[1] |
LI X F, MITCH W A. Drinking water disinfection byproducts (DBPs) and human health effects: Multidisciplinary challenges and opportunities [J]. Environmental Science & Technology, 2018, 52(4): 1681-1689.
|
[2] |
BLUM K M, ANDERSSON P L, AHRENS L, et al. Persistence, mobility and bioavailability of emerging organic contaminants discharged from sewage treatment plants [J]. Science of the Total Environment, 2018, 612: 1532-1542. doi: 10.1016/j.scitotenv.2017.09.006
|
[3] |
邵珠涛. 水环境污染现状及其治理对策 [J]. 中国资源综合利用, 2017, 35(4): 14-15,18. doi: 10.3969/j.issn.1008-9500.2017.04.011
SHAO Z T. Current situation and countermeasures of water environment pollution [J]. China Resources Comprehensive Utilization, 2017, 35(4): 14-15,18(in Chinese). doi: 10.3969/j.issn.1008-9500.2017.04.011
|
[4] |
吴晓红. 我国水污染现状及治理措施 [J]. 环境与发展, 2017, 29(3): 80-81. doi: 10.16647/j.cnki.cn15-1369/X.2017.03.038
WU X H. Present situation of water pollution in China and its control measures [J]. Environment and Development, 2017, 29(3): 80-81(in Chinese). doi: 10.16647/j.cnki.cn15-1369/X.2017.03.038
|
[5] |
MONDELLO L, TRANCHIDA P Q, DUGO P, et al. Comprehensive two-dimensional gas chromatography-mass spectrometry: A review [J]. Mass Spectrometry Reviews, 2008, 27(2): 101-124. doi: 10.1002/mas.20158
|
[6] |
KLEE M S, COCHRAN J, MERRICK M, et al. Evaluation of conditions of comprehensive two-dimensional gas chromatography that yield a near-theoretical maximum in peak capacity gain [J]. Journal of Chromatography A, 2015, 1383: 151-159. doi: 10.1016/j.chroma.2015.01.031
|
[7] |
ADAHCHOUR M, BEENS J, BRINKMAN U A T. Recent developments in the application of comprehensive two-dimensional gas chromatography [J]. Journal of Chromatography A, 2008, 1186(1/2): 67-108.
|
[8] |
CASTILLO S, MATTILA I, MIETTINEN J, et al. Data analysis tool for comprehensive two-dimensional gas chromatography/time-of-flight mass spectrometry [J]. Analytical Chemistry, 2011, 83(8): 3058-3067. doi: 10.1021/ac103308x
|
[9] |
AMARAL M S S, NOLVACHAI Y, MARRIOTT P J. Comprehensive two-dimensional gas chromatography advances in technology and applications: Biennial update [J]. Analytical Chemistry, 2020, 92(1): 85-104. doi: 10.1021/acs.analchem.9b05412
|
[10] |
兰天宇, 杜海军. 全二维气相色谱技术在环境分析中的应用 [J]. 化工技术与开发, 2017, 46(4): 24-26. doi: 10.3969/j.issn.1671-9905.2017.04.007
LAN T Y, DU H J. Application of comprehensive two-dimensional gas chromatography in environmental analysis [J]. Technology & Development of Chemical Industry, 2017, 46(4): 24-26(in Chinese). doi: 10.3969/j.issn.1671-9905.2017.04.007
|
[11] |
夏丹, 高丽荣, 郑明辉. 全二维气相色谱分析持久性有机污染物的应用进展 [J]. 色谱, 2017, 35(1): 91-98. doi: 10.3724/SP.J.1123.2016.08029
XIA D, GAO L R, ZHENG M H. Recent developments in comprehensive two-dimensional gas chromatography for the analysis of persistent organic pollutants [J]. Chinese Journal of Chromatography, 2017, 35(1): 91-98(in Chinese). doi: 10.3724/SP.J.1123.2016.08029
|
[12] |
TRANCHIDA P Q, PURCARO G, DUGO P, et al. Modulators for comprehensive two-dimensional gas chromatography [J]. TrAC Trends in Analytical Chemistry, 2011, 30(9): 1437-1461. doi: 10.1016/j.trac.2011.06.010
|
[13] |
MARRIOTT P J, CHIN S T, MAIKHUNTHOD B, et al. Multidimensional gas chromatography [J]. TrAC Trends in Analytical Chemistry, 2012, 34: 1-21. doi: 10.1016/j.trac.2011.10.013
|
[14] |
GRÖGER T M, KÄFER U, ZIMMERMANN R. Gas chromatography in combination with fast high-resolution time-of-flight mass spectrometry: Technical overview and perspectives for data visualization [J]. TrAC Trends in Analytical Chemistry, 2020, 122: 115677. doi: 10.1016/j.trac.2019.115677
|
[15] |
何晓蕾, 洪涛, 张毅. 全二维气相色谱-飞行时间质谱法测定焦化废水中多环芳烃含量及此类废水中整体有机物组成的评估 [J]. 理化检验-化学分册, 2018, 54(10): 1122-1128.
HE X L, HONG T, ZHANG Y. Determination of polycyclic aromatic hydrocarbons in coking wastewater by comprehensive 2-dimensional GC-TOF-MS and comment on total composition of organic components in the wastewater [J]. Physical Testing and Chemical Analysis (Part B:Chemical Analysis), 2018, 54(10): 1122-1128(in Chinese).
|
[16] |
张红庆, 饶竹, 王晓春, 等. 全二维气相色谱-飞行时间质谱测定地下水中低环多环芳烃及其衍生物 [J]. 分析测试学报, 2017, 36(10): 1197-1202.
ZHANG H Q, RAO Z, WANG X C, et al. Determination of low-ring PAHs and their derivatives in groundwater by GC × GC-TOF MS [J]. Journal of Instrumental Analysis, 2017, 36(10): 1197-1202(in Chinese).
|
[17] |
MATAMOROS V, JOVER E, BAYONA J M. Part-per-trillion determination of pharmaceuticals, pesticides, and related organic contaminants in river water by solid-phase extraction followed by comprehensive two-dimensional gas chromatography time-of-flight mass spectrometry [J]. Analytical Chemistry, 2010, 82(2): 699-706. doi: 10.1021/ac902340e
|
[18] |
TEEHAN P, SCHALL M K, BLAZER V S, et al. Targeted and non-targeted analysis of young-of-year smallmouth bass using comprehensive two-dimensional gas chromatography coupled with time-of-flight mass spectrometry [J]. Science of the Total Environment, 2022, 806: 150378. doi: 10.1016/j.scitotenv.2021.150378
|
[19] |
MOHLER R E, O’REILLY K T, ZEMO D A, et al. Non-targeted analysis of petroleum metabolites in groundwater using GC × GC-TOFMS [J]. Environmental Science & Technology, 2013, 47(18): 10471-10476.
|
[20] |
卢昕妍, 王菲, 张丽敏, 等. 太湖西岸地表水中极性有机污染物非靶向筛查与生态风险评估 [J]. 环境科学, 2021, 42(11): 5284-5293.
LU X Y, WANG F, ZHANG L M, et al. Nontarget screening and ecological risk assessment of polar organic pollutants in surface water on the west bank of Taihu Lake [J]. Environmental Science, 2021, 42(11): 5284-5293(in Chinese).
|
[21] |
周秀花. 永定河流域表层水体中有机污染物筛查及潜在风险研究[D]. 武汉: 中南民族大学, 2019. ZHOU X H. Screening and risk assessment of organic pollutants in surface waters from Yongding River Basin, China[D]. Wuhan: South-central University for Nationalities, 2019(in Chinese). [知网硕士中文][知网硕士英文]
|
[22] |
李昆, 赵晓辉, 李科林, 等. 潘家口水库水体中有机物分布特征及变化趋势分析 [J]. 人民珠江, 2020, 41(8): 98-102,110.
LI K, ZHAO X H, LI K L, et al. Analysis of distribution characteristics and variation trends of organic matters in Panjiakou reservoir [J]. Pearl River, 2020, 41(8): 98-102,110(in Chinese).
|
[23] |
何旭丹, 徐琳, 张春晖, 等. 台州电子垃圾拆解地土壤中甲基硅氧烷的污染特征 [J]. 环境化学, 2016, 35(11): 2287-2294.
HE X D, XU L, ZHANG C H, et al. Pollution characteristics of methyl siloxanes in soil from an electronic waste(e-waste) dismantling area in Taizhou, China [J]. Environmental Chemistry, 2016, 35(11): 2287-2294(in Chinese).
|
[24] |
张松林, 吴丽华. 环甲基硅氧烷的环境分布、行为与效应研究进展 [J]. 生态毒理学报, 2016, 11(3): 72-85.
ZHANG S L, WU L H. The research progress of environmental distribution, behavior and effects of cyclic methylsiloxanes [J]. Asian Journal of Ecotoxicology, 2016, 11(3): 72-85(in Chinese).
|
[25] |
HANSSEN L, WARNER N A, BRAATHEN T, et al. Plasma concentrations of cyclic volatile methylsiloxanes (cVMS) in pregnant and postmenopausal Norwegian women and self-reported use of personal care products (PCPs) [J]. Environment International, 2013, 51: 82-87. doi: 10.1016/j.envint.2012.10.008
|