• 제목/요약/키워드: On-Line Solid Phase Extraction (SPE)

검색결과 6건 처리시간 0.019초

On-line SPE-HPLC Method using Alumina Filtering to Selectively Extract Phenolic Compounds from Environmental Water

  • Lee, Sung-Kwang
    • Bulletin of the Korean Chemical Society
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    • 제31권12호
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    • pp.3755-3759
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    • 2010
  • A on-line SPE (solid phase extraction)-HPLC preconcentration method was developed for the determination of phenolic compounds at trace levels in environmental water sample. XAD-4 and Dowex 1-X8 were used as sorbent in the on-line SPE-HPLC method for the selective enrichment of nine phenolic compounds, which are included in the priority pollutants list of the US EPA. Also alumina prefiltering considerably reduced the amount of interfering peaks due to humic substances that could accumulated due to the preconcentration step and prevent quantification of polar phenolic compounds in environmental water samples. This method was used to determine the phenolic compounds in tap and river water and superiority to the US EPA 625 method in its enrichment factor, pretreatment time, recoveries, and detection limit. The limits of detection were in the range of $0.3-0.9\;{\mu}g/L$ in tap water sample.

On-Line SPE-LC/MSD 시스템을 이용한 수중의 과불화 화합물(PFCs) 분석 (Application of On-Line SPE-LC/MSD to Measure Perfluorinated Compounds (PFCs) in Water)

  • 손희종;염훈식;정종문;장성호
    • 대한환경공학회지
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    • 제35권2호
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    • pp.75-83
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    • 2013
  • 본 연구는 기존의 고상추출(SPE) 과정을 분석장비인 LC/MSD에 on-line으로 연결함으로써 cartridge의 건조를 막아 target 물질의 손실을 최대한 억제하였으며 11종의 PFCs에 대해 실제 matrix가 있는 낙동강 원수를 이용한 실험에서 $80.4{\pm}5.2%{\sim}109.5{\pm}1.4%$ 범위의 높은 회수율을 구할 수 있었다. 낙동강에서의 PFCs 분포를 조사한 결과 하수처리장 방류수의 영향을 받는 지역(진천천과 금호강 하류)은 고농도의 PFCs가 검출되었으며, 낙동강 하류의 매리원수에서는 검출농도가 급격히 감소하여 PFOA만 8.0 ng/L의 농도로 검출되었다. 외국의 PFCs 검출현황을 보고한 연구결과들과 비교해 볼 때 낙동강 지류에서는 비교적 높은 농도로 PFCs가 검출되어 안심할 수 있는 수준은 아니었으며, 낙동강 본류의 경우도 여러 지역의 상수원으로 이용되기 때문에 주기적인 모니터링이 필요한 것으로 나타났다.

Determination of Pesticide Residues in Water using On-line SPE-HPLC Coupling System

  • Lee, Dai Woon;Lee, Sung Kwang;Park, Young Hun;Paeng, Ki-Jung
    • 분석과학
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    • 제8권4호
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    • pp.539-543
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    • 1995
  • The on-line SPE-HPLC coupling system was developed for the efficient separation and determination of trace pesticides, such as phenoxyacetic acids and esters, and triazines in aqueous solutions. By using the developed SPE-HPLC on-line system, the band broadening usually observed in single precolumn switching mode was greatly reduced, consequently, the quantitative determination of trace pesticides could be achieved, Besides, since most of the analytes preconcentrated by SPE column could be injected directly into HPLC system, the limit of detection can be improved down to ppt level.

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LC/MS/MS를 이용한 유기인계 농약류의 최적 분석법 정립과 원·정수에서의 모니터링 (Development of Analytical Method and Monitoring of Organophosphorus Pesticides in the Raw Water and Clean Water by Liquid Chromatography-Tandem Mass Spectrometry)

  • 김경아;송미정;염훈식;손희종;이상원;최진택
    • 한국환경과학회지
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    • 제24권12호
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    • pp.1569-1582
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    • 2015
  • The analytical method for 16 organophosphorus pesticides was developed in this study. The 16 organophosphorus pesticides were analyzed by liquid chromatography-tandem mass spectrometry (LC/MS/MS) using on-line solid phase extraction (on-line SPE) with PLRP- S cartridge. Analysis of all analytes in the MS/MS was processed in the electrospray ioni-zation (ESI) positive mode. They are Azinphos ethyl, Chlorfenvinphos, Ethion, Famphur, Phosmet, Phosphamidon, Terbufos, Aspon, Chlorpyrifos-methyl, Crotoxyphos, Dichlofenthi-on, Dicrotophos, Fonofos, Thionazin, Dimethoate and Iprobenfos. Limits of detection (LODs) and Limits of quantification(LOQs) were obtained as 0.8~2.0 ng/L and 2.6~6.4 ng/L, respectively. All compounds were not detected at the 8 sampling points of the raw water and clean water.

LC/MS/MS를 이용한 수중의 카바릴·유기인계 농약 동시분석 (Simultaneous determination of carbaryl & organophosphorous pesticides in water by liquid chromatography-tandem mass spectrometry)

  • 박근영;신정철;표동진
    • 분석과학
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    • 제31권1호
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    • pp.39-46
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    • 2018
  • 온라인 고체상 추출을 이용한 LC/MS/MS를 사용하여 carbaryl과 유기인계 농약 7 종을 동시에 분석하는 방법을 확립하였다. 분석 대상농약은 carbaryl, diazinon, methyl-demeton, fenitrothion, malathion, parathion, phenthoate, EPN 등 8 종이다. 본 연구에서는 온라인 고체상 추출과 LC/MS/MS의 ESI positive mode로 전처리 없이 물 시료 $500{\mu}L$를 직접 주입하여 10분안에 분석하였다. 농약 8 종의 회수율은 86.8~100 % 였고, 정확도는 90.6~98.8 %로 90 %이상이었고, 정밀도는 1.3~5.2 %로 나타났으며 검출한계 및 정량한계는 각각 $0.05{\sim}0.28{\mu}g/L$, $0.16{\sim}0.89{\mu}g/L$ 였다. $0.5{\mu}g/L$에서 $8.0{\mu}g/L$까지 다섯 개의 농도로 검량선을 작성한 결과 모든 물질의 상관계수(r2)가 0.99이상을 나타냈다. 방법의 유효성 평가를 한 결과 모든 내용에서 적합하므로확립한 분석방법으로 수질 시료에서 농약을 조사한 결과 모두 검출되지 않았다.

Simultaneous Fluorimetric Determination of On-line Preconcentrated HANs, DCAD and TCAD by Using RPLC with a Postcolumn Derivatization System

  • Jung, Sung-Woon;Choi, Yong-Wook
    • Bulletin of the Korean Chemical Society
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    • 제34권6호
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    • pp.1783-1790
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    • 2013
  • A simultaneous analytical method has been developed for the fluorimetric determination of haloacetonitriles (HANs) [dichloroacetonitrile (DCAN), trichloroacetonitrile (TCAN), dibromoacetonitrile (DBAN), haloacetamides [dichloroacetamide (DCAD), and trichloroacetamde (TCAD)] in drinking water by using the combined on-line perconcentration/reversed phase liquid chromatography (RPLC)-postcolumn detection system. This on-line perconcentration system was achieved by employing a precolumn packed with a commercial solid phase extraction (SPE) sorbent for the enrichment and purification of the target analytes. The haloacetonitriles and haloacetamides were separated on CN analytical column in a 7.5% methanol-0.02 M phosphate buffered mobile phase at pH 3. The column effluents were reacted with postcolumn reagents of ophthaldialdehyde (OPA) and sulfite ion at pH 11.5, to produce a highly fluorescent isoindole fluorophore, which were measured with a fluorescence detector. Under the optimized conditions for RPLC and the postcolumn derivatization system all of the coefficient of determination of the standard calibration curves for the target analytes were over 0.99 and had a linear range from 5 to 100 ${\mu}g/L$. The detection limits showed 1.6 ${\mu}g/L$ for DCAD, 0.1 ${\mu}g/L$ for TCAD, 0.6 ${\mu}g/L$ for DCAN, 1.6 ${\mu}g/L$ for TCAN and 1 ${\mu}g/L$ for DBAN, and the recoveries were ranged from 64 to 99% except for DCAD with precisions less than 4.9% in distilled water, and from 72(${\pm}4%$) to 116%(${\pm}2%$) in tap water.