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Apparatus and Initial Results for Pressurized Planar Electrochromatography

机译:加压平面电色谱仪的仪器和初步结果

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摘要

Pressurized planar electrochromatography (PPEC) is a new planar chromatographic technique in which the mobile phase is driven by electroosmotic flow, while the sorbent layer is pressurized in a manner that allows heat to flow from the layer through an electrically insulating, thermally conducting, sheet of aluminum nitride ceramic. A prototype apparatus for performing PPEC is described. Separation by PPEC is faster than by conventional TLC, and an example is presented of a 24-fold enhancement in the speed of separation. PPEC was performed on both regular and high-performance C_(18) layers, and the latter yield substantially faster separation. The sorbent layer requires conditioning at elevated temperature before use, and solute migration velocity increases with this temperature. The flow rate increases in a linear manner with increasing voltage and diminishes in a nonlinear manner with increasing pressure. Both electrical current and Joule heating diminish with increasing pressure, and the diminution of flow at high pressure can be compensated by an increase in voltage. PPEC is more efficient than classical TLC. Theoretical plate heights diminish with increasing R_(f) and are in the range 29-21 and 55-27 μm for the high-performance and regular plates, respectively. PPEC retains the advantages of classical TLC but has the ability to separate a substantially higher number of samples simultaneously. An example is presented on the separation of nine samples in 1 min on a 2.5 cm×10 cm sorbent layer.
机译:加压平面电色谱(PPEC)是一种新的平面色谱技术,其中流动相由电渗流驱动,而吸附剂层的加压方式则允许热量从该层流过电绝缘的导热片材。氮化铝陶瓷。描述了用于执行PPEC的原型设备。通过PPEC进行的分离比通过常规TLC进行的分离更快,并且提供了分离速度提高24倍的示例。 PPEC在常规和高性能C_(18)层上均进行,后者可大大加快分离速度。吸附剂层在使用前需要在高温下进行调节,并且溶质迁移速度随该温度而增加。流量随着电压的增加呈线性增加,而随着压力的增加呈非线性减少。电流和焦耳热都随着压力的增加而减小,并且高压下的流量减小可以通过电压的增大来补偿。 PPEC比传统TLC更有效。理论板的高度随R_(f)的增加而减小,对于高性能板和常规板,理论板的高度分别在29-21和55-27μm的范围内。 PPEC保留了传统TLC的优点,但具有同时分离大量样品的能力。一个例子是在2.5 cm×10 cm吸附剂层上1分钟内分离9个样品。

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