Development of benzene, toluene, ethyl benzene, m-xylene, p-xylene and o-xylene (BTEX) gas reference standards for air pollution monitoring in South Africa

IF 0.8 4区 工程技术 Q4 CHEMISTRY, ANALYTICAL
Napo Ntsasa, James Tshilongo, Nompumelelo Leshabane, Mudalo Jozela, Goitsemang Lekoto, Patricia Forbes
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Abstract

Direct monitoring of volatile organic compounds emitted from industrial sources as well as the monitoring of ambient levels thereof in the atmosphere play an important role in providing data for various legislative requirements. There are many volatile organic compounds emitted to the atmosphere, from biomass burning, power stations, and many other sources. Primary reference gas mixtures of volatile organic compounds containing six components, namely benzene, toluene, ethylbenzene, o-xylene, m-xylene, and p-xylene (BTEX) were prepared by gravimetric methods at nominal amount of substance fractions of 10 µmol/mol. The preparation was performed using the stainless steel (loop) method and direct liquid injection method using gas tight syringe connected to a dedicated syringe heater for comparison purposes. The results of the gravimetric values for both methods were within 1 % of the nominal amount of substance fraction. After the preparation, comparison was achieved by analysis of the BTEX gas mixtures using gas chromatography with flame ionisation detection (GC-FID) and showed comparability to within 2 % of the gravimetric values. The contributions to the uncertainty of measurement were from weighing stainless steel tubes, syringes, and gas cylinders, as well as purity data. The contribution to the uncertainty of measurement from the analysis by GC-FID were repeatability and reproducibility. The combined expanded uncertainty of measurement was between 1.09 % and 3.51 %. The larger deviation from the gravimetric values and associated uncertainty was observed for benzene due to its higher volatility compared to the other components. The BTEX reference gas mixtures prepared in this study are currently being used as a source of traceability in South Africa for air pollution monitoring purposes.

制定南非空气污染监测用苯、甲苯、乙苯、间二甲苯、对二甲苯和邻二甲苯(BTEX)气体参考标准
直接监测工业源排放的挥发性有机化合物以及监测其在大气中的环境水平在为各种立法要求提供数据方面发挥着重要作用。有许多挥发性有机化合物从生物质燃烧、发电站和许多其他来源排放到大气中。以标称量为10µmol/mol的物质组分为标称量,用重量法制备了含有苯、甲苯、乙苯、邻二甲苯、间二甲苯和对二甲苯(BTEX)六种组分的挥发性有机化合物的一级参比气体。制备采用不锈钢(环)法和直接液体注射法进行,使用气密注射器连接到专用注射器加热器进行比较。两种方法的测定结果均在物质组分标称量的1%以内。制备后,使用气相色谱火焰电离检测(GC-FID)对BTEX气体混合物进行分析,结果表明,两者的可比性在重量值的2%以内。对测量不确定度的贡献来自不锈钢管,注射器和气瓶的称重,以及纯度数据。气相色谱- fid分析对测量不确定度的贡献是重复性和再现性。测量的综合扩展不确定度在1.09% ~ 3.51%之间。与其他组分相比,苯的挥发性更高,因此与重量值和相关不确定度的偏差较大。在这项研究中制备的BTEX标准气体混合物目前正在南非用作可追溯性来源,用于空气污染监测目的。
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来源期刊
Accreditation and Quality Assurance
Accreditation and Quality Assurance 工程技术-分析化学
CiteScore
1.80
自引率
22.20%
发文量
39
审稿时长
6-12 weeks
期刊介绍: Accreditation and Quality Assurance has established itself as the leading information and discussion forum for all aspects relevant to quality, transparency and reliability of measurement results in chemical and biological sciences. The journal serves the information needs of researchers, practitioners and decision makers dealing with quality assurance and quality management, including the development and application of metrological principles and concepts such as traceability or measurement uncertainty in the following fields: environment, nutrition, consumer protection, geology, metallurgy, pharmacy, forensics, clinical chemistry and laboratory medicine, and microbiology.
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