• Title/Summary/Keyword: 과염소산

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Reactions of Thianthrene Cation Radical Perchlorate with N-Arylbenzene- and N-Aryl-p-toluenesulfonamides. Synthesis of 5-(p-N-Arylbenzenesulfonamidephenyl)- and 5-(p-N-Aryl-p-toluenesulfonamidophenyl)thianthrenium Perchlorate (티안트렌 양이온 자유라디칼 과염소산염과 N-아릴벤젠술폰아미드 및 N-아릴-p-톨루엔술폰아미드의 반응. 5-(p-N-아릴술폰아미드페닐)티안트렌이움 과염소산염과 5-(p-N-아릴-p-톨루엔술폰아미드페닐)티안트렌이움 과염소산염의 합성)

  • Sung Hoon Kim;Kyongtae Kim
    • Journal of the Korean Chemical Society
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    • v.25 no.6
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    • pp.383-389
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    • 1981
  • Thianthrene cation radical perchlorate reacts with N-arylsulfonamides such as p-toluenesulfonanilide, benzenesulfonanilide, N-(2-methylphenyl)benzenesulfonamide, and N-phenyl-p-toluenesulfonanilide to give 5-(p-N-p-toluenesulfonamidophenyl)-(1a), 5-(p-N-benzenesulfonamidophenyl)-(1b), 5-(4-N-benzenesulfonamido-3-methylphenyl)-(1c), and 5-(p-N-phenyl-N-p-toluenesulfonamidophenyl thianthrenium perchlorate (1d), respectively. In the meantime, 1d reacts further with thiathrene cation ratical to form diperchlorate(1e). The structure of 1a~1e is very similar to 5-(p-acetamidophenyl) thianthrenium perchlorate which has been obtained from the reaction with acetanilide. However, the discrepancy in the stoichiometry between two reactions indicates that the reaction with sulfonamide appears not to proceed with a single mechanism.

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Manufacturing Tailored Powder Activated Carbon for Removing Perchlorate in Water (수중 과염소산염(Perchlorate) 제거를 위한 맞춤 분말활성탄 제조)

  • Kim, Sang-Goo;Song, Mi-Jeong;Choi, Keun-Joo;Ryu, Pyung-Jong;Kim, Shin-Chul;Lee, Yong-Doo
    • Journal of Korean Society of Environmental Engineers
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    • v.30 no.6
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    • pp.637-641
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    • 2008
  • The aims of this research were to manufacture tailored powder activated carbon having a higher prechlorate removal efficiency and to compare perchlorate removal efficiency with different carbon materials for applying to the drinking water treatment plant. Activated carbon pre-loaded with cetyltrimethylammonium chloride(CTAC) has been researched to be an effective adsorbent for removing perchlorate in the water. 10,000 mg/L tailored powder activated carbon were manufactured by mixing 5.0 g of powder activated carbon(PAC) into 500 mL of 5,000 mg/L CTAC solution. The tailored powder activated carbon had 10 times higher perchlorate removal efficiency than virgin powder activated carbon. The residual perchlorate gradually decreased with the first 15 minute contact time with the tailored powder activated carbon, however, the longer contact time did not affect perchlorate removal. Tailored powder activated carbon by manufactured with 1,083 mg/g iodine value carbon had almost 4 times higher perchlarate removal efficiency than the 944 mg/g iodine value carbon. Dosage of 5 mg/L tailored powder activated carbon, which can adaptable dosage at the treatment plant, could decrease the perchlorate concentration from 50 $\mu$g/L to 15 $\mu$g/L.

Reduction of perchlorate in aqueous solution using zero valence iron stabilized with alginate bead (알지네이트 비드를 이용하여 안정화한 0가 철의 수용액 상에서의 과염소산 이온의 환원 분해 특성)

  • Joo, Tae-Kyeong;Lee, Jong-Chol;Paeng, Ki-Jung
    • Analytical Science and Technology
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    • v.23 no.6
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    • pp.560-565
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    • 2010
  • Perchlorate ion ($ClO_4^-$) has been widely used as oxidizing agent in military weapon system such as rocket and missile fuel propellant. So it has been challenging to remove the pollutant of perchlorate ion. nanoscale zero valence iron (nZVI) particles are widely employing reduction catalyst for decomposition of perchlorate ion. nZVI particles has increasingly been utilized in groundwater purification and waste water treatment. But it have strong tendency of aggregation, rapid sedimentation and limited mobility. In this study, we focused on reduction of perchlorate ion using nZVI particles immobilized in alginate polymer bead for stabilization. The stabilized nZVI particles displayed much greater surface area, and much faster reaction rates of reduction of perchlorate ion. In this study, an efficient way to immobilize nZVI particles in a support material, alginate bead, was developed by using $Ca^{2+}$ as the cross-linking cations. The efficiency and reusability of the immobilized Fe-alginate beads on the reduction of perchlorate was tested at various temperature conditions.

Reduction of Perchlorate and Nitrate by Citrobacter Amalonaticus Strain JB101 : Kinetics and the Applicability of MBR (Citrobacter Amalonaticus Strain JB101에 의한 과염소산염과 질산염의 환원 : Kinetics 및 MBR을 이용한 처리 가능성)

  • Hong, Jae-Wha;Jang, Myung-Su;Lee, Il-Su;Bae, Jae-Ho
    • Journal of Korean Society of Environmental Engineers
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    • v.27 no.12
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    • pp.1298-1304
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    • 2005
  • This study was performed to evaluate the characteristics of the competition between two electron acceptors, perchlorate and nitrate, with Citrobacter Amalonaticus strain JB101. In addition, the applicability of membrane bioreactor(MBR) for perchlorate removal was evaluated. The maximum growth rate of strain JB101 on perchlorate and nitrate are 0.27 and 0.58 $hr^{-1}$, and maximum substrate utilization rates were 35.1 mg $ClO_4^-/g$ protein-day and 45.6 mg $NO_3^-/g$ protein-day, respectively. Nitrate was a competitive inhibitor for perchlorate, and strain JB101 prefer nitrate to perchlorate as electron acceptor. Complete removal of perchlorate could be achieved up to the surface leading rate of 4.6 g $ClO_4^-/m^2-day$ with the MBR fed with 20 mg $ClO_4^-/L$(HCMBR). When 5 mg/L of nitrate was added to the same influent, perchlorate removal efficiency decreased to 96.5%, while nitrate was completely removed. For the MBR fed with 0.7 mg/L of perchlorate (LCMBR), the maximum perchlorate removal efficiency was 100% up to the loading rate of 0.23 g $ClO_4^-/m^2-day$. Membrane fouling was found to be a problem at high leading rate for both MBRs. The acetate consumption ratio per perchlorate was $13.7{\sim}51.7\;e^-eq./e^-eq.$ in LCMBR, while the value was $2.5{\sim}3.6\;e^-eq./e^-eq.$ in HCMBR. This difference could be related to the acetate consumption with oxygen as electron acceptor. Therefore, the amount of acetate addition must be determined considering the concentrations of other electron acceptors in the influent.

Potential of Perchlorate Ion-Selective Electrode in PVC Membrane and Electrode Characteristics by ac Impedance (과염소산 이온선택성 PVC막 전극전위와 임피던스에 의한 전극특성)

  • 김경민;조경섭;강안수
    • Proceedings of the Membrane Society of Korea Conference
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    • 1998.04a
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    • pp.49-52
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    • 1998
  • 1. 서론 : 화약이나 고체 충진제, 고체로\ulcorner 추진제의 산화제, slurry blasting agent 및 동물사료의 식품첨가제로 사용되고 있는 과염소산은 발화나 폭발성이 매우 강한 산화제로 정확한 순도를 측정하는 것은 중요하다. 용량분석법과 중량분석법에 비교하여 조작이 간단하고 편리한 과염소산이온의 농도를 직접 측정할 수 있는 PVC막 전극에 대한 많은 연구가 진행되고 있다. (생략)

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Preparation of Ultra Fine Ammonium Perchlorate Crystals (초미세 크기의 과염소산암모늄 결정체 제조)

  • 김준형;임유진
    • Journal of the Korean Society of Propulsion Engineers
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    • v.8 no.1
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    • pp.1-7
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    • 2004
  • The precipitation of ultra fine ammonium perchlorate(UFAP) crystals from the N-methyl pyrrolidone(NMP) solutions of ammonium perchlorate(AP) was studied. The characteristics of the precipitated crystals were investigated by means of scanning electron micrograph(SEM), X-ray diffraction(XRD), and thermogravimetric analysis(TGA). When chloroform, methylene chloride and toluene were the precipitants, the product crystals had a mean particle size less than 2$\mu\textrm{m}$. The crystallographical property and thermal decomposition behavior of the prepared UFAP were almost the same as those of the commercial AP.

Study on desorption characteristics by mixed resins of active carbons and ion exchange resins for perchlorate ion (이온교환수지와 활성탄의 혼합수지를 이용한 과염소산 이온의 탈착 특성 연구)

  • Kim, Young-Eun;Jeong, Yu-Dong;Kim, Sun Hwan;Paeng, Ki-Jung
    • Analytical Science and Technology
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    • v.26 no.1
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    • pp.11-18
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    • 2013
  • Perchlorate ($ClO{_4}^-$) is the material that is used as propellants of rockets and material of explosive as a form of ammonium perchlorate salts. Ammonium perchlorate solution of high concentration is recovered from expired rocket through demilitarization process by the water-jet method. If people take perchlorate in food and water, it interferes with adsorption of iodide which is the substance needed to synthesize thyroid hormone in the thyroid gland. It has an bad influence upon disturbing pregnancy and synthesis of growth hormone. So the effective method is necessary to remove perchlorate anion in water. By considering economic aspect, we studied effective desorption (regeneration) of perchlorate anion from adsorbent with studies on removal and adsorption of perchlorate anion. Desorption experiment was conducted as batch type. Depending on various conditions (concentration, pH, cation anion form) elution, we evaluated amount, efficiency of desorption(amount of adsorption/desorption ${\times}$ 100). Also, research confirmed the efficiency of mixed resins between anion exchange resin and activated carbon and expected synergic effect from advantages of both adsorbents.

Effect of Coions on the Absorption of rare Earths in a Cation Exchange Resin (양이온 교환수지에 대한 희토류 원소의 흡수에 미치는 Coion의 영향)

  • Beom-Gyu Lee;In-sook Kim;Kang-Jin Kim
    • Journal of the Korean Chemical Society
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    • v.27 no.1
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    • pp.18-23
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    • 1983
  • To understand the abnormal absorption behavior of rare earths in cation exchange resins, the absorption for Ce(III), Tb(III) and $Cl^-$ ions in Dowex 50W-X2 have been investigated by spectrophotometry in the concentration range of $1{\sim}12$ M HCI and $HCl-HClO_4$ mixed solutions. The amount of $Cl^-$ ion absorbed shows that the ratio of amount of $Cl^-$ ions to that of rare earths does not exceed 10% in the concentration range of $6{\sim}8M$ HCl and decreased gradually to 3% at 2M HCl and 6% at 12M HCl. The ratio is further decreased with the fraction of $HClO_4$ in $HCl-HClO_4$ mixed solutions and the decrease is presumably due to the weak tendency to form a complex between rare earths and $Cl^-$ ions in a cation exchange resin. The effect of $ClO_4^-$ is expected to play a more important role than that of $Cl^-$ ions in the large absorption of rare earths.

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Paramagnetic Deshielding Effects by Aryl Groups of Triaryl-9-thioxanthenylphosphonium Perchlorate (삼아릴-9-티오크잔테닐포스포니움 과염소산염의 아릴기에 의한 상자기성 벗김 효과)

  • Kwang Hyun Ahn;Kyong Tae Kim
    • Journal of the Korean Chemical Society
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    • v.25 no.3
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    • pp.190-198
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    • 1981
  • In contrast with pmr (only multiplets at ${\delta}6.6$∼7.8 ppm) spectrum of triphenyl-9-thioxanthenylphosphonium perchlorate and tri-o-methoxyphenyl-9-thioxanthenylphosphonium perchlorate, tri-n-butyl-9-thioxanthenylphosphonium perchlorate and tribenzyl-9-thioxanthenylphosphonium perchlorate showed a doublet at ${\delta}5.58$ and 5.70ppm, respectively, assigned to a methine proton. This value is slightly larger than the corresponding values (${\delta}5.05$~5.30) of 9-arylthioxanthenes but clearly differentiated from those of aromatic protons. This result implys that the downfield shift of a methine proton of triaryl-9-thioxanthenylphosphonium perchlorate is not due to inductive effects of an electron deficient phosphorus atom but paramagnetic deshielding effects by three aryl groups on phosphorus.

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Development of Metal Compound Explosives Using KIO4 and TiH2 (KIO4와 TiH2를 이용한 금속복합화약 개발)

  • Ahn, Gilhwan;Kim, Sangbaek;Kim, Junhyung;Ryu, Byungtae
    • Journal of the Korean Society of Propulsion Engineers
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    • v.24 no.1
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    • pp.58-63
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    • 2020
  • THPP is a type of metallic complex explosive used in initiators, consisting of TiH2 and KClO4. In this case KClO4 includes ClO4- which is a harmful substance that may cause thyroid dysfunction or tumors. In this study KIO4 is applied to a new type of environmentally friendly explosive as a substitute to the conventional KClO4. Tests were carried out to see if KIO4 can be made a successful replacement for KClO4.