Department of Natural Resources & Environmental Science, University of Nevada, Reno, 1664 N. Virginia Street, Mail Stop 186, Reno, NV 89557, USA.
Bingham Research Center, Utah State University, 320 N Aggie Blvd, Vernal, UT 84078, USA; Department of Chemistry and Biochemistry, Utah State University, 0300 Old Main Hill, Logan, UT 84322, USA.
Sci Total Environ. 2023 Jan 15;856(Pt 2):159219. doi: 10.1016/j.scitotenv.2022.159219. Epub 2022 Oct 4.
Gaseous oxidized mercury (GOM) is the dominant form of atmospheric mercury (Hg) deposited and sequestered within ecosystems. Thus, accurate, calibrated measurements of GOM are needed. Here, two active membrane-based collection systems (RMAS) were used to determine GOM and particulate-bound Hg (PBM), as well as reactive Hg (RM = GOM + PBM), and compared with two dual-channel systems (DCS) and a Tekran 2537/1130 speciation system. The DCS measured operationally defined GOM by difference, using concentrations of gaseous elemental Hg (GEM) and total gaseous Hg. One DCS was linked to a custom-built, automated calibration system that permeated GEM, HgBr, or HgCl. The five systems were co-located for one-year to develop a dataset that would allow for understanding limitations of each system, and assessing measurement accuracy and long-term precision of the calibrator. The Tekran system measured ~14.5 % of the GOM measured by the other systems. The USU and UNR DCS and RMAS were significantly correlated, but the DCS was 50 and 30 % higher, respectively, than the RMAS. The calibrator performed consistently in the field and lab, and the DCS fully recovered GOM injected by the calibrator. Since the uncalibrated DCS measured the same concentrations as the calibrated DCS, they are both accurate methods for measuring RM and/or GOM. Some loss occurred from the RMAS membranes. SYNOPSIS: Accurate and calibrated measurements of atmospheric reactive mercury using membranes and two dual-channel systems.
气态氧化汞(GOM)是大气汞(Hg)沉积并在生态系统中隔离的主要形式。因此,需要对 GOM 进行准确、校准的测量。在这里,使用了两种主动膜基收集系统(RMAS)来测定 GOM 和颗粒结合态汞(PBM),以及反应性汞(RM=GOM+PBM),并与两种双通道系统(DCS)和 Tekran 2537/1130 形态分析系统进行了比较。DCS 通过使用气态元素汞(GEM)和总气态汞的浓度来操作定义测量 GOM。一个 DCS 与一个定制的自动化校准系统相连,该系统渗透 GEM、HgBr 或 HgCl。这五个系统被安置在一起一年,以建立一个数据集,该数据集将使人们了解每个系统的局限性,并评估校准器的测量精度和长期精度。Tekran 系统测量到的 GOM 约占其他系统测量到的 GOM 的 14.5%。USU 和 UNR 的 DCS 和 RMAS 具有显著相关性,但 DCS 分别比 RMAS 高 50%和 30%。校准器在现场和实验室中表现一致,DCS 完全回收了校准器注入的 GOM。由于未校准的 DCS 测量到与校准的 DCS 相同的浓度,因此它们都是测量 RM 和/或 GOM 的准确方法。RMAS 膜会有一些损失。摘要:使用膜和两种双通道系统对大气反应性汞进行准确和校准的测量。