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Possibilities and Limitations of Fast Temperature Programming as a Route towards Fast GC

机译:快速温度编程作为实现快速GC的途径的可能性和局限性

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One possible way to speed up a gas chromatographic analysis is the application of fast temperature programming by using resistive heating techniques. With this heating technique programming rates up to 20 deg per second can be reached. A relative standard deviation of retention times better than 0.2% is obtained. Using fast temperature programming the analysis-times of a mineral oil sample, an industrial oligomer sample, and toxic compounds in diesel fuel have been reduced 5 to 20 times, compared to a standard temperature programmed analysis. In most cases resistive heating cannot be applied to reduce the analysis time of a complex sample. The use of fast temperature programming is preferable to the use of short columns and columns operated at above-optimum carrier gas velocities.
机译:加快气相色谱分析的一种可能方法是通过使用电阻加热技术进行快速温度编程。使用这种加热技术,可以达到每秒20度的编程速度。保留时间的相对标准偏差优于0.2%。与标准温度程序分析相比,使用快速温度程序分析,矿物油样品,工业低聚物样品和柴油中有毒化合物的分析时间减少了5至20倍。在大多数情况下,不能应用电阻加热来减少复杂样品的分析时间。与使用短色谱柱和以高于最佳载气速度运行的色谱柱相比,使用快速温度编程更可取。

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