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首页> 外文期刊>Journal of separation science. >Headspace single drop and hollow fiber liquid phase microextractions for HPLC determination of phenols
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Headspace single drop and hollow fiber liquid phase microextractions for HPLC determination of phenols

机译:顶空单滴和中空纤维液相微萃取用于HPLC测定酚

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Two methods based on headspace single drop microextraction (HS-SDME) and headspace hollow fiber liquid phase microextraction (HS-HF-LPME) were developed and critically compared with HPLC-UV determination of phenols (including phenol (Ph), 2-chlorophenol (CP), 2,4-dichlorophenol (DCP) and 2,4,6-trichlorophenol (TCP)) in this paper. The significant parameters affecting the extraction efficiency of the target analytes in both extraction modes were studied and the optimal extraction conditions were established. Under the optimal conditions, the detection limits (S/N = 3) for Ph, CP, DCP and TCP obtained by HS-SDME-HPLC-UV and HS-HF-LPME-HPLC-UV were 2.1, 0.2, 0.8,1.1 ng/mL and 4.2, 0.4, 0.4, 0.4 ng/mL with enrichment factors of 15.8, 198.9, 159.7, 194.8 and 9.2, 149.9, 301.9, 411.1, respectively. The RSDs obtained by HS-SDME-HPLC-UV and HS-HF-LPME-HPLC-UV were 3.7, 4.0, 9.8, 6.7% and 6.3, 3.6, 3.1, 4.8% for Ph, CP, DCP and TCP, respectively. Both extraction modes have a comparable analytical performance, but HS-HF-LPME was more robust than HS-SDME, while HS-SDME was simpler than HS-HF-LPME. The two headspace microextraction modes were applied for HPLC-UV determination of target phenols in water, honey and toner samples, and the determined values obtained by both techniques were in good agreement with each other.
机译:开发了两种基于顶空单滴微萃取(HS-SDME)和顶空中空纤维液相微萃取(HS-HF-LPME)的方法,并将其与HPLC-UV测定的苯酚(包括苯酚(Ph),2-氯苯酚( CP),2,4-二氯苯酚(DCP)和2,4,6-三氯苯酚(TCP))。研究了两种萃取模式下影响目标分析物萃取效率的重要参数,并确定了最佳萃取条件。在最佳条件下,通过HS-SDME-HPLC-UV和HS-HF-LPME-HPLC-UV获得的Ph,CP,DCP和TCP的检出限(S / N = 3)为2.1、0.2、0.8、1.1 ng / mL和4.2、0.4、0.4、0.4 ng / mL,富集因子分别为15.8、198.9、159.7、194.8和9.2、149.9、301.9、411.​​1。通过HS-SDME-HPLC-UV和HS-HF-LPME-HPLC-UV获得的RSD的Ph,CP,DCP和TCP分别为3.7、4.0、9.8、6.7%和6.3、3.6、3.1、4.8%。两种萃取模式均具有可比的分析性能,但是HS-HF-LPME比HS-SDME更耐用,而HS-SDME比HS-HF-LPME更简单。两种顶空微萃取模式用于HPLC-UV法测定水,蜂蜜和色粉样品中的目标酚,并且通过两种技术获得的测定值彼此非常吻合。

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