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Accurate measurements of frontal analysis for the determination of adsorption isotherms in supercritical fluid chromatography

机译:前沿测量的准确测量,用于测定超临界流体色谱中的吸附等温线

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The implementation of the traditional FA method is difficult with classical supercritical fluid chromatography (SFC) instruments. The instrument mixer and other sources of extra-column volumes are large and significantly broaden the fronts of injected plugs, which diminishes the precision and accuracy of the FA method. An SFC instrument was modified to permit more accurate determinations of adsorption isotherm data. The sample, the modifier, and CO_2 are separately pumped via small volume connection tubes into a small volume mixer (250 μL), where they are mixed into a homogeneous fluid fed to the column. The extra-column volumes and the column hold-up volume were accurately measured at each back pressure from the retention times of tracers. This modified instrument was used to measure the adsorption isotherm of S-naproxen by frontal analysis (FA) on a (R, R)-Whelk-O1 column, using a mixture of methanol (20%, v/v) and CO2 as the mobile phase. Its performance is studied at several different back pressures from 100 to 210bar. In all the experiments, the total flow rate was kept to a low value (1 mL/min) in order to minimize the variation of the equilibrium constant along the column. Although a suitable breakthrough curve could not be obtained at low back pressures (<150 bar) due to the closeness to the critical point pressure of the methanol/CO_2 mixture, excellent results were obtained at higher back pressures (>150 bar), conditions remote from the critical point and breakthrough curves with very sharp front shocks are obtained. The RSDs of the profiles recorded at each back pressures are excellent, better than 1%.
机译:用传统的超临界流体色谱(SFC)仪器很难实施传统的FA方法。仪器混合器和其他柱外体积较大,并且显着拓宽了进样塞的前端,这降低了FA方法的精度和准确性。修改了SFC仪器以允许更准确地确定吸附等温线数据。样品,改性剂和CO_2分别通过小体积连接管泵入小体积混合器(250μL),在此将它们混合到进料到色谱柱的均匀流体中。根据示踪剂的保留时间,在每个背压下准确测量了柱外体积和色谱柱保留体积。该改良仪器用于在(R,R)-Whelk-O1色谱柱上通过正面分析(FA)使用甲醇(20%,v / v)和CO2的混合物作为吸附剂来测定S-萘普生的吸附等温线。流动相。在100至210 bar的几种不同背压下研究了其性能。在所有实验中,总流速保持在较低的值(1 mL / min),以使平衡常数沿色谱柱的变化最小。尽管由于接近甲醇/ CO_2混合物的临界点压力而无法在低背压(<150 bar)下获得合适的突破曲线,但在较高背压(> 150 bar)下,遥远的条件下仍可获得出色的结果从临界点和突破曲线可以得到非常尖锐的前部冲击。在每个背压下记录的轮廓的RSD非常好,优于1%。

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