Jiangsu Engineering Research Center for Dust Control and Occupational Protection, China University of Mining and Technology, Xuzhou 221116, Jiangsu, P.R. China.
Department of Occupational Hygiene Engineering, School of Safety Engineering, China University of Mining and Technology, Xuzhou 221116, Jiangsu, P.R. China.
Anal Chem. 2023 Feb 14;95(6):3283-3290. doi: 10.1021/acs.analchem.2c04261. Epub 2023 Feb 1.
We investigated the suitability of the graphitic carbon (GC) content of diesel particulate matter (DPM), measured using Raman spectroscopy, as a surrogate measure of elemental carbon (EC) determined by thermal optical analysis. The Raman spectra in the range of 800-1800 cm (including the D mode at ∼1322 cm and the G mode at ∼1595 cm) were used for GC identification and quantification. Comparison of the Raman spectra for two certified DPM standards (NIST SRM 1650 and SRM 2975), two types of diesel engine exhaust soot, and three types of DPM-enriched workplace aerosols show that the uncertainty of GC quantification based on the D peak height, G peak height, and the total peak area below D and G peaks was about 6.0, 6.7, and 6.9%, respectively. The low uncertainty for different aerosol types suggested possible use of GC as a surrogate measure of EC in workplace atmospheres. A calibration curve was constructed using two laboratory-aerosolized DPM standards to describe the relationship between GC measured by a portable Raman spectrometer and the EC concentration determined by NIOSH Method 5040. The calibration curve was then applied to determine GC-based estimates of the EC contents of diesel engine exhaust samples from two vehicles and seven air samples collected at a hydraulic fracturing worksite. The GC-EC estimates obtained through Raman measurements agreed well with those found by NIOSH Method 5040 for the same samples at EC filter loadings below 2.86 μg/cm. The study shows that using an appropriate sample collection method that avoids high filter mass loadings, onsite measurement of GC by a portable or hand-held Raman spectrometer can provide a useful indicator of EC in workplace aerosol.
我们研究了使用拉曼光谱测量的柴油颗粒物(DPM)中的石墨碳(GC)含量作为热光分析法测定的元素碳(EC)替代测量的适用性。在 800-1800 cm 范围内的拉曼光谱(包括在约 1322 cm 处的 D 模式和在约 1595 cm 处的 G 模式)用于 GC 识别和定量。对两个经过认证的 DPM 标准(NIST SRM 1650 和 SRM 2975)、两种柴油机排气烟尘和三种 DPM 富集的工作场所气溶胶的拉曼光谱进行比较表明,基于 D 峰高度、G 峰高度和 D 和 G 峰下的总峰面积的 GC 定量的不确定度分别约为 6.0%、6.7%和 6.9%。不同气溶胶类型的低不确定度表明 GC 可能可用作工作场所大气中 EC 的替代测量。使用两个实验室气溶胶化的 DPM 标准构建了校准曲线,以描述便携式拉曼光谱仪测量的 GC 与 NIOSH 方法 5040 测定的 EC 浓度之间的关系。然后将校准曲线应用于确定两辆汽车的柴油机排气样品和在水力压裂工地采集的七个空气样品中的基于 GC 的 EC 含量的估算值。通过拉曼测量获得的 GC-EC 估算值与相同样品在 EC 滤膜负载低于 2.86 μg/cm 时使用 NIOSH 方法 5040 获得的结果吻合良好。该研究表明,使用避免高滤膜质量负载的适当样品采集方法,现场使用便携式或手持式拉曼光谱仪测量 GC 可以为工作场所气溶胶中的 EC 提供有用的指示。