Oliveira Éder Costa, Echegoyen Yolanda, Cruz Sandra Andrea, Nerin Cristina
UFABC - Federal University of ABC, Av. dos Estados, 5001, Bangú, CEP 09210-580, Santo André, SP, Brazil.
University of Zaragoza, Department of Analytical Chemistry, Aragon Institute of Engineering Research I3A, CPS, Torres Quevedo Building, Marıa de Luna St. 3, 50018 Zaragoza, Spain.
Talanta. 2014 Sep;127:59-67. doi: 10.1016/j.talanta.2014.03.042. Epub 2014 Apr 1.
Hollow fiber liquid phase microextraction (HFLPME) and solid phase microextraction (SPME) methods for pre-concentration of contaminants (toluene, benzophenone, tetracosane and chloroform) in food simulants were investigated. For HFLPME 1-heptanol, 2-octanone and dibutyl-ether were studied as extracting solvents. Analysis by gas chromatography coupled to mass spectrometry (GC-MS), flame ionization (GC-FID) and electron capture detectors (GC-ECD) were carried out. In addition, the methods were employed to evaluate the safety in use of a PET material after the recycling process (comprising washing, extrusion and solid state polymerization (SSP)) through extractability studies of the contaminants using 10% (v/v) ethanol in deionized water and 3% (w/v) acetic acid in deionized water as food simulants in different conditions: 10 days at 40°C and 2h at 70°C. The HFLPME preconcentration method provided increased sensitivity when compared to the SPME method and allowed to analyze concentration levels below 10 µg surrogate per kg food simulant. The results of the extractability studies showed considerable reductions after the extrusion and SSP processes and indicated the compliance with regulations for using recycled PET in contact with food.
研究了中空纤维液相微萃取(HFLPME)和固相微萃取(SPME)方法用于预富集食品模拟物中的污染物(甲苯、二苯甲酮、正二十四烷和氯仿)。对于HFLPME,研究了正庚醇、2-辛酮和二丁醚作为萃取溶剂。采用气相色谱-质谱联用(GC-MS)、火焰离子化(GC-FID)和电子捕获检测器(GC-ECD)进行分析。此外,通过在不同条件下使用去离子水中10%(v/v)乙醇和去离子水中3%(w/v)乙酸作为食品模拟物,对污染物进行萃取性研究,采用这些方法评估回收过程(包括洗涤、挤出和固相聚合(SSP))后PET材料的使用安全性:40°C下10天和70°C下2小时。与SPME方法相比,HFLPME预富集方法提高了灵敏度,并能够分析每千克食品模拟物中低于10μg替代物的浓度水平。萃取性研究结果表明,挤出和SSP过程后污染物含量大幅降低,表明回收PET用于食品接触符合法规要求。