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      군산연안 다매체 환경에서 과불화화합물(PFASs)의 농도분포 및 수산물 섭 취를 통한 인체위해도 평가 = Concentrations and Composition Profiles of Perfluoroalkyl Substances (PFASs) in Coastal Environments from Gunsan, Korea: Assessment of Exposure to PFASs through Seafood Consumption

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      https://www.riss.kr/link?id=A108327096

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      다국어 초록 (Multilingual Abstract)

      Concentrations of perfluoroalkyl substances (PFASs) were measured in seawater, sediment, and biota collected from Gunsan coast, Korea to investigate their occurrence, distribution, and risk of exposure to humans through seafood consumption. The total ...

      Concentrations of perfluoroalkyl substances (PFASs) were measured in seawater, sediment, and biota collected from Gunsan coast, Korea to investigate their occurrence, distribution, and risk of exposure to humans through seafood consumption. The total concentrations of PFASs in seawater, sediment, and biota ranged from 5.97 to 74.9 ng/L, 0.01 to 13.3 ng/g dry weight, and 0.02 to 5.73 ng/g wet weight, respectively. Predominant PFAS compounds differed across matrices, indicating that the distribution of PFASs in multiple environmental samples is governed by their carbon-chain length. The concentrations of PFASs in seawater were significantly negatively correlated with salinity (P<0.01), suggesting terrestrial input (including land-used PFASs) as the major source of PFAS contamination in coastal environments. The estimated daily intakes (EDIs) of perfluorooctanoic acid (PFOA) and perfluorooctane sulfonate (PFOS) through seafood consumption were 0.05 and 0.06 ng/kg body weight/day, respectively. The EDIs of PFOA and PFOS measured in this study were lower those the proposed by the United States Environmental Protection Agency and Canada guidelines, indicating limited health risk for Korean population from PFASs through consumption of seafood from Gunsan coastal environment.

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      참고문헌 (Reference) 논문관계도

      1 권범근 ; 임채승 ; 임혜정 ; 나숙현 ; 권중근 ; 정선용, "영산강 수계에서 과불화 화합물의 모니터링" 대한환경공학회 37 (37): 303-311, 2015

      2 조천래 ; 이두희 ; 이병천 ; 김수진 ; 최경희 ; 윤준헌, "안성천과 경안천 수중 과불화화합물의 잔류농도와 분광학적 특성" 한국환경분석학회 13 (13): 226-236, 2010

      3 신미연 ; 임종권 ; 고영림 ; 최경식 ; 조경덕, "서울시 하수처리장 방류수 및 한강 내 PFOA와 PFOS의 과불화화합물 모니터링 연구" 한국환경보건학회 35 (35): 334-342, 2009

      4 이혜리 ; 간종범 ; 이보미 ; 김소희 ; 이준배 ; 천세억, "대청호와 금강유역 중 살충제, 과불화합물, 브롬화난연제의 모니터링" 한국농약과학회 21 (21): 161-174, 2017

      5 손희종 ; 황영도 ; 염훈식 ; 최진택 ; 권기원, "낙동강 수계에서의 과불화 화합물(PFCs) 검출 특성" 대한환경공학회 35 (35): 84-93, 2013

      6 이봉민 ; 성재현 ; 박시현 ; 이인석 ; 최민규, "군산연안의 퇴적물과 수산생물에서 다환방향족탄화수소(PAHs) 및폴리염화비페닐(PCBs)의 농도분포와 인체위해도 평가" 한국환경분석학회 22 (22): 230-241, 2019

      7 KNHANES, "Statistic Database for Estimated Daily Intake"

      8 KOSIS, "Statistic Database for Body Weight"

      9 Groffen T, "Preliminary study on the distribution of metals and persistent organic pollutants(POPs), including perfluoroalkylated acids(PFAS), in the aquatic environment near Morogoro, Tanzania, and the potential health risks for humans" 192 : 110229-, 2021

      10 Hung MD, "Perfluoroalkyl substances(PFASs)in special management sea areas of Korea : Distribution and bioconcentration in edible fish species" 156 : 111236-, 2020

      1 권범근 ; 임채승 ; 임혜정 ; 나숙현 ; 권중근 ; 정선용, "영산강 수계에서 과불화 화합물의 모니터링" 대한환경공학회 37 (37): 303-311, 2015

      2 조천래 ; 이두희 ; 이병천 ; 김수진 ; 최경희 ; 윤준헌, "안성천과 경안천 수중 과불화화합물의 잔류농도와 분광학적 특성" 한국환경분석학회 13 (13): 226-236, 2010

      3 신미연 ; 임종권 ; 고영림 ; 최경식 ; 조경덕, "서울시 하수처리장 방류수 및 한강 내 PFOA와 PFOS의 과불화화합물 모니터링 연구" 한국환경보건학회 35 (35): 334-342, 2009

      4 이혜리 ; 간종범 ; 이보미 ; 김소희 ; 이준배 ; 천세억, "대청호와 금강유역 중 살충제, 과불화합물, 브롬화난연제의 모니터링" 한국농약과학회 21 (21): 161-174, 2017

      5 손희종 ; 황영도 ; 염훈식 ; 최진택 ; 권기원, "낙동강 수계에서의 과불화 화합물(PFCs) 검출 특성" 대한환경공학회 35 (35): 84-93, 2013

      6 이봉민 ; 성재현 ; 박시현 ; 이인석 ; 최민규, "군산연안의 퇴적물과 수산생물에서 다환방향족탄화수소(PAHs) 및폴리염화비페닐(PCBs)의 농도분포와 인체위해도 평가" 한국환경분석학회 22 (22): 230-241, 2019

      7 KNHANES, "Statistic Database for Estimated Daily Intake"

      8 KOSIS, "Statistic Database for Body Weight"

      9 Groffen T, "Preliminary study on the distribution of metals and persistent organic pollutants(POPs), including perfluoroalkylated acids(PFAS), in the aquatic environment near Morogoro, Tanzania, and the potential health risks for humans" 192 : 110229-, 2021

      10 Hung MD, "Perfluoroalkyl substances(PFASs)in special management sea areas of Korea : Distribution and bioconcentration in edible fish species" 156 : 111236-, 2020

      11 Cerveny D, "Perfluoroalkyl substances in aquatic environment-comparison of fish and passive sampling approaches" 144 : 92-98, 2016

      12 Moon HB, "Perfluorinated compounds in minke whales (Balaenoptera acutorostrata) and long-beaked common dolphins (Delphinus capensis) from Korean coastal waters" 60 : 1130-1135, 2010

      13 Chen H, "Occurrence, spatial and temporal distributions of perfluoroalkyl substances in wastewater, seawater and sediment from Bohai Sea, China" 219 : 389-398, 2016

      14 Zhou Z, "Occurrence and transport of perfluoroalkyl acids (PFAAs), including shortchain PFAAs in Tangxun Lake, China" 47 : 9249-9257, 2013

      15 Gao Y, "Occurrence and fate of perfluoroalkyl substances in marine sediments from the Chinese Bohai Sea, Yellow Sea, and East China Sea" 194 : 60-68, 2014

      16 Lee JW, "Legacy and emerging per- and polyfluoroalkyl substances (PFASs) in the coastal environment of Korea: Occurrence, spatial distribution, and bioaccumulation potential" 251 : 126633-, 2020

      17 Shen A, "Historical trends of perfluoroalkyl substances (PFASs) in dated sediments from semi-enclosed bays of Korea" 128 : 287-294, 2018

      18 US EPA, "Health Effects Support Document for Perfluorooctanic Acid (PFOA)"

      19 US EPA, "Health Effects Support Document for Perfluorooctane Sulfonate (PFOS)"

      20 Giesy JP, "Global distribution of perfluorooctane sulfonate in wildlife" 35 : 1339-1342, 2001

      21 Berger U, "Fish consumption as a source of human exposure to perfluorinated alkyl substances in Sweden-Analysis of edible fish from Lake Vättern and the Baltic Sea" 76 : 799-804, 2009

      22 White ND, "Elevated levels of perfluoroalkyl substances in estuarine sediments of Charleston, SC" 521-522 : 79-89, 2015

      23 Fang S, "Distribution of perfluoroalkyl substances(PFASs)with isomer analysis among the tissues of aquatic organisms in Taihu Lake, China" 193 : 224-232, 2014

      24 Möller A, "Distribution and sources of polyfluoroalkyl substances(PFAS)in the River Rhine watershed" 158 : 3243-3250, 2010

      25 이완석 ; 최민규 ; 황동운 ; 이인석 ; 김숙양, "Chemical Contamination and Toxicity of Sediments from the Gunsan Coast, Korea" 한국수산과학회 15 (15): 241-250, 2012

      26 Hong S, "Bioaccumulation characteristics of perfluoroalkyl acids(PFAAs)in coastal organisms from the west coast of South Korea" 129 : 157-163, 2015

      27 Park M, "Adsorption of perfluoroalkyl substances (PFAS) in groundwater by granular activated carbons: Roles of hydrophobicity of PFAS and carbon characteristics" 170 : 115364-, 2020

      28 Zhang DQ, "Adsorption of perfluoroalkyl and polyfluoroalkyl substances (PFASs) from aqueous solution - A review" 694 : 113606-, 2019

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