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采用自动控制反馈系统的光腔衰荡光谱法用于研究硝酸根自由基表面化学反应。

Cavity ring-down spectroscopy with an automated control feedback system for investigating nitrate radical surface chemistry reactions.

作者信息

Flemmer Michael M, Ham Jason E

机构信息

Exposure Assessment Branch, Health Effects Laboratory Division, National Institute for Occupational Safety and Health, 1095 Willowdale Road, Morgantown, West Virginia 26505, USA.

出版信息

Rev Sci Instrum. 2012 Aug;83(8):085103. doi: 10.1063/1.4739768.

Abstract

Nitrate radical (NO(3)(●)) surface chemistry of indoor environments has not been well studied due to the difficulty in generating and maintaining NO(3)(●) at low concentrations for long term exposures. This article presents the Surface Chemistry Reactant Air Delivery and Experiment System (SCRADES), a novel feedback controlled system developed to deliver nitrate radicals at specified concentrations (50-500 ppt, ±30 ppt) and flow rates (500-2000 ml min(-1)) to a variety of indoor surfaces to initiate reaction chemistry for periods of up to 72 h. The system uses a cavity ring-down spectrometer (CRDS), with a detection limit of 1.7 ppt, to measure the concentration of NO(3)(●) supplied to a 24 l experiment chamber. Nitrate radicals are introduced via thermal decomposition of N(2)O(5) and diluted with clean dry air until the desired concentration is achieved. Additionally, this article addresses details concerning NO(3)(●) loss through the system, consistency of the NO(3)(●) concentration delivered, and stability of the CRDS cavity over long exposure durations (72 h).

摘要

由于难以在低浓度下长期生成和维持硝酸根自由基(NO(3)(●))用于室内环境的表面化学研究,该领域尚未得到充分研究。本文介绍了表面化学反应物空气输送与实验系统(SCRADES),这是一种新型反馈控制系统,旨在以特定浓度(50 - 500 ppt,±30 ppt)和流速(500 - 2000 ml min(-1))将硝酸根自由基输送到各种室内表面,以引发长达72小时的反应化学过程。该系统使用检测限为1.7 ppt的腔衰荡光谱仪(CRDS)来测量供应到24升实验腔室中的NO(3)(●)浓度。硝酸根自由基通过N(2)O(5)的热分解引入,并与清洁干燥空气稀释,直至达到所需浓度。此外,本文还阐述了有关通过该系统造成的NO(3)(●)损失、所输送NO(3)(●)浓度的一致性以及在长时间暴露(72小时)下CRDS腔的稳定性等细节。

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