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首页> 外文期刊>International environmental technology >A Unique Stack Simulator Facility at the National Physical Laboratory: Case Studies of an NPL Calibration Transfer Strategy for Mass Spectrometers and a Trial of a Proficiency Testing Scheme with Source Testing Association Members
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A Unique Stack Simulator Facility at the National Physical Laboratory: Case Studies of an NPL Calibration Transfer Strategy for Mass Spectrometers and a Trial of a Proficiency Testing Scheme with Source Testing Association Members

机译:国家物理实验室的独特堆栈模拟器设施:针对质谱仪的NPL校准转移策略的案例研究以及与源测试协会成员一起进行的能力测试计划的试用

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摘要

We report the capabilities of a Stack Simulator facility developed at the National Physical Laboratory (NPL) and describe its use in two case studies involving the testing of an NPL calibration transfer strategy for process control mass spectrometers and the trial of a Proficiency Testing (PT) scheme. In the former it was shown that under real stack conditions the calibration transfer strategy improved the quantitative accuracy of a Quadrupole Mass Spectrometer (QMS) from an error of 70 % down to 4 %. In the trial of a PT scheme involving four Source Testing Association (STA) members it was found that three of the members could quantify NO/O_2/CO/SO_2 test mixtures to within the requirements of the Waste Incineration Directive (WID) whilst the fourth could not, reporting an SO_2 concentration in error by -26 %. The error source was traced back to a bias in the members' calibration gas.
机译:我们报告了国家物理实验室(NPL)开发的Stack Simulator设施的功能,并描述了其在两个案例研究中的用途,这些案例涉及过程控制质谱仪的NPL校准转移策略的测试和能力测试(PT)的试用方案。前者表明,在实际烟囱条件下,校准转移策略将四极质谱仪(QMS)的定量精度从70%降低到4%。在涉及四个源测试协会(STA)成员的PT计划的试验中,发现三个成员可以量化NO / O_2 / CO / SO_2测试混合物,以符合废物焚化指令(WID)的要求,而第四个成员不能,报告的SO_2浓度误差为-26%。误差源可追溯到成员校准气体中的偏差。

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