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Two instruments based on differential optical absorption spectroscopy (DOAS) to measure accurate ammonia concentrations in the atmosphere

机译:基于差分光学吸收光谱(DOA)的两种仪器测量大气中精确的氨浓度

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We present two Differential Optical Absorption Spectroscopy (DOAS) instruments built at RIVM: the RIVM DOAS and the miniDOAS. Both instruments provide virtually interference-free measurements of NH3 concentrations in the atmosphere, since they measure over an open path, without suffering from inlet problems or interference problems by ammonium aerosols dissociating on tubes or filters. They measure concentrations up to at least 200 μg m?3, have a fast response, low maintenance demands, and a high up-time. The RIVM DOAS has a high accuracy of typically 0.15 μg m?3 for ammonia for 5-min averages and over a total light path of 100 m. The miniDOAS has been developed for application in measurement networks such as the Dutch National Air Quality Monitoring Network (LML). Compared to the RIVM DOAS it has a similar accuracy, but is significantly reduced in size, costs, and handling complexity. The RIVM DOAS and miniDOAS results showed excellent agreement (R2 = 0.996) during a field measurement campaign in Vredepeel, the Netherlands. This measurement site is located in an agricultural area and is characterized by highly variable, but on average high ammonia concentrations in the air. The RIVM-DOAS and miniDOAS results were compared to the results of the AMOR instrument, a continuous-flow wet denuder system, which is currently used in the LML. Averaged over longer time spans of typically a day, the (mini)DOAS and AMOR results agree reasonably well, although an offset of the AMOR values compared to the (mini)DOAS results exists. On short time scales, the (mini)DOAS shows a faster response and does not show the memory effects due to inlet tubing and transport of absorption fluids encountered by the AMOR. Due to its high accuracy, high uptime, low maintenance and its open path, the (mini)DOAS shows a good potential for flux measurements by using two (or more) systems in a gradient set-up and applying the aerodynamic gradient technique.
机译:我们呈现了在RIVM的两个差动光学吸收光谱(DOA)仪器:RIVM Doas和Minidoas。这两种仪器在大气中提供了几乎无干扰的NH 3浓度的测量,因为它们在开放路径上测量,而不患有在管或过滤器上解散的铵气溶胶的入口问题或干扰问题。它们测量浓度高达200μgm?3,具有快速响应,低维护需求和高度上限。 RIVM DoAs的高精度通常为0.15μgm≤3,用于5分钟的氨,并且在100μm的总光路上。 Minidoas已经开发用于测量网络中的应用,例如荷兰国家空气质量监测网络(LML)。与RIVM DoAS相比,它具有类似的准确性,但大小,成本和处理复杂性的显着降低。 RIVM DoAs和Minidoas结果表明,荷兰Vredeel的现场测量活动期间出现了很好的协议(R2 = 0.996)。该测量部位位于农业区,其特点是高度变化,但在空气中平均高氨浓度。将RIVM-DOAS和MINIDOAS结果与AMOR仪器的结果进行了比较,这是一种连续流湿透露系统,目前在LML中使用。平均通常每天跨越较长的时间跨度,(迷你)DOA和AMOR结果相当良好,尽管与(MINI)DOAS结果相比,AMOR值的偏移量存在。在短时间尺度上,(MINI)DOAS显示更快的响应,并且由于AMOR遇到的吸收流体的入口管和传输而没有显示内存效果。由于其高精度,高正常运行时间,低维护及其开放路径,(迷你)DOAS通过在梯度设置和应用空气动力学梯度技术中使用两个(或更多)系统来显示磁通测量的良好潜力。

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