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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Effect of column dimension on observed column efficiency in very high pressure liquid chromatography
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Effect of column dimension on observed column efficiency in very high pressure liquid chromatography

机译:色谱柱尺寸对超高压液相色谱中观察到的色谱柱效率的影响

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The effect of extra-column volume on observed linear velocity was investigated for columns of various internal diameters in very high pressure liquid chromatography. The results showed that the observed linear velocities were approximately 4.5, 9.5, 16.8, and 39.5% lower than the linear velocities corrected for the extra-column volume contribution for 4.6, 3.0, 2.1, and 1.0 mm internal diameter columns, respectively. An empirical relationship between extra-column band broadening and extra-column volume was obtained using 50. cm long tubings of various internal diameters. The peak variance from the extra-column volume is near linearly proportional to the square of the extra-column volume for tubings with 0.0635-0.178 mm (0.025-0.07. in.) i.d. using a 50/50 acetonitrile/water mobile phase at flow rates greater than 0.3. mL/min. The effect of column internal diameter and column length on observed efficiency was studied using 50 mm columns with four different column internal diameters and 2.1 mm i.d columns with three different lengths. The results showed that the observed column efficiencies for 3.0, 2.1, and 1.0 mm internal diameter columns were 18, 33, and 73% lower than that for a 4.6 mm internal diameter column for benzophenone (k=5.5), respectively. An approximate 20% decrease in theoretical plate number was observed for propiophenone (k=3.3) using a 50 mm × 2.1 mm column packed with 1.7. μm particles compared to a 150 mm × 2.1 mm column packed with 5.0. μm particles, while the former column provided 9 fold faster separation. It is the column to extra column volume ratio instead of absolute extra-column volume that determines the degree of extra-column band-broadening in VHPLC.
机译:在超高压液相色谱中,研究了各种内径色谱柱的柱外体积对观察到的线速度的影响。结果表明,观察到的线速度分别比针对内径为4.6、3.0、2.1和1.0 mm的色谱柱的柱外体积贡献​​校正的线速度低约4.5、9.5、16.8和39.5%。使用50.cm长的各种内径的管子获得了柱外谱带扩展和柱外体积之间的经验关系。对于i.d.为0.0635-0.178 mm(0.025-0.07英寸)的管路,来自柱外体积的峰方差与柱外体积的平方几乎成线性比例。使用50/50乙腈/水流动相,流速大于0.3。毫升/分钟使用具有四个不同色谱柱内径的50 mm色谱柱和具有三个不同长度的2.1 mm i.d色谱柱研究了色谱柱内径和色谱柱长度对观察到的效率的影响。结果表明,观察到的内径为3.0、2.1和1.0 mm的色谱柱效率比二苯甲酮(k = 5.5)的内径为4.6 mm的色谱柱分别低18%,33%和73%。使用装有1.7的50 mm×2.1 mm色谱柱,可以观察到苯丙酮(k = 3.3)的理论塔板数减少约20%。与150毫米×2.1毫米色谱柱填充5.0微米相比。 μm颗粒,而前一个色谱柱的分离速度提高了9倍。是柱与柱外体积之比,而不是绝对柱外体积,决定了VHPLC中柱外带的扩展程度。

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