Traviss Nora, Thelen Brett Amy, Ingalls Jaime Kathryn, Treadwell Melinda Dawn
Keene State College, MS 2001, 229 Main Street, Keene, NH 03435-1901, USA.
Air Qual Atmos Health. 2012 Mar;5(1):101-114. doi: 10.1007/s11869-011-0141-8. Epub 2011 Mar 23.
Many organizations are interested in biodiesel as a renewable, domestic energy source for use in transportation and heavy-duty equipment. Although numerous biodiesel studies exist, biodiesel studies are nearly absent from the literature. This study compared the impact of petroleum diesel fuel and a B20 blend (20% soy-based biodiesel/80% petroleum diesel) on occupational and environmental exposures at a rural municipal facility in Keene, NH. For each fuel type, we measured concentrations of fine particulate matter (PM), elemental carbon (EC), and organic carbon (OC) at multiple locations (in-cabin, work area, and near-field) at a materials recovery facility utilizing non-road equipment. B20 fuel use resulted in significant reductions in PM mass (56-76%), reductions in EC (5-29%), and increases in OC (294-467%). Concentrations of PM measured during petroleum diesel use were up to four times higher than PM concentrations during B20 use. Further analysis of the EC and OC fractions of total carbon also indicated substantial differences between fuels. Our results demonstrate that biodiesel blends significantly reduced PM exposure compared to petroleum diesel fuel in a workplace utilizing non-road construction-type equipment. While this suggests that biodiesel may reduce health risks associated with exposure to fine particulate matter mass, more exposure research is needed to better understand biodiesel-related changes in particulate matter composition and other exposure metrics.
许多组织对生物柴油作为一种可再生的国内能源用于交通运输和重型设备感兴趣。尽管存在大量关于生物柴油的研究,但生物柴油研究在文献中却几乎没有。本研究比较了石油柴油燃料和B20混合燃料(20%大豆基生物柴油/80%石油柴油)对新罕布什尔州基恩市一个农村市政设施中职业和环境暴露的影响。对于每种燃料类型,我们在一个使用非道路设备的材料回收设施的多个位置(驾驶室内、工作区域和近场)测量了细颗粒物(PM)、元素碳(EC)和有机碳(OC)的浓度。使用B20燃料导致PM质量显著降低(56 - 76%),EC降低(5 - 29%),OC增加(294 - 467%)。石油柴油使用期间测量的PM浓度比B20使用期间的PM浓度高出四倍。对总碳的EC和OC组分的进一步分析也表明了燃料之间的显著差异。我们的结果表明,在使用非道路建筑型设备的工作场所,与石油柴油燃料相比,生物柴油混合燃料显著降低了PM暴露。虽然这表明生物柴油可能降低与暴露于细颗粒物质量相关的健康风险,但需要更多的暴露研究来更好地了解生物柴油相关的颗粒物组成变化和其他暴露指标。