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Characterization of biofuels blends: Emissions, permeation and apportionment of volatile organic compounds.

机译:生物燃料混合物的特征:挥发性有机化合物的排放,渗透和分配。

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摘要

The formulation of motor vehicle fuels can alter the magnitude and composition of evaporative and exhaust emissions that are associated with environmental and health impacts. The goal of this research was to investigate consequences of using the new vehicle fuels, including bioethanol and biodiesel blends. Laboratory studies were used to characterize the composition of liquid and vapors of gasoline-ethanol and diesel-biodiesel blends; assess the collinearity of fuel profiles used in receptor modeling; evaluate permeation rates and permeant compositions through personal protective equipment (PPE) materials; and measure exhaust emissions from diesel engines. In an ambient study conducted in Detroit, daily volatile organic compound (VOC) levels were measured near a major highway, and VOC sources were apportioned using positive matrix factorization, a receptor model.;The compositions of biofuel blends and conventional fuels differed significantly. Predictions of vapor concentrations were highly correlated to measurements, but activity coefficients are needed for ethanol blends. Petroleum diesel and biodiesel blends, and their vapors had similar compositions, which were distinct from those of gasoline. In permeation tests, breakthrough time and permeation rate strongly depended on the fuel-PPE material combination, and permeants were enriched in benzene and other VOCs. Recommendations are made regarding PPE appropriate for the current fuels. Diesel engine exhaust emissions depended on engine calibration, load, fuel and aftertreatment systems. Biodiesel blends generally reduced emissions of particulate matter, nonmethane hydrocarbons and VOCs, however, nitrogen oxides and formaldehyde emissions increased in certain conditions. In the ambient study, VOC concentrations were generally low and varied with both seasonal and weekly patterns. The major sources were identified as gasoline exhaust, diesel exhaust, fuel evaporation, industrial emissions, biomass burning, and others.;The study provides information regarding VOC profiles of the new fuels, their vapors, diesel exhaust, and ambient levels near a highway site. These profiles can be incorporated into receptor modeling. The permeation study provides guidance for selecting PPE materials. Study results can be used to assess exposure and health impacts resulting from the use of new fuels and biofuel blends.
机译:机动车燃料的配方可以改变与环境和健康影响有关的蒸发和废气排放的大小和组成。这项研究的目的是调查使用新型车辆燃料(包括生物乙醇和生物柴油混合物)的后果。实验室研究被用来表征汽油-乙醇和柴油-生物柴油混合物的液体和蒸气的组成。评估用于受体建模的燃料曲线的共线性;通过个人防护设备(PPE)材料评估渗透率和渗透成分;并测量柴油机的废气排放。在底特律进行的一项环境研究中,在主要高速公路附近测量了每日挥发性有机化合物(VOC)的水平,并使用正矩阵分解(一种受体模型)分配了挥发性有机化合物的来源;生物燃料混合物和常规燃料的成分差异很大。蒸气浓度的预测与测量高度相关,但是乙醇混合物需要活性系数。石油柴油和生物柴油的混合物及其蒸气具有相似的成分,与汽油的成分不同。在渗透测试中,穿透时间和渗透率在很大程度上取决于燃料-PPE材料的组合,并且渗透物中富含苯和其他VOC。针对适用于当前燃料的PPE提出了建议。柴油发动机的废气排放取决于发动机标定,负载,燃料和后处理系统。生物柴油混合物通常会减少颗粒物,非甲烷碳氢化合物和VOC的排放,但是在某些条件下氮氧化物和甲醛的排放会增加。在环境研究中,VOC浓度通常较低,并且随季节和每周模式而变化。确定了主要来源,包括汽油废气,柴油废气,燃料蒸发,工业排放,生物质燃烧等;该研究提供了有关新燃料的VOC特性,其蒸气,柴油废气以及高速公路附近环境水平的信息。 。这些配置文件可以合并到受体建模中。渗透研究为选择PPE材料提供了指导。研究结果可用于评估由于使用新燃料和生物燃料混合物而引起的接触和健康影响。

著录项

  • 作者

    Chin, Jo-Yu.;

  • 作者单位

    University of Michigan.;

  • 授予单位 University of Michigan.;
  • 学科 Health Sciences Occupational Health and Safety.;Environmental Sciences.;Environmental Health.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 193 p.
  • 总页数 193
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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