首页> 外文期刊>Atmospheric Chemistry and Physics Discussions >Mapping the drivers of uncertainty in atmospheric selenium deposition with global sensitivity analysis
【24h】

Mapping the drivers of uncertainty in atmospheric selenium deposition with global sensitivity analysis

机译:全局敏感性分析在大气硒沉积中绘制不确定性的驱动因素

获取原文
           

摘要

An estimated 0.5–1 billion people globally have inadequate intakes of selenium (Se), due to a lack of bioavailable Se in agricultural soils. Deposition from the atmosphere, especially through precipitation, is an important source of Se to soils. However, very little is known about the atmospheric cycling of Se. It has therefore been difficult to predict how far Se travels in the atmosphere and where it deposits. To answer these questions, we have built the first global atmospheric Se model by implementing Se chemistry in an aerosol–chemistry–climate model, SOCOL-AER (modeling tools for studies of SOlar Climate Ozone Links – aerosol). In the model, we include information from the literature about the emissions, speciation, and chemical transformation of atmospheric Se. Natural processes and anthropogenic activities emit volatile Se compounds, which oxidize quickly and partition to the particulate phase. Our model tracks the transport and deposition of Se in seven gas-phase species and 41 aerosol tracers. However, there are large uncertainties associated with many of the model's input parameters. In order to identify which model uncertainties are the most important for understanding the atmospheric Se cycle, we conducted a global sensitivity analysis with 34 input parameters related to Se chemistry, Se emissions, and the interaction of Se with aerosols. In the first bottom-up estimate of its kind, we have calculated a median global atmospheric lifetime of 4.4d (days), ranging from 2.9 to 6.4d (2nd–98th percentile range) given the uncertainties of the input parameters. The uncertainty in the Se lifetime is mainly driven by the uncertainty in the carbonyl selenide (OCSe) oxidation rate and the lack of tropospheric aerosol species other than sulfate aerosols in SOCOL-AER. In contrast to uncertainties in Se lifetime, the uncertainty in deposition flux maps are governed by Se emission factors, with all four Se sources (volcanic, marine biosphere, terrestrial biosphere, and anthropogenic emissions) contributing equally to the uncertainty in deposition over agricultural areas. We evaluated the simulated Se wet deposition fluxes from SOCOL-AER with a compiled database of rainwater Se measurements, since wet deposition contributes around 80% of total Se deposition. Despite difficulties in comparing a global, coarse-resolution model with local measurements from a range of time periods, past Se wet deposition measurements are within the range of the model's 2nd–98th percentiles at 79% of background sites. This agreement validates the application of the SOCOL-AER model to identifying regions which are at risk of low atmospheric Se inputs. In order to constrain the uncertainty in Se deposition fluxes over agricultural soils, we should prioritize field campaigns measuring Se emissions, rather than laboratory measurements of Se rate constants.
机译:由于农业土壤中缺乏生物可利用的SE,据估计,全球范围内的0.5-10亿人口的摄入量不足。从大气中沉积,尤其是通过沉淀,是土壤的一个重要来源。然而,关于SE的大气循环很少。因此,难以预测在大气中行进的距离和沉积物的沉积物。为了回答这些问题,我们通过在气溶胶化学 - 气候模型,SOCOL-AER(太阳能气候臭氧链接 - 气溶胶研究的建模工具)中实现了第一款全球大气中SE模型。在该模型中,我们包括关于宽大的排放,形态和化学转化的文献的信息。自然过程和人为的活动发出挥发性SE化合物,其迅速氧化并分配给颗粒相。我们的模型跟踪SE七种气相物种和41个气溶胶示踪剂的运输和沉积。但是,存在与许多模型的输入参数相关的不确定性。为了确定哪些模型不确定性是对理解大气中SE循环最重要的,我们进行了全局敏感性分析,34个输入参数与SE化学,SE排放以及SE与气溶胶相互作用。在第一次自下而上的估计中,我们计算了4.4D(天)的中位数全球大气寿命,从2.9到6.4D(第98百分位数)为输入参数的不确定性。 SE寿命的不确定性主要由羰基硒(OCSE)氧化率的不确定性和Socol-Aer中缺乏硫酸盐气溶胶以外的缺乏对流层气溶胶物种。与SE寿命中的不确定性相比,沉积通量地图的不确定性受到SE排放因子的管辖,所有四种SE源(火山,海洋生物圈,陆地生物圈和人为排放)同样地促进了农业区域沉积的不确定性。我们评估了来自Socol-Aer的模拟SE湿沉积通量与雨水SE测量的编译数据库,因为湿沉积有助于总SE沉积的80%。尽管在从一系列时间段与局部测量的全局粗辨率模型进行了比较了全局粗辨率模型,但过去的SE湿沉积测量在模型的2nd-98th百分位范围内,在79%的背景现场。本协议验证了SOCOL-AER模型将SOCOL-AER模型应用于识别面积,这些区域面临低大气的SE投入。为了限制在农业土壤上的SE沉积通量的不确定性,我们应该优先考虑测量SE排放的现场运动,而不是SE速率常数的实验室测量。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号