目前用于评估室内外空气中无机污染物的分析方法的优势和局限性

IF 11.8 1区 化学 Q1 CHEMISTRY, ANALYTICAL
Mila Ródenas , Teresa Vera , Amalia Muñoz , Florentina Villanueva
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引用次数: 0

摘要

空气中的无机污染物种类繁多,包括酸、氮氧化物和碳氧化物、臭氧、氨、氯和其他卤代化合物及离子种类。由于无机化合物的种类繁多,测量技术也大相径庭。尽管如此,目前还没有一份全面的综述将市场上现有的不同仪器和技术纳入其中,以设计空气质量(AQ)监测策略。本文旨在填补这一空白,概述和汇编了测定空气中无机污染物最常用的测量技术和方法,包括在线和非连续方法的优缺点,并考虑了检测限、潜在伪影、时间分辨率和成本等规格。对成熟的方法以及创新的仪器和方法进行了批判性讨论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Advantages and limitations of the analytical methods currently employed for the assessment of inorganic pollutants in indoor and outdoor air
Inorganic air pollutants comprise a broad class of substances, including acids, nitrogen and carbon oxides, ozone, ammonia, chlorine, and other halogenated compounds and ionic species. These types of pollutants can be emitted or produced naturally or anthropogenically outdoors but also can be emitted or generated by indoor activities.
Due to the diverse typology of inorganic compounds, the measurement techniques are also very different. Notwithstanding, there is no comprehensive review that comprises the different instruments and technologies currently existing in the market to design an air quality (AQ) monitoring strategy. Our paper aims at filling this gap by providing an overview and compendium of the most used measurement techniques and methods for the determination of inorganic pollutants in the air, including online and discontinuous methods in terms of advantages and disadvantages, and taking into account specifications such as detection limits, potential artifacts, temporal resolution and costs. Well-established methods, together with innovative instrumentation and methodology have been critically discussed.
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来源期刊
Trends in Analytical Chemistry
Trends in Analytical Chemistry 化学-分析化学
CiteScore
20.00
自引率
4.60%
发文量
257
审稿时长
3.4 months
期刊介绍: TrAC publishes succinct and critical overviews of recent advancements in analytical chemistry, designed to assist analytical chemists and other users of analytical techniques. These reviews offer excellent, up-to-date, and timely coverage of various topics within analytical chemistry. Encompassing areas such as analytical instrumentation, biomedical analysis, biomolecular analysis, biosensors, chemical analysis, chemometrics, clinical chemistry, drug discovery, environmental analysis and monitoring, food analysis, forensic science, laboratory automation, materials science, metabolomics, pesticide-residue analysis, pharmaceutical analysis, proteomics, surface science, and water analysis and monitoring, these critical reviews provide comprehensive insights for practitioners in the field.
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