• Title/Summary/Keyword: EDTA determination

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Spectrofluorimetric Determination of Levodopa through Ternary Complex Formation with Europium(III) and Ethylenediaminetetraacetic Acid (Europium(III)와 EDTA의 3차 복합체 형성에 의한 Levodopa의 분광분석적 정량)

  • Kamruzzaman, Mohammad;Alam, MD R-Mahmnur;Kim, So Yeon;Jo, Hae Jin;Lee, Sang Hak;Kim, Young Ho;Kim, Sung Hong
    • Applied Chemistry
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    • v.15 no.1
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    • pp.25-28
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    • 2011
  • A highly sensitive spectrofluorimetric method was developed for the determination of levodopa based on the formation of a ternary complex with Eu3+ in the presence of ethylenediaminetetraacetic acid. It was found that this complex manifests intense fluorescence at 591 and 613 nm with excitation at 372 nm and maximum intensity was obtained at 613 nm. Under the optimum conditions, the enhanced fluorescence intensity was proportional to the concentration of levodopa over the range of 3×10-9-2.5×10-7 mol L-1 with limit of detection (LOD) of 4.37×10-10 mol L-1. The method offers higher sensitivity and selectivity which could be effectively applied for the determination of levodopa in pharmaceutical and biological samples.

Determination of $^{226}Ra$ Isotope in the Leachate around Phosphogypsum Stack Using Ethylenediaminetetraacetic Acid (EDTA) (Ethylenediaminetetraacetic acid (EDTA)를 이용한 인산석고 야적장 침출수 중의 $^{226}Ra$ 분석법 개발)

  • Kim, Geun-Ho;Kim, Yong-Jae;Chang, Byung-Uck
    • Journal of Radiation Protection and Research
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    • v.36 no.4
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    • pp.223-229
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    • 2011
  • Ba is the most useful element to get the $Ba(Ra)SO_4$ precipitate. However, when the high concentrations of ions such as sulfate, calcium are existed in the leachate of phosphogypsum stack, it is difficult to get the $Ba(Ra)SO_4$ precipitate. Since this reason, the developed method for the Ba coprecipitate using EDTA was performed to determine the $^{226}Ra$ concentration in the high sulfate sample. The average concentration of $^{226}Ra$ in a leachate of phosphogypsum using this method was 0.102 $Bq{\cdot}kg^{-1}$ and the minimal detectable activity is 3.4 $mBq{\cdot}kg^{-1}$. The $mBq{\cdot}kg^{-1}$ method was 0.102 $Bq{\cdot}kg^{-1}$ and the minimal detectable activity is 3.4 $mBq{\cdot}kg^{-1}$. The $^{226}Ra$ stock solution and the CRM (Certified Reference Material) were analyzed to verify this method. In analyzed $^{226}Ra$ stock solution, bias with added concentration was approximately 1% and the correlation curve between $^{226}Ra$ concentration in simulated standard sample and measured $^{226}Ra$ concentration showed good agreement with a correlation coefficient ($R^2$) of 0.99. In analyzed CRM, maximum bias with reference value was 5.8% (k=1) and the analytical results were in good agreement with the reference value.

Investigation of Liposomes Labelled with Tc-99m Added EDTA, DTPA and NTA for Tumor Seeker ($^{99m}Tc-Liposomes$과 킬레이트제 표지반응의 효과)

  • Ryu, Yong-Wun;Kim, Jang-Hwi;Kang, Tae-Woong;Yu, Ju-Hyun
    • The Korean Journal of Nuclear Medicine
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    • v.19 no.1
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    • pp.137-143
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    • 1985
  • Using chelating agents such as Nitrilotriaceticacid(NTA), ticacid(DTPA) and Ethylenediaminenitrilotetraceticacid(EDTA), with TC-99m were determined in vitro and in vivo. Methods.of separation and determination of TC-99m-liposomes added chelating agents were practiced by thin layer chromatogram scan and gel filtration. Biodistributions of Tc-99m-liposomes in normal and sarcoma 180 cells bearing mice were observed. The results were as follows: 1) Maximum amount of $Sn^{+2}$ to reduction from pertechnetium$(10\sim20{\mu}ci)$ by adding 0, 1, 10 and $100{\mu}g$ of $SnCl_2$ in 0.2 ml of oxygen free water was $10{\mu}g$. 2) The large amounts of $SnCl_2$ were not changed but the small amounts of $SnCl_2$ were much changed by labeling with TC-99m to add chelating agents. EDTA in small amounts of $SnCl_2$ were reduced more strongly than DTPA or NTA. Using a hydrophilic chelate, DTPA, the uptake of liposomes could not accumulated in liver and spleen by a lipophilic chelate NTA were significant in vivo. 3) Uptake by tumor was achived 1.14% of injected dose per gram tissue and tumor to organ ratios were measured in low with TC-99m-NTA-liposomes(+).

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Simple Semiquantitative Determination and Selective Preconcentration of Trace Heavy Metals in Environmental Pollutants : Determination of Chromium (VI) with DPC Gel (環境汚染 重金屬의 選擇的 濃縮 및 簡易分析法 : DPC 겔의 의한 크롬 (VI) 의 定量)

  • Yong Keun Lee;Kyu Ja Whang;In Hwa Woo
    • Journal of the Korean Chemical Society
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    • v.25 no.4
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    • pp.275-282
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    • 1981
  • A simple semiquantitative procedure was developed for the determination of sub-ppm level of chromium(VI) in aquatic samples by using an analytical micro-column packed with diphenylcarbazide(DPC) gel beads. DPC gel beads were prepared by swelling XAD-2 resin(115∼150 mesh in dry condition) in ethanol for 10min, packing into a glass column(1.5 mm bore, 65nm length) and adsorbing 1ml of ethanol solution of $2{\times}10^{-3}M$ DPC for 20min at room temperature. When 0.5ml of ethanol solution containing chromium(VI) was passed through the DPC gel column for 40min, the original white color of the reagent gel turned to red-violet from the up-stream of the column. As the length of colored band was proportional to the total amount of chromium(VI) in the sample solution passed through the column, the concentration of chromium(VI) could be determined from the calibration line which had been prepared by using the standard solution. Chromium(VI) ion as small as from 0.1 to 0.8 ppm could be determined with ${\pm}5{\sim}{\pm}15{\%}$ relative errors. Since other interfering cations were few, 100-fold excess of Fe(III), 50-fold excess of Cu(II) could be masked with EDTA. This method was successfully applied to the analysis of chromium(VI) in industrial effluents.

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Spectrophotometric Determination of Trace Selenium in Aqueous Solutions by Catalytic Reaction (촉매반응을 이용한 수용액중 흔적량 셀렌의 분광광도법 정량)

  • Lee, Seung Hwa;Choe, Jong Mun;Choe, Hui Seon;Kim, Yeong Sang
    • Journal of the Korean Chemical Society
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    • v.38 no.5
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    • pp.351-358
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    • 1994
  • The spectrophotometric determination of trace selenium(Ⅳ) using its catalytic reaction has been studied in aqueous solutions. The catalytic reaction of phenylhydrazine hydrochloride with selenium(Ⅳ) in an acidic aqueous medium produces benzenediazonium ion which will be converted into a red-coloured azo dye by coupling with H-acid(8-amino-1-naphtol-3,6-disulfonic acid disodium salt). For the reaction, the experimental conditions such as amounts of the reagents and pH of the sample solutions were optimized. After 15 ml of the sample solution was treated with 1 ml of 0.1 M EDTA solution to mask $Fe^{3+}$, etc., 1 ml of 0.06 M phenylhydrazine hydrochloride, 1 ml of 0.02 M H-acid, and 3 ml of 0.3 M-$KClO_3$ were added into the solution, sequentially. The solution was adjusted to pH 1.4 with HCl. After it was heated in a steam bath for 30 minutes, the solution was cooled down to a room temperature and then diluted to 25 ml with deionized distilled water. A blank solution for the absorbance measurement was prepared from the deionized water. The absorbance was measured at 527 nm. Using the above procedure, the trace amount of selenium was determined in natural waters such as tap, river and pond waters by a standard curve method and recoveries of Se spiked to samples were also obtained. From the recoveries of 104 to 111%, it could be concluded that this method was applicable to the quantitative determination of ng/ml level of selenium in natural waters.

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Voltammetric Determination of Cu(II) Ion at a Chemically Modified Carbon-Paste Electrode Containing 1-(2-pyridylazo)-2-naphthol (1-(2-Pyridylazo)-2-naphthol 수식전극을 사용한 Cu(II) 이온의 전압전류법적 정량)

  • Jun-Ung Bae;Hee Sook Jun;Hye-Young Jang
    • Journal of the Korean Chemical Society
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    • v.37 no.8
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    • pp.723-729
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    • 1993
  • Cu(II) ion-responsive chemically modifed electrodes (CMEs) were constructed by incorporating 1-(2-pyridylazo)-2-naphthol (PAN) into a conventional carbon-paste mixture of graphite powder and Nujol oil. Cu(II) ion was chemically deposited on the surface of the PAN-chemically modified electrode in the absence of an applied potential by immersion of the electrode in a buffer solution (pH 3.2) containing Cu(II) ion, and then reduced at a constant potential in 0.1 M KNO$_3$. And a well-defined voltammetric peak could be obtained by scanning the potential to the positive direction. The electrode surface could be regenerated with exposure to acid solution and reused for the determination of Cu(II) ion. In 5 deposition / measurement / regeneration cycles, the response could be reproduced with 6.1${\%}$ relative standard deviation. In case of using the differential pulse voltammetry, the calibration curve for Cu(II) was linear over the range of 2.0 ${times}$ 10$^{-7}$ ∼ 1.0 ${times}$ 10$^{-6}$ M. And the detection limit was 6.0 ${times}$ 10$^{-8}$ M. Studies of the effect of diverse ions showed that Co, Ni, Zn, Pb, Mg and Ag ions added 10 times more than Cu(II) ion did not influence on the determination of Cu(II) ion, except EDTA and oxalate ions.

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Spectrofluorimetric Determination of Fe(Ⅲ) with 4,5-Dihydroxy-1,3-Benzenedisulfonic Acid (4,5-Dihydroxy-1,3-Benzenedisulfonic Acid를 이용한 Fe(Ⅲ)의 분광형광법 정량)

  • Kim, Hye Seon;Choi, Hee Seon
    • Journal of the Korean Chemical Society
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    • v.43 no.4
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    • pp.423-429
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    • 1999
  • A spectrofluorimetric method for the determination of Fe(III) in aqueous solution with 4,5-dihydroxy-1,3-benzenedisulfonic acid(Tiron) as a fluorimetric reporter was developed. Tiron, which is very soluble in water,is a good fluorimetric reagent. However, when Tiron was complexed with Fe(III), the fluorescent intensity was decreased proportionally with the concentration of Fe(III) by a quenching effect. The excitation and fluorescene wavelength of Tiron showing the quenching effect by Fe(III) at pH 4.5 were 312 nm and 341 nm, respectively. The highest sensitivities were shown at Tiron concentration of $1.0{\times}10^{-2}M$. To enhance the quenching effect, the Fe(III)-Tiron complex solution was heated to 80$^{\circ}C$ for 90 minutes. As for Fe(III), the most interfering ion was Cu(II). The interference effects could be mostly eliminated by pH adjustment or by adding EDTA. The concentration ranges showing the linear response to Fe(III) was from $5.0{\times}10^{-7}M\;to\;6.0{\times}10^{-5}M$ With this proposed method, the detection limits of Fe(III) was $2.8{\times}10^{-6}M$. Recovery of Fe(lII) in a synthetic sample was almost quantitative. Based on experimental results, it is proposed that the above technique can be applied to the practical determination of Fe(III).

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Determination of Lead in Urine by Atomic Absorption Spectrophotometry (원자흡광법을 이용한 요중 연 배설량의 정량)

  • Paik, Nam-Won;Yoon, Bock-Sang;Chung, Kyou-Chull
    • Journal of Preventive Medicine and Public Health
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    • v.7 no.2
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    • pp.377-381
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    • 1974
  • Determination of lead in urine is important in industrial hygiene and toxicology. Dithizone method has been principally used for the determination of lead in urine, which gives accurate results in skilful hands but is usually complex and time-consuming. Atomic absorption spectrophotometry is a new simple method and several procedures have been described. However, the influences of pH and the presence of chelating agents during treatment of lead poisoning are not clear. The purpose of this study was to find out the effect of pH and chelating agents on the determination of lead using Shimadzu atomic absorption/flame spectrophotometer, model AA-610. The results obtained were as follows: 1. The atomic absorption spectrophotometry(AAS) could be applied without prior acid digestion to specimens in the absence of chelating agents. The absorbance at $2,170\;{\AA}$, though more sensitive, was more noisy electronically. Therefore, we selected the wavelength of $2,833\;{\AA}$ plus scale expansion. 2. The optimal pH was in the range from 2 to 3. 3. The sensitivity was $0.075{\mu}g/ml/%$ and detection limit was about $0.2{\mu}g/ml$. 4. In the presence of EDTA, lead could not be completely determined without prior acid digestion. 5. On specimens from patients receiving penicillamine therapy, a comparison was made between the values obtained with dithizone method and AAS method with prior acid digestion. The results of comparison showed a very good agreement.

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Novel Tm(III) Membrane Sensor Based on 2,2'-Dianiline Disulfide and Its Application for the Fluoride Monitoring of Mouth Wash Preparations

  • Ganjali, Mohammad Reza;Norouzi, Parviz;Tamaddon, Atefeh;Husain, Syed Waqif
    • Bulletin of the Korean Chemical Society
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    • v.27 no.9
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    • pp.1418-1422
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    • 2006
  • In this work the construction of a novel poly(vinyl chloride) membrane sensor based on 2,2'-dianiline disulfide (DADS) as a neutral carrier, o-nitrophenyloctyl ether (NPOE) as a plasticizer and sodium tetraphenyl borate (NaTPB) as an anionic site with unique selectivity towards Tm(III) ions is reported. The electrode has a linear dynamic range between $1.0\;{\times}\;10^{-6}$ and $1.0\;{\times}\;10^{-2}$ M, with a nice Nernstian slope of 19.5 ${\pm}$ 0.3 mV per decade and a detection limit of $4.0\;{\times}\;10^{-7}$ M at the pH range of 4.8-8.5. It has a very fast response time (<15 s) in the whole concentration range, and can be used for at least 4 weeks without any considerable divergence in the electrode potentials. The proposed sensor revealed comparatively good selectivity with respect to most common metal ions, and especially lanthanide ions. It was used as an indicator electrode in the potentiometric titration of Tm(III) ions with EDTA and in direct determination of concentration of Tm(III) ions in binary mixtures. It was also applied in determination of fluoride ions in mouth wash preparations.

The Determination of Chitin Synthases by Varying pH and Divalent Cations in Candida albicans

  • Choi, Won-Ja
    • Journal of Microbiology and Biotechnology
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    • v.8 no.6
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    • pp.613-617
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    • 1998
  • The Chsl, Chs2, and Chs3 activities of a pathogenic fungus, Candida albicans, perform the same biochemical reactions, but exert different functions. Therefore, the determination of each enzyme activity is important. The three chitin synthases differ in their optimal pH and the effect of divalent cations as either stimulatory or inhibitory factors. The CAChsl, CAChs2, and CAChs3 activities are optimal at pH 7.5, 6.5, and 8.5, respectively. $Co^{2+} stimulates CAChsl and CAChs3, but inhibits CAChs2. $Ni^{2+}$ inhibits CAChsl and CAChs2 with little effect on CAChs3. $Mg^{2+}$ stimulates CAChs2 and CAChs3, but hardly affects CAChsl. These characteristics are similar to those of the Saccharomyces cerevisiae enzymes except in degree. The sensitivity against $Ni^{2+}$ of CAChsl is higher than that of CAChs2, whereas the reverse is true in S. cerevisiae. Metal dependence of chitin synthases in C. albicans is less marked than that in S. cerevisiae, except for CAChs2. The activities of CAChsl and CAChs3 from EDTA-treated membranes were increased 1.5 fold, while that of CAChs2 was stimulated 7 fold in the presence of divalent cations. These results could provide new criteria for screening systems of antifungal agents.

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