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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Effect of pressure pulses at the interface valve on the stability of second dimension columns in online comprehensive two-dimensional liquid chromatography
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Effect of pressure pulses at the interface valve on the stability of second dimension columns in online comprehensive two-dimensional liquid chromatography

机译:在线综合二维液相色谱中界面阀压力脉冲对二维色谱柱稳定性的影响

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摘要

Users of online comprehensive two-dimensional liquid chromatography (LaxLC) frequently acknowledge that the mechanical instability of HPLC columns installed in these systems, particularly in the second dimension, is a significant impediment to its use. Such instability is not surprising given the strenuous operating environment to which these columns are subjected, including the large number (thousands per day) of fast and large pressure pulses resulting from interface valve switches (on the timescale of tens of milliseconds) associated with very fast second dimension separations. There appear to be no published reports of systematic studies of the relationship between second dimension column lifetime and any of these variables. In this study we focused on the relationship between the lifetimes of commercially available columns and the pressure pulses observed at the inlet of the second dimension column that occur during the switching of the valve that interfaces the two dimensions of a LCxLC system. We find that the magnitude of the pressure drop at the inlet of the second dimension column during the valve switch, which may vary between 10 and 95% of the column inlet pressure, is dependent on valve switching speed and design, and has a dramatic impact on column lifetime. In the worst case, columns fail within the first few hours of use in an LCxLC system. In the best case, using a valve that exhibits much smaller pressure pulses, the same columns exhibit much improved lifetimes and have been used continuously under LCxLC conditions for several days with no degradation in performance. This result represents a first step in understanding the factors that affect second dimension column lifetime, and will significantly improve the usability of the LCxLC technique in general. (C) 2014 Elsevier B.V. All rights reserved.
机译:在线全面二维液相色谱(LaxLC)的用户经常认识到,安装在这些系统中的HPLC色谱柱的机械不稳定性,尤其是二维色谱柱,是其使用的重大障碍。考虑到这些色谱柱所处的艰苦操作环境,包括由于接口阀开关(在数十毫秒的时间范围内)产生的大量(每天数千个)快速和大压力脉冲(与数十毫秒的时间尺度相关),这种不稳定就不足为奇了。第二维分离。似乎没有关于第二维色谱柱寿命与任何这些变量之间关系的系统研究的公开报告。在这项研究中,我们重点研究了市售色谱柱的寿命与在连接LCxLC系统的二维的阀切换期间在第二维色谱柱的入口处观察到的压力脉冲之间的关系。我们发现,在阀切换过程中,第二维色谱柱入口处的压降大小可能会在色谱柱入口压力的10%到95%之间变化,取决于阀的开关速度和设计,并产生巨大影响色谱柱寿命。在最坏的情况下,色谱柱在LCxLC系统使用的最初几个小时内就会失效。在最佳情况下,使用压力脉冲小得多的阀,相同的色谱柱具有更长的使用寿命,并且已经在LCxLC条件下连续使用了几天,而且性能没有下降。该结果代表了了解影响第二维色谱柱寿命的因素的第一步,并将总体上显着提高LCxLC技术的可用性。 (C)2014 Elsevier B.V.保留所有权利。

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