High-Performance Liquid Chromatography (HPLC): A review

Ali Abdu Hussen
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引用次数: 5

Abstract

Today HPLC is widely applied for separations and purifications in a variety of areas including pharmaceuticals, biotechnology, environmental, polymer and food industries. It is accomplished by injection of a small amount of liquid sample into a moving stream of liquid (called the mobile phase) that passes through a column packed with particles of the stationary phase. The separation of a mixture into its components depends on different degrees of retention of each component in the column. HPLC is just one type of liquid chromatography, meaning the mobile phase is a liquid. Reversed-phase HPLC is the most common type of HPLC. The reversed-phase means the mobile phase is relatively polar, and the stationary phase is relatively non-polar. HPLC instrumentation includes a Solvent reservoir, pump, injector, column, detector, and integrator or acquisition and display system. The heart of the system is the column where separation occurs. The information that can be obtained using HPLC includes identification, quantification, and resolution of a compound. The major applications are in the area of Pharmaceuticals, food, research, manufacturing, forensics, and bio-monitoring of pollutants.
高效液相色谱(HPLC):综述
目前,高效液相色谱法广泛应用于制药、生物技术、环境、聚合物和食品工业等各个领域的分离和纯化。它是通过将少量液体样品注入流动的液体流(称为流动相)来完成的,流动相通过充满固定相颗粒的柱。将混合物分离成其组分取决于柱中每种组分的保留程度不同。HPLC只是液相色谱法的一种,这意味着流动相是液体。反相高效液相色谱是最常见的一种高效液相色谱。反相是指流动相相对极性,而固定相相对非极性。HPLC仪器包括溶剂储存器、泵、进样器、色谱柱、检测器和集成器或采集和显示系统。系统的核心是发生分离的色谱柱。使用HPLC可以获得的信息包括化合物的鉴定、定量和分离。主要应用于制药、食品、研究、制造、法医和污染物的生物监测等领域。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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