...
首页> 外文期刊>Atmospheric chemistry and physics >Detection of Saharan dust and biomass burning events using near-real-time intensive aerosol optical properties in the north-western Mediterranean
【24h】

Detection of Saharan dust and biomass burning events using near-real-time intensive aerosol optical properties in the north-western Mediterranean

机译:利用西北地中海近实时的密集气溶胶光学特性检测撒哈拉尘埃和生物质燃烧事件

获取原文
           

摘要

The study of Saharan dust events (SDEs) and biomass burning (BB) emissions are both topics of great scientific interest since they are frequent and important polluting scenarios affecting air quality and climate. The main aim of this work is evaluating the feasibility of using near-real-time in situ aerosol optical measurements for the detection of these atmospheric events in the western Mediterranean Basin (WMB). With this aim, intensive aerosol optical properties (SAE: scattering ?ngstr?m exponent, AAE: absorption ?ngstr?m exponent, SSAAE: single scattering albedo ?ngstr?m exponent and ig/i: asymmetry parameter) were derived from multi-wavelength aerosol light scattering, hemispheric backscattering and absorption measurements performed at regional (Montseny; MSY, 720?m?a.s.l.) and continental (Montsec; MSA, 1570?m?a.s.l.) background sites in the WMB. A sensitivity study aiming at calibrating the measured intensive optical properties for SDEs and BB detection is presented and discussed. brbr The detection of SDEs by means of the SSAAE parameter and ?ngstr?m matrix (made up by SAE and AAE) depended on the altitude of the measurement station and on SDE intensity. At MSA (mountain-top site) SSAAE detected around 85?% of SDEs compared with 50?% at the MSY station, where pollution episodes dominated by fine anthropogenic particles frequently masked the effect of mineral dust on optical properties during less intense SDEs. Furthermore, an interesting feature of SSAAE was its capability to detect the presence of mineral dust after the end of SDEs. Thus, resuspension processes driven by summer regional atmospheric circulations and dry conditions after SDEs favoured the accumulation of mineral dust at regional level having important consequences for air quality. On average, SAE, AAE and ig/i ranged between ?0.7 and 1, 1.3 and 2.5 and 0.5 and 0.75 respectively during SDEs. brbr Based on the aethalometer model, BB contribution to equivalent black carbon (BC) accounted for 36 and 40?% at MSY and MSA respectively. Linear relationships were found between AAE and %BCsubbb/sub, with AAE values reaching around 1.5 when %BCsubbb/sub was higher than 50?%. BB contribution to organic matter (OM) at MSY was around 30?%. Thus fossil fuel (FF) combustion sources showed important contributions to both BC and OM in the region under study. Results for OM source apportionment showed good agreement with simultaneous biomass burning organic aerosol (BBOA) and hydrocarbon-like organic aerosol (HOA) obtained by applying a positive matrix factorization model (PMF) to simultaneous Aerosol Chemical Speciation Monitor (ACSM) measurements. A wildfire episode was identified at MSY, showing AAE values up to 2 when daily BB contributions to BC and OM were 73 and 78?% respectively.
机译:撒哈拉尘埃事件(SDEs)和生物质燃烧(BB)排放的研究都是非常重要的科学课题,因为它们是影响空气质量和气候的频繁且重要的污染情景。这项工作的主要目的是评估在西地中海盆地(WMB)中使用近实时原位气溶胶光学测量技术检测这些大气事件的可行性。以此为目标,增强了气溶胶的光学特性(SAE:散射指数,AAE:吸收指数,SSAAE:单散射反照率指数, g :不对称参数)这些数据来自WMB在区域(Montseny; MSY,720?m?asl)和大陆(Montsec; MSA,1570?m?asl)背景站点进行的多波长气溶胶光散射,半球反向散射和吸收测量。提出并讨论了旨在校准SDE和BB检测的强光学特性的灵敏度研究。 通过SSAAE参数和fngstr?m矩阵(由SAE和AAE组成)检测SDE取决于测量站的高度和SDE强度。在MSA(山顶站点),SSAAE检测到约占SDE的85%,而在MSY站则占50%,在那些强度较小的SDE中,人为细颗粒占主导的污染事件常常掩盖了矿物粉尘对光学性能的影响。此外,SSAAE的一个有趣功能是它能够在SDE终止后检测矿物粉尘的存在。因此,由SDEs引起的夏季区域大气环流和干燥条件驱动的重悬浮过程有利于矿物粉尘在区域一级的积累,这对空气质量产生重要影响。在SDE期间,平均来说,SAE,AAE和 g 分别在0.7和1、1.3和2.5、0.5和0.75之间。 根据烟度计模型,MSY和MSA的BB对当量黑碳(BC)的贡献分别占36%和40%。发现AAE与%BC bb 之间存在线性关系,当%BC bb 高于50%时,AAE值约为1.5。 MSY的BB对有机物(OM)的贡献约为30%。因此,在研究区域中,化石燃料(FF)的燃烧源对BC和OM均显示出重要贡献。 OM源分配的结果显示,通过将正矩阵分解模型(PMF)应用于同时进行的气溶胶化学形态监测器(ACSM)测量,可以获得与同时燃烧生物质的有机气溶胶(BBOA)和类烃的有机气溶胶(HOA)的良好一致性。在MSY处发现了一次野火事件,当BB对BC和OM的每日贡献分别为73%和78%时,AAE值高达2。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
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