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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Design of a coil satellite centrifuge and its performance on counter-current chromatographic separation of 4-methylumbelliferyl sugar derivatives with polar organic-aqueous two-phase solvent systems
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Design of a coil satellite centrifuge and its performance on counter-current chromatographic separation of 4-methylumbelliferyl sugar derivatives with polar organic-aqueous two-phase solvent systems

机译:螺旋卫星离心机的设计及其在极性有机水两相溶剂系统中4-甲基伞形酮糖衍生物逆流色谱分离中的性能

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A new high-speed counter-current chromatograph, named coil satellite centrifuge (CSC), was designed and fabricated in our laboratory. The CSC apparatus produces the satellite motion such that the coiled column simultaneously rotates around the sun axis (the angular velocity, omega(1)), the planet axis (omega(2)) and the satellite axis (the central axis of the column) (omega(3)). In order to achieve this triplicate rotary motion without twisting of the flow tube, the rotation of each axis was determined by the following formula: omega(1) = omega(2) + omega(3). This relation enabled to lay out the flow tube without twisting by the simultaneous rotation of three axes. The flow tube was introduced from the bottom side of the apparatus into the sun axis of the first rotary frame reaching the upper side of the planet axis and connected to the column in the satellite axis. The performance of the apparatus was examined on separation of 4-methylumbelliferyl (MU) sugar derivatives as test samples with organic-aqueous two-phase solvent systems composed of ethyl acetate/1-butanol/water (3:2:5, v/v) for lower phase mobile and (1:4:5, v/v) for upper phase mobile. With lower phase mobile, five 4-MU sugar derivatives including beta-D-cellobioside (Cel), beta-D-glucopyranoside, alpha-D-mannopyranoside, beta-D-fucopyranoside and alpha-L-fucopyranoside (alpha-L-Fuc) were separated with the combined rotation around each axis at counterclockwise (CCW) (omega(1)) - CCW (omega(2)) - CCW (omega(3)) by the flow tube distribution. With upper phase mobile, three 4-MU sugar derivatives including alpha-L-Fuc, beta-D-galactopyranoside and Cel were separated with the combined rotation around each axis at clockwise (CW) (omega(1)) - CW (omega(2)) - CW (omega(3)) by the flow tube distribution. A series of experiments on peak resolution and stationary phase retention revealed that better partition efficiencies were obtained at the flow rate of 0.5 mL/min (column 1) and 0.8 mL/min (column 2) for lower phase mobile and 0.2 mL/min (column 1) and 0.4 mL/min (column 2) for upper phase mobile when using the left-handed multilayer coil (total capacity: 57.0 mL for column 1 and 75.0 mL for column 2) under the rotation speeds of approximately omega(1) =300 rpm, omega(2) = 150 rpm and omega(3) = 150 rpm. (C) 2015 Elsevier B.V. All rights reserved.
机译:在我们的实验室中设计并制造了一种新的高速逆流色谱仪,称为线圈卫星离心机(CSC)。 CSC设备产生卫星运动,使得盘绕的圆柱同时绕太阳轴(角速度omega(1)),行星轴(omega(2))和卫星轴(圆柱的中心轴)旋转(欧米加3))。为了在不扭曲流量管的情况下实现这种三次旋转运动,每个轴的旋转由以下公式确定:omega(1)= omega(2)+ omega(3)。该关系使得能够通过三个轴的同时旋转来布置流量管而不会扭曲。流量管从设备的底侧引入第一旋转框架的太阳轴,到达行星轴的上侧,并在卫星轴上连接到色谱柱。使用由乙酸乙酯/ 1-丁醇/水(3:2:5,v / v组成)的有机-水两相溶剂系统分离作为测试样品的4-甲基伞形糖基(MU)糖衍生物时,检查了设备的性能)(针对较低相位移动设备)和(1:4:5,v / v)(针对较高相位移动设备)。具有较低相流动性的五种4-MU糖衍生物包括β-D-纤维二糖苷(Cel),β-D-吡喃葡萄糖苷,α-D-甘露吡喃糖苷,β-D-呋喃二糖苷和α-L-呋喃二糖苷(α-L-Fuc )通过流量管分布沿逆时针(CCW)(omega(1))-CCW(omega(2))-CCW(omega(3))绕每个轴的组合旋转分开。通过上相移动,将三个α-L-Fuc,β-D-吡喃半乳糖苷和Cel的4-MU糖衍生物以顺时针(CW)(omega(1))-CW(omega( 2))-通过流量管分配的连续波(omega(3))。一系列有关峰分离度和固定相保留的实验表明,在较低流动相的流速为0.5 mL / min(柱1)和在流速为0.8 mL / min(柱2)时,流速为0.2 mL / min(柱2)时,可以获得更好的分配效率。当使用左旋多层线圈(总容量:第1列为57.0 mL,第2列为75.0 mL)时,在大约ω(1)的旋转速度下,上相移动速度为0.4 mL / min(第2列) = 300 rpm,omega(2)= 150 rpm,omega(3)= 150 rpm。 (C)2015 Elsevier B.V.保留所有权利。

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