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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >GRADIENT REVERSED-PHASE HIGH-PERFORMANCE LIQUID CHROMATOGRAPHY OF SATURATED, UNSATURATED AND OXYGENATED FREE FATTY ACIDS AND THEIR METHYL ESTERS
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GRADIENT REVERSED-PHASE HIGH-PERFORMANCE LIQUID CHROMATOGRAPHY OF SATURATED, UNSATURATED AND OXYGENATED FREE FATTY ACIDS AND THEIR METHYL ESTERS

机译:饱和,不饱和和氧合游离脂肪酸及其甲基酯的梯度反相高效液相色谱

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Reversed-phase C-18 high-performance liquid chromatography (HPLC) separation of 49 free fatty acids and their methyl esters is reported here. Separation is achieved using methanol/water gradients and detection by either UV absorbance or evaporative light scattering. The factors decreasing retention times are: keto group, hydroxy group, epoxy group, triple bond, shortened chain length (C2H4 shorter), cyclopropenyl group, double bond, and cyclopropanyl group, in approximate correspondence to the order of their decreasing polarity. Fatty acids with cis-double bond, cis-epoxy and threo-dihydroxy substituents elute slightly earlier than the corresponding trans-double bond, trans-epoxy and erythro-dihydroxy fatty acids. These geometric isomers are better separated as free fatty acids than their methyl esters. For monounsaturates, cis-double bond at C-10 of the methyl ester of octadecenoic acid decreased the retention times most, with slightly increasing retention time as the double bond shifts toward either end of the chain. The trans-double bond of methyl esters of octadecenoic acids showed similar results. The effect of single double bond position in the HPLC of free octadecenoic acids is similar except the shortest retention time occurs when the double bond is at C-11. Two of the C-18 columns in series achieve the separation of double bond positional isomers (free fatty acids), cis-7-octadecenoic acid and petroselinic acid (cis-6) at a resolution R(s) = 1.05. [References: 19]
机译:此处报道了49种游离脂肪酸及其甲酯的反相C-18高效液相色谱(HPLC)分离。使用甲醇/水梯度进行分离,并通过紫外吸收或蒸发光散射进行检测。减少保留时间的因素有:酮基,羟基,环氧基,三键,缩短的链长(较短的C2H4),环丙烯基,双键和环丙烷基,大致与极性降低的顺序相对应。具有顺式-双键,顺式-环氧和苏-二羟基取代基的脂肪酸比相应的反式-双键,反式-环氧和赤-二羟基脂肪酸洗脱的时间稍早。这些几何异构体作为游离脂肪酸比其甲酯更好地被分离。对于单不饱和酸酯,十八碳烯酸甲酯的C-10处的顺式双键最多会缩短保留时间,随着双键朝链的任一端移动,保留时间会稍有增加。十八碳烯酸甲酯的反式双键显示出相似的结果。游离十八烯酸的HPLC中单双键位置的影响相似,不同之处在于,最短的保留时间发生在双键位于C-11时。串联的两个C-18色谱柱可实现双键位置异构体(游离脂肪酸),顺式7-十八烯酸和petroselinic酸(顺式6)的分离,分离度R(s)= 1.05。 [参考:19]

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