文章摘要
王杰,尚俊琦,石娟,孙鹏伟,李欢欢,范文莹.采用高效液相色谱法测定PET瓶装饮用水中双酚A及其迁移量[J].包装工程,2019,40(23):70-74.
WANG Jie,SHANG Jun-qi,SHI Juan,SUN Peng-wei,LI Huan-huan,FAN Wen-ying.Determination of Bisphenol A and Its Migration in PET Bottled Drinking Water by High Performance Liquid Chromatography[J].Packaging Engineering,2019,40(23):70-74.
采用高效液相色谱法测定PET瓶装饮用水中双酚A及其迁移量
Determination of Bisphenol A and Its Migration in PET Bottled Drinking Water by High Performance Liquid Chromatography
投稿时间:2019-06-17  修订日期:2019-12-10
DOI:10.19554/j.cnki.1001-3563.2019.23.011
中文关键词: 高效液相色谱法  饮用水  塑料包装  双酚A  迁移量
英文关键词: high performance liquid chromatography  drinking water  plastic packaging  bisphenol A  migration
基金项目:湖北省自然科学基金青年项目(2018CFB316);湖北省教育厅中青年人才项目(Q20182602);湖北省高等学校实验室研究项目(HBSY2018-33);湖北文理学院科研基金项目(2017kypy006,2020170329,xk2018007)
作者单位
王杰 湖北文理学院 食品科学技术学院湖北 襄阳 441053 
尚俊琦 湖北文理学院 食品科学技术学院湖北 襄阳 441053 
石娟 湖北文理学院 食品科学技术学院湖北 襄阳 441053 
孙鹏伟 湖北文理学院 食品科学技术学院湖北 襄阳 441053 
李欢欢 湖北文理学院 食品科学技术学院湖北 襄阳 441053 
范文莹 湖北文理学院 食品科学技术学院湖北 襄阳 441053 
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中文摘要:
      目的 建立基于高效液相色谱技术的双酚A分析方法,用于快速准确检测襄阳市售5种PET瓶装饮用水塑料包装中的双酚A含量及其在饮用水中的迁移量。方法 样品经前处理后,采用高效液相色谱-紫外检测器方法分离检测,选择ODS-C18色谱柱(4.6 mm×150.0 mm,5 μm),流动相为甲醇-乙酸铵溶液(体积比为50∶50),柱温为30 ℃,流速为1 mL/min,检测波长为280 nm。结果 双酚A的检出限为0.004 μg/mL,在0.02 μg/mL质量浓度条件下的相对标准偏差为4.32%,在线性浓度为0.01~200 μg/mL内的检测信号与双酚A浓度具有良好的线性相关性(r2>0.9999),方法分析性能满足国标限量要求。襄阳市售主要品牌PET瓶装饮用水包装中虽均含有一定量的双酚A,但饮用水中未检出双酚A。PET包装中双酚A在0.4,4,40 μg/g等3个加标水平的回收率为70.30%~113.00%,饮用水中双酚A在0.1,1,10 μg/g等3个加标水平的回收率为90.00%~119.00%,加标回收结果良好。结论 此方法简便、准确、高效,适用于PET瓶装饮用水包装中双酚A含量及迁移量的分析。
英文摘要:
      The work aims to establish a bisphenol A analysis method based on the high performance liquid chroma-tography to rapidly and accurately determine the bisphenol A content and its migration in 5 kinds of plastic packaging for PET bottled drinking water sold in Xiangyang. The pretreated sample was detected by high performance liquid chroma-tography-ultraviolet detection (HPLC-UV) with a column of ODS-C18 (4.6 mm×150.0 mm, 5 μm) at 30 ℃. The mobile phase was methanol-ammonium acetate (V∶V, 50∶50), and the flow rate was 1 mL/min. The detection wavelength was 280 nm. The limit of detection (LOD) of bisphenol A was 0.004 μg/mL, and the relative standard deviation (RSD) was 4.32% at the concentration of 0.02 μg/mL. When the linear concentration was within 0.01~200 μg/mL, the detection signal had a good linear correlation (r2>0.9999) with bisphenol A concentration. The analysis capability of the method met the limited demand of national standard. Certain amount of Bisphenol A was found in the packaging of PET bottled drinking water of major brands sold in Xiangyang, while no bisphenol A was detected in drinking water. The recoveries of bisphenol A in PET packaging at the spiked concentration of 0.4, 4 and 40 μg/g were in the range of 70.30%~113.00%, and the recoveries of bisphenol A drinking water at the spiked concentration of 0.1, 1 and 10 μg/g were 90.00%~119.00%. The proposed method is simple, accurate and efficient, which is suitable for the analysis of bisphenol A content and its migration in the packaging of PET bottled drinking water.
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