• Title/Summary/Keyword: Iodine chemistry

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Phase Separation Characteristics of Low Temperature Bunsen Reactions In Sulfur-Iodine Hydrogen Production Process (황-요오드 수소 제조 공정에서 저온 분젠 반응의 상 분리 특성)

  • Han, Sang-Jin;Lee, Kwang-Jin;Kim, Hyo-Sub;Kim, Young-Ho;Park, Chu-Sik;Bae, Ki-Kwang;Lee, Jong-Gyu
    • Transactions of the Korean hydrogen and new energy society
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    • v.22 no.4
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    • pp.424-431
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    • 2011
  • The Sulfur-Iodine(SI) thermochemical hydrogen production process consists of three sections, which are so called the Bunsen reaction section, the $H_2SO_4$ decomposition section and the HI decomposition section. In order to identify the phase separation characteristics in the reaction conditions with the high solubility of $SO_2$, we conducted the Bunsen reaction at the low temperatures, ranging from 283 to 298K, with the $I_2/H_2O$ molar ratios of 2.5/16.0 and 3.5/16.0. The molar ratios of HI/$H_2SO_4$ products obtained from low temperature Bunsen reactions were ca. 2, indicating that there were no side reactions. The amount of reacted $SO_2$ was increased with decreasing the temperature, while the amounts of unreacted $I_2$ and $H_2O$ were decreased. In the phase separation of the products, the amount of a $H_2SO_4$ impurity in $HI_x$ phase was increased with decreasing the temperature, though the temperature has little affected on HI and $I_2$ impurities in $H_2SO_4$ phase.

Novel Triiodide PVC-Based Membrane Sensor Based on a Charge Transfer Complex of Iodine and Bis(2-hydroxyacetophenone)butane-2,3-dihydrazone

  • Ganjali, Mohammad Reza;Norouzi, Parviz;Shirvani Arani, Simindokht;Salavati Niasari, Masoud
    • Bulletin of the Korean Chemical Society
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    • v.26 no.11
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    • pp.1738-1742
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    • 2005
  • In this study a novel triiodide ion-selective electrode based on a charge transfer complex of iodine and Bis(2-hydroxyacetophenone)butane-2,3-dihydrazone (ICT), as a membrane carrier was prepared. The electrode has a linear dynamic range between 1.0 ${\times}$ $10^{-2}$ and 5.0 ${\times}$ $10^{-7}$ M, with a Nernstian slope of 58. 99 ${\pm}$ 0.3 mV $decade^{-1}$ and detection limit of 3.0 ${\times}$ $10 ^{-7}$ M. The potentiometric response of the proposed sensor is independent of the pH of the solution in the pH range of 3.0-10.0. The electrode possesses the advantages of short conditioning time, fast response time, and especially, very good selectivity over a large number of common organic and inorganic anions. The electrode can be used for at least 6 months without any considerable divergences in the potentials. It was used as an indicator electrode in potentiometric titration of triiodide ion with thiosulfate.

Synthesis, Antimicrobial Activity of Alkyl/Aryl Di[3-(4-substitutedphenyl)-2-Thioxo-3,4-Dihydro-2H-1,3,2λ5-Benzoxazaphosphinin-2-yl] Phosphates (Alkyl/Aryl Di[3-(4-substitutedphenyl)-2-Thioxo-3,4-Dihydro-2H-1,3,2λ5-Benzoxazaphosphinin-2-yl] Phosphates의 합성 및 항균활성시험)

Adsorptivities and Particle Surface Properties of the Activated Carbon Made from Rice-chaff (왕겨로부터 제조한 활성탄의 입자표면특성과 흡착력)

  • Lee, Dong-Sun;Lee, Myung-Hwan;Lee, Yoon-Joong;Ahn, Moon-Gyu
    • YAKHAK HOEJI
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    • v.32 no.3
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    • pp.187-193
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    • 1988
  • An activated carbon which showed big adsorption capacities of iodine, potassium permanganate and phenol was prepared from the Korean ricechaff. By scanning electron micrographs and IR spectra, it was observed that the organic components in the rice-chaff were decomposed to carbon dioxide and vapor by the pyrolysis and the activation, that activated carbon particles had carbon-carbon structures with a lot of microporosity. The adsorption capacities of iodine, potassium permanganate and phenol were determined. The adsorption isotherm of phenol was well fitted in Freundlich's equation.

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Charge-Transfer Complex Formation of Amines with Organic Halides (II) Complex Forming Tendency by Various Electron Acceptors (아민과 有機할로겐 化合物間의 Charge Transfer Complex 形成에 關한 硏究 (II) Electron Acceptor 에 따른 Charge Transfer Complex 形成能에 關한 硏究)

  • Kim, Yoo-Sun;Oh, Jung-Hee
    • Journal of the Korean Chemical Society
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    • v.11 no.4
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    • pp.126-131
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    • 1967
  • Various amines (Triethylamine, Diethylamine, Dimethylaniline, Pyridine and Diphenylamine) and electron acceptors (Carbontetrachloride, iodine monochloride and iodine) were reacted in the hexane solvent system to form a charge transfer complex in each case. The tendency of forming a charge transfer complex by these electron acceptors was proportional to the basicity of amines and the different type of complex was formed as the polarity of electron donor had markedly changed, which were identified by ultraviolet spectrophotometry. A correlation between the formation of complex and the basicity of amine and the polarity of electron acceptor was discussed.

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The Complexes of Aromatic Amines with Iodine or Iodine Monochloride in Carbon Tetrachloride (방향족아민과 요오드 또는 일염화요오드 사이의 錯物에 관한 연구)

  • Choi, Sang-Up;Lee, Bu-Yong
    • Journal of the Korean Chemical Society
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    • v.11 no.3
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    • pp.100-104
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    • 1967
  • The systems of aromatic amines such as aniline, N,N-dimethylaniline and N,N-diethylaniline with iodine or iodine monochloride in carbon tetrachloride have been examined spectrophotometrically. The results indicate the formation of one to one molecular complexes. The equilibrium constants obtained at room temperature for formation of the complexes are as follows: $C_6H_5NH_2{\cdot}I_2\;2.05$, $C_6H_5N(CH_3)_2{\cdot}I_2\;15.2$, $C_6H_5N(C_2H_5)_2{\cdot}I_2\;35.5$, $C_6H_5NH_2{\cdot}ICl\;18.5$, $C_6H_5N(CH_3)_2{\cdot}ICl\;25.6$, and $C_6H_5N(C_2H_5)_2\;42.0$ l $mole^{-1}$.

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Characteristics of Activated Carbon Prepared from Waste Citrus Peel by KOH Activation (KOH 활성화법으로 제조한 폐감귤박 활성탄의 특성)

  • Kam, Sang-Kyu;Kang, Kyung-Ho;Lee, Min-Gyu
    • Applied Chemistry for Engineering
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    • v.28 no.6
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    • pp.649-654
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    • 2017
  • An activated carbon was prepared from waste citrus peel produced in large amounts in Jeju Island, Korea, using KOH activation and its characteristics was examined. Under the condition of the KOH ratio between 100 and 300%, activation temperature from 400 to $900^{\circ}C$ and activation time from 0.5 to 1.5 h, the iodine adsorptivity of the activated carbon prepared increased but the yield decreased with respect to the increase of each conditions. The iodine adsorptivity and yield of the activated carbon prepared at the activation time of more than 1.5 h were similar to those of using 1.5 h. In addition, as the KOH ratio increased, the specific surface area and pore volume of the activated carbon increased, but the pore diameter decreased. The activated carbon has an average pore diameter of $20{\sim}25{\AA}$. Also, the activated carbon prepared at 300% KOH and $900^{\circ}C$ for 1.5 h has the highest specific surface area of $1,527m^2/g$ and iodine adsorptivity of 1,246 mg/g.

The Effects of Charge Transfer Complex on the Reaction of Aniline and Iodine (Aniline과 Iodine간의 반응에 있어서 전하이동 착물의 영향)

  • Oh-Yun Kwon;U-Hyon Paek;Eung-Ryul Kim
    • Journal of the Korean Chemical Society
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    • v.36 no.2
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    • pp.174-179
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    • 1992
  • Reaction of aniline and iodine in$CHCl_3,\;CH_2Cl_2 : CHCl_3$(1 : 1), and $CH_2Cl_2$ has been studied kinetically by using conductivity method, Pseudo first-order rate constants ($k_{obs}$) and second-order rate constants ($k_{obs}$/[aniline]) are dependent on the aniline concentration. Second-order rate constants obtained were increased with increasing aniline concentration. We analysed these results on the basis of formation of charge transfer complex as reaction intermediate. From the construction of react ion scheme and derivation of rate equation, we calculated equilibrium constants and activation parameters for the formation and transformation of charge transfer complex. The equilibrium constants were decreased by an increase in the dielectric constant of the solvent and the value is 1.7-3.7$M^{-1}$. The rate of transformation are markedly affected by the solvent polarity. ${\Delta}H^{\neq}$ is about 14.2kJ/mol, and ${\Delta}S^{\neq}$ is large negative value of -243J/mol K.

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A Study on the Charge Transfer Complex Formed between 2,4-Dihalogen or 2,4,6-trihalogenanisole Derivatives and Iodine or Iodine Monochloride (2,4-디할로겐 또는 2,4,6-트리할로겐아니솔 유도체들과 요오드 또는 염화요오드 사이에 생성된 전하이동 착물에 관한 연구)

  • Kim, You Sun;Park, Kyung Bae
    • Journal of the Korean Chemical Society
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    • v.20 no.5
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    • pp.380-390
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    • 1976
  • The trends of forming a charge transfer complex have been studied for electron donors such as anisole, 4-chloroanisole, 2,4-dichloroanisole, 2-fluoro-4-chloroanisole, 2-bromo-4-chloroanisole, 2-iodo-4-chloroanisole, 2-fluoro-4,6-dichloroanisole, 2,4,6-trichloroanisole, 2-bromo-4,6-dichloroanisole, 2-iodo-4,6-dichloroanisole, and 2-iodo-4,5,6-trichloroanisole, and electron acceptors such as iodine and iodine monochloride in the carbon tetrachloride or the hexane solvent system. It was found that the formation of a charge transfer complex was influenced by the Van der Waals Radii of the 2-halogen atoms on the benzene ring and further the overall steric moiety of the molecule of the electron donor. These trends were also experienced in a system of chloroform and one of the prementioned electron donor by means of a nuclear magnetic resonance spectrometry. The spectrophotometrical data on the formation of the charge transfer complex were presented and the results were discussed with views of the steric structure of the 2-halogen atom on the benzene ring.

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The Effect of Pressure on the Electrophilic Substitution Reaction of Tetramethyltin with Iodine (Tetramethyltin과 Iodine의 친전자 치환반응에 대한 압력의 영향)

  • Kwun Oh Cheun;Lee Young Hoon
    • Journal of the Korean Chemical Society
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    • v.37 no.6
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    • pp.555-561
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    • 1993
  • Ultraviolet spectrophotometric investigation has been carried out on the system of iododestannylation iodine and tetramethyltin in methanol. The transient CT absorption spectrum can be observed and the subsequent disappearance of CT absorption spectrum was accompained by the cleavage of tetramethyltin with iodine. From there, the rate constants for the iododestannylation were determined at 10, 25 and 35$^{\circ}C$ up to 1600 bar and the reaction rates were increased with increasing temperature and pressure. From these rate constants, the values of the activation parameters (${\Delta}V^\neq,\;{\Delta}{\beta}^{\neq},\;{\Delta}H^{\neq},\;{\Delta}S^{\neq}\;and\;{\Delta}G^{\neq}$) were obtained. The activation volumes and activation compressibility coefficients were both negativity. The activation enthalpies were positive and activation entropies had large negative values. From these values discussed in terms of solvent structure variation of transition state and mechanism. From these results, it was found that the reaction is followed with $S_E2$ mechaenism and weakened $S_E2$ mechanism nature by increasing pressure.

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