Literature DB >> 33075225

Improvements to the Accuracy of Atmospheric Oxidized Mercury Measurements.

Seth N Lyman1,2, Lynne E Gratz3, Sarrah M Dunham-Cheatham4, Mae Sexauer Gustin4, Adriel Luippold4.   

Abstract

We developed a cation-exchange membrane-based dual-channel system to measure elemental and oxidized mercury and deployed it with an automated calibration system and the University of Nevada, Reno-Reactive Mercury Active System (UNR-RMAS) at a rural/suburban field site in Colorado during the summer of 2018. Unlike oxidized mercury measurements collected via the widely used KCl denuder method, the dual-channel system was able to quantitatively recover HgCl2 and HgBr2 injected by the calibrator into the ambient sample air and compared well with the UNR-RMAS measurements. The system measured at 10 min intervals and had a 3-h average detection limit for oxidized mercury of 33 pg m-3. It was able to detect day-to-day variability and diel cycles in oxidized mercury (0 to 200 pg m-3) and will be an important tool for future studies of atmospheric mercury. We used a gravimetric method to independently determine the total mercury permeation rate from the permeation tubes. Permeation rates derived from the gravimetric method matched the permeation rates observed via mercury measurement devices to within 25% when the mercury permeation rate was relatively high (up to 30 pg s-1), but the agreement decreased for lower permeation rates, probably because of increased uncertainty in the gravimetric measurements.

Entities:  

Keywords:  UNR-RMAS; dual-channel; mercury calibrator; oxidized mercury; permeation tube

Year:  2020        PMID: 33075225     DOI: 10.1021/acs.est.0c02747

Source DB:  PubMed          Journal:  Environ Sci Technol        ISSN: 0013-936X            Impact factor:   9.028


  1 in total

1.  Calibration Approach for Gaseous Oxidized Mercury Based on Nonthermal Plasma Oxidation of Elemental Mercury.

Authors:  Jan Gačnik; Igor Živković; Sergio Ribeiro Guevara; Jože Kotnik; Sabina Berisha; Sreekanth Vijayakumaran Nair; Andrea Jurov; Uroš Cvelbar; Milena Horvat
Journal:  Anal Chem       Date:  2022-06-01       Impact factor: 8.008

  1 in total

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