• 제목/요약/키워드: Pyrocatechol Violet

검색결과 5건 처리시간 0.019초

Pyrocatechol Violet Modified Graphite Pencil Electrode for Flow Injection Amperometric Determination of Sulfide

  • Emir, Gamze;Karakaya, Serkan;Dilgin, Yusuf
    • Journal of Electrochemical Science and Technology
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    • 제11권3호
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    • pp.248-256
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    • 2020
  • In this study, pyrocatechol violet (Pcv) is proposed for the first time as an efficient electrocatalyst for oxidation of sulfide and flow injection analysis (FIA) of sulfide. A graphite pencil electrode (GPE) was modified with Pcv via immersion of the GPE into 0.01 M Pcv solution for 15 min. Cyclic voltammograms (CVs) demonstrated that Pcv/GPE exhibits a good electrocatalytic performance due to shift in the potential from +400 at bare GPE to +70 mV at Pcv/GPE and obtaining an enhancement in the peak current compared with the bare GPE. A linear range between 0.25 and 250 μM sulfide with a detection limit of 0.07 μM was obtained from the recorded current-time curves in Flow Injection Analysis (FIA) of sulfide. Sulfide in water samples was also successfully determined using the proposed FI amperometric methods.

Application of Synergistic Solvent Extraction by Formation of Ternary Complex for Determination of Trace Zn(II) in Water Samples

  • Choi, Jong-Moon;Park, Hyun-Mo;Choi, Sun-Do
    • Bulletin of the Korean Chemical Society
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    • 제27권4호
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    • pp.563-567
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    • 2006
  • The application of a synergistic solvent extraction by the formation of ternary complex with pyrocatechol violet (PV) and benzalkonium chloride (BC) was studied for determination of trace Zn(II) in water samples. The pH of sample solution and the amount of PV and BC added were optimized for the formation of the stable complex, a proper solvent was selected for the effective extraction, and the concentration of nitric acid was fixed for the back extraction of the complex from the solvent. After the ionic strength of 100 mL sample solution was adjusted to 0.1 M by adding NaCl and the pH was fixed at 9 with a carbonate buffer, 1.0 mL of 2% PV solution was added to form Zn(II)-PV complex then the Zn(II)-PV/BC ternary complex was made by adding 1.0 mL of 10% BC solution. The ternary complex was extracted into 10 mL of MIBK. And the ternary complex was back-extracted with 10 mL of 1.0 mol/L nitric acid to determine Zn(II) by a flame atomic absorption spectrophotometer (flame-AAS). The interference of concomitant ions on the extraction of Zn(II) was investigated. This procedure was applied to the analysis of three real samples such as Dalbang-dam water, laboratory tap water and Jungnajin seawater. The recoveries of Zn(II) in spiked samples were 86.58-104.1%.

국내산(國內産) 명일엽(明日葉)의 부위별 게르마늄 함량(含量) (Germanium(IV) Content in the Korean Angelica keiskei Koidz)

  • 정승일;한완수
    • 한국약용작물학회지
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    • 제7권1호
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    • pp.11-15
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    • 1999
  • 국내에서 재배 수확되는 명일엽에 지역별, 부위별로 게르마늄 함량을 네모파 산화전극 벗김전압 전류법을 이용하여 조사한 결과 재배된 지역에 따라 게르마늄의 함량이 공시재료간 잎은 3.8배 정도, 줄기는 5배 정도였다. 명일옆(明日葉)의 채취부위별 게르마늄 함량은 잎부분에서 386ppm로 가장 높았으며 줄기에서 29ppm으로 13.3배 잎에서 더 높았다.

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Fe(II)와 Cu(II)에 의해 킬레이트화 된 수수추출물 함유 바이오플라스틱의 색상 안정성 (Color Stability of the Bioplastic containing Sorghum Extract Chelated by Fe(II) and Cu(II))

  • 이가현;이성준;정상원;김현철;최진현;배도규;한상익;이세근
    • 한국염색가공학회지
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    • 제27권1호
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    • pp.62-69
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    • 2015
  • To improve the color stability of the bioplastic containing sorghum extract, sorghum extract was chelated by a metal ion. The chelating activity was quantitatively evaluated under the various conditions. Chelation of sorghum extract by Cu(II) was determined by reaction with pyrocatechol violet, whereas Fe(II) chelation was investigated by forming complexes with ferrozine. Chelation of sorghum extract was increased rapidly with increasing concentrations of metal salt and sorghum extract. At a 0.1g/L metal salt addition level, the chelating activity of Fe(II) and Cu(II) were 66.7% and 54.2%, respectively. According to the chelation pH conditions, the sorghum extract was chelated almost 100% by Fe(II) above the pH 6.5. It was confirmed that Fe(II) was a strong chelator of sorghum extract than Cu(II). The sorghum extract chelated with metal salt exhibit higher thermal stability. The bioplastic containing chelated sorghum extract showed relatively less color change than the control.