Department of Chemistry, Kumamoto University, 2-39-1 Kurokami, Kumamoto 860-8555, Japan.
Talanta. 2013 Nov 15;116:527-34. doi: 10.1016/j.talanta.2013.07.037. Epub 2013 Jul 24.
A robust and fully automated indoor ammonia gas monitoring system with an open channel scrubber (OCS) was developed. The sample gas channel dimensions, hydrophilic surface treatment to produce a thin absorbing solution layer, and solution flow rate of the OCS were optimized to connect the OCS as in-line gas collector and avoid sample humidity effects. The OCS effluent containing absorbed ammonia in sample gas was injected into a derivatization solution flow. Derivatization was achieved with o-phthalaldehyde and sulfite in pH 11 buffer solution. The product, 1-sulfonateisoindole, is detected with a home-made fluorescence detector. The limit of detection of the analyzer based on three times the standard deviation of baseline noise was 0.9 ppbv. Sample gas could be analyzed 40 times per hour. Furthermore, relative humidity of up to 90% did not interfere considerably with the analyzer. Interference from amines was not observed. The developed gas analysis system was calibrated using a solution-based method. The system was used to analyze ammonia in an indoor environment along with an off-site method, traditional impinger gas collection followed by ion chromatographic analysis, for comparison. The results obtained using both methods agreed well. Therefore, the developed system can perform on-site monitoring of ammonia in indoor environments with improved time resolution compared with that of other methods.
开发了一种具有开放式通道洗涤器 (OCS) 的强大且全自动的室内氨气监测系统。对样品气通道尺寸、亲水处理以产生薄的吸收溶液层以及 OCS 的溶液流速进行了优化,将 OCS 连接为在线气体收集器并避免了样品湿度的影响。OCS 流出物包含样品气体中吸收的氨,被注入衍生化溶液流中。在 pH 11 缓冲溶液中,使用邻苯二醛和亚硫酸盐进行衍生化。产物 1-磺酸盐异吲哚用自制的荧光检测器检测。基于基线噪声三倍标准差的分析仪检出限为 0.9 ppbv。每小时可以分析 40 次样品气体。此外,高达 90%的相对湿度对分析仪的干扰不大。未观察到胺的干扰。使用基于溶液的方法对开发的气体分析系统进行了校准。该系统用于分析室内环境中的氨气,并与场外方法(传统的冲击式气体收集器随后进行离子色谱分析)进行比较。两种方法得到的结果吻合良好。因此,与其他方法相比,该开发系统可以进行现场监测室内环境中的氨气,具有更高的时间分辨率。