College of Science, Hebei University of Science and Technology, Shijiazhuang, China.
J Sep Sci. 2013 Apr;36(7):1298-303. doi: 10.1002/jssc.201201060. Epub 2013 Mar 8.
A method for the quantitative determination of bisphenol A in thermal printing paper was developed and validated. Bisphenol A was extracted from the paper samples using 2% NaOH solution, then the extracted analyte was enriched using single-drop microextraction followed by HPLC analysis. Several parameters relating to the single-drop microextraction efficiency including extraction solvent, extraction temperature and time, stirring rate, and pH of donor phase were studied and optimized. Spiked recovery of bisphenol A at 20 and 5 mg/g was found to be 95.8 and 108%, and the method detection limit and method quantification limit was 0.03 and 0.01 mg/g, respectively. Under the optimized conditions, the proposed method was applied to the determination of bisphenol A in seven types of thermal printing paper samples, and the concentration of bisphenol A was found in the range of 0.53-20.9 mg/g. The considerably minimum usage of organic solvents (5 μL 1-octanol) and high enrichment factor (189-197) in the sample preparation are the two highlighted advantages in comparison with previously published works.
建立并验证了一种用于热打印纸中双酚 A 的定量测定方法。双酚 A 用 2% NaOH 溶液从纸样中提取,然后通过单滴微萃取进行富集,再用 HPLC 进行分析。研究并优化了与单滴微萃取效率相关的几个参数,包括萃取溶剂、萃取温度和时间、搅拌速度以及水相的 pH 值。在 20 和 5 mg/g 的浓度下,双酚 A 的加标回收率分别为 95.8%和 108%,方法检测限和定量限分别为 0.03 和 0.01 mg/g。在优化条件下,该方法应用于七种类型的热打印纸样品中双酚 A 的测定,双酚 A 的浓度范围为 0.53-20.9 mg/g。与已发表的工作相比,该方法在样品制备中使用的有机溶剂(5 μL 正辛醇)用量极少(5 μL 正辛醇),富集因子高(189-197),这是两个突出的优点。