标题: 半自动化酸性气体监测系统的研发
Development of a semi-automatic monitoring system for acidic gases
作者: 杨凯迪
蔡春进
Tsai, Chuen-Jinn
环境工程系所
关键字: 平行平板湿式分离器;醋酸气体;硝酸气体;半自动化采样分析系统;parallel-plate wet denuder;acetic acid gas;nitric acid gas;semi-automatic sampling/analysis system
公开日期: 2008
摘要: 传统的酸性气体采样及分析过程繁复,且无法即时地监测空气中酸性气体的浓度,易增加人为的误差,因此自动化酸性气体采样分析仪器的发展十分重要。

本研究建立一套能即时侦测酸性气体浓度之半自动化采样和分析系统,此系统的主体为一台研究室自行开发的高效率平行平板湿式分离器,其功用为进行气体的自动化采集,此采样器和一台IC离子层析仪连接后,可自动监测空气中的酸性气体。本研究使用的测试气体为有机醋酸以及无机硝酸气体,测试气体源来自本研究室自行研发之气体扩散管。本研究评估此套新系统适用性的方法,系将此系统的气体采集浓度分析结果,和传统的气体采样法:吸收瓶采样法(醋酸)或多孔金属片固气分离器采样法(硝酸)的气体采集及浓度分析结果进行比较。平行平板湿式分离器之吸收液为超纯水,其流量为2 mL/min,采样气体流量为5 L/min,采样时间为持续1-3小时,离子层析仪设定的每次样本分析间隔时间为每19 min。吸收瓶采样法之吸收液为超纯水,容量为150 mL,采样气体流量为3 L/min,采样时间为持续1-3小时,采样时间结束后进行离子层析仪注入分析。多孔金属片固气分离器采样法使用之多孔金属片涂敷剂为1 % (w/v)碳酸钠,采样气体流量为2 L/min以及采样时间为1小时,采样时间结束后进行样品萃取和离子层析仪注入分析。

实验结果显示,本系统的方法侦测极限,对醋酸气体为1.24 ppbv、硝酸气体为0.17 ppbv。在上述操作参数下,传统吸收瓶采样法对于醋酸气体的采集效率高达99%。在测试的醋酸气体浓度于10-190 ppbv时,经由吸收瓶采样法测得的气体浓度值和本系统侦测的气体浓度值相近,两者的线性判定系数R2为0.993。实验结果亦显示,多孔金属片固气分离器采样法对于硝酸气体的采集效率可达99%。在测试的硝酸气体浓度在17-170 ppbv时,经由多孔金属片固气分离器采样法测得的气体浓度值和本系统侦测的气体浓度值相近,两者的线性判定系数R2为0.995。另外,透过吸收效率实验,显示本系统对于醋酸和硝酸气体的吸收效率分别为96%和>99%,和理论值近似。反应时间结果亦显示,本系统在监测醋酸及硝酸气体浓度变化时,其上升时间为20±1 min,下降时间为30±2 min。因此本半自动化气体采样及分析系统,能即时监测空气里特定酸性气体浓度,并能记录其短时间内的变化。

关键词:平行平板湿式分离器、醋酸气体、硝酸气体、半自动化采样分析系统
The sampling and analysis procedure is complicated in the traditional method for acidic gases. The traditional method is unable to monitor acidic gases in real time, and prone to making errors due to manual handling of the sampling. Therefore, it is important to develop a semi-automatic instrument to sample and analyze acidic gases.

This study has developed a semi-automatic sampling/analysis system for acidic gas. The system consists of a high efficiency parallel-plate wet denuder(PPWD)for gas sampling and an ion chromatography(IC)for real-time analysis. The PPWD is to sample the acidic gases, which is connected to IC for automatic monitoring. A home-made gas diffuser was developed to generate the test gases: acetic acid and nitric acid gas. The automatic system was validated by comparing the concentration measured by the system with that measured by the impinger(acetic acid gas) or the porous-metal denuder sampler(nitric acid gas). Operation parameters of the three methods were: (1) parallel-plate wet denuder-ultra pure water for gas absorption at the flow rate of 2 mL/min, gas flow rate of 5 L/min, sampling time of 19 min/sample; (2) impinger-ultrapure water for gas absorption at a fixed volume of 150 mL, gas flow rate of 3 L/min, sampling time of 1-3 hour/sample, and (3) porous-metal denuder-sodium carbonate was used as coating material (1 %, w/v), gas flow rate of 2 L/min, sampling time of 1 hour/sample.

Experimental results show that the method detection limit is 1.24 and 0.17 ppbv for acetic acid and nitric acid gas, respectively. For acetic acid, with the concentration range from 10 to 190 ppbv, good agreement between the concentration of the parallel-plate wet denuder and the impinger that has a good collection efficiency of >99% can be found with coefficient of determination(R2)>0.993. For nitric acid, with concentration range from 17 to 170 ppbv, again good agreement between the concentration of the parallel-plate wet denuder and the porous-metal denuder that has a good collection efficiency of >99% can be found with R2>0.995. Furthermore, the absorption efficiency test of the current system showed that the system has high efficiency of 96% and >99%, respectively, for gaseous acetic and nitric acids. Experimental results of the response time indicate that the rise time is 20±1 min and fall time is 30±2 min, respectively. Accordingly, the present parallel-plate wet denuder coupled with ion chromatography can detect gaseous acidic gases in real-time and can record short-term fluctuation of the concentrations.

Keywords: parallel-plate wet denuder, acetic acid gas, nitric acid gas, semi-automatic sampling/analysis system.
URI: http://140.113.39.130/cdrfb3/record/nctu/#GT009519513
http://hdl.handle.net/11536/38797
显示于类别:Thesis


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