• Title/Summary/Keyword: 요오드이온

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Photo-induced Cationic Polymerization of Vinyl Ethers in the presence of Diphenyliodonium Salts (I) (디페닐요오드늄 염 존재하에서의 비닐 에테르의 광양이온중합 (I))

  • 권순홍;마석일
    • Proceedings of the Korean Fiber Society Conference
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    • 2002.04a
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    • pp.45-48
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    • 2002
  • 양이온 리빙 중합은 분자량 분포가 좁으며 분자량 및 말단기를 조절할 수 있고 블록공중합체의 합성이 용이하다는 장점이 있어 많은 연구들이 진행되어 왔다$^1$. 그러나 액체 또는 기체상의 개시제를 사용함으로 엄격히 건조된 상태의 중합계를 유지하기 위해 많은 주의를 기울여야 하는 단점이 있다. 본 연구실에서는 이러한 단점을 극복하기 위해 고체상인 요오드화 디페닐요오드늄(DPII)와 요오드화 아연을 광양이온 개시계로 이용한 이소부틸비닐에테르(IBVE)의 광양이온 리빙 중합을 보고한 바 있다. (중략)

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Removal of I- and IO3- from Aqueous Solution (활성알루미나를 이용하여 방사성 폐수 중 I-와 IO3-를 제거하는 방법)

  • Lim, Heon-Sung;Lee, Sueg-Geun
    • Analytical Science and Technology
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    • v.22 no.6
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    • pp.519-523
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    • 2009
  • $^{129}I$ is especially one of the most harmful radioactive elements because of its long half-life ($t_{1/2}$=$1.7{\times}10^7$ yr). The efficient removal of iodide ($I^-$) and iodate (${IO_3}^-$) in a aqueous solution by adsorption using activated alumina and activated carbon was studied. The removal efficiency was over 99% for iodide ion with silver treated basic alumina and iodate ion with acidic alumina or silver treated acidic alumina without any chemical addition or physical treatments.

Spectrophotometric Determination of Trace Amount of Sulfide by Formation of Iodide and Its Solvent Extraction with Mehtylene Green (요오드이온 생성 및 Methylene Green과의 용매추출에 의한 미량 황이온의 분광광도법 정량)

  • Kam, Sang-Kyu;Kim, Kyung-Youn
    • Analytical Science and Technology
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    • v.7 no.3
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    • pp.261-269
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    • 1994
  • The iodide formed stoichiometrically for sulfide by its oxidation with iodate was extracted as an ion-pair with methylene green into 1,2-dichloroethane and the extract was measured spectrophotometrically at 656nm for the determination of sulfide. Hydrogen sulfide separated from the sample matrix was introduced into a solution containing pH 3.5 acetate buffer and iodate, in which the hydrogen sulfide was completely converted into iodide. A linear calibration graph was obtained over the range $3{\times}10^{-7}{\sim}1.2{\times}10^{-5}M$ sulfide($0.0096{\sim}0.384{\mu}g$ of $S^{2-}/ml$) and the detection limit was $0.0032{\mu}g/ml$. The apparent molar absorptivity and a correlation coefficient(r) were $6.7{\times}10^4L\;mole^{-1}\;cm^{-1}$ and 0.999, respectively. When applied to the stream water samples, the proposed method gave a relative standard deviation of 1.59% at $5{\times}10^{-6}M$ sulfide level.

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An Investigation of Diffusion of Iodide Ion in Compacted Bentonite Containing Ag2O (Ag2O를 첨가한 압축 벤토나이트에 대한 요오드 이온의 확산 특성 관찰)

  • Yim, Sung-Paal;Lee, Ji-Hyun;Choi, Heui-Joo;Choi, Jong-Won;Lee, Cheo-Kyung
    • Journal of Nuclear Fuel Cycle and Waste Technology(JNFCWT)
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    • v.9 no.1
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    • pp.33-40
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    • 2011
  • In the compacted bentonite containing $Ag_2O$, the transport of iodide ion was investigated by Through-diffusion method. It is confirmed that Iodide ion is transported by diffusion process in the compacted bentonite containing $Ag_2O$ as well as in the compacted bentonite without $Ag_2O$. However, the lag-time of iodide ion in the compacted bentonite containing $Ag_2O$ is larger than that in the compacted bentonite without $Ag_2O$. The increase of the lag-time was observed in pure iodide ion solution and also in 0.1M NaCl-iodide ion solution. The apparent diffusion coefficient of iodide ion in the compacted bentonite containing $Ag_2O$ has lower value than that in the compacted bentonite without $Ag_2O$. The effect of $Ag_2O$ on the effective diffusion coefficient was not clearly investigated in the compacted bentonite containing $Ag_2O$ while the values of effective diffusion coefficient of iodide ion in the compacted bentonite without $Ag_2O$ obtained in this study were similar to those in the compacted bentonite reported in the literature.

중성자방사화분석을 이용한 사용후핵연료 중 요오드 정량

  • 김정석;박순달;이창헌;문종화;정용삼;김종구
    • Proceedings of the Korean Radioactive Waste Society Conference
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    • 2005.06a
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    • pp.432-432
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    • 2005
  • 사용후핵연료시료 중에 함유된 요오드(I-127 및 129)를 정량하기 위하여 화학적 방법으로 분리 회수하고 중성자방사화분석법을 이용하였다. 사전실험으로 모의사용후핵연료를 이용하여 회수율을 측정하였다. 모의 및 실제사용후핵연료시료를 $90^{\circ}C$에서 8 M $HNO_3$ 용액으로 용해하고 용해 후 용해용액 중의 잔류 요오드, 응축 및 휘발된 요오드 각각을 정량하였다. 응축 요오드는 핵연료 용해 후 재증류하여 회수하였다. 잔류 및 응축 요오드는 시료의 산화상태를 조절한 후 용매추출로 요오드를 회수한 다음 이온교환 또는 침전법으로 방사화학적으로 분리한 후 중성자방사화분석(RNAA)으로 정량하였다. 제작한 이온교환분리관 및 여과키트에 요오드를 흡착 또는 침전시켜 분리한 다음 중성자조사를 위한 삽입체(Insert)로 이용하였다. 휘발 요오드는 제조한 흡착체(Ag-silica gel)를 담은 흡착관에 포집하고 홉착체를 구간별 균질시료로 만든 다음 비파괴중성자 방사화분석(INAA)으로 정량하였다. 침전 및 흡착 요오드의 화학적 특성을 EPMA(electron probe microanalysis) 분석으로 조사하였다. 요오드 정량결과를 다른 방법으로 비교분석하기 위하여 음이온교환수지상에서 요오드를 정제 및 회수하기 위한 용리거동을 조사하였다.

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Solvent Effect in Photoinduced Living Cationic Polymerization of Isobutyl Vinyl Ether (이소부틸비닐에테르의 광양이온 리빙중합에 미치는 용매효과)

  • 한규찬;권순홍;전현정;마석일
    • Proceedings of the Korean Fiber Society Conference
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    • 2003.04a
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    • pp.5-8
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    • 2003
  • 요오드화 아연과 수소화 요오드에 의해 개시되는 비닐에테르류 단량체의 양이온 리빙 중합이 보고$^{(1)}$ 된 이래 리빙 중합 개시계에 대한 연구가 많이 진행되어 왔다. 본 연구자들은 광양이온중합 개시제인 요오드화 디페닐요드늄과 할로젠화 아연 존재 하에서 비닐에테르 단량체의 광양이온중합을 실시하여 비극성 용매 하에서 연쇄이동이나 정지반응이 존재하지 않는 리빙중합을 보고한$^{(2-4)}$ 바 있는데 이 중합에서 비닐에테르 단량체와 프로톤산에 의하여 생성된 단량체 adduct의 C-I 결합이 안정한 공유결합을 형성하나 요오드화아연에 의해 C-I 결합의 분극화되어 활성화됨으로서 개시와 성장반응이 가능한 것으로 설명되었다. (중략)

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Photometric Determination of Chlorite ion by Flow Injection Analysis (흐름주입 분석에 의한 아염소산 이온의 분광광도법 정량)

  • Choi, Yong Wook;Lee, Su Young;Kim, Mi Kyung;Park, Sung Ho
    • Journal of the Korean Chemical Society
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    • v.44 no.6
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    • pp.556-562
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    • 2000
  • The determination of chlorite ion by flow injection analysis(FIA) with iodometric UV detection were investigated. Under rather acidic condition, chlorite ion react with iodide ion to form iodine and itself is reduced to chloride ion. The chlorite ion was determined indirectly by measuring absorbance of yellow colored iodine at 370 nm. The lengths of the mixing coil and the reaction coil, the pH of the acid stream, the concentration of the iodide ion, the injection loop volume, temperature, and flowrate were optimized as parameters for selectively determining a sort of inorganic disinfection by-product, chlorite ion by using FIA-UV detection setup. Masking agents for removing oxidants or interferences from the prepared water were tested. Independent calibration curve presented linear range of 0.002-0.2 mg/L for chlorite ion with a correlation coefficient of 0.999 or better. The limit of detection(LOD) was 0.18 ${\mu}g/L$ for chlorite ion.

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Selective Permeate Transport Characteristics of Iodine ion at Cell Membrane Model of Thyroid which Irradiated by High Energy X-Ray (고에너지 엑스선을 조사한 갑상선의 세포막모델에서 요오드이온의 선택적 투과성 전달 특성)

  • Ko, In-Ho;Yeo, Jin-Dong
    • Journal of the Korean Society of Radiology
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    • v.15 no.2
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    • pp.229-238
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    • 2021
  • The selective permeate transport characteristics of iodine ion at follicle cell membrane model in thyroid which irradiated by high energy x-ray(linac 6 MV) was investigated. The follicle cell membrane model used in this experiment was a polysulfonated copolymerized membrane of poly(4-vinylpyridine-co-acrylonitrile:VP-AN). The difference of membrane thickness [2 mole AN%(w/w)], fixed carrier concentration[VP-AN%(w/w)], OH- concentration were occurred at difference of I- concentration and quantity of thyroid hormone, respectively. The tensile strength in fixed carrier concentration[VP-AN% (w/w): 0-62 %] of irradiated membrane was found to be decreased about 1.2-1.8 times than non-irradiated membrane. The I- selective permeate initial flux with increase of membrane thickness [2mole AN%(w/w)], fixed carrier concentration[VP-AN%(w/ w)], OH- concentration in irradiated membrane were found to be decreased about 2.1-4.5 times, about 2.2-2.5 times, about 2.1-2.67 times than non-irradiated membrane, respectively. As a result, the quantity of thyroid hormone was decreased at irradiated membrane than non-irradiated membrane. The decrease of thyroid hormone was occurred at hypothyroidism and hyperthyroidism, thyroid cancer, and so on. As the thyroid hormone in cell membrane model were abnormal, cell damages were appeared at cell.

The Crystal Structure of an Iondine Sorption Complex of Dehydrated Calcium and Silver Exchanged Zeolite A ($Ag^+$이온과 $Ca^{2+}$이온으로 치환한 제올라이트 A를 탈수한 후 요오드를 흡착한 결정구조)

  • Bae, Myung-Nam;Kim, Yang;Kim, Un-Sik
    • Korean Journal of Crystallography
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    • v.6 no.2
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    • pp.118-124
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    • 1995
  • The crystal structure of an iodine sorption complex of vacumm-dehydrated Ag+ and Ca2+ exchanged zeolite A(a=12.174(3)Å) has been determined at 21℃ by single-crystal X-ray diffraction techniques in the cubic space group Pm3m. The crystal was prepared by flow method for three days using exchange solution in solution in which mole ratio of AgNO3 and Ca(NO3)2 was 1:150 with total concentration of 0.05 M. The complex was prepared by dehydration at 360℃ and 2×10-6 Torr for 2 days, followed by exposure to about 14.3 Torr of iodine vaporat 80℃ for 24 hours. Full-matrix least-squares refinement converged to the final error indices of R1=0.082, R2=0.068 using 122 reflections for which I > 3σ(I). Two Ag+ ions, 1.1 Ag+ ions, and 4.45 Ca2+ ions per unit cell are located on three different three-fold axes associated with 6-ring oxygens. Two Ag+ ions per unit cell are in the large cavity, 1.399(4)Å from the (111) plane of three oxygens. Another 1.1 Ag+ ions are found at opposite sites. Six iodine molecules are sorbed per unit cell. Each I2 molecule approaches a framework oxide ion axially (O-I=3.43(2)Å, I-I=2.92Å, I-I-O;166.1(3)°), by a charge transfer complex interaction. Two Ag+ ions make a close approach to the iodine molecules (Ag-I ; 2.73(2)Å).

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Cationic Polyemrization of tort-Butyl Vinyl Ether (tert-Butyl Vinyl Ether의 양이온중합)

  • 권순홍;전현정;한규찬;마석일
    • Proceedings of the Korean Fiber Society Conference
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    • 2003.04a
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    • pp.9-12
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    • 2003
  • 요오드 2분자가 양이온(I$^{+}$)과 음이온(I$_3$$^{-}$)로 해리되어 이 매 생성된 양이온에 의한 비닐 에테르류의 양이온 중합에 관한 연구는 보고된 바 있으나$^{1)}$ 요오드를 개시제로 사용한 삼차부틸 에테르의 양이온 중합에 관한 결과가 발표된 것은 별로 눈에 뜨이지 않는다. 삼차 부틸 에테르는 단량체의 활성이 크고 중합거동이 타 비닐 에테르류와 매우 다르기 때문에$^{3),4)}$ boron trifluoride diethyl etherate를 개시제로 하고, n-햅탄 이나 톨루엔과 같은 비극성용매를 사용하여 저온에서 중합을 행한 결과만이 보고되고 있다.$^{2)-5)}$ (중략)

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