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通过直接和间接方法估算内华达州大气汞的干沉降。

Estimation of dry deposition of atmospheric mercury in Nevada by direct and indirect methods.

作者信息

Lyman Seth N, Gustin Mae Sexauer, Prestbo Eric M, Marsik Frank J

机构信息

Department of Natural Resources and Environmental Science/MS 370, University of Nevada, Reno 89557, USA.

出版信息

Environ Sci Technol. 2007 Mar 15;41(6):1970-6. doi: 10.1021/es062323m.

DOI:10.1021/es062323m
PMID:17410792
Abstract

Atmospheric models and limited measurements indicate that dry deposition of atmospheric mercury is an important process by which mercury is input to ecosystems. To begin to fill the measurement data gap, multiple methods were used simultaneously during seasonal campaigns conducted in 2005 and 2006 to estimate dry deposition of atmospheric mercury at two Mercury Deposition Network (MDN) sites in rural Nevada and in Reno, Nevada. Gaseous elemental mercury (Hg0), reactive gaseous mercury (RGM), and particulate-bound mercury (Hgp) concentrations were measured using Tekran 2537A/1130/ 1135 systems. These speciated measurements were combined with on-site meteorological measurements to estimate depositional fluxes of RGM and Hgp using dry deposition models. Modeled fluxes were compared with more direct measurements obtained using polysulfone cation-exchange membranes and foliar surfaces. Dynamic flux chambers were used to measure soil mercury exchange. RGM concentrations were higher during warmer months at all sites, leading to seasonal variation in the modeled importance of RGM as a component of total depositional load. The ratio of dry to wet deposition was between 10 and 90%, and varied with season and with the methods used for dry deposition approximations. This work illustrates the variability of mercury dry deposition with location and time and highlights the need for direct dry deposition measurements.

摘要

大气模型和有限的测量结果表明,大气汞的干沉降是汞输入生态系统的一个重要过程。为了开始填补测量数据空白,在2005年和2006年进行的季节性监测活动中,同时使用了多种方法来估算内华达州农村地区和内华达州里诺市两个汞沉降网络(MDN)站点的大气汞干沉降。使用Tekran 2537A/1130/1135系统测量气态单质汞(Hg0)、活性气态汞(RGM)和颗粒态汞(Hgp)的浓度。这些特定成分的测量结果与现场气象测量数据相结合,使用干沉降模型估算RGM和Hgp的沉降通量。将模型通量与使用聚砜阳离子交换膜和叶面获得的更直接测量结果进行比较。使用动态通量室测量土壤汞交换。所有站点在较温暖的月份RGM浓度较高,导致RGM作为总沉降负荷组成部分的模型重要性出现季节性变化。干沉降与湿沉降的比例在10%至90%之间,且随季节和用于干沉降近似计算的方法而变化。这项工作说明了汞干沉降随地点和时间的变异性,并强调了直接进行干沉降测量的必要性。

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