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Shell and small particles; evaluation of new column technology.

机译:壳和小颗粒;新色谱柱技术的评估。

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摘要

The performance of 5 cm long columns packed with shell particles was compared to totally porous sub-2 microm particles in gradient and isocratic elution separations of hormones (dienogest, finasteride, gestodene, levonorgestrel, estradiol, ethinylestradiol, noretistherone acetate, bicalutamide and tibolone). Peak capacities around 140-150 could be achieved in 25 min with the 5 cm long columns. The Ascentis Express column (packed with 2.7 microm shell particles) showed similar efficiency to sub-2 microm particles under gradient conditions. Applying isocratic separation, the column of 2.7 microm shell particles had a reduced plate height minimum of approximately h=1.6. It was much smaller than obtained with totally porous particles (h approximately = 2.8). The impedance time also proved more favorable with 2.7 microm shell particles than with totally porous particles. The influence of extra-column volume on column efficiency was investigated. The extra-column dispersion of the chromatographic system may cause a shift of the HETP curves.
机译:将5 cm长的填充有壳颗粒的色谱柱的性能与全多孔亚2微米颗粒在激素(地诺孕,非那雄胺,孕二烯,左炔诺孕酮,雌二醇,炔雌醇,去甲肾上腺素乙酸酯,比卡鲁胺和替勃龙)的梯度和等度洗脱分离中的性能进行了比较。 5 cm长的色谱柱可在25分钟内达到140-150左右的峰容量。 Ascentis Express色谱柱(装有2.7微米外壳颗粒)在梯度条件下显示出与亚2微米颗粒相似的效率。应用等度分离,2.7微米壳颗粒的色谱柱具有至少约h = 1.6的减小的板高。它比用全多孔颗粒获得的小得多(h约等于2.8)。事实证明,使用2.7微米的外壳颗粒比使用完全多孔的颗粒更有利。研究了柱外体积对色谱柱效率的影响。色谱系统的柱外分散可能会导致HETP曲线偏移。

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