Schuetzle D
Environ Health Perspect. 1983 Jan;47:65-80. doi: 10.1289/ehp.834765.
Representative dilution tube sampling techniques for particulate and gas phase vehicle emissions are described using Teflon filter media and XAD-2 resin. More than 90% of the total gas (C8-C18) and particulate direct acting Ames assay mutagenicity (TA 98) was found in the particulate phase. The gas and particulate phase material was fractionated by HPLC into nonpolar, moderately polar and highly polar chemical fractions. The moderately polar chemical fraction of the particulates contained more than 50% of the direct acting Ames assay mutagenicity for the total extract. The concentration of oxygenated polynuclear aromatic hydrocarbons (oxy-PAH) and nitrated PAH (nitro-PAH) identified in the moderately polar particulate fractions are given. Nitro-PAH account for most of the direct-acting (TA 98) Ames assay mutagenicity in these moderately polar fractions. Reactions and kinetic expressions for chemical conversion of PAH are presented. Chemical conversion of PAH to nitro-PAH during dilution tube sampling of particulates on Teflon filters and gases on XAD-2 resin is a minor problem (representing 10-20%, on the average, of the 1-nitropyrene found in extracts) at short (46 min) sampling times, at low sampling temperatures (42 degrees C), and in diluted exhaust containing 3 ppm NO2. Particulate emissions collected from dilution tubes on filter media appear to be representative of what is emitted in the environment as based upon a comparison of highway and laboratory studies.
使用聚四氟乙烯过滤介质和XAD - 2树脂描述了用于颗粒和气相车辆排放物的代表性稀释管采样技术。在颗粒相中发现了超过90%的总气体(C8 - C18)和颗粒直接作用Ames试验致突变性(TA 98)。通过高效液相色谱法将气相和颗粒相物质分离为非极性、中等极性和高极性化学组分。颗粒的中等极性化学组分包含总提取物中超过50%的直接作用Ames试验致突变性。给出了在中等极性颗粒组分中鉴定出的含氧多环芳烃(oxy - PAH)和硝化多环芳烃(nitro - PAH)的浓度。在这些中等极性组分中,硝化多环芳烃占直接作用(TA 98)Ames试验致突变性的大部分。给出了多环芳烃化学转化的反应和动力学表达式。在短(46分钟)采样时间、低采样温度(42摄氏度)以及含有3 ppm二氧化氮的稀释废气中,在聚四氟乙烯滤膜上采集颗粒和在XAD - 2树脂上采集气体的稀释管采样过程中,多环芳烃向硝化多环芳烃的化学转化是一个小问题(平均而言,提取物中发现的1 - 硝基芘的10 - 20%)。基于公路和实验室研究的比较,从稀释管在过滤介质上收集的颗粒排放物似乎代表了环境中的排放情况。