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[便携式微型液相色谱仪的研制]

[Development of a portable micro-liquid chromatograph].

作者信息

Fu Qiang, Yang Limin, Wang Qiuquan

机构信息

College of Chemistry and Chemical Engineering, Xiamen University, the MOE Key Laboratory of Spectrochemical Analysis and Instrumentation, Xiamen 361005, China.

Guangzhou Huibiao Testing Technology Center, Guangzhou 510700, China.

出版信息

Se Pu. 2021 Sep;39(9):1030-1037. doi: 10.3724/SP.J.1123.2021.06029.

Abstract

Portable analytical instruments find extensive application in on-site examination because of their significant advantages: these instruments are convenient and easy-to-carry, leading to high time-effectiveness, and involve low reagent consumption. We report a portable micro-liquid chromatograph (-μLC) that was designed and fabricated in our laboratory. The -μLC integrates homemade dual large-thrust syringe pumps for delivering the mobile phase, a capillary polymer monolithic column as the stationary phase for the separation of the target analytes, and a specially designed dual-functional optical-fiber microflow-cell for online detection. The dual-thrust syringe pumps can realize isocratic and/or gradient elution as well as reloading of the mobile phase, with flow rates ranging from 0.025 μL/min to 5.6 mL/min and the maximum working pressure of 4.5 MPa. The polymethacrylate based C-18 monolithic column facilitates the separation of small organic molecules and biomacromolecules. A homemade high-power light emission diode (LED) light source and a modified xenon flash lamp are assembled as the light source module. The dual-functional detector consists of an optical fiber microflow-cell with a self-focusing lens and a light-guiding capillary, light source module, and a small-sized grating spectrometer with an output wavelength range of 400-680 nm for the LED light source and 220-700 nm for the xenon flash lamp, enabling online detection of the absorption and fluorescence spectra of the analytes from 220 to 700 nm. A bifurcated optical fiber bundle is prepared and used to connect the light source, microflow-cell, and grating spectrometer so that the incident light leading-in and the fluorescence/scatting light leading-out can be realized simultaneously. The junction end of the bifurcated optical fiber bundles connects to one end of the light path of the microflow-cell, and a straight-through optical fiber connects another end of the microflow-cell. In the UV-Vis absorption mode, the straight-through optical fiber reads out the transmitted light, while in the fluorescence mode, the excitation light beam from the light source irradiates the sample solution in the flow-cell via one branch of the bifurcated optic fiber bundles. The fluorescence leading-out via the other branch of the bifurcated optical fiber bundles in the opposite direction of the excitation light beam is read out by the spectrometer. All the large-thrust syringe pumps and flow-path, capillary monolithic column, and optical fiber mediated flow-cell detection as well as controlling modules are installed in a suitcase with a total weight of less than 8 kg. The -μLC is powered by DC 12V 3A or 18650 lithium battery pack and controlled by a panel computer with a custom-built windows-based chromatography workstation software for data acquisition. When using the home-made polymethacrylate based C-18 monolithic capillary column (530 μm ID×200 mm in length), the mixed alkylbenzenes can be separated and detected in an isocratic elution mode. The separation efficiency is comparable to that obtained with a commercially available HPLC.

摘要

便携式分析仪器因其显著优势而在现场检测中得到广泛应用

这些仪器方便携带,具有很高的时效性,且试剂消耗低。我们报告了一种在本实验室设计和制造的便携式微液相色谱仪(-μLC)。该-μLC集成了用于输送流动相的自制双大推力注射泵、作为固定相用于分离目标分析物的毛细管聚合物整体柱以及用于在线检测的特殊设计的双功能光纤微流池。双推力注射泵可实现等度和/或梯度洗脱以及流动相的再装填,流速范围为0.025 μL/min至5.6 mL/min,最大工作压力为4.5 MPa。基于聚甲基丙烯酸甲酯的C-18整体柱有助于小分子有机化合物和生物大分子的分离。组装了自制的高功率发光二极管(LED)光源和改进的氙闪光灯作为光源模块。双功能检测器由带有自聚焦透镜和导光毛细管的光纤微流池、光源模块以及小型光栅光谱仪组成,LED光源的输出波长范围为400 - 680 nm,氙闪光灯的输出波长范围为220 - 700 nm,能够在线检测220至700 nm范围内分析物的吸收光谱和荧光光谱。制备了一束分叉光纤束,用于连接光源、微流池和光栅光谱仪,从而可同时实现入射光导入和荧光/散射光导出。分叉光纤束的连接端连接到微流池光路的一端,一根直通光纤连接微流池的另一端。在紫外 - 可见吸收模式下,直通光纤读出透射光,而在荧光模式下,来自光源的激发光束通过分叉光纤束的一个分支照射流动池中的样品溶液。通过分叉光纤束的另一个分支在与激发光束相反的方向上引出的荧光由光谱仪读出。所有的大推力注射泵、流路、毛细管整体柱以及光纤介导的流动池检测和控制模块都安装在一个总重量小于8 kg的手提箱中。-μLC由直流12V 3A或18650锂电池组供电,并由带有定制的基于Windows的色谱工作站软件进行数据采集的平板计算机控制。当使用自制的基于聚甲基丙烯酸甲酯的C-18整体毛细管柱(内径530 μm×长度200 mm)时,混合烷基苯可在等度洗脱模式下进行分离和检测。分离效率与市售高效液相色谱仪相当。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/02d4/9404123/8a6cfd0a09ba/cjc-39-09-1030-img_1.jpg

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