[1] ARP H P, BEOWN T N, BEREGER U, et al. Ranking REACH registered neutral, ionizable and ionic organic chemicals based on their aquatic persistency and mobility[J]. Environmental Science:Processes & Impacts, 2017, 19(7): 939-955.
[2] 刘艺, 于洋, 金彪, 等. 持久、迁移性有机污染物的水污染现状、分析检测方法和去除技术[J]. 地球化学, 2021, 50(3): 305-316.
[3] 王薛平, 黄星, 毕春娟, 等. 滴水湖及其环湖水系沉积物、土壤中多氯联苯的空间分布特征及风险评价[J]. 环境科学, 2016, 37(6): 2121-2130.
[4] 罗淑文, 刘兴泉, 吴峰华, 等. 有机氯农药污染现状及检测技术研究进展[J]. 农业工程技术, 2022, 42(26): 84-87.
[5] 王宏, 杨霓云, 闫振广, 等. 我国持久性、生物累积性和毒性(PBT)化学物质评价研究[J]. 环境工程技术学报, 2011, 1(5): 414-419.
[6] HOLOUBEK I, KOCAN A, HOLOUBKOVA I, et al. Persistent, bioaccumulative, and toxic compounds in Central and Eastern Europe–Hot spots[J]. Arhiv za higijenu rada i toksikologiju, 2001, 52(2): 239-251.
[7] REEMTSMA T, BERGER U, ARP H P, et al. Mind the gap: persistent and mobile organic compounds water contaminants that slip through[J]. Environmental Science & Technology, 2016, 50(19): 10308-10315.
[8] 刘茵. 气相色谱法测定N-乙烯基己内酰胺中己内酰胺残留量[J]. 化学工程与装备, 2011(2): 148-149.
[9] 许丰. 毛细管气相色谱法测定硫酸金刚烷胺注射液的含量[J]. 安徽医学, 2013, 34(10): 1526-1528. doi: 10.3969/j.issn.1000-0399.2013.10.038
[10] MONTES R, AGUIRRE J, VIDAL X, et al. Screening for polar chemicals in water by trifunctional mixed-mode liquid chromatography–high resolution mass spectrometry[J]. Environmental Science & Technology, 2017, 51(11): 6250-6259.
[11] 乐浩鸣, 梁泉, 卢银兵, 等. HPLC-MS-MS法快速筛查4种常见强极性除草剂[J]. 中国法医学杂志, 2022, 37(1): 65-68. doi: 10.13618/j.issn.1001-5728.2022.01.014
[12] SCHULZE S, STTLER D, NEUMANN M, et al. Using REACH registration data to rank the environmental emission potential of persistent and mobile organic chemicals[J]. Science of the Total Environment, 2018, 625(1): 1122-1128.
[13] NEUWALD I, MUSCHKET M, ZAHN D, et al. Filling the knowledge gap: A suspect screening study for 1310 potentially persistent and mobile chemicals with SFC- and HILIC-HRMS in two German river systems[J]. Water Research, 2021, 204: 117645. doi: 10.1016/j.watres.2021.117645
[14] 中华人民共和国国家环境保护总局. 地表水和污水监测技术规范: HJ/T 91-2002[S]. 北京: 中国环境出版社, 2003
[15] 中华人民共和国生态环境部. 地下水环境监测技术规范: HJ 164-2020[S]. 北京: 中国环境出版社, 2021.
[16] 韩超, 梁存珍, 高欲乾, 等. 水体中27种有机磷阻燃剂(OPFRs)的检测及风险评价[J]. 环境工程学报, 2022, 16(5): 1737-1747.
[17] 陈玫宏, 徐怀洲, 宋宁慧, 等. 高效液相色谱-串联质谱法同时测定水体和沉积物中12种有机磷酸酯类化合物[J]. 分析化学, 2017, 45(7): 987-995.
[18] HUNTSCHA S, SINGER H P, MCARDELL C S, et al. Multiresidue analysis of 88 polar organic micropollutants in ground, surface and wastewater using online mixed-bed multilayer solid-phase extraction coupled to high performance liquid chromatography–tandem mass spectrometry[J]. Journal of Chromatography A, 2012, 1268: 74-83. doi: 10.1016/j.chroma.2012.10.032
[19] ANGELES L F, AGA D S. Catching the elusive persistent and mobile organic compounds: novel sample preparation and advanced analytical techniques[J]. Trends in Environmental Analytical Chemistry, 2020, 25: e00078. doi: 10.1016/j.teac.2019.e00078
[20] DIAS N C, POOLE C F. Mechanistic study of the sorption properties of OASIS® HLB and its use in solid-phase extraction[J]. Chromatographia, 2002, 56(5): 269-275.
[21] BOULARD L, DIERKES G, TERNES T. Utilization of large volume zwitterionic hydrophilic interaction liquid chromatography for the analysis of polar pharmaceuticals in aqueous environmental samples: benefits and limitations[J]. Journal of Chromatography A, 2018, 1535: 27-43. doi: 10.1016/j.chroma.2017.12.023
[22] MONTES R, RODIL R, CELA R, et al. Determination of persistent and mobile organic contaminants (PMOCs) in water by mixed-mode liquid chromatography–tandem mass spectrometry[J]. Analytical chemistry, 2019, 91(8): 5176-5183. doi: 10.1021/acs.analchem.8b05792
[23] 干志伟, 孙红文, 王若男, 等. 固相萃取-离子对液相色谱-质谱法检测水环境中7种人工甜味剂[C]. 持久性有机污染物论坛2012暨第七届持久性有机污染物全国学术研讨会论文集. 2012: 3.
[24] 桂建业, 孙威, 张辰凌, 等. 离子色谱-串联质谱法分析环境水体中痕量人工甜味剂[J]. 分析化学, 2016, 44(03): 361-366.
[25] SCHEURER M, STORCK F R, BRAUCH H J, et al. Performance of conventional multi-barrier drinking water treatment plants for the removal of four artificial sweeteners[J]. Water research, 2010, 44(12): 3573-3584. doi: 10.1016/j.watres.2010.04.005
[26] MOHLE E, METZGER J W. Drugs in municipal sewage effluents: screening and biodegradation studies[M]. ACS Publications, 2001: 192-205.
[27] 赵军强, 韩典峰, 田秀慧, 等. 食品中金刚烷胺的危害, 检测方法和残留风险研究进展[J]. 中国渔业质量与标准, 2022, 12(3): 64-71.
[28] 朱丽波, 徐能斌, 冯加永, 等. 双柱串联-超高效液相色谱-质谱法检测水中的4种胺类物质[J]. 分析化学, 2013, 41(4): 594-597.
[29] VEEN I V D, BOER J D. Phosphorus flame retardants: Properties, production, environmental occurrence, toxicity and analysis[J]. Chemosphere, 2012, 88(10): 1119-1153. doi: 10.1016/j.chemosphere.2012.03.067
[30] LI J, LU J, XIANG L, et al. Adsorption and aerobic biodegradation of four selected endocrine disrupting chemicals in soil–water system[J]. International Biodeterioration & Biodegradation, 2013, 76(1): 3-7.
[31] YING G G, KOOKANA R S. Sorption and degradation of estrogen-like-endocrine disrupting chemicals in soil[J]. Environmental Toxicology and Chemistry, 2005, 24(10): 2640-2645. doi: 10.1897/05-074R.1
[32] JIN H, ZHU L. Occurrence and partitioning of bisphenol analogues in water and sediment from Liaohe River Basin and Taihu Lake, China[J]. Water Research, 2016, 103: 343-351. doi: 10.1016/j.watres.2016.07.059
[33] 李栋, 张圣虎, 张芹, 等. 长江南京段水源水中有机磷酸酯的污染特征与风险评估[J]. 环境科学, 2020, 41(1): 205-212. doi: 10.13227/j.hjkx.201907149
[34] BUERGE I J, BUSER H R, KAHLE M, et al. Ubiquitous occurrence of the artificial sweetener acesulfame in the aquatic environment: an ideal chemical marker of domestic wastewater in groundwater[J]. Environmental science & technology, 2009, 43(12): 4381-4385.
[35] SCHULZE S, ZAHN D, MONTES R, et al. Occurrence of emerging persistent and mobile organic contaminants in European water samples[J]. Water research, 2019, 153: 80-90. doi: 10.1016/j.watres.2019.01.008