首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Effects of column length, particle size, gradient length and flow rate on peak capacity of nano-scale liquid chromatography for peptide separations
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Effects of column length, particle size, gradient length and flow rate on peak capacity of nano-scale liquid chromatography for peptide separations

机译:柱长,粒径,梯度长度和流速对肽分离纳米级液相色谱峰容量的影响

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摘要

The effects of the column length, the particle size, the gradient length and the flow rate of a nanoLC system on peptide peak capacity were investigated and compared. Columns packed with 1.7 μm and 3 μm C18 materials into pieces of 75 μm capillary tubing of various lengths were tested with different gradient lengths and flow rates. While increasing the length of a column packed with the 1.7 μm material helped improve peptide peak capacity at the whole range of the tested gradient lengths (24–432 min), little improvement in peak capacity was observed with the increase of the length of a column packed with the 3 μm material unless a gradient longer than 50 min was carried out. Up to 30% of peak capacity increase was observed when a column's length is doubled, with little reduction in the throughput. In most cases, more than 50% of the increase in peak capacity was obtained with the reduction in the particle size from 3 μm to 1.7 μm. With the same backpressure generated, a shorter 1.7-μm-particle column outperformed a longer column packed with the 3 μm material. In a flow rate range of 100–700 nl/min, increasing the flow rate improved peak capacity for columns packed with 1.7 μm and 3 μm materials.
机译:研究并比较了柱长,粒径,梯度长度和nanoLC系统流速对肽峰容量的影响。在不同的梯度长度和流速下,将填充有1.7μm和3μmC18材料的色谱柱装入75μm各种长度的毛细管中。虽然增加填充有1.7μm物质的色谱柱的长度有助于改善整个测试梯度长度范围(24-432分钟)的肽峰容量,但随着色谱柱长度的增加,峰容量几乎没有改善除非进行了超过50分钟的梯度,否则填充有3μm的材料。当色谱柱的长度加倍时,观察到峰容量最多增加30%,而通量几乎没有降低。在大多数情况下,随着粒径从3μm减小到1.7μm,获得了超过50%的峰容量增加。在产生相同背压的情况下,较短的1.7μm颗粒色谱柱优于填充了3μm材料的较长色谱柱。在100–700 nl / min的流速范围内,增加流速可提高填充1.7μm和3μm材料的色谱柱的峰容量。

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