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      GC-MS 를 이용한 하천수 중 Bisphenol계 화합물의 동시분석 및 모니터링 = Simultaneous Determination and Monitoring of Bisphenols in River Water using Gas Chromatography-Mass Spectrometry

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      https://www.riss.kr/link?id=A103630402

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      다국어 초록 (Multilingual Abstract)

      BACKGROUND:This study was carried out to establish an efficient sample preparation for the simultaneous determination of bisphenols (BPs) in river water samples using gas chromatography-mass spectrometry (GC-MS). Sample preparation was examined with conventional extraction methods, such as solid-phase extraction (SPE) and liquid-liquid extraction (LLE), and their efficiency was compared with validation results, including linearity of calibration curve, method detection limit (MDL), limit of quantification (LOQ), accuracy, and precision. METHODS AND RESULTS:The BPs (bisphenol A, BPA; bisphenol B, BPB; bisphenol C, BPC; bisphenol E, BPE; bisphenol F, BPF; bisphenol S, BPS) were analyzed using GC-MS. The range of MDLs by SPE and LLE methods was $0.0005{\sim}0.0234{\mu}g/L$ and $0.0037{\sim}0.2034{\mu}g/L$, and that of LOQs was $0.0015{\sim}0.0744{\mu}g/L$ and $0.0117{\sim}0.6477{\mu}g/L$, respectively. The calibration curve obtained from standard solution of $0.004{\sim}4.0{\mu}g/L$ (SPE) and $0.016{\sim}16{\mu}g/L$ (LLE) showed good linearity with $r^2$ value of 0.9969 over. Accuracy was 93.2~108% and 97.4~120%, and precision was 1.7~4.6% and 0.7~6.5%, respectively. The values of MDL and LOQ resulted from the SPE method were higher than those from the LLE method, particularly those values of BPA were highest among the BPs. Based on the results, the SPE method was applied to determine the BPs in river water samples. Water samples were collected from mainstream, tributary and sewage wastewater treatment plants (SWTPs) in the Yeongsan river basin. The concentration of BPB, BPC, BPE, BPF and BPS were not detected in all sites, whereas BPA was ranged $0.0095{\sim}0.2583{\mu}g/L$, which was $0.0166{\sim}0.0810{\mu}g/L$ for mainstreams, $0.0095{\sim}0.2583{\mu}g/L$ for tributaries, $0.0352{\sim}0.1217{\mu}g/L$ for SWTPs. CONCLUSION: From these results, the SPE method was very effective for the simultaneous determination of BPs in river water samples using GC-MS. We provided that it is a convenient, reliable and sensitive method enough to monitor and understand the fate of the BPs in aquatic ecosystems.
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      BACKGROUND:This study was carried out to establish an efficient sample preparation for the simultaneous determination of bisphenols (BPs) in river water samples using gas chromatography-mass spectrometry (GC-MS). Sample preparation was examined with c...

      BACKGROUND:This study was carried out to establish an efficient sample preparation for the simultaneous determination of bisphenols (BPs) in river water samples using gas chromatography-mass spectrometry (GC-MS). Sample preparation was examined with conventional extraction methods, such as solid-phase extraction (SPE) and liquid-liquid extraction (LLE), and their efficiency was compared with validation results, including linearity of calibration curve, method detection limit (MDL), limit of quantification (LOQ), accuracy, and precision. METHODS AND RESULTS:The BPs (bisphenol A, BPA; bisphenol B, BPB; bisphenol C, BPC; bisphenol E, BPE; bisphenol F, BPF; bisphenol S, BPS) were analyzed using GC-MS. The range of MDLs by SPE and LLE methods was $0.0005{\sim}0.0234{\mu}g/L$ and $0.0037{\sim}0.2034{\mu}g/L$, and that of LOQs was $0.0015{\sim}0.0744{\mu}g/L$ and $0.0117{\sim}0.6477{\mu}g/L$, respectively. The calibration curve obtained from standard solution of $0.004{\sim}4.0{\mu}g/L$ (SPE) and $0.016{\sim}16{\mu}g/L$ (LLE) showed good linearity with $r^2$ value of 0.9969 over. Accuracy was 93.2~108% and 97.4~120%, and precision was 1.7~4.6% and 0.7~6.5%, respectively. The values of MDL and LOQ resulted from the SPE method were higher than those from the LLE method, particularly those values of BPA were highest among the BPs. Based on the results, the SPE method was applied to determine the BPs in river water samples. Water samples were collected from mainstream, tributary and sewage wastewater treatment plants (SWTPs) in the Yeongsan river basin. The concentration of BPB, BPC, BPE, BPF and BPS were not detected in all sites, whereas BPA was ranged $0.0095{\sim}0.2583{\mu}g/L$, which was $0.0166{\sim}0.0810{\mu}g/L$ for mainstreams, $0.0095{\sim}0.2583{\mu}g/L$ for tributaries, $0.0352{\sim}0.1217{\mu}g/L$ for SWTPs. CONCLUSION: From these results, the SPE method was very effective for the simultaneous determination of BPs in river water samples using GC-MS. We provided that it is a convenient, reliable and sensitive method enough to monitor and understand the fate of the BPs in aquatic ecosystems.

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      참고문헌 (Reference)

      1 김동욱, "환경샘플 내 화학작용제 및 분해물질 분석을 위한 Liquid Phase Microextraction (LPME) 전처리 기법" 한국공업화학회 26 (26): 17-22, 2015

      2 박송인, "전라남도 지역의 하천수에 존재하는 내분비 장애물질(Bisphenol A와 Styrene oligomer)의 실태조사" 한국물환경학회 28 (28): 669-675, 2012

      3 조일규, "농업용 저수지에서 Bisphenol A의 잔류실태조사" 한국환경농학회 35 (35): 270-277, 2016

      4 Stachel, B., "Xenoestrogens in the River Elbe and its tributaries" 124 (124): 497-507, 2003

      5 Heemken, O. P., "The occurrence of xenoestrogens in the Elbe river and the North Sea" 45 (45): 245-259, 2001

      6 Wang, Q., "Simultaneously determination of bisphenol A and its alternatives in sediment by ultrasound-assisted and solid phase extractions followed by derivatization using GC-MS" 169 : 709-715, 2017

      7 Gatidou, G., "Simultaneous determination of the endocrine disrupting compounds nonylphenol, nonylphenol ethoxylates, triclosan and bisphenol A in wastewater and sewage sludge by gas chromatographymass spectrometry" 1138 (1138): 32-41, 2007

      8 Liu, R., "Simultaneous determination of endocrine disrupting phenolic compounds and steroids in water by solid-phase extraction-gas chromatography-mass spectrometry" 1022 (1022): 179-189, 2004

      9 Li, D. H., "Silyl derivatization of alkylphenols, chlorophenols, and bisphenol A for simultaneous GC/MS determination" 73 (73): 3089-3095, 2001

      10 Jin, H., "Occurrence and partitioning of bisphenol analogues in water and sediment from Liaohe River Basin and Taihu Lake, China" 103 : 343-351, 2016

      1 김동욱, "환경샘플 내 화학작용제 및 분해물질 분석을 위한 Liquid Phase Microextraction (LPME) 전처리 기법" 한국공업화학회 26 (26): 17-22, 2015

      2 박송인, "전라남도 지역의 하천수에 존재하는 내분비 장애물질(Bisphenol A와 Styrene oligomer)의 실태조사" 한국물환경학회 28 (28): 669-675, 2012

      3 조일규, "농업용 저수지에서 Bisphenol A의 잔류실태조사" 한국환경농학회 35 (35): 270-277, 2016

      4 Stachel, B., "Xenoestrogens in the River Elbe and its tributaries" 124 (124): 497-507, 2003

      5 Heemken, O. P., "The occurrence of xenoestrogens in the Elbe river and the North Sea" 45 (45): 245-259, 2001

      6 Wang, Q., "Simultaneously determination of bisphenol A and its alternatives in sediment by ultrasound-assisted and solid phase extractions followed by derivatization using GC-MS" 169 : 709-715, 2017

      7 Gatidou, G., "Simultaneous determination of the endocrine disrupting compounds nonylphenol, nonylphenol ethoxylates, triclosan and bisphenol A in wastewater and sewage sludge by gas chromatographymass spectrometry" 1138 (1138): 32-41, 2007

      8 Liu, R., "Simultaneous determination of endocrine disrupting phenolic compounds and steroids in water by solid-phase extraction-gas chromatography-mass spectrometry" 1022 (1022): 179-189, 2004

      9 Li, D. H., "Silyl derivatization of alkylphenols, chlorophenols, and bisphenol A for simultaneous GC/MS determination" 73 (73): 3089-3095, 2001

      10 Jin, H., "Occurrence and partitioning of bisphenol analogues in water and sediment from Liaohe River Basin and Taihu Lake, China" 103 : 343-351, 2016

      11 Kawaguchi, M., "Liquid phase microextraction with in situ derivatization for measurement of bisphenol A in river water sample by gas chromatography-mass spectrometry" 1110 (1110): 1-5, 2006

      12 Rudel, R. A., "Identification of alkylphenols and other estrogenic phenolic compounds in wastewater, septage, and groundwater on Cape Cod, Massachusetts" 32 (32): 861-869, 1998

      13 박종성, "HPLC-MS/MS를 이용한 Bisphenol A 분석 및 초음파에 의한 분해 특성 조사" 대한환경공학회 32 (32): 639-648, 2010

      14 Suzuki, T., "Environmental fate of bisphenol A and its biological metabolites in river water and their xeno-estrogenic activity" 38 (38): 2389-2396, 2004

      15 Lee, S. G., "Emission of bisphenol analogues including bisphenol A and bisphenol F from wastewater treatment plants in Korea" 119 : 1000-1006, 2015

      16 Kuch, H. M., "Determination of endocrine-disrupting phenolic compounds and estrogens in surface and drinking water by HRGC-(NCI)-MS in the picogram per liter range" 35 (35): 3201-3206, 2001

      17 Jin, X., "Determination of 4-tert-octylphenol, 4-nonylphenol and bisphenol A in surface waters from the Haihe River in Tianjin by gas chromatography–mass spectrometry with selected ion monitoring" 56 (56): 1113-1119, 2004

      18 Helaleh, M. I., "Column silylation method for determining endocrine disruptors from environmental water samples by solid phase micro-extraction" 54 (54): 1039-1047, 2001

      19 Fürhacker, M., "Bisphenol A: emissions from point sources" 41 (41): 751-756, 2000

      20 Hunt, P. A., "Bisphenol A exposure causes meiotic aneuploidy in the female mouse" 13 (13): 546-553, 2003

      21 Lee, H. J., "Antiandrogenic effects of bisphenol A and nonylphenol on the function of androgen receptor" 75 (75): 40-46, 2003

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      연월일 이력구분 이력상세 등재구분
      2027 평가예정 재인증평가 신청대상 (재인증)
      2021-01-01 평가 등재학술지 유지 (재인증) KCI등재
      2018-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2017-09-19 학술지명변경 외국어명 : The Korean Society of Environmental Agriculture -> Korean Journal of Environmental Agriculture KCI등재
      2015-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2011-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2009-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2007-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2004-01-01 평가 등재학술지 선정 (등재후보2차) KCI등재
      2002-07-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
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      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.41 0.41 0.42
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.46 0.42 0.724 0.08
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