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An online monitoring system for atmospheric nitrous acid (HONO) based on stripping coil and ion chromatography

机译:基于汽提线圈和离子色谱的大气亚硝酸在线监测系统

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摘要

A new instrument for measuring atmospheric nitrous acid (HONO) was developed, consisting of a double-wall glass stripping coil sampler coupled with ion chromatography (SC-IC). SC-IC is featured by small size (50 × 35 × 25 cm) and modular construction, including three independent parts: the sampling unit, the transfer and supporting unit, and the detection unit. High collection efficiency (> 99%) was achieved with 25 μmol/L Na_2CO_3 as absorption solution even in the presence of highly acidic compounds. This instrument has a detection limit of 8 pptv at 15 min time resolution, with a measurement uncertainty of 7%. Potential interferences from NO_x, NO_2+SO_2, NO_2+VOCs, HONO+O_3, HNO_3, peroxyacetyl nitrite (PAN) and particle nitrite were quantified in laboratory studies and were found to be insignificant under typical atmospheric conditions. Within the framework of the 3C-STAR project, inter-comparison between the SC-IC and LOPAP (long path liquid absorption photometer) was conducted at a rural site in the Pearl River Delta. Good agreement was achieved between the two instruments over three weeks. Both instruments determined a clear diurnal profile of ambient HONO concentrations from 0.1 to 2.5 ppbv. However, deviations were found for low ambient HONO concentrations (i.e. < 0.3 ppbv), which cannot be explained by previous investigated interference species. To accurately determine the HONO budget under illuminated conditions, more intercomparison of HONO measurement techniques is still needed in future studies, especially at low HONO concentrations.
机译:开发了一种用于测量大气亚硝酸(HONO)的新仪器,该仪器由与离子色谱仪(SC-IC)结合的双壁玻璃汽提卷取器组成。 SC-IC具有体积小(50×35×25 cm)和模块化结构的特点,包括三个独立的部分:采样单元,传输和支持单元以及检测单元。使用25μmol/ L Na_2CO_3作为吸收溶液,即使在存在高酸性化合物的情况下也可实现高收集效率(> 99%)。该仪器在15分钟的时间分辨率下的检测极限为8 pptv,测量不确定度为7%。在实验室研究中,对来自NO_x,NO_2 + SO_2,NO_2 + VOC,HONO + O_3,HNO_3,过氧乙酰亚硝酸盐(PAN)和亚硝酸盐颗粒的潜在干扰进行了量化,发现在典型的大气条件下微不足道。在3C-STAR项目的框架内,SC-IC和LOPAP(长距离液体吸收光度计)之间的比较是在珠江三角洲的一个农村地区进行的。两个文书在三个星期内达成了良好的协议。两种仪器均确定了0.1-2.5 ppbv的周围HONO浓度的清晰昼夜曲线。但是,发现低环境HONO浓度(即<0.3 ppbv)存在偏差,这不能由先前研究的干扰物质解释。为了在光照条件下准确确定HONO预算,在未来的研究中,尤其是在低HONO浓度下,仍需要对HONO测量技术进行更多的比对。

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