Ho-Youn;Chun, Yong-Jin;Lee, Bum-Jae;Yang, Hyun-Soo
    • Applied Chemistry for Engineering
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    • v.10 no.2
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    • pp.259-262
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    • 1999
  • The copper-catalyzed reaction of silicon with methanol was carried out in a mixed bed reactor to obtain tetramethyl orthosilicate (TMOS). In order to determine the kinetics of the reaction per active site on the silicon surface, a flow rate transition technique was employed. A kinetic study showed the reaction was in Linear relationship with the amount of contact mass and independent on the concentration of methanol. This result indicated that the rate-determining step was not the chemical process involving methanol, but the formation of silicon intermediate on the contact mass. On the basis of optimum experimental conditions, the maximum TMOS formation rate per g-silicon is 0.030 (g/min) at $210^{\circ}C$, in which activation energy was 8.5 kcal/mol and reaction rate equation was $k=4.09{\times}10^4\;exp$ ($-4.73{\times}10^3/T$).

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Theoretical Approach of the Quartz Dissolution Rate under Various Temperature, pH and Applied Stress Conditions (다양한 온도, pH, 압력 조건하에서의 석영용해속도에 대한 이론적 접근)

  • Choi, Junghae
    • Economic and Environmental Geology
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    • v.50 no.6
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    • pp.509-515
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    • 2017
  • Quartz is the most abundant mineral in the Earth's continental crust. Therefore, understanding of quartz dissolution and precipitation is very important to know about weathering processes and interactions between rocks and water in hydrothermal and metamorphic environments. This paper presents a basic review on the research about quartz dissolution mechanism under various physico-chemical conditions. We rearranged the relationship between each physico-chemical factor and dissolution mechanism from the results of previous researchers in this paper. From this result, we understood that quartz dissolution and precipitation are affected by each factor such as temperature, pH, and applied stress conditions at contact point. In particular, we recognized that the high pH and temperature conditions have different anion concentrations on mineral's surface. As a result, high pH and temperature conditions have a better effect than applied stress condition to the quartz dissolution mechanism.

The Optimum of $CO_2$ Decomposition using Spinel Phase Magnetite (스피넬상 마그네타이트를 이용한 $CO_2$ 분해의 최적조건)

  • Ryu, Dae-Sun;Hong, Phil-Sun;Lee, Poong-Hun;Kim, Soon-Tae
    • Journal of the Korean Ceramic Society
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    • v.38 no.10
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    • pp.901-907
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    • 2001
  • Magnetite was synthesized using $0.2M-FeSO_4{\cdot}7H_{2}O$ and 0.5 M-NaOH by air oxidation method for carbon dioxide decomposition to carbon. The carbon dioxide decomposition was successfully carried out after reduction of ${Fe_3}{O_4}$ for 2 hrs using hydrogen gas. The carbon dioxide decomposition at 325, 350, 375, 400, $425^{\circ}C$, 88% was the highest at $350^{\circ}C$ and the activation energy of ${Fe_3}{O_4}$ in carbon dioxide decomposition was 30.96 kJ/mol. After $CO_2$ decomposition, the carbon of surface of catalyst reacted with hydrogen produced methane.

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