Faculty of Art and Science, Department of Chemistry, Yıldız Technical University, Davutpasa, Esenler, İstanbul, 34220, Turkey.
Turkish Academy of Sciences (TÜBA), Piyade Street, No: 27, Çankaya, Ankara, 06690, Turkey.
J Mass Spectrom. 2020 Oct;55(10):e4622. doi: 10.1002/jms.4622.
A novel, ecofriendly, and easy extraction and preconcentration method named as vortex-assisted spraying-based fine droplet formation liquid-phase microextraction was proposed for the determination of prochloraz at trace levels in orange juice samples by gas chromatography-mass spectrometry (GC-MS). In this novel system, extraction solvent is dispersed by the help of spraying apparatus instead of dispersive solvent. Various parameters of the method were carefully optimized to increase signal-to-noise ratio of the analyte. Under the optimum chromatographic and extraction conditions, limit of detection and limit of quantification were calculated as 3.2 and 10.8 μg/kg, respectively. Moreover, enhancement in quantification power for the GC-MS system was determined as 372 folds based on LOQ comparison. Relative recovery results for orange juice samples were found to be between 95.0-107.7% by utilizing matrix matching calibration. Furthermore, the developed method may be used to efficiently and simply extract other organic compounds for their determinations in several matrices.
一种新型的、环保的、简便的萃取和预浓缩方法,名为涡旋辅助喷雾形成的细液滴形成液相微萃取,用于通过气相色谱-质谱法(GC-MS)测定橙汁样品中痕量的百菌清。在这个新系统中,萃取溶剂是借助喷雾装置分散的,而不是用分散溶剂。仔细优化了该方法的各种参数,以提高分析物的信噪比。在最佳的色谱和萃取条件下,检测限和定量限分别计算为 3.2 和 10.8 μg/kg。此外,通过与 LOQ 比较,确定 GC-MS 系统的定量能力增强了 372 倍。利用基质匹配校准,发现橙汁样品的相对回收率在 95.0-107.7%之间。此外,该方法可用于高效、简便地提取其他有机化合物,用于测定多种基质中的有机化合物。