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首页> 外文期刊>Spectrochimica Acta, Part B. Atomic Spectroscopy >Size-fractionated sampling and chemical analysis by total-reflection X-ray fluorescence spectrometry of PMx in ambient air and emissions
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Size-fractionated sampling and chemical analysis by total-reflection X-ray fluorescence spectrometry of PMx in ambient air and emissions

机译:通过全反射X射线荧光光谱法对环境空气和排放物中的PMx进行尺寸分级采样和化学分析

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摘要

PM 10 and PM 2.5 (PMx) have been recently introduced as new air quality standards in the EU (Council Directive 1999/30/EC) for particulate matter. Different estimates and measurements showed that the limit values for PM 10 will be exceeded at different locations in Europe, and thus measures will have to be taken to reduce PMx mass .oncentrations. Source apportionment has to be carried out, demanding comparable methods for ambient air and emission sampling and chemical analysis. Therefore, a special ambient-air sampler and a specially designed emission sampler have been developed. Total-reflection X-ray fluorescence analysis (TXRF) was used for multi-element analyses as a fast method with low detection limits. For ambient air measurements, a sampling unit was built, impacting particle size classes 10—2.5 #mu#m and 2.5—1.0 #mu#m directly onto TXRF sample carriers. An electrostatic precipitator (ESP) was used as back-up filter to also collect particles < 1 #mu#m directly onto the TXRF sample carriers. Air quality is affected by natural and anthropogenic sources, and the emissions of particles < 10 #mu#m and < 2.5 #mu#m, respectively, have to be determined to quantify their contributions to the so-called coarse (10—2.5 #mu#m) and fine <2.5 #mu#m) particle modes in ambient air. For this, an in-stack particle sampling system was developed, according to ihe new ambient air quality standards and in view of subsequent analysis by TXRF. These newly developed samplers, in combination with TXRF analyses, were employed in field campaigns to prove the feasibility and capabilities of the approach. Ambient air data show the quantification of a wide spectrum of elements. From those concentrations, PMx ratios were calculated as an indicator for different sources of elements. Results useful for source apportionment are also the elemental dayight ratios calculated to determine local contributions to PMx mass concentrations. With regard to the emission measurements, results of mass and elemental concentrations obtained in two different processes (steel industry) show that the new PM 10 PM 2.5 cascade impactor and measurements with TXRF give characteristic fingerprints for different sources. Size-fractionated ambient air and emission sampling, together with multi-element analysis, prove to be a useful approach to derive information for source—receptor modeling, a method necessary to set up effective abatement strategies to reduce PMx mass concentrations.
机译:PM 10和PM 2.5(PMx)最近已作为欧盟针对颗粒物的新空气质量标准(理事会指令1999/30 / EC)引入。不同的估计和测量结果表明,在欧洲的不同位置将超出PM 10的限值,因此必须采取措施降低PMx的质量浓度。必须进行源分配,要求使用可比的方法进行环境空气和排放采样以及化学分析。因此,已经开发了特殊的环境空气采样器和特殊设计的排放采样器。全反射X射线荧光分析(TXRF)用于多元素分析,是一种检测限低的快速方法。对于环境空气测量,构建了一个采样单元,将10-2.5#mu#m和2.5-1.0#mu#m的颗粒大小直接影响到TXRF样品载体上。静电除尘器(ESP)用作备用过滤器,还可以将<1#μ#m的颗粒直接收集到TXRF样品载体上。空气质量受自然和人为来源的影响,必须分别确定<10#mu#m和<2.5#mu#m的颗粒排放量,以量化它们对所谓的粗颗粒物(10-2.5# (μ#m)和<2.5#μ#m的细颗粒模式。为此,根据新的环境空气质量标准并结合TXRF的后续分析,开发了一种烟囱内颗粒采样系统。这些新开发的采样器与TXRF分析相结合,被用于野外活动,以证明该方法的可行性和能力。环境空气数据显示了多种元素的定量。从这些浓度中,计算出PMx比率,作为不同元素来源的指标。对于来源分配有用的结果也是元素日/夜比率,该比率经计算可确定对PMx质量浓度的局部贡献。关于排放物测量,在两个不同过程(钢铁行业)中获得的质量和元素浓度结果表明,新的PM 10 PM 2.5级联撞击器和TXRF测量可为不同来源提供特征指纹。大小分级的环境空气和排放物采样以及多元素分析被证明是一种有用的方法来获取源-受体模型信息,这是建立有效的减排策略以降低PMx质量浓度所必需的方法。

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