Masson P
Station d'Agronomie, Centre de Recherches INRA de Bordeaux, Villenave d'Ornon, France.
J Chromatogr A. 2000 Jun 9;881(1-2):387-94. doi: 10.1016/s0021-9673(00)00164-3.
Investigations have been initiated to develop a sufficiently good separation of both major and minor organic acids and inorganic anions present in grape musts using a Dionex As11 column, a sodium hydroxide gradient elution and a suppressed conductivity detection. Separation was complicated in aqueous mobile phase by co-elutions and selectivity was optimized using organic modifiers that alter ion-exchange selectivity for hydrophobic ions. In this study, the influence of three different solvents (methanol, ethanol and acetonitrile) on the efficiency of column was compared. The best separation of all ions in a synthetic solution was achieved with an eluent containing 13% (v/v) methanol and 13% (v/v) ethanol in water, the run during only 20 min. This method was next applied to grape juices with success and has shown sensitivity and reproducibility. Moreover, sample preparation was a simple 20-fold dilution with 0.45 microm filtration and direct injection without prior sample clean-up.
研究人员已着手开展相关工作,旨在使用戴安公司的AS11色谱柱、氢氧化钠梯度洗脱以及抑制型电导检测,实现葡萄汁中主要和次要有机酸以及无机阴离子的良好分离。在水相流动相中,共洗脱现象使分离变得复杂,因此使用有机改性剂优化选择性,这些改性剂可改变对疏水性离子的离子交换选择性。在本研究中,比较了三种不同溶剂(甲醇、乙醇和乙腈)对色谱柱效率的影响。在含13%(v/v)甲醇和13%(v/v)乙醇的水溶液洗脱剂中,合成溶液中的所有离子在仅20分钟的运行时间内实现了最佳分离。该方法随后成功应用于葡萄汁,显示出灵敏度和重现性。此外,样品制备只需用0.45微米滤膜进行简单的20倍稀释,无需事先净化样品即可直接进样。