• 제목/요약/키워드: Graphite Furnace Atomic Absorption Spectrophotometry

검색결과 11건 처리시간 0.026초

흑연로 원자흡수분광광도법에 의한 뇨시료 중 흔적량 원소의 정량 (Determination of Trace Elements in Urine Samples by Graphite Furnace Atomic Absorption Spectrophotometry)

  • 최종문;최희선;박창준;김영상
    • 분석과학
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    • 제7권4호
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    • pp.555-561
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    • 1994
  • A method was described for the graphite furnace atomic absorption spectrophotometric determination of trace cadmium, copper, chromium and lead in urine samples. The elements were directly determined without any other treatments. The ash temperature was intensively optimized to improve the large background by the removal of organic materials and alkali and alkali earth metals in urine samples. Two kinds of standard solutions were used to plot calibration curves. From the recovery data, it could be confirmed that the analytical results with the synthetic urine matrix similar to real urine were more accurate than with a deionized water matrix.

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Graphite Furnace Atomic Absorption Spectrophotometric Determination of Trace Horseradish Peroxidase Using Nanosilver

  • Jiang, Zhi-Liang;Tang, Ya-Fang;Wei, Lin;Liang, Ai-Hui
    • Bulletin of the Korean Chemical Society
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    • 제32권8호
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    • pp.2732-2736
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    • 2011
  • In pH 4.2 HAc-NaAc buffer solution, horseradish peroxidase (HRP) catalyzed $H_2O_2$ oxidation of nanosilver to form $Ag^+$. After centrifugation, $Ag^+$ in the supernatant can be measured by graphite furnace atomic absorption spectrophotometry (GFAAS) at the silver absorption wavelength of 328.1 nm. When HRP concentration increased, the $Ag^+$ concentration in the supernatant increased, and the absorption value enhanced. The HRP concentration in the range of 0.84-50 $ng{\cdot}mL^{-1}$ was linear to the enhanced absorption value (${\Delta}A$), with a regression equation of ${\Delta}A$=0.012C+0.11, correlation coefficient of 0.9988, and detection limit of 0.41 $ng{\cdot}mL^{-1}$ HRP. The proposed GFAAS method was used to detect HRP in waste water samples, with satisfactory results.

Matrix Modification for Graphite Furnace Atomic Absorption Spectrophotometric Determination of Volatile Elements(III) Trace Bismuth

  • Kim, Young-Sang;Choi, Jong-Moon;Kim, Young-Man
    • 분석과학
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    • 제8권4호
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    • pp.435-442
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    • 1995
  • A matrix modification was studied for the determination of trace bismuth in water samples by graphite furnace atomic absorption spectrophotometry. The type and quantity of modifiers as well as the use of auxiliary modifiers were investigated to realize the efficient modification. Palladium was chosen as a single modifier. By the addition of palladium($5{\mu}g/mL$) to 100 ng/mL bismuth solution, the temperatures could be raised from $500^{\circ}C$ to $1,300^{\circ}C$ for the charring and from $2,000^{\circ}C$ to $2,200^{\circ}C$ for the atomization as well as the sensitivity and reproducibility were improved. The absorbance of bismuth was maximum and not changed in the range of Pd $3-25{\mu}g/mL$. And several materials were examined as an auxiliary modifier. The mixed solution of $1{\mu}g/mL$ palladium and $200{\mu}g/mL$ nickel have raised the temperatures as with $5{\mu}g/mL$ palladium only. The maximum absorbance of bismuth was shown in the nickel concentration range of $100-300{\mu}g/mL$ in $1{\mu}g/mL$ palladium modified system. With such optimum conditions, the trace amount of bismuth in several water samples could be determined by a calibration curve method, and good recoveries were also obtained.

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Organic Precipitate Flotation of Trace Metallic Elements with Ammonium Pyrrolidinedithiocarbamate (II). Application of Solvent Sublation for Determination of Trace Cd, Co, Cu and Ni in Water Samples

  • 김영상;정용준;최희선
    • Bulletin of the Korean Chemical Society
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    • 제19권1호
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    • pp.50-56
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    • 1998
  • A solvent sublation was studied for the determination of trace Cd, Co, Cu and Ni in water samples. Ammonium pyrrolidine dithiocarbamate (APDC) was used as a complexing agent. Experimental conditions such as pH of solution, amounts of APDC, the type and amount of surfactant, the type of solvent, etc. were optimized for the effective sublation of analytes. After metal-PDC complexes were formed in sample solutions of pH 2.5, the precipitate-type complexes were floated in a flotation cell with an aid of sodium lauryl sulfate as a surfactant and by bubbling with nitrogen gas. The precipitates were dissolved and separated into the surface layer of methyl iso-butyl ketone (MIBK). The analytes preconcentrated were determined by a graphite furnace atomic absorption spectrophotometry (GF-AAS). Extractability of each element was 88% for Cd(Ⅱ), 86% for Co(Ⅱ), 95% for Cu(Ⅱ) and 76% for Ni(Ⅱ), respectively. And this procedure was applied to the analysis of real samples. From the recoveries of more than 92%, it was concluded that this method could be simple and applicable for the determination of trace elements in various water samples of a large volume.

흑연로 원자흡수분광법에 의한 혈액중 카드뮴 정량분석 (A Comparative Analysis of Whole Blood Cadmium by Atomic Absorption Spectrophotometry with a Graphite Furnace)

  • 박종안;오혜정;이종화
    • 한국산업보건학회지
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    • 제6권2호
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    • pp.301-312
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    • 1996
  • This study was performed to search a optimal analyzing method of cadmium in whole-blood. Cadmium was determined by graphite furnace atomic absorption spectrometry(GFAAS). We investigated the effect of ashing temperature on the absorbance of cadmium in a simple dilution(ten-fold) method with triton X-100 and matrix modifier methods treated with $NH_4H_2PO_4$(1 and 3%) and $Pd(NO_3)_2$(0.00l and 0.005%) as matrix modifier. We also compared the reported reference values of standard blood with values resulted from optimal analyzing conditions of this study. In case of a simple dilution method, when ashing temperature was set at $450^{\circ}C$, the absorbance of sample and background were $0.334{\pm}0.012$ and $1.382{\pm}0.245$, respectively. Background level was higher than the value(0.8) that can be corrected by $D_2$ background correction method. As ashing temperature was rised to $500^{\circ}C$, the absorbance of sample and background were $0.178{\pm}0.008$ and $0.711{\pm}0.223$ respectively. The higher ashing temperature($450^{\circ}C-650^{\circ}C$) was, the lower the absorbance of sample was. In case of a matrix modifier method with $NH_4H_2PO_4$(1 and 3%), when ashing temperature was rised from $500^{\circ}C$ to $650^{\circ}C$, the absorbance of sample slightly changed. The absorbances of sample at $600^{\circ}C$ were $0.230{\pm}0.017$ and $0.137{\pm}0.012$, respectively. These values were larger than that of simple dilution method. But the absorbance of background was higher than the level that can be corrected by $D_2$ method. In case of a matrix modifier method with $Pd(NO_3)_2$(0.001 and 0.005%), the absorbance of sample and background were higher than those of other methods and were stable and reproducible. When ashing temperature was over $550^{\circ}C$, the absorbance of sample was significantly decreased. In case of 0.005% $Pd(NO_3)_2$ carbon residue remained in graphite tube affected the absorbance of sample and background. From these results, We propose that in case of a simple dilution(ten-fold) method with triton X-100 ashing temperature must be maintained below $400^{\circ}C$. In order to diminish the absorbance of background, the alternative method is attenuation of injection volume or multiplication of dilution ratio. We recommend $Pd(NO_3)_2$ than $NH_4H_2PO_4$ as a matrix modifier. In case of a matrix modifier method with $Pd(NO_3)_2$ ashing temperature might be maintained below $550^{\circ}C$.

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Solvent Sublation of Trace Noble Metals by Formation of Metal Complexes with 2-Mercaptobenzothiazole

  • 김영상;신제혁;최윤석;이원;이용일
    • Bulletin of the Korean Chemical Society
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    • 제22권1호
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    • pp.19-24
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    • 2001
  • A solvent sublation has been studied for the determination of trace Au(III), Pt(IV) and Pd(II) in waste water with their complexes of 2-mercaptobenzothiazole (MBT). Experimental conditions such as the concentration of HCl, the amount of MBT as a ligand, the type and amount of surfactants, bubbling rate and time, and the type of organic solvent were optimized for the solvent sublation, i.e., 25.0 mL of 2.0 M HCl solution and 30mL of 0.4%(w/v) MBT ethanolic solution were added to a 1.0 L sample to form stable complexes. The addition of 4.0 mL of 1 ${\times}$$10^{-3}$ M CTAB (cetyltrimehtylammonium bromide) solution was needed for the effective flotation accomplished by bubbling nitrogen gas at the rate of 40.0 mL/min for 35 minutes. As a solvent, 20.0 mL of MIBK (methylisobuthylketone) was used to extract the floated complexes. The procedure was applied to three kinds of waste waters. Au(III) was determined as 0.68 ng/mL and 0.98 ng/mL respectively for final washed water of two plating industries in Banwol. Pd(II) and Pt(IV) were not detected in any of the three samples. The recovery, which was obtained with analyte-spiked samples, were 95-120%.

X-Ray Diffractometric Study on Modification Mechanism of Matrixes for Electrothermal AAS Determination of Volatile Lead and Bismuth

  • 김영상;최종문
    • Bulletin of the Korean Chemical Society
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    • 제21권1호
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    • pp.56-60
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    • 2000
  • The mechanism of a matrix modification for the trace determination of volatile lead and bismuth by an electro-thermal atomic absorption spectrophotometry was studied by a X-ray diffractometry (XRD). For the investigation of structures, the ash products of the elements were produced by using a palladium as a matrix modifier with or without aluminum or nickel as an auxiliary modifier. The same charring conditions as in the analysis of samples were applied together with much concentrated solution of analytical elements and modifiers in a graphite furnace to get a large amount of the product for XRD. The XRD patterns showed PbPd3 for lead and BiPd3 for bismuth. These mean that the reaction procedures through the charring and atomization were changed from $Pb^{2+}$ ${\rightarrow}$ PbO ${\rightarrow}$$Pb^0$ to $Pb^{2+}$ ${\rightarrow}$ PbO ${\rightarrow}PbPd_3$ ${\rightarrow}$ Pb o for lead and from $Bi^{3+}$ ${\rightarrow}$ BiO ${\rightarrow}$ Bi o to $Bi^{3+}$ ${\rightarrow}$ BiO ${\rightarrow}$ $BiPd_3$ ${\rightarrow}$ $Bi^0$ for bismuth by the addition of modifiers. The volatile elements were stabilized by the formation of palladium alloys through a charring process. Charring temperatures were raised about 500 $^{\circ}C$ by the alloying and the atomization was also stabilized for the enhancement of sensitivities.

흑연로 원자흡수 분광법에 의한 사람 오줌 중 알루미늄의 정량을 위한 마이크로파 삭힘과 고체상 추출 (Microwave Digestion and Solid-Phase Extraction for Determination of Aluminum in Human Urine by Graphite Furnace Atomic Absorption Spectrometer)

  • 김영상;최윤석
    • 분석과학
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    • 제16권2호
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    • pp.102-109
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    • 2003
  • 오줌시료 중 미량 알루미늄을 혹연로 원자흡수 분광광도법 정량하기 위한 마이크로파삭힘 및 고체상 추출에 관하여 연구하였다. 시료에 질산과 과산화수소를 가하고 가정용 전자레인지로 유기물을 파괴시킨 다음 오븐에서 건조시킨다. 건조된 찌기를 황산으로 녹이고, 이를 8-hydroxyquinoline (Oxine, HQ)이 흡착된 XAD-4 수지의 칼럼에 통과시켜 Al(III)-8-hydroxyquinolinate 착물을 형성시켜 흡착시킨다. 칼럼으로부터 0.5 M 질산으로 용리한 Al(III)을 정량하였다. 이 실험과정에서 찌기를 녹이기 위한 산의 종류, 수지에 흡착시키는 HQ의 양, 녹인 시료용액의 pH, 칼럼에 고정된 착물의 용리를 위한 산의 종류와 농도 등의 실험조건을 검토하여 최적화 시켰다. 인공 오줌 시료를 바탕으로 최적화 실험을 하였으며 검정곡선을 작성하였다. 실제 시료 중 알루미늄을 정량하였고, 표준용액을 일정량 첨가한 시료에서 구한 회수율은 94~101% 이였다. 바탕 세기에 대한 표준 편차의 3배 세기에 해당하는 검출한계는 0.05 ng/mL 이었다. 이로서 본 방법이 오줌시료 중 알루미늄을 분리하여 정량하는데 응용될 수 있음을 알 수 있다.

합성 및 천연 식품첨가물의 납함량에 대한 여러 기관의 규격기준 및 납시험법 비교 (Comparison of Standard and Lend Limit Test of Various Institutes on Lead Limit of Synthetic and Natural Food Additives)

  • 신동화;김용석;정도영;이영환;방정호;엄애선;신재욱;이달수;장영미;홍기형;박성관;박성국;권용관
    • 한국식품위생안전성학회지
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    • 제21권2호
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    • pp.82-91
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    • 2006
  • 식품첨가물공전의 일반시험법 중 납시험법에 대하여 국내에 유통되는 식품첨가물을 대상으로 한국, 일본, JECFA, 미국 및 EU의 규격 및 시험법에 따라 비교 분석하였다. 식품첨가물의 납 함량을 분석하는 방법으로서 한국은 비색법에 의한 디티존법을 채택하고 있으며, 일본은 원자흡광도측정법(분광광도계법)을, 미국은 디티존법(비색법), 원자흡광도측정법(분광광도계법), 원자흡광도측정법(흑연로법), APDC 추출법 등 4가지의 방법을, JECFA와 EU는 디티존법(비색법), 원자흡광도측정법(분광광도계법)을 채택하고 있다. 한국, 미국 및 JECFA의 디티존법은 거의 동일하였으며, 미국, JECFA및 EU는 검체의 종류에 따라 사용하는 방법을 개별 품목에 별도로 나타내고 있다. 국내에서 유통되는 112.스테아린산마그네슘 등 화학적합성품 13품목과 5.구아검 등 천연첨가물 12품목 등 검체의 납함량을 각 기관의 분석방법에 따라 분석한 결과 모두 각 기관의 규격 및 기준에 적합한 것으로 나타났으며, 시험 및 조작방법상의 문제점도 나타나지 않았다.

Ammonium Pyrrolidinedithiocarbamate에 의한 극미량 금속원소의 유기침전 부선에 관한 연구(제1보) Cu-pyrrolidinedithiocarbamate 공침부선에 의한 물시료중 비스무트, 카드뮴, 코발트 및 납의 정량 (Organic Precipitate Flotation of Trace Metallic Elements with Ammonium Pyrrolidinedithiocarbamate(Ⅰ). Determination of Bismuth, Cadmium, Cobalt and Lead in Water Samples by Coprecipitation-Flotation with Cu-pyrrolidinedithiocarbamate)

  • 정용준;최종문;최희선;김영상
    • 대한화학회지
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    • 제40권12호
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    • pp.724-732
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    • 1996
  • 물시료중 흔적량 비스무트, 카드뮴, 납, 코발트를 Cu(II)-pyrrolidinedithiocabamate 착물로 공침부선시켜 분리 정량하는 방법에 관하여 연구하였다. 부선조건인 시료용액의 pH, 공침제로 이용되는 구리의 양, 착화제인 APDC의 양, 저어주는 시간, 계면활성제 등을 조사하여 최적화시켰다. 흔적량 분석원소가 포함된 시료용액 1.0 L에 공침제 이온인 1, 000.mu.g/mL Cu(II) 표준용액을 3mL가하고, 자석젓개로 저으면서 질산 용액으로 pH2.5로 조절하였다. 2.0% ammonium pyrroildinedithiocarbamate(APDC) 용액을 첨가하여 Cu(II)-PDC 착물을 침전시켜 분석원소를 공침시켰다. 여기에 계면활성제인 0.2% sodium laurl sulfate 용액을 가하고, 다공성 유리판을 통해 질소를 불어서 침전을 띄웠다. 표면에 뜬 침전을 포집한 다음, 걸러서 진한 질산으로 녹여 탈염수로 25.0mL가 되게 하였고, 흑연로 원자흡수 분광광도법으로 농축된 분석원소를 정량하였다. 본 방법을 네가지 물시료에 적용하여 흔적량 원소를 동시에 농축 정량하였고, 일정량의 분석원소를 동일 시료에 첨가하여 정량한 회수율 90-120%로서 여기서 제시한 분석법이 흔적량 분석에서 정량적임을 알 수 있었다.

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