ILAQH and BERF, Queensland University of Technology , Brisbane, Queensland 4001, Australia.
Environ Sci Technol. 2014 Nov 4;48(21):12577-85. doi: 10.1021/es503160m. Epub 2014 Oct 27.
We have studied the effect of chemical composition of biodiesel fuel on the physical (volatility) and chemical (reactive oxygenated species concentration) properties of nano particles emitted from a modern common-rail diesel engine. Particle emissions from the combustion of four biodiesels with controlled chemical compositions and different varying unsaturation degrees and carbon-chain lengths, together with a commercial diesel, were tested and compared in terms of volatility of particles and the amount of reactive oxygenated species carried by particles. Different blends of biodiesel and petro diesel were tested at several engine loads and speeds. We have observed that more saturated fuels with shorter carbon chain lengths result in lower particle mass but produce particles that are more volatile and also have higher levels of Reactive Oxygen Species. This highlights the importance of taking into account metrics that are relevant from the health effects point of view when assessing emissions from new fuel types.
我们研究了生物柴油燃料的化学成分对现代共轨式柴油机排放纳米颗粒的物理(挥发性)和化学(反应性含氧物种浓度)特性的影响。对四种化学组成可控且不饱和程度和碳链长度不同的生物柴油以及一种商业柴油的燃烧排放颗粒进行了测试和比较,比较了颗粒的挥发性和颗粒携带的反应性含氧物种的量。在不同的发动机负荷和转速下测试了不同比例的生物柴油和石油柴油。我们发现,较短碳链长度的更饱和燃料会导致颗粒质量降低,但产生的颗粒挥发性更高,反应性含氧物种水平也更高。这突出表明,在评估新型燃料排放时,从健康影响的角度考虑相关指标非常重要。