首页|基于聚氨酯海绵的顶空液膜微萃取方法结合气相色谱-质谱联用技术分析环境水中挥发性多环芳烃

基于聚氨酯海绵的顶空液膜微萃取方法结合气相色谱-质谱联用技术分析环境水中挥发性多环芳烃

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本研究开发了一种基于聚氨酯海绵的新型顶空液膜微萃取方法及装置,结合气相色谱-质谱技术用于环境水中萘、苊烯、苊、芴、菲、蒽等 6种多环芳烃(PAHs)的快速、高灵敏分析,并考察了萃取溶剂种类及用量、抽吸次数、萃取温度、搅拌速度、洗脱剂体积对 6种PAHs富集效果的影响.结果表明,以 40µL四氯化碳作为萃取剂,加载于底部直径和高均为 4mm的聚氨酯海绵微型圆柱内,在 65℃、1 000 r/min萃取条件下动态抽吸150次,随后采用 30µL四氯化碳洗脱并结合物理挤压回收溶剂的萃取效果较佳.方法学验证结果表明,在低、中、高 3个加标水平(0.1、0.5、1 μg/L)下,6种PAHs的相对回收率为 94.7%~113.2%,日内、日间精密度分别为1.0%~8.1%和 4.2%~9.5%;在 0.01~5 μg/L浓度范围内的线性关系良好(R2≥0.997);以 3倍和 10倍信噪比确定的检出限和定量限分别为 3~30 ng/L和 10~100 ng/L.该方法操作便捷、装置简单、成本低、富集效果好、检测灵敏度高,在微量挥发物分析与检测领域具有较好的开发和应用价值.
Analysis of Volatile Polycyclic Aromatic Hydrocarbons in Environmental Water Using Headspace Microextraction Based on a Polyurethane Sponge-Supported Liquid Film Combined with Gas Chromatography-Mass Spectrometry
A method of combining headspace microextraction technique based on a polyurethane sponge-supported liquid film with gas chromatography-mass spectrometry(GC-MS)was developed for convenient and sensitive analysis of six polycyclic aromatic hydrocarbons(PAHs)in environmental water samples.The microextraction device consists of three parts,namely injector,polyurethane sponge,and headspace bottle.Firstly,the commercially available polyurethane sponge was specially tailored to be fitted into miniature cylinders that were compatible with the internal cavity of the 2.5 mL syringe needle.Then the extraction solvents were loaded to form a microextraction liquid film on the surface and inside of the sponge.After sealed with syringe barrel,the syringe needle was inserted into the septum of headspace bottle for headspace microextraction.The dynamic suction,heating assistance,and magnetic stirring were adopted to accelerate the volatilization process and transferring of the analytes in gas-liquid interface.Given the excellent elasticity of polyurethane sponge,the extraction solution could be successfully recovered through solvent elution and physical extrusion.The influence of the types and amounts of extraction solvents,suction time,heating(extraction)temperatures,stirring speeds,and eluent volumes on the enrichment efficiency of the monitored PAHs were systematically investigated.The results indicated that the satisfactory extraction efficiency could be achieved by using 40µL of carbon tetrachloride as an extractant,which were loaded into a polyurethane sponge microcylinder with a bottom diameter and height of 4 mm,and followed by 150 cycles dynamic suction under extraction conditions of 65 ℃ and 1 000 r/min.Subsequently,physical extrusion was adopted to collect the extraction solution after elution with 30µL of carbon tetrachloride.The validation results demonstrated that the proposed method achieves good relative recoveries of PAHs ranging from 94.7%to 113.2%at three spiked levels of 0.1,0.5,and 1 μg/L.The intra-and inter-day precisions are in the range of 1.0%-8.1%and 4.2%-9.5%,respectively.Good linearities are observed for all monitored PAHs with the regression coefficients(R2)greater than 0.997 in the concentration range of 0.01-5 μg/L.The limits of detection(LODs)and quantification(LOQs)are in the range of 3-30 ng/L and 10-100 ng/L,respectively.This method is easy to operate,and has the advantages of low cost,high sensitivity as well as fast speed,having highly potential in the field of trace volatile analysis in environmental samples.

headspace microextractionliquid phase microextractiongas chromatography-mass spectrometry(GC-MS)polycyclic aromatic hydrocarbons(PAHs)polyurethane sponge

许旭、赵世平、侯铸琛、王延鑫、刘雨萌、吕佳、季宝成、白艳红

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郑州轻工业大学食品与生物工程学院,河南郑州 450001

冷链食品加工与安全控制教育部重点实验室(郑州轻工业大学),河南郑州 450001

河南省冷链食品质量安全控制重点实验室,河南郑州 450001

顶空微萃取 液相微萃取 气相色谱-质谱(GC-MS) 多环芳烃(PAHs) 聚氨酯海绵

国家自然科学基金青年基金河南省高等学校重点科研项目河南省重点研发与推广专项

3220217424A550021232102321118

2024

质谱学报
北京中科科仪技术发展有限责任公司 中国物理学会质谱分会

质谱学报

CSTPCD北大核心EI
影响因子:1.046
ISSN:1004-2997
年,卷(期):2024.45(5)