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NIST 标准用于测量、仪器校准和量化气态大气化合物。

NIST Standards for Measurement, Instrument Calibration, and Quantification of Gaseous Atmospheric Compounds.

机构信息

Gas Sensing Metrology Group, Chemical Sciences Division, Materials Measurement Laboratory , National Institute of Standards and Technology , 100 Bureau Drive , Gaithersburg , Maryland 20899-8393 , United States.

出版信息

Anal Chem. 2018 Apr 3;90(7):4711-4718. doi: 10.1021/acs.analchem.7b05310. Epub 2018 Mar 14.

DOI:10.1021/acs.analchem.7b05310
PMID:29498261
Abstract

There are many gas phase compounds present in the atmosphere that affect and influence the earth's climate. These compounds absorb and emit radiation, a process which is the fundamental cause of the greenhouse effect. The major greenhouse gases in the earth's atmosphere are carbon dioxide, methane, nitrous oxide, and ozone. Some halocarbons are also strong greenhouse gases and are linked to stratospheric ozone depletion. Hydrocarbons and monoterpenes are precursors and contributors to atmospheric photochemical processes, which lead to the formation of particulates and secondary photo-oxidants such as ozone, leading to photochemical smog. Reactive gases such as nitric oxide and sulfur dioxide are also compounds found in the atmosphere and generally lead to the formation of other oxides. These compounds can be oxidized in the air to acidic and corrosive gases and contribute to photochemical smog. Measurements of these compounds in the atmosphere have been ongoing for decades to track growth rates and assist in curbing emissions of these compounds into the atmosphere. To accurately establish mole fraction trends and assess the role of these gas phase compounds in atmospheric chemistry, it is essential to have good calibration standards. The National Institute of Standards and Technology has been developing standards of many of these compounds for over 40 years. This paper discusses the development of these standards.

摘要

大气中存在许多影响地球气候的气相化合物。这些化合物吸收和发射辐射,这是温室效应的根本原因。大气中的主要温室气体是二氧化碳、甲烷、氧化亚氮和臭氧。一些卤代烃也是强温室气体,与平流层臭氧消耗有关。碳氢化合物和单萜是大气光化学反应的前体和贡献者,导致颗粒物质和二次光氧化剂如臭氧的形成,导致光化学烟雾。一氧化氮和二氧化硫等活性气体也是大气中存在的化合物,通常会导致其他氧化物的形成。这些化合物在空气中会被氧化为酸性和腐蚀性气体,并促成光化学烟雾的形成。几十年来,一直在对大气中的这些化合物进行测量,以跟踪增长率,并协助控制这些化合物向大气中的排放。为了准确确定这些气相化合物的摩尔分数趋势并评估它们在大气化学中的作用,必须有良好的校准标准。国家标准与技术研究所 40 多年来一直在开发这些化合物的标准。本文讨论了这些标准的发展。

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