[1] 裴炳安. 苯的危害及检测[J].炼油技术与工程,2012,42(11):62-64. [2] 夏昭林,孙品,张忠彬,等.苯的职业健康危害研究的回顾与展望[J].中华劳动卫生职业病杂志,2005,23(4):241-243. [3] 刘黎文,宋世震,叶方立.职业苯接触生物标志物反-反式粘糠酸的分析与评价[J].国外医学(卫生学分册),2005,32(3):163-166. [4] 中华人民共和国国家卫生健康委员会.关于发布《工作场所有害因素职业接触限值第1部分:化学有害因素》(GBZ 2.1—2019)第1号修改单的通告[EB/OL].(2022-11-28)[2023-02-09].http://www.nhc.gov.cn/cms-search/xxgk/getManuscriptXxgk.htm?id=05b95bf4ca424f6696161d6de7ec3868. [5] 中华人民共和国国家卫生健康委员会.工作场所有害因素职业接触限值第1部分:化学有害因素:GBZ 2.1—2019[S].北京:中国标准出版社,2019:33. [6] 相红,梅勇,宋世震,等.高效液相色谱与液质联用测定尿中苯巯基尿酸的方法比较[J].环境与职业医学,2010,27(7):418-421. [7] 刘华良,朱宝立,史俊文.尿中8-羟基脱氧尿苷及反-反式黏糠酸和苯巯基尿酸测定的液相色谱-质谱法[J].中华劳动卫生职业病杂志,2014,32(2):142-144. [8] 中华人民共和国国家卫生和计划生育委员会.尿中苯巯基尿酸的高效液相色谱测定方法:GBZ 254—2014[S].北京:中国标准出版社,2014:1-5. [9] 施燕鹏,邵吉,谈思维,等.高效液相色谱法测定尿中苯巯基尿酸的方法改进[J].中国卫生检验杂志,2018,28(3):272-275. [10] 金永久,金艳红,金莉,等.阴离子交换固相萃取高效液相色谱测定尿中ttMA和SPMA[J].公共卫生与预防医学,2017,28(1):127-129. [11] 谈思维,施燕鹏,邵吉,等.磁性纳米材料固相微萃取-高效液相色谱法测定尿中苯巯基尿酸[J].中国卫生检验杂志,2018,28(16):1938-1940,1946. [12] 单晓月,施燕鹏,谈思维,等.基于硅藻土改性的磁性纳米材料分散固相萃取-高效液相色谱法测定尿中苯巯基尿酸[J].中国卫生检验杂志,2018,28(19):2309-2312. [13] KURD N,BAHRAMI A,AFKHAMI A,et al.Application of Fe3O4@TbBd nanobeads in Microextraction by Packed Sorbent(MEPS) for determination of BTEXs biomarkers by HPLC-UV in urine samples[J].J Chrom B,2022,1197:123197-123197. [14] SOLEIMANI E,BAHRANI A,AFKHAMI A,et al.Determination of urinary trans,trans-muconic acid using molecularly imprinted polymer in microextraction by packed sorbent followed by liquid chromatography with ultraviolet detection[J].J Chrom B,2017,1061-1062:65-71. [15] 叶海朋,施燕鹏,邵吉,等.分散液-液微萃取-高效液相色谱法测定尿中苯巯基尿酸[J].中国卫生检验杂志,2018,28(6):646-649. [16] 万玲利,郑丽辉,潘绥,等.超高效液相色谱-四极杆/静电场轨道阱高分辨质谱联用同时检测人体尿液中苯、甲苯和二甲苯的6种代谢产物[J].职业与健康,2021,37(8):1033-1039,1043. [17] 刘仁平,刘华良,周建华,等.高效液相色谱三重串联四级杆质谱法同时测定尿中8-羟基脱氧鸟苷、反-反式粘糠酸和苯巯基尿酸[J].工业卫生与职业病,2013,39(5):310-315. [18] 丁昌明,林少彬.尿中苯和甲苯代谢物苯巯基尿酸和苄基巯基尿酸的固相萃取-液相色谱-串联质谱同时测定法[J].环境与健康杂志,2013,30(9):812-815. [19] 张昊,朱峰,刘华良,等.UPLC-MS/MS法测定尿液中的反-反黏糠酸和苯巯基尿酸[J].环境监测管理与技术,2019,31(5):46-49. [20] BAIBERI A,SABATINI L,ACCORSI A,et al.Simultaneous determination of t,t-muconic,S-phenylmercapturic and S-benzylmercapturic acids in urine by a rapid and sensitive liquid chromatography/electrospray tandem mass spectrometry method[J].Rapid Commun Mass Spect, 2004,18(17):1983-1988. [21] GOMES R P,PENA C B,REZENDE J,et al.Validation of a new high-throughput method to determine urinary S-phenylmercapturic acid using low-temperature partitioning extraction and ultra high performance liquid chromatography-mass spectrometry[J].J Sep Sci,2017,40(2):550-557. [22] DUGHERI S,MUCCI N,CAPPELLI G,et al.New fully automated gas chromatographic analysis of urinary S-phenylmercapturic acid in isotopic dilution using negative chemical ionization with isobutane as reagent gas[J].J Mass Spect,2019,55(7):e4481-e4481. [23] PORNPIMOL K,SASITHORN L,WITAYA Y,et al.Determination of urinary trans,trans-muconic acid by gas chromatography in gasoline service attendants[J].J Heal Res,2009,23(3):117-124. [24] ASTON J P,BALL R L,POPLE J E,et al.Development and validation of a competitive immunoassay for urinary S-phenylmercapturic acid and its application in benzene biological monitoring[J].Biomarkers,2002,7(2):103-112. [25] 陈永艳,吕佳,张岚,等.在线固相萃取-超高效液相色谱-三重四极杆质谱法测定水源水和饮用水中107种典型农药及代谢产物[J].色谱,2022,40(12):1064-1075. [26] 朱定姬,朱杰,覃利梅,等.在线固相萃取液相色谱-线性离子阱质谱法同时测定尿中高香草酸及香草扁桃酸[J].工业卫生与职业病,2021,47(4):332-334. [27] 莫静,黄克建,罗轩,等.在线固相萃取-液相色谱-串联质谱法测定血液和尿液中31种有毒植物化学组分的含量[J].理化检验(化学分册),2019,55(1):17-25. [28] 中华人民共和国卫生部.职业卫生标准制定指南第5部分:生物材料中化学物质的测定方法:GBZ/T 210.5—2008[S].北京:人民卫生出版社,2008:3-4. |