• 제목/요약/키워드: Decomposition gas

검색결과 702건 처리시간 0.04초

The Pressure Dependence of the Rate Constant for the t-Butoxy Radical Decomposition Reaction

  • Park, Jung-Mee;Song, Nam-Woong;Choo, Kwang-Yul
    • Bulletin of the Korean Chemical Society
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    • 제11권4호
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    • pp.343-347
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    • 1990
  • A thermal decomposition of the tert-butoxy radical has been studied in the gas phase over the pressure range of 1-200 torr at $413_{\circ}K$ using di-tert-butyl peroxide + trimethylsilane mixtures. The relative rate constants were obtained by studying the competitive reactions between tert-butoxy radical decomposition 4(t-BuO·→ CH_3COCH_3 + CH_3·)$ and hydrogen abstraction reaction from trimethylsilane $(t-BuO·+ HSi(CH_3)_3 → t-BuOH + Si(CH_3)_3)·).$ The conventional RRKM calculations were carried out to compare the observed fall-off behavior of the decomposition rate constant $({\kappa}_d)$ with the theoretical predictions using reasonable values of input parameters. In all cases the calculated half-rate pressure $(P_{1/2})$ were significantly higher than those observed. The failure of RRKM to reproduce the fall-off behavior led us to suggest that not all of vibrational modes contribute to excitation (leading to decomposition) on the same time scale.

황-요오드 수소 제조 공정의 분젠 반응 부분에서 $O_2$의 역할 (The Role of Oxygen in Bunsen Reaction Section of Sulfur-Iodine Hydrogen Production Process)

  • 홍동우;김효섭;김영호;박주식;배기광
    • 한국수소및신에너지학회논문집
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    • 제21권4호
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    • pp.278-285
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    • 2010
  • The Sulfur-Iodine (SI) thermochemical hydrogen production process of a closed cycle consists of three sections, which are so called the Bunsen reaction section, the $H_2SO_4$ decomposition section and the HI decomposition section. To identify the role of oxygen that can be supplied to the Bunsen reaction section via the $H_2SO_4$ decomposition section, Bunsen reactions with a $SO_2,\;SO_2-O_2$ mixture and $SO_2-N_2$ mixture as feed gases were carried out using a stirred reactor in the presence of $I_2/H_2O$ mixture. As the results, the amounts of $I_2$ unreacted under the feed of mixture gases were higher than those under the feed of $SO_2$ gas only, and the amount of HI produced was relatively decreased. The results of Bunsen reaction using $SO_2-O_2$ mixture were similar to those using $SO_2-N_2$ mixture. It may be concluded that an oxygen in $SO_2-O_2$ mixture has a role as a carrier gas like a nitrogen in $SO_2-N_2$ mixture. The effects of oxygen were decreased with increasing temperature and decreasing oxygen content in $SO_2-O_2$ mixture.

Thermal Decomposition of Hydrated Copper Nitrate [$Cu(NO_3)_2{\cdot}3H_2O$] on Activated Carbon Fibers

  • Ryu, Seung-Kon;Lee, Woon-Kyu;Park, Soo-Jin
    • Carbon letters
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    • 제5권4호
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    • pp.180-185
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    • 2004
  • Thermolysis of $Cu(NO_3)_2{\cdot}3H_2O$ impregnated activated carbon fiber (ACF) was studied by means of XRD analysis to obtain Cu-impregnated ACF. $Cu(NO_3)_2{\cdot}3H_2O$ was converted into $Cu_2O$ around $230^{\circ}C$. The $Cu_2O$ was reduced to Cu at $400^{\circ}C$, resulting in ACF-C(Cu). Some Cu particles have a tendency to aggregate through the heat treatment, resulting in the ununiform distribution in ACF. Catalytic decomposition of NO gas has been performed by Cu-impregnated ACF in a column reactor at $400^{\circ}C$. Initial NO concentration was 1300 ppm diluted in helium gas. NO gas was effectively decomposed by 5~10 wt% Cu-impregnated ACF at $400^{\circ}C$. The concentration of NO was maintained less than 200 ppm for 6 hours in this system. The ACF-C(Cu) deoxidized NO to $N_2$ and was reduced to ACF-$C(Cu_2O)$ in the initial stage. The ACF-$C(Cu_2O)$ also deoxidized NO to $N_2$ and reduced to ACF-C(CuO). This ACF-C(CuO) was converted again into ACF-C(Cu) by heating. There was no consumption of ACF in mass during thermolysis and catalytic decomposition of NO to $N_2$ by copper. The catalytic decomposition was accelerated with increase of the reaction temperature.

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Photocatalytic activity of $TiO_2$ on nano-diamond powder prepared by Atomic Layer Deposition

  • Kim, Kwang-Dae;Dey, Nilay Kumar;Seo, Hyun-Ook;Kim, Dong-Wun;Nam, Jong-Won;Sim, Chae-Won;Jeong, Myung-Geun;Kim, Young-Dok
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2011년도 제40회 동계학술대회 초록집
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    • pp.425-425
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    • 2011
  • The photocatalytic decomposition of toluene gas was investigated with $TiO_2$ on nano-diamond powder (NDP) under UV irradiation. Atomic layer deposition (ALD) was used for the growth of $TiO_2$ on the NDP. The structure and surface properties of catalysts were characterized by X-ray Diffraction (XRD), X-ray Photoelectron Spectroscopy (XPS) and Transmission Electron Microscopy (TEM). The photocatalytic activity for the toluene decomposition was evaluated by measuring the concentration change of toluene and $CO_2$ gas with gas chromatography (GC)-flame ionization detector (FID) system. The photocatalytic activities of $TiO_2$/NDP catalysts were compared with that of P-25. The rate of initial photocatalytic decomposition of toluene for the $TiO_2$/NDP catalysts was relatively lower when compared to P-25. The photocatalytic activity of P-25 was rapidly decreased with time, whereas, the deactivation of $TiO_2$/NDP catalysts was less pronounced. Therefore, as the reaction time increased, the photocatalytic activity of $TiO_2$/NDP catalysts became higher than that of P-25. The intermediates such as benzaldehyde or benzoic acid, etc were more easily adhered to the active site on the P-25 surface during reaction, resulting in easier deactivation of P-25. These results could be confirmed using FT-IR spectroscopy. We suggest that the NDP used as substrate can reduce the deactivation of $TiO_2$ on the surface.

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박막 산화티타늄과 Sr4Al14O25 축광체를 조합한 복합소재의 벤젠가스에 대한 광촉매 반응 (The Photocatalytic Reaction of the Thin Film TiO2-Sr4Al14O25 Phosphors for Benzene Gas)

  • 김승우;김정식
    • 한국세라믹학회지
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    • 제50권1호
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    • pp.50-56
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    • 2013
  • Phosphorescent materials coated with titanium dioxide were fabricated and photocatalytic reactions between these materials and VOCs gases were examined. A thin film (approx. 100 nm) of nanosized $TiO_2$ was deposited on the $Sr_4Al_{14}O_{25}$ : $Eu^{2+}$, $Dy^{3+}$, $Ag^+$ phosphor using low-pressure chemical vapor deposition (LPCVD). The characteristics of the photocatalytic reaction were examined in terms of the decomposition of benzene gas using a gas chromatography (GC) system under ultraviolet (${\lambda}$ = 365 nm) and visible light (${\lambda}$ > 420 nm) irradiation. $TiO_2$-coated $Sr_4Al_{14}O_{25}$ : $Eu^{2+}$, $Dy^{3+}$, $Ag^+$ phosphor showed different photocatalytic behavior compared with pure $TiO_2$. $TiO_2$-coated phosphorescent materials showed a much faster photocatalytic decomposition of benzene gas under visible irradiation compared to the pure $TiO_2$ for which the result was practically negligible. This suggests that the extension of the absorption wavelength to visible light occurred through energy band bending by a heterojunction at the interface of the $Sr_4Al_{14}O_{25}-TiO_2$ composite. Also, the $Sr_4Al_{14}O_{25}-TiO_2$ composite showed the photocatalytic decomposition of benzene in darkness due to the photon light emitted from the $Sr_4Al_{14}O_{25}$ phosphors.

열분해법과 혼합가스 질화법으로 합성한 FePtN 나노 입자의 특성 (Characterization of FePtN Nano-particles Synthesized by Thermal Decomposition and Mixed-gas Nitrification)

  • 오영우
    • 한국자기학회지
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    • 제26권4호
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    • pp.129-132
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    • 2016
  • 열분해법으로 합성한 FePt 나노입자를 $NH_3+H_2$ 혼합가스 질화법으로 상변태와 동시에 질화시킨 FePtN 나노입자의 특성을 분석하였다. 초기 합성된 FePt 나노입자는 fcc 구조를 가졌으며, 보자력과 포화자화는 각각 247.34 Oe와 27.308 emu/g를 나타내었다. 혼합가스 질화법으로 열처리한 입자는 XRD 분석 결과 fcc 구조에서 fct 구조로 상변태가 진행되었으며, 열처리 온도의 증가에 따라 (111) 피크의 $2{\theta}$가 shift되는 특성을 나타내었다. fct 구조의 FePtN의 보자력과 포화자화는 각각 1058.2 Oe and 32.718 emu/g를 나타내었으며, 합성된 FePtN 나노자성입자는 고밀도 자기기록매체와 생체의료 분야에서의 응용이 기대 된다.

가스 감응용 3차원 구조체 TiO2 박막 성장기구 (Growth mechanism of three dimensionally structured TiO2 thin film for gas sensors)

  • 문희규;윤석진;박형호;김진상
    • 센서학회지
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    • 제18권2호
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    • pp.110-115
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    • 2009
  • Polystyrene (PS) microspheres were used to good advantage as a template material to prepare macroporous $TiO_2$ thin films. This is enabled to run the thermal decomposition of the PS without the collapsing of the 3-D macroporous framework during the calcination step. $TiO_2$ thin films were deposited onto the colloidal templated substrates at room temperature by RF sputtering, and then samples were thermally treated at $450^{\circ}C$ for 40.min in air to remove the organic colloidal template and induce crystallization of the $TiO_2$ film. The macroporous $TiO_2$ thin film exhibited a quasi-ordered partially hexagonal close-packed structure. Burst holes, estimated to be formed during PS thermal decomposition, are seen as the hemisphere walls. the inner as well as the outer surfaces of the hollow hemispheres formed by the method of thermal decomposition can be easily accessed by the diffusing gas species. As a consequence, the active surface area interacting with the gas species is expected to be enlarged about by a factor of fourth as large as compared to that of a planar films. Also the thickness at neighboring hemisphere could be controlled a few nm thickness. If the acceptor density becomes as large that depletion width reaches those thickness, the device is in the pinch off-situation and a strong resistance change should be observed.

CH4로 환원된 페라이트를 이용한 CO2 분해 (Decomposition of CO2 with Reduced ferrite by CH4)

  • 신현창;정광덕;주오심;한성환;김종원;최승철
    • 한국세라믹학회지
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    • 제39권7호
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    • pp.657-662
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    • 2002
  • 페라이트를 이용한 $CO_2$분해 반응에서 부분 산화로 CO와 $H_2$의 제조가 가능한 C $H_4$를 사용하여 CuF $e_2$ $O_4$와 NiF $e_2$ $O_4$를 환원시킨 후, 환원된 페라이트를 이용하여 $CO_2$분해 반응 연구를 진행하였다. C $H_4$와 페라이트의 환원 반응에서, $700^{\circ}C$부터 $H_2$와 CO가 생성되었으며, 80$0^{\circ}C$까지의 반응에서 페라이트는 산소부족형 철산화물(Fe $O_{1-{\delta}}$(0$\leq$$\delta$$\leq$1))과 금속 Cu와 Ni의 혼합물 상태로 환원되었다. 환원된 페라이트를 이용한 $CO_2$분해 반응에서, 환원된 CuF $e_2$ $O_4$와 NiF $e_2$ $O_4$보다 높은 반응성을 나타내면서 더 많은 양의 $CO_2$를 분해하였다 이 반응에서 $CO_2$분해는 산소부족형 철산화물의 산화에 의해서만 일어났고, 치환된 2가 양이온은 산화되지 않은 금속 상태로 존재하였다. 이와 같은 결과를 통하여 C $H_4$를 이용하여 페라이트를 환원시킨 후, $CO_2$를 분해하는 공정은 $H_2$와 CO 같은 유용한 가스 제조는 물론 이를 이용하여 $CO_2$도 분해할 수 있는 활용가치가 매우 높은 공정으로 평가된다.

Removal Characteristics of Benzene in Dielectric Barrier Discharge Process

  • Chung, Jae-Woo
    • Journal of Korean Society for Atmospheric Environment
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    • 제18권E1호
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    • pp.13-20
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    • 2002
  • The electrical and chemical properties of the dielectric barrier discharge (DBD) process for the benzene removal were investigated. The benzene removal was initiated with the applied voltage higher than the discharge onset value. The removal efficiency over 95 % was obtained at approximately 1.6 kJ lite $r^{r-1}$ of the electrical energy density. The increase of the inlet concentration decreased the removal efficiency. However, the benzene decomposition rate increased with the inlet concentration . While the increase of the gas retention time enhanced the removal efficiency, the decomposition rate decreased. Identification of the optimum condition between the decomposition rate and the removal efficiency is required for field applications of the DBD process.s.