Impacts of a Nanosized Ceria Additive on Diesel Engine Emissions of Particulate and Gaseous Pollutants

微粒 柴油 污染物 燃烧 超细粒子 环境化学 废物管理 乙醛 柴油机排气 柴油机 环境科学 甲醛 材料科学 化学 纳米技术 有机化学 汽车工程 工程类 乙醇
作者
Junfeng Zhang,Yevgen Nazarenko,Lin Zhang,L. Calderon,Ki‐Bum Lee,Eric Garfunkel,Stephan Schwander,Teresa D. Tetley,Kian Fan Chung,Alexandra E. Porter,Mary P. Ryan,Howard M. Kipen,Paul J. Lioy,Gediminas Mainelis
出处
期刊:Environmental Science & Technology [American Chemical Society]
卷期号:47 (22): 13077-13085 被引量:68
标识
DOI:10.1021/es402140u
摘要

Fuel additives incorporating nanosized ceria have been increasingly used in diesel engines as combustion promoters. However, few studies have assessed the impact of these nanotechnology-based additives on pollutant emissions. Here, we systematically compare emission rates of particulate and gaseous pollutants from a single-cylinder, four-cycle diesel engine using fuel mixes containing nanoceria of varying concentrations. The test fuels were made by adding different amounts of a commercial fuel additive Envirox into an ultralow-sulfur diesel fuel at 0 (base fuel), 0.1-, 1-, and 10-fold the manufacturer-recommended concentration of 0.5 mL Envirox per liter of fuel. The addition of Envirox resulted in ceria-concentration-dependent emission reductions of CO2, CO, total particulate mass, formaldehyde, acetaldehyde, acrolein, and several polycyclic aromatic hydrocarbons. These reductions at the manufacturer-recommended doping concentration, however, were accompanied by a substantial increase of certain other air pollutants, specifically the number of ultrafine particles (+32%), NO(x) (+9.3%), and the particle-phase benzo[a]pyrene toxic equivalence quotient (+35%). Increasing fuel ceria concentrations also led to decreases in the size of emitted particles. Given health concerns related to ultrafine particles and NO(x), our findings call for additional studies to further evaluate health risks associated with the use of nanoceria additives in various engines under various operating conditions.

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