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首页> 外文期刊>Journal of the air & waste management association >Determination of Ozone in Outdoor and Indoor Environments Using Nitrite-Impregnated Passive Samplers Followed by Ion Chromatography
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Determination of Ozone in Outdoor and Indoor Environments Using Nitrite-Impregnated Passive Samplers Followed by Ion Chromatography

机译:亚硝酸盐浸渍的被动进样器-离子色谱法测定室外和室内环境中的臭氧

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An improved ion chromatographic (IC) method has been developed for the separation of nitrate in filter extracts in the presence of high concentrations of nitrite. This analytical method was successfully used for an indirect measurement of ozone (O_3) in outdoor and indoor air, following its collection using a nitrite-impregnated passive sampler. The limit of detection and the limit of quantification, using the modified IC method, were 6 μg l~(-1) (3σ) and 20 μg l~(-1) (10σ), respectively. Improved detection limits and low baseline noise were obtained with the use of eluent generator and high-capacity ion exchange column. The optimized method was used for assessing O_3 concentration in both indoor and outdoor environments of 28 child care centers (CCCs) located in different parts of Singapore. The O_3 concentrations ranged from 0.1 to 11.95 parts per billion (ppb) in indoor and from 3.2 to 21.7 ppb in outdoor environments during the study period. It was found that, among the CCCs investigated in this study, air-conditioned CCCs and those located in close proximity to traffic emissions had significantly lower O_3 concentrations indoors.
机译:已经开发出一种改进的离子色谱(IC)方法,用于在高浓度亚硝酸盐存在下分离过滤器萃取物中​​的硝酸盐。在使用亚硝酸盐浸渍的无源采样器进行收集之后,该分析方法已成功用于间接测量室外和室内空气中的臭氧(O_3)。使用改进的IC方法,检测限和定量限分别为6μgl〜(-1)(3σ)和20μgl〜(-1)(10σ)。使用洗脱液生成器和高容量离子交换柱可提高检测限和降低基线噪音。该优化方法用于评估位于新加坡不同地区的28个儿童保育中心(CCC)在室内和室外环境中的O_3浓度。在研究期间,室内的O_3浓度范围为十亿分之0.1到11.95 ppb,室外环境为3.2到21.7 ppb。结果发现,在本研究调查的CCC中,空调CCC和靠近交通排放的CCC在室内的O_3浓度明显较低。

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