1.山东大学 环境研究院,山东 青岛 266237
2.山东省济南生态环境监测中心,山东 济南 250102
3.江苏省气候变化协同创新中心,江苏 南京 210023
杨凌霄,博士,教授,研究方向:环境中持久性有机污染物的分布特征和来源解析,E - mail:yanglingxiao@sdu.edu.cn
扫 描 看 全 文
张天琪,李圣增,张厚勇等.高效溶剂萃取-固相萃取/气相色谱-质谱法测定大气颗粒物中多环芳烃和有机磷阻燃剂[J].分析测试学报,2022,41(11):1600-1606.
ZHANG Tian-qi,LI Sheng-zeng,ZHANG Hou-yong,et al.Determination of PAHs and OPFRs in Atmospheric Particulate Matters by High Performance Solvent Extraction-Solid Phase Extraction/Gas Chromatography-Mass Spectrometry[J].Journal of Instrumental Analysis,2022,41(11):1600-1606.
张天琪,李圣增,张厚勇等.高效溶剂萃取-固相萃取/气相色谱-质谱法测定大气颗粒物中多环芳烃和有机磷阻燃剂[J].分析测试学报,2022,41(11):1600-1606. DOI: 10.19969/j.fxcsxb.22060104.
ZHANG Tian-qi,LI Sheng-zeng,ZHANG Hou-yong,et al.Determination of PAHs and OPFRs in Atmospheric Particulate Matters by High Performance Solvent Extraction-Solid Phase Extraction/Gas Chromatography-Mass Spectrometry[J].Journal of Instrumental Analysis,2022,41(11):1600-1606. DOI: 10.19969/j.fxcsxb.22060104.
建立了高效溶剂萃取(HPSE)-固相萃取(SPE)/气相色谱-质谱(GC-MS)测定大气颗粒物中16种多环芳烃(PAHs)和15种有机磷阻燃剂(OPFRs)的方法。以正己烷-二氯甲烷(1∶1,体积比)溶液为萃取溶剂,萃取液旋转蒸发浓缩后经Florisil固相萃取柱净化,PAHs和OPFRs的洗脱溶剂分别为10 mL正己烷-二氯甲烷(1∶1)和10 mL乙酸乙酯,洗脱液浓缩定容后进行GC-MS测定。16种PAHs和15种OPFRs的线性范围为0.001 ~ 2.0 μg/mL,相关系数(,r,2,)均大于0.99;检出限(LOD,,S,/,N ,= 3)分别为0.10 ~ 10.00 μg/L和2.59 ~ 75.00 μg/L,定量下限(LOQ,,S,/,N ,= 10)分别为0.33 ~ 33.33 μg/L和8.63 ~ 250.00 μg/L;平均回收率分别为73.0% ~ 98.0%和69.3% ~ 111%,相对标准偏差(RSD)分别为3.7% ~ 13%和2.5% ~ 17%。该方法适用于大气颗粒物样品中多环芳烃和有机磷阻燃剂的测定。
Polycyclic aromatic hydrocarbons(PAHs) and organophosphorus flame retardants(OPFRs) are widespread and persistent organic pollutants in the environment.A high performance solvent extraction(HPSE)-solid phase extraction(SPE)/gas chromatography-mass spectrometry(GC-MS) was established for the determination of 16 PAHs and 15 OPFRs in atmospheric particulate matters.The extraction solvent of HPSE was ,n,-hexane-dichloromethane(1∶1,by volume) solution.Meanwhile,other instrument parameters of HPSE(e.g.temperature and pressure) were also optimized.The extracts were concentrated by rotary evaporation,and then purified by Florisil solid phase extraction column.The eluents for PAHs and OPFRs were 10 mL of ,n,-hexane-dichloromethane(1∶1) and 10 mL of ethyl acetate,respectively,and then the eluents were concentrated and determined by GC-MS.The linear ranges for 16 PAHs and 15 OPFRs were 0.001-2.0 μg/mL,and the correlation coefficients(,r,2,) were greater than 0.99.The limits of detection(LODs,,S,/,N ,= 3) for PAHs and OPFRs were 0.10-10.00 μg/L and 2.59-75.00 μg/L,respectively.The limits of quantitation(LOQs,,S,/,N ,= 10) were 0.33-33.33 μg/L and 8.63-250.00 μg/L,respectively.The average recoveries for 16 PAHs and 15 OPFRs were in the range of 73.0%-98.0% and 69.3%-111%,with their relative standard deviations(RSDs) of 3.7%-13% and 2.5%-17%,respectively.The results showed that this method was suitable for the determination of PAHs and OPFRs in atmospheric particulate matter samples.
高效溶剂萃取固相萃取气相色谱-质谱法多环芳烃有机磷阻燃剂大气颗粒物
high performance solvent extractionsolid phase extractiongas chromatography-mass spectrometrypolycyclic aromatic hydrocarbonsorganophosphorus flame retardantsatmospheric particulate matters
Wang T,Tian M,Ding N,Yan X,Chen S J,Mo Y Z,Yang W Q,Bi X H,Wang X M,Mai B X.Environ. Sci. Technol.,2018,52(9):5199-5207.
Sundkvist A M,Olofsson U,Haglund P.Environ. Monit.,2010,12(4):943-951.
Wei G L,Li D Q,Zhuo M N,Liao Y S,Xie Z Y,Guo T L,Li J J,Zhang S Y,Liang Z Q.Environ. Pollut.,2015,196:29-46.
Chang K F,Fang G C,Chen J C,Wu Y S.Environ. Pollut.,2006,142(3):388-396.
Wang T,Ding N,Wang T,Chen S J,Luo X J,Mai B X.Environ. Res.,2018,167:437-444.
Huang Z Z,Wang C,Qi W H,Chen Y,Yuan M.J. Instrum. Anal. (黄肇章,王超,齐炜红,陈烨,袁懋.分析测试学报),2021,40(7):1025-1030.
Li J,Tang J H,Mi W Y,Tian C G,Emeis K C,Ebinghaus R,Xie Z Y.Environ. Sci. Technol.,2018,52(1):89-97.
Qiao M,Qi W X,Liu H J,Qu J H.Sci. Total Environ.,2014,481(1):178-185.
Wang R M,Tang J H,Xie Z Y,Mi W Y,Chen Y J,Wolschke H,Tian C G,Pan X H,Luo Y M,Ebinghaus R.Environ. Pollut.,2015,198:172-178.
Bandowe B,Shukurov N,Kersten M,Wilcke W.Environ. Pollut.,2010,158(9):2888-2899.
Wan W N,Zhang S Z,Huang H L,Wu T.Environ. Pollut.,2016,214:349-353.
Yang B,Liu S,Liu Y,Li X F,Lin X B,Liu M,Liu X R.Sci. Total Environ.,2017,574:358-368.
Yin Y,Zheng G M,Zhu X P,Ma L S,Wu S H,Pan D B,Dai X X,Xie W P.J. Instrum. Anal. 尹怡,郑光明,朱新平,马丽莎,吴仕辉,潘德博,戴晓欣,谢文平.分析测试学报),2011,30(10):1107-1112.
Gao G W,Chen H P,Liu P X,Ma G C,Hao Z X,Wang C,Chai Y F,Lu C Y.Chin. J. Trop.
Crops(高贯威,陈红平,刘平香,马桂岑,郝振霞,王晨,柴云峰,鲁成银.热带作物学报),2016,37(10):2032-2042.
Wang C L,Jiang S X,Liu H L,Ma Y J,Ruan H,Wei G F.J. Instrum. Anal. (王春蕾,蒋树新,刘华良,马永建,阮华,韦广丰.分析测试学报),2016,35(7):805-810.
Hou M M,Shi Y L,Cai Y Q.J. Instrum. Anal. (侯敏敏,史亚利,蔡亚岐.分析测试学报),2021,40(10):1439-1445.
Romanak K A,Wang S R,Stubbings W A,Hendryx M,Venier M,Salamova A.J. Chromatogr. A,2019,1588:41-47.
Interim Evaluation Report on the Implementation of the Action Plan for the Prevention and Control of Air Pollution(《大气污染防治行动计划》实施情况中期评估报告),[2022-06-01]. http://www.gov.cn/xinwen/2016-07/06/content_5088795.htmhttp://www.gov.cn/xinwen/2016-07/06/content_5088795.htm.
Terzi E,Samara C.Environ. Sci. Technol.,2004,38(19):4973-4978.
Hattori T,Tang N,Tamura K,Hokoda A,Yang X Y,Igarashi K,Ohno M,Okada Y,Kameda T,Toriba A,Hayakawa K.Environ. Forensics,2007,8(1/2):165-172.
Carlsson H,Nilsson U,Becker G,Ostman C.Environ. Sci. Technol.,1997,31(10):2931-2936.
Hu Y J.Environmental Behavior and Human Inhalation Exposure of Particles and Typical Organic Contaminants in Indoor and Outdoor Air. Guangzhou:Guangzhou Institute of Geochemistry,Chinese Academy of Sciences(胡元洁.室内外大气颗粒物和典型有机污染物的环境行为及人体呼吸暴露风险.广州:中国科学院广州地球化学研究所),2018.
A M L,Geng N B,Cao R,Zhang H J,Zhu X H,Chen J P.Environ. Chem. (阿米拉,耿柠波,曹蓉,张海军,朱秀华,陈吉平.环境化学),2021,40(12):3774-3786.
Yan Z F,Liao W,Feng C L,Wang C,Liu N.Asian J. Ecotoxicol. (闫振飞,廖伟,冯承莲,王琛,刘娜.生态毒理学报),2020,15(1):94-108.
Wang P C,Qi A A,Huang Q,Wang Y M,Tuo X,Zhao T,Duan S F,Gao H L,Zhang W,Xu P,Zhang T Q,Zhang X F,Wang W X,Yang L X.Sci. Total Environ.,2022,822:153542.
Zhang W T,Song S J,Lu B L,Peng Z J,Li P H.Chin. J. Anal. Chem. (张玮庭,宋善军,卢柏灵,彭子娟,李彭辉.分析化学),2021,49(4):571-580.
Xu Y Z,Chen Z F,Qi Z H,Cai Z W.Chin. J. Anal. Lab. (许颖藻,陈智锋,祁增华,蔡宗苇.分析试验室),2022,41(6):628-634.
Yue Z H,Wu L,Zhang H.Chem. Anal. Meter. (岳中慧,吴亮,张皓.化学分析计量),2021,30(3):49-55.
Tao X,Quan X Q,Yu J G,Du W Y,Qin S N.Environ. Chem. (陶鑫,全洗强,俞建国,杜文越,秦愫妮.环境化学),2019,38(12):2797-2807.
0
浏览量
8
下载量
0
CSCD
关联资源
相关文章
相关作者
相关机构