Madden Michael C
a National Health and Environmental Effects Research Laboratory, U.S. Environmental Protection Agency , Research Triangle Park , NC , USA.
Inhal Toxicol. 2015;27(11):511-4. doi: 10.3109/08958378.2015.1107153.
Biodiesel use as a fuel is increasing globally as an alternate to petroleum sources. To comprehensively assess the effects of the use of biodiesel as an energy source, end stage uses of biodiesel such as the effects of inhalation of combusted products on human health must be incorporated. To date, few reports concerning the toxicological effects of the emissions of combusted biodiesel or blends of biodiesel on surrogates of health effects have been published. The relative toxicity of the combusted biodiesel emissions compared to petroleum diesel emissions with short term exposures is also not well known. To address the paucity of findings on the toxicity of combusted biodiesel emissions, studies were undertaken at the U.S. Environmental Protection Agency laboratories in Research Triangle Park, North Carolina. The studies used a variety of approaches with nonhuman animal models to examine biological responses of the lung and cardiovascular systems induced by acute and repeated exposures to pure biodiesel and biodiesel blended with petroleum diesel. Effects of the emissions on induction of mutations in bacterial test strains and mammalian DNA adducts were also characterized and normalized to engine work load. The emissions were characterized as to the physicochemical composition in order to determine the magnitude of the differences among the emissions utilized in the studies. This article summarizes the major finding of these studies which are contained within this special issue of Inhalation Toxicology. The findings provided in these articles provide information about the toxicity of biodiesel emissions relative to petroleum diesel emissions and which can be utilized in a life cycle analyses of the effects of increased biodiesel usage.
作为一种燃料,生物柴油在全球范围内的使用量正在增加,以替代石油资源。为了全面评估使用生物柴油作为能源的影响,必须纳入生物柴油的最终用途,例如吸入燃烧产物对人类健康的影响。迄今为止,关于燃烧生物柴油或生物柴油混合物排放对健康影响替代指标的毒理学效应的报道很少。与石油柴油排放相比,燃烧生物柴油排放的短期暴露相对毒性也不为人所知。为了解决关于燃烧生物柴油排放毒性研究结果的匮乏问题,美国环境保护局在北卡罗来纳州三角研究园的实验室开展了相关研究。这些研究采用了多种方法,利用非人类动物模型来检查急性和重复暴露于纯生物柴油以及与石油柴油混合的生物柴油所引起的肺部和心血管系统的生物学反应。还对排放物对细菌测试菌株突变诱导和哺乳动物DNA加合物的影响进行了表征,并根据发动机工作负荷进行了标准化。对排放物的物理化学组成进行了表征,以确定研究中使用的排放物之间差异的程度。本文总结了这些研究的主要发现,这些发现包含在本期《吸入毒理学》特刊中。这些文章中提供的研究结果提供了关于生物柴油排放相对于石油柴油排放毒性的信息,可用于对增加生物柴油使用影响的生命周期分析。