• 제목/요약/키워드: SRM 1648

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ICP-MS와 AAS를 이용한 대기 입자상 표준물질 (SRM 1648) 금속성분의 정량에 관한 연구 (Determination of Metallic Elements in Urban Particulate Matter (SRM 1648) by ICP-MS and AAS)

  • 유수영;최금찬;김기현
    • 한국대기환경학회지
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    • 제21권4호
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    • pp.423-430
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    • 2005
  • This study was investigated with sample digestion techniques and a reliability of the analytical results for a quantitative analysis of a standard reference material ('urban particulate matter', SRM 1648). The metallic elements were analyzed by inductively coupled plasma mass spectrometry (ICP-MS) with closed vessel microwave acid digestion method and atomic absorption spectroscopy (AAS). Quality control of the overall analytical procedures for metallic element determinations of standard reference material were estimated by analysis of a SRM 1648. Three digestion solutions $(type\;1:\;HNO_3,\;type\;2:\;HNO_3\;and\;H2O_2(4'1)\;mixture,\;type\;3:5.55\%\; HNO_3\;and\;16.75\%\;HCI\;mixture)$ were applied to SRM 1648. As a result, three digestion solutions used in this study are completely unable to digest Cr of SRM 1648. Reliability of Cr and As showed some errors in the digestion with digestion solution type (3) due to the influence of chlorides. Type (3) digestion solutions are sufficient to fulfill the digestion of As as well as Se in SRM 1648. ICP-MS results showed the improvement in accurate and precise determination of some trace elements like Cd, V and Pb in SRM 1648. It is important to use the proper digestion solution for each element to qualify analytical precision.

Distinct Oxidative Damage of Biomolecules by Arrays of Metals Mobilized from Different Types of Airborne Particulate Matters: SRM1648, Fine (PM2.5), and Coarse (PM10) Fractions

  • Park, Yong Jin;Lim, Leejin;Song, Heesang
    • Environmental Engineering Research
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    • 제18권3호
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    • pp.139-143
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    • 2013
  • This study was performed to examine the in vitro toxicities which are incurred due to the mobilization metals from standard reference material (SRM) 1648, fine ($PM_{2.5}$), and coarse ($PM_{10}$) particulate matter collected in Seoul metropolitan area. DNA single strand breaks of approximately 74% and 62% for $PM_{2.5}$ and for $PM_{10}$, respectively, were observed in the presence of chelator (EDTA or citrate)/reductant (ascorbate), as compared to the control by 2% without chelator or reductant. $PM_{2.5}$ induced about 40% more carbonyl formation with proteins in the presence of EDTA/ascorbate than $PM_{10}$. Therefore, more damage to biomolecules was incurred upon exposure to $PM_{2.5}$ than to $PM_{10}$. The treatment of a specific chelator, desferrioxamine, to the reaction mixture containing chelator plus reductant decreased the extent of damage to DNA to the level of the control, but did not substantially decrease the extent of damage to proteins. This suggests that different arrays of metals were involved in the oxidation of DNA and proteins.

중성자방사화분석법을 이용한 대기분진중의 미량원소 비교분석 (Intercomparison and Determination of Trace Elements in Urban Dust by Neutron Activation Analysis)

  • 정용삼;문종화;김선하;박광원;강상훈
    • 분석과학
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    • 제13권2호
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    • pp.179-188
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    • 2000
  • 대기환경시료인 도시분진시료와 인공적으로 준비한 휠터상 도시분진시료중의 미량원소를 중성자방사화분석법을 사용하여 비파괴 분석하였다. 분석정도관리를 위하여 미국 표준기술원의 인증표준시료 (Urban Dust, NIST SRM 1648)를 이용하였다. 37종의 검출된 원소의 상대오차와 상대 표준편차를 계산하였으며 각각 10%와 15%이내이었다. 도시분진시료로부터 29종의 원소, 휠터상 도시분진시료로부터 21종의 원소를 정량하였다. 측정결과의 신뢰도 및 숙련도 평가를 위하여, 중성자방사화분석법, 하전입자유도 X-선방출분광법, X-선 형광분석법과 원자흡수분광법을 이용한 세계 39개 실험실이 참여한 실험실간 비교시험에 참여하였으며 수집된 결과를 통계처리하였다. 평균값과 표준편차로 계산한 z-score는 몇개의 원소를 제외하고 모두 -1

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비교숙련도 시험을 통한 도시대기분진에 대한 중성자방사화분석법의 품질관리 (Quality Control on Neutron Activation Analysis for Urban Dust by the Proficiency Test)

  • 문종화;김선하;정용삼
    • 분석과학
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    • 제15권5호
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    • pp.433-438
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    • 2002
  • 국제원자력기구로부터 제공받은 2종 (V-50, P-50)의 인공적으로 준비된 여과지상의 도시분진시료중의 미량원소를 중성자방사화분석법을 사용하여 비파괴 분석하였다. 중성자방사화분석의 품질관리를 위해 미국표준기술원의 인증표준물질 (Urban Particulate Matter, NIST SRM1648)이 사용되었으며 여과지상의 분진시료에서는 약 20종의 원소를 분석하였다. 측정결과는 실험실간 비교 및 숙련도 평가를 위하여 중성자방사화분석법, 하전입자유도 X-선 방출분광법, 유도결합플라즈마 질량분석법 등을 이용한 세계 40개국, 49개 실험실의 분석값들과 함께 통계처리 되었다. 통계 처리한 결과, 본 실험실의 분석값들의 Z-score가 ${\pm}2$ 이내에 들어오는 결과를 얻었으며, 숙련도 시험도 분석된 모든 원소의 정확도와 정밀도가 기준에 통과되는 신뢰성 있는 결과를 얻어 현재 수행하고 있는 대기분진시료들의 분석품질관리가 적합함을 입증하였다.

INAA.ICP.AAS를 이용한 대기먼지 $(PM_{10})$의 다원소분석 (Multielement Analysis in Airborne Particulate Matter $(PM_{10})$ by INAA, ICP and AAS)

  • 정용삼;문종화;정영주;박광원;이길용;윤윤열;심상권;조경행;한명섭
    • 한국대기환경학회지
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    • 제15권4호
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    • pp.495-503
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    • 1999
  • Airborne particulate matter $(PM_{10})$ collected using high volume air sampler and silica fiber filter were analyzed by Instrumental Neutron Activation Analysis(INAA), Inductively Coupled Plasma Atomic Emission Spectrometry(ICP-AES) and Atomic Absorption Spectrometry(AAS), and the results were compared with each other. 30~40 trace elements in environmental standard reference materials(NIST SRM 1648 and NIES CRM No.8) were analyzed for the analytical quality control. The relative error for two-third of elements detected was less than 10%, and the standard deviation was less than 15%. During the sampling period for 24 hours, the mass concentration of total suspended particulate was 36.1$\mu\textrm{g}$/㎥ and the value is lower than the critical level in Korea. In the results of NAA, the elements of Al, As, Ba, Fe, La, Mg, Na, Sb, Zn were well agreed with those of other methods. In statistical estimation between different methods, the deviation of Al, Ba, Cr, Fe was less than 10% and quite reliable.

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The Effect of Chelators and Reductants on the Mobilization of Metals from Ambient Particulate Matter: More Transition Metals are Mobilized with PM2.5 than with PM10

  • Song, H-S;Chang, W-C;Bang, W-G;Kim, Y-S;Chung, N
    • 한국환경독성학회:학술대회논문집
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    • 한국환경독성학회 2002년도 추계국제학술대회
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    • pp.155-155
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    • 2002
  • Ambient urban particulate matters contain various transition metals. When the particulate matters are inhaled into the lung, not all but some part of metals from the particles might be mobilized to participate in a reaction that can damage various biomolecules, such as DNA and proteins. The dust particle size as well as organic acids may influence the metal mobilization. Thus, the mobilization of the metal from SRM1648 (NIST, USA) and urban particulate matters (PM2.5 and PM10) was measured in the presence of artificial or biological chelator with or without reductant. The degree of the mobilization was higher with the artificial or biological chelator than the control with saline. In some cases, a reductant increased the mobilization as much as about 5 times the control without the reductant. Especially, the mobilization of Fe was greatly influenced by the presence of reductants. In general, the degree of the mobilization of the transition metal was higher with PM2.5 than with PM10. Therefore, it is expected that, considering the previously known toxicities of the transition metals, the PM2.5 is more damaging to various biomolecules than PM10. The results also suggest that not the total amount but the mobilizable fraction of the metal in the dust particles should be considered with regard to the toxicity of the urban particulate matters.

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중성자 방사화분석법을 이용한 대기분진시료의 정량 (Determination of Trace Elements in Airborne Particulates by Instrumental Neutron Activation Analysis)

  • Chung, Yong-Sam;Chung, Young-Ju;Jeong, Eui-Sik;Cho, Seung-Yeon
    • Nuclear Engineering and Technology
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    • 제27권2호
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    • pp.234-247
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    • 1995
  • Trace elements in airborne particulates were analyzed by instrumental neutron activation analysis (INAA) under the optimum analytical condition. Neutron irradiation for sample was done at the irradiation hole(neutron flux 1$\times$10$^{13}$ n/$\textrm{cm}^2$.s) of TRIGA MARK-III research reactor in the Korea Atomic Energy Research Institute. For the verification of the analytical method, NIST SRM-1648 and NIES CRM No.8 ore chosen and analyzed. The accuracy and precision of the analysis of 40 and 24 trace elements in the samples were compared with the certified and reported values, respectively. The analytical method was found to be reliable enough when the analytical data of NIES sample were compared with those of different counties. In the analytical result of two or both of standard reference materials, relative standard deviation wes within the 15% except a few elements and the relative error was within the 10%. We used this method to analyze 30 trace elements in airborne particulates collected with the high volume air sampler(PM-10) at too different locations and also confirmed the possibility to use this method as a routine monitoring tool to find out environmental pollution sources.

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중성자 방사화분석법과 Gent SFU 샘플러를 이용한 도시의 농촌지역의 대기분지($PM_{10}$)관측 연구 (Study on Airborne Particulate Matter ($PM_{10}$) Monitoring in Urban and Rural Area by Using Gent SFU Sampler and Instrumental Neutron Activation Analysis)

  • 정용삼;문종화;김선하;박광원;강상훈
    • 한국대기환경학회지
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    • 제16권5호
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    • pp.453-467
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    • 2000
  • The aim of this research is to collect and characterize fine particles (FPM:$\leq$2.5${\mu}{\textrm}{m}$) and coarse particles (CPM: 2.5~10${\mu}{\textrm}{m}$) using a low volume air sampler provided by the IAEA, at urban (Taejon) and rural area(Wonju) for a period of about two years(April 1996 to May 1998) and to promote a use of nuclear analytical techniques for air pollution studies. For the collection of airborne particulate matter (PM(sub)10), the Gent stacked filter unit sampler and polycarbonate membrane filters were employed. The concentration of trace elements in collected APM samples were determined byu instrumental Neutron Activation Analysis. For validation of the analytical data, internal quality control were implemented by using both the comparison of the analytical results of standard reference materials(NIST SRM 1648) and interlaboratory comparison for proficiency test (NAT-3). The standard uncertainty was less than 15% and Z-score of two samples were within $\pm$1. The monitoring of (PM(sub)10) mass concentration and elemental concentrations were carried out weekly. The average mass concentration of (PM(sub)10) in urban and rural areas were 59.2$\pm$36.5$\mu\textrm{g}$/㎥ and 41.4$\pm$23.7$\mu\textrm{g}$/㎥, respectively. To investigate the emission source, the enrichment factors were calculated for the fine and coarse particle fractions at two sites, respectively and these values were classified for anthropogenic and soil origin elements.

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