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Design considerations and initial validation of a liquid microflow calibration setup using parallel operated syringe pumps

机译:使用并联注射泵的液体微流校准装置的设计考虑因素和初步验证

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摘要

Danish Technological Institute (DTI) currently offers traceable calibration of liquid flow rates down to 5 L h~(-1). However, the industry also requests traceable calibration below this point for flowmeters and pumps. Therefore, DTI is in the process of establishing a traceable calibration setup for such microfluidic devices. This paper addresses the design and uncertainty considerations for a setup based on gravimetric and volume traceability. The flow generation in the setup utilizes two parallel operated syringe pumps with different syringe volumes. The two syringes are programmed so one syringe can replace the pumping action of the second syringe without influencing the resulting flow. In that way it is possible to generate flow rates for calibration in the range from 6 L h~(-1) to 20 (mu)L h~(-1). Traceability is currently achieved gravimetrically using special-purpose toploader balances. The resulting expanded uncertainty is expected to be below 0.1percent between 6 L h~(-1) and 100 mL h~(-1), gradually increasing towards 2percent between 100 mL h~(-1) and 1.2 mL h~(-1). Furthermore, a concept is proposed to achieve traceability in the full flow range from 6 L h~(-1) to 20 (mu)L h~(-1) based on delivered volume divided by time with glass syringes as reference and an expanded uncertainty expected to be below 2percent.
机译:丹麦技术学院(DTI)目前提供可追溯至5 L h〜(-1)的液体流速的校准。但是,行业还要求在此点以下对流量计和泵进行可追溯的校准。因此,DTI正在为此类微流体设备建立可追溯的校准设置。本文介绍了基于重量和体积可追溯性的设置的设计和不确定性考虑因素。该装置中的流量产生利用两个具有不同针筒体积的并行操作的针筒泵。对两个注射器进行了编程,因此一个注射器可以替代第二个注射器的泵送动作,而不会影响最终的流量。以此方式,可以产生用于6 L h〜(-1)至20μLh〜(-1)范围内的校准的流速。当前,使用专用的顶部装载秤可以通过重量法实现可追溯性。在6 L h〜(-1)和100 mL h〜(-1)之间,预期得到的扩展不确定度将低于0.1%,在100 mL h〜(-1)和1.2 mL h〜(-之间逐渐向2%增长。 1)。此外,提出了一种概念,该方法基于以玻璃注射器为参考的输送量除以时间并扩展后的体积,在从6 L h〜(-1)到20μLh〜(-1)的整个流量范围内实现可追溯性不确定性预计将低于2%。

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