Dynamic vs constant liquid flow calibrations down to 20 nL/min

H. Bissig, M. de Huu
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引用次数: 0

Abstract

Calibration of flow devices is important in several areas of pharmaceutical, flow chemistry, HPLC and microfluidic applications, where dosage of process liquids or accurate measurement of the flow rate are important. The process-oriented liquid itself might influence the performance of the flow device. Therefore, the calibration of the flow meter or microfluidic device with the process-oriented liquid is important and performing dynamic flow profile changes to simulate any dosing process gives important insight in the behaviour of these flow devices and their accuracies under non-constant flow conditions. Therefore, METAS has developed facilities with METAS piston provers to address the issue of measuring with process-oriented liquids non-constant flow profiles for flow rates down to 20 nL/min. The stated measurement uncertainties for the constant flow rate and for the dynamic flow profile changes are 1 % and 2 % at 20 nL/min. The piston provers, the new developed capillary beaker for the gravimetric reference method, validation measurements as well as response time characterization with incompressible and compressible liquids are discussed in this paper.
动态与恒定液体流量校准低至20 nL/min
流动装置的校准在制药,流动化学,HPLC和微流体应用的几个领域是重要的,在这些领域中,工艺液体的剂量或流量的精确测量是重要的。过程导向液体本身可能会影响流动装置的性能。因此,用过程导向液体校准流量计或微流体装置是很重要的,并且通过动态流动剖面变化来模拟任何给药过程,可以重要地了解这些流动装置的行为及其在非恒定流量条件下的精度。因此,METAS开发了带有METAS活塞验证器的设备,以解决流量低至20 nL/min的过程导向液体非恒定流量的测量问题。在20nl /min时,恒流量和动态流型变化的测量不确定度分别为1%和2%。本文讨论了活塞验证器、新开发的毛细管烧杯、不可压缩液体和可压缩液体的验证测量以及响应时间表征。
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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