首页> 外文期刊>Journal of chromatography, B. Analytical technologies in the biomedical and life sciences >Separation of fructooligosaccharides using zeolite fixed bed columns.
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Separation of fructooligosaccharides using zeolite fixed bed columns.

机译:使用沸石固定床色谱柱分离低聚果糖。

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Recent studies have shown that the chromatographic separation of mixtures of monosaccharides and disaccharides may be improved by employing Y zeolites, a procedure which holds promise in the separation of oligosaccharides. In the present study, a column packed with zeolite was employed to study the separation of fructooligosaccharides (FOS). FOS were produced by an enzyme isolated from Rhodotorula sp., which produces GF2 (kestose), GF3 (nystose) and GF4 (frutofuranosyl nystose). The identification and quantification of the sugars were carried out by ion exchange chromatography with pulsed amperometric detection (HPAEC-PAD). The separation of fructooligosaccharides was carried out using a fixed bed column packed with Ba2+-exchange Y zeolites. The effects of temperature (40-50 degrees C), injected volume per bed volume (2.55-7.64%), superficial velocity (0.1-0.15 cm min(-1)) and eluent composition (40-60% ethanol) were investigated using a fractionary factorial design with separation efficiency as the response. The results showed that the most favorable conditions for the separation of the oligosaccharide-glucose mixture were 60% ethanol as eluent, temperature of 50 degrees C, superficial velocity of 0.1 cm min(-1) and 2.55% injection volume per bed volume of injection mixture, using two columns in series. The values for separation efficiency were 0.60 for oligosaccharide-glucose, 1.00 for oligosaccharide-fructose, 0.22 for oligosaccharide-sucrose, 0.43 for glucose-fructose, 0.82 for glucose-sucrose and 1.23 for fructose-sucrose.
机译:最近的研究表明,通过使用Y沸石可以改善单糖和二糖混合物的色谱分离,该方法在分离低聚糖方面有希望。在本研究中,采用装有沸石的柱子来研究低聚果糖(FOS)的分离。 FOS由分离自Rhodotorula sp。的酶产生,该酶产生GF2(Kestose),GF3(Nystose)和GF4(Frutofuranosyl nystose)。糖的鉴定和定量通过带有脉冲安培检测器的离子交换色谱法(HPAEC-PAD)进行。低果寡糖的分离是使用装有Ba2 +交换Y沸石的固定床色谱柱进行的。研究了温度(40-50摄氏度),每床体积注射体积(2.55-7.64%),表面速度(0.1-0.15 cm min(-1))和洗脱液组成(40-60%乙醇)的影响分离因子设计作为响应的分数阶乘设计。结果表明,分离低聚糖-葡萄糖混合物的最有利条件是60%乙醇作为洗脱液,温度为50摄氏度,表观速度为0.1 cm min(-1),每床注射体积的注射体积为2.55%混合物,使用两个串联的色谱柱。寡糖-葡萄糖的分离效率值为0.60,寡糖-果糖为1.00,寡糖-蔗糖为0.22,葡萄糖-果糖为0.43,葡萄糖-蔗糖为0.82,果糖-蔗糖为1.23。

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