4.6 Article

A comparative analysis of chemical components and cell toxicity properties of solid and semi-volatile PM from diesel and biodiesel blend

Journal

JOURNAL OF AEROSOL SCIENCE
Volume 111, Issue -, Pages 51-64

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.jaerosci.2017.06.005

Keywords

Particulate matter; Diesel; Biodiesel blend; Reactive oxygen species; Semi-volatile PM

Funding

  1. Food and Health Bureau, Hong Kong SAR Government [10112061]
  2. Hong Kong Polytechnic University [B-Q33D]
  3. Research Grants Council of the Hong Kong SAR [PolyU 5130/12E]
  4. Early Career Scheme (ECS Project) [21201214]
  5. Guy Carpenter Asia-Pacific Climate Impact Centre at City University of Hong Kong
  6. City University of Hong Kong [9667102]

Ask authors/readers for more resources

Alternative fuel has raised increasing attention in recent years for better fuel economy and emission reduction. The biodiesel fuel is natively produced from vegetable and animal oils with large number of organic compounds with varying groups and characteristics. Particulate Matter (PM) emissions from the biodiesel blend are often complicated by the volatility of the different organic components. We here report the chemical and toxicological characterization of solid-PM and semi-volatile PM (SV-PM) from diesel and biodiesel blend (BD30) exhausts, using front and backup filter, respectively. While total PM emission was lower for BD30 in general, it contained 19% higher organic compounds (OC) in SV-PM compared to diesel, which on the other hand noted 24% more solid-PM. These organic compounds were further analyzed with OCEC thermograph to confirm the dominant existence of highly volatile OC in SV-PM. We further extracted water-soluble components from the solid- and SV-PM samples, and subjected to RAW 264.7 macrophage cell exposure. More than 2-fold increase of oxidative potential was observed in SV-PM samples over solid-PM with elevated levels of cellular reactive oxygen species (ROS) and a significant correlation with OC concentration. Instead, non-cellular assay for ROS quantification showed the change in oxidative potential is greatly influenced by solid-PM. And non-cellular ROS due to SV-PM is 2-fold less than cell-based assay. Hence, the semi-volatiles, though produced in small quantities, need great attention in assessing health hazards and could well be a scope for further research.

Authors

I am an author on this paper
Click your name to claim this paper and add it to your profile.

Reviews

Primary Rating

4.6
Not enough ratings

Secondary Ratings

Novelty
-
Significance
-
Scientific rigor
-
Rate this paper

Recommended

No Data Available
No Data Available