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亚临界水色谱法的快速柱加热方法

Rapid column heating method for subcritical water chromatography.

作者信息

Fogwill Michael O, Thurbide Kevin B

机构信息

Department of Chemistry, University of Calgary, 2500 University Drive N.W., Calgary, Alberta T2N 1N4, Canada.

出版信息

J Chromatogr A. 2007 Jan 19;1139(2):199-205. doi: 10.1016/j.chroma.2006.11.016. Epub 2006 Nov 28.

Abstract

A novel resistive heating method is presented for subcritical water chromatography (SWC) that provides higher column heating rates than those conventionally obtained from temperature-programmed gas chromatography (GC) convection ovens. Since the polarity of water reduces dramatically with increasing temperature, SWC employs column heating to achieve gradient elution. As such, the rate at which the mobile phase is heated directly impacts the magnitude of such gradients applied in SWC. Data from the current study demonstrate that the maximum column heating rate attainable in a typical SWC apparatus (i.e. using a GC convection oven) is around 10 degrees C/min, even at instrument oven settings of over three times this value. Conversely, by wrapping the separation column with ceramic insulation and a resistively heated wire, the column heating rates are increased five-fold. As a result, elution times can be greatly decreased in SWC employing gradients. Separations of standard alcohol test mixtures demonstrate that the retention time of the latest eluting component decreases by 35 to 50% using the prototype method. Additionally, solute retention times in this mode deviate by less than 1% RSD over several trials, which compares very well to those obtained using a conventional GC convection oven. Results suggest that the developed method can be a useful alternative heating technique in SWC.

摘要

本文提出了一种用于亚临界水色谱法(SWC)的新型电阻加热方法,该方法能提供比传统程序升温气相色谱法(GC)对流烘箱更高的柱加热速率。由于水的极性随温度升高而显著降低,SWC采用柱加热来实现梯度洗脱。因此,流动相的加热速率直接影响SWC中应用的此类梯度的大小。当前研究的数据表明,即使在仪器烘箱设置超过该值三倍的情况下,典型SWC装置(即使用GC对流烘箱)中可达到的最大柱加热速率约为10℃/分钟。相反,通过用陶瓷绝缘材料和电阻加热丝包裹分离柱,柱加热速率提高了五倍。结果,在采用梯度洗脱的SWC中,洗脱时间可大大缩短。标准酒精测试混合物的分离表明,使用原型方法时,最后洗脱组分的保留时间减少了35%至50%。此外,在几次试验中,该模式下溶质保留时间的相对标准偏差(RSD)偏差小于1%,与使用传统GC对流烘箱获得的结果相比非常好。结果表明,所开发的方法可成为SWC中一种有用的替代加热技术。

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