Instrumental Analysis Open Access Centre, Faculty of Natural Sciences, Vytautas Magnus University, Kaunas, Lithuania.
Department of Systems' Analysis, Faculty of Informatics, Vytautas Magnus University, Kaunas, Lithuania.
Electrophoresis. 2018 Nov;39(22):2877-2883. doi: 10.1002/elps.201800132. Epub 2018 Jul 13.
One of the main problems of the remote complex sample analysis instrumentation is that such systems are susceptible to temperature fluctuations. Temperature regulation is energetically ineffective, and it is not used in most of the field portable analytical systems. Separations performed in a changing temperature environment provide electropherograms with considerable baseline fluctuations, resulting in significant errors in detection and integration of the peaks. This paper describes electropherogram baseline compensation that is suitable for the capillary electrophoresis-contactless conductivity detection analytical method. The baseline compensation utilizes linear or polynomial data processing methods, and can be programmed in-line using simple microcontroller, or on-line and off-line in data acquisition software. This method is targeted for field portable and autonomous analytical systems that are utilized in a fluctuating environment.
远程复杂样品分析仪器的主要问题之一是,此类系统容易受到温度波动的影响。温度调节在能量上是低效的,而且在大多数现场便携式分析系统中都未使用。在不断变化的温度环境中进行的分离会导致电泳谱图出现相当大的基线波动,从而导致在检测和积分峰时产生重大误差。本文描述了适用于毛细管电泳-非接触式电导检测分析方法的电泳谱图基线补偿。基线补偿利用线性或多项式数据处理方法,可以使用简单的微控制器进行在线编程,也可以在数据采集软件中进行在线和离线编程。这种方法针对的是在波动环境中使用的现场便携式和自主分析系统。