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Hygrometer-based calibration method for syringe pumps providing ultra-low liquid flows

机译:基于湿度计的注射泵校准方法,可提供超低液体流量

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Traceable and accurate measurements are critical in many areas where syringe pumps are used to provide tnicroscale liquid flow. Especially, drug delivery demands for low flow rate calibrations have been increasing, but currently available calibration methods are very limited in range and accuracy at flow rates below 100 μl min~(-1). This paper presents a new hygrometer-based method for the calibration of syringe pumps providing traceability down to the 0.1 μl min~(-1) level. In this method, liquid water from the syringe pump under calibration is injected into a porous cloth from which it evaporates and mixes with a dry gas flow. By measuring the humidity, temperature, pressure and flow rate of the gas, the injected water flow rate can be calculated. To test the method, a calibration set-up was constructed and a syringe pump was calibrated at flow rates from 0.1 to 10 μl min~(-1). A thorough uncertainty analysis carried out as a part of the work shows that a relative uncertainty of 0.4 % (at 95 % confidence level) is achieved at the largest calibration flow rate. The uncertainty increases to 3.3 % towards low end of the flow rate range. The achieved uncertainty level is significantly better than achieved with gravimetric methods so far.
机译:在使用注射泵提供超音速液体流动的许多地区,可追溯和准确的测量至关重要。特别地,对于低流速校准的药物输送需求已经增加,但是当前可用的校准方法在流速低于100μlmin〜(-1)时,其范围和准确性非常有限。本文提出了一种基于湿度计的新方法,用于校准注射泵,可追溯至0.1μlmin〜(-1)的水平。在这种方法中,将经过校准的来自注射泵的液态水注入多孔布中,然后蒸发并与干气流混合。通过测量气体的湿度,温度,压力和流速,可以计算出注入水的流速。为了测试该方法,构建了一个校准装置,并以0.1至10μlmin〜(-1)的流速对注射泵进行了校准。作为工作的一部分,进行了彻底的不确定性分析,结果表明,在最大校准流速下,相对不确定度为0.4%(在置信度为95%时)。在流量范围的低端,不确定度增加到3.3%。迄今为止,所达到的不确定性水平明显优于采用重量分析法所达到的水平。

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