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Gas-purged headspace liquid phase microextraction system for determination of volatile and semivolatile analytes

机译:气体顶空液相微萃取系统,用于测定挥发性和半挥发性分析物

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摘要

In order to achieve rapid, automatic, and efficient extraction for trace chemicals from samples, a system of gas-purged headspace liquid phase microextraction (GP-HS-LPME) has been researched and developed based on the original HS-LPME technique. In this system, semiconductor condenser and heater, whose refrigerating and heating temperatures were controlled by microcontroller, were designed to cool the extraction solvent and to heat the sample, respectively. Besides, inert gas, whose gas flow rate was adjusted by mass flow controller, was continuously introduced into and discharged from the system. Under optimized parameters, extraction experiments were performed, respectively, using GP-HS-LPME system and original HS-LPME technique for enriching volatile and semivolatile target compounds from the same kind of sample of 15 PAHs standard mixture. GC-MS analysis results for the two experiments indicated that a higher enrichment factor was obtained from GP-HS-LPME. The enrichment results demonstrate that GP-HS-LPME system is potential in determination of volatile and semivolatile analytes from various kinds of samples.
机译:为了实现从样品中快速,自动,高效地提取痕量化学物质,在原始HS-LPME技术的基础上,研究开发了一种气体吹扫顶空液相微萃取(GP-HS-LPME)系统。在该系统中,制冷和加热温度由微控制器控制的半导体冷凝器和加热器分别用于冷却萃取溶剂和加热样品。另外,通过质量流量控制器调节了气体流量的惰性气体被连续地引入和排出系统。在优化的参数下,分别使用GP-HS-LPME系统和原始HS-LPME技术进行提取实验,以从15种PAHs标准混合物的同一类型样品中富集挥发性和半挥发性目标化合物。这两个实验的GC-MS分析结果表明,从GP-HS-LPME获得了更高的富集因子。富集结果表明,GP-HS-LPME系统具有测定各种样品中挥发性和半挥发性分析物的潜力。

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