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首页> 外文期刊>Journal of Chromatographic Science >Determination of Trace Benzene Derivatives in Aqueous Samples by Ultrasonic Enhanced Hollow Fiber LiquidPhase Microextraction Prior to Gas Chromatography
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Determination of Trace Benzene Derivatives in Aqueous Samples by Ultrasonic Enhanced Hollow Fiber LiquidPhase Microextraction Prior to Gas Chromatography

机译:气相色谱-超声强化空心纤维液相微萃取法测定水样中的痕量苯衍生物

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摘要

A new method was developed for the determination of trace compounds in water samples using ultrasonic-enhanced hollow fiber liquid-phase microextraction (U-HF-LPME). The ultrasonic radiation, which produces mechanical vibration and ultrasonic cavitation, could be used for accelerating the diffusion mass transfer process. Thus, ultrasonic was introduced into the HF-LPME procedure to enhance the mass-transfer rate during the aqueous and extraction solvent phases. Experimental parameters such as the extraction solvent, the extraction time, the ultrasonic frequency and power, the extractant volume, and ionic strength of the sample were assessed and optimized. Under optimal conditions, HF-LPME was achieved within 10 min. The high enrichment factor in the range of 120-666 and a good relative recovery in the range of 97-103% were evaluated with the relative standard deviations (RSDs, n = 5) of 0.3-7.0%. The limit of detection was in the range of 0.8-3.0 μg/L. The method was applied to the analysis of groundwater, lake water, and seawater. The results showed that the method can determine trace benzene derivatives in real samples with RSD values of 1.1-4.2%. The results demonstrated that U-HFLPME is a rapid, accurate, and effective sample preparation method, and could be successfully applied for the determination of trace compounds in analytical chemistry.
机译:开发了一种使用超声增强的中空纤维液相微萃取(U-HF-LPME)测定水样中痕量化合物的新方法。产生机械振动和超声空化的超声辐射可用于加速扩散传质过程。因此,将超声波引入HF-LPME过程中,以提高水相和萃取溶剂相期间的传质速率。评估并优化了实验参数,例如萃取溶剂,萃取时间,超声频率和功率,萃取剂体积和样品的离子强度。在最佳条件下,可在10分钟内获得HF-LPME。相对标准偏差(RSDs,n = 5)为0.3-7.0%,评估了120-666范围内的高富集系数和97-103%范围内的良好相对回收率。检测极限在0.8-3.0μg/ L的范围内。该方法用于地下水,湖水和海水的分析。结果表明,该方法可以测定实际样品中的痕量苯衍生物,相对标准偏差为1.1-4.2%。结果表明,U-HFLPME是一种快速,准确,有效的样品前处理方法,可成功用于分析化学中痕量化合物的测定。

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