The Comparisons of Real-time Ammonia Adsorption Measurement in Varying Inlet Tubes and the Different Ammonia Measurement Methods in the Atmosphere

IF 1.1 Q4 METEOROLOGY & ATMOSPHERIC SCIENCES
Kyunghoon Kim, Gyutae Park, Seokwon Kang, Rahul Singh, Jeongin Song, Siyoung Choi, Inseon Park, Dong-Gil Yu, Myeong-Bok Kim, Min-Suk Bae, Suna Jung, YuWoon Chang, Jonghun Park, Hae-Jin Jung, Yong-jae Lim, Taehyoung Lee
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Abstract

Ammonia (NH3) is an important, albeit sticky, precursor for producing secondary inorganic aerosols (SIA), especially in the form of ammonium nitrate (NH4NO3) and ammonium sulfate ((NH4)2SO4). To reduce SIAs, many researchers have attempted to measure the concentration of ambient NH3 using real-time or passive methods. However, NH3 is a highly sticky gas and is therefore difficult to measure using real-time methods without incurring losses during measurement. In this study, four different tubing materials, semi seamless tubes, perfluoroalkoxy (PFA), polytetrafluoroethylene (PTFE), and polyvinylidene fluoride (PVDF), were used to ascertain the adsorption of NH3 in inlets using real-time instruments. Without heating sample tubes and at 0% relative humidity (RH), this study shows that PTFE had the least adsorption(i.e., 0% at 1 and 2m of sample tube), and semi-seamless tubes had the highest adsorption (i.e., 27.5% at 1 m of sample tube). To calculate the adsorption of NH3 under ambient conditions, at various inlet lengths, the RH of NH3 was varied from 20% to 80%, which showed that shorter inlets and higher RH lower NH3 adsorption at inlets (i.e., 1.74 ppb m−1 at 80% RH and 7.48 ppb m−1 at 20% RH). Additionally, inlet heating was effective in reducing the adsorption of NH3 as the RH decreased. Applying the inlet system (i.e., 2 m of PTFE tube with heating) showed excellent correlation (slope: 0.995 and coefficient: 0.992) between two different real-time measurements while measuring ambient air.

不同进气管道实时氨吸附测量及不同大气氨测量方法的比较
氨(NH3)是产生二次无机气溶胶(SIA)的一种重要但粘稠的前体,尤其是以硝酸铵(NH4NO3)和硫酸铵((NH4)2SO4)的形式存在。为了减少SIA,许多研究人员试图使用实时或被动方法测量环境中NH3的浓度。然而,NH3是一种高粘性气体,因此很难使用实时方法进行测量,而不会在测量过程中产生损失。在这项研究中,使用四种不同的管材,半无缝管、全氟烷氧基(PFA)、聚四氟乙烯(PTFE)和聚偏二氟乙烯(PVDF),使用实时仪器来确定NH3在入口中的吸附。在不加热样品管和0%相对湿度(RH)的情况下,本研究表明PTFE的吸附量最小(即在样品管的1米和2米处为0%),而半无缝管的吸附量最高(即在1米处为27.5%)。为了计算NH3在环境条件下的吸附,在不同的入口长度下,NH3的相对湿度在20%至80%之间变化,这表明较短的入口和较高的相对湿度降低了NH3在入口处的吸附(即,在80%相对湿度下为1.74ppb m-1,在20%相对湿度时为7.48ppb m-1)。此外,随着相对湿度的降低,入口加热能有效地减少NH3的吸附。在测量环境空气时,应用入口系统(即2 m带加热的PTFE管)显示出两种不同实时测量之间的良好相关性(斜率:0.995,系数:0.992)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Asian Journal of Atmospheric Environment
Asian Journal of Atmospheric Environment METEOROLOGY & ATMOSPHERIC SCIENCES-
CiteScore
2.80
自引率
6.70%
发文量
22
审稿时长
21 weeks
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