Skip to main navigation Skip to search Skip to main content

Waste cooking oil biodiesel alters combustion pathways to enhance volatile organic compound emissions and reduce intermediate/semi -volatile organic compounds in agricultural machinery

  • Fan Zhang
  • , Bo Huang
  • , Junfeng Cui
  • , Yi Wang
  • , Xinyi Wan
  • , Lele Han
  • , Gehui Wang*
  • , Yong Han
  • , Yu Wang
  • , Hai Guo
  • , Min Cui*
  • *Corresponding author for this work
  • East China Normal University
  • Ltd.
  • Hong Kong Polytechnic University
  • Yangzhou University

Research output: Contribution to journalArticlepeer-review

Abstract

Biodiesel has attracted considerable attention in recent years due to its zero-carbon emission characteristics, especially in relation to non-road mobile sources that are challenging to electrify. However, limited attention has been paid to the impact of blending waste cooking oil biodiesel on emissions of volatile organic compounds (VOCs) and intermediate/semi-volatile organic compounds (I/SVOCs). Therefore, real-world measurement of organic matters from typical agricultural machines in China was conducted. Results indicated that while the addition of biodiesel effectively reduced I/SVOCs in PM—from 281 mg (kg fuel)−1 for D100–152 mg (kg fuel)−1 for B5 (46% reduction), and to 179 mg (kg fuel)−1 for B20 (36% reduction)—it simultaneously resulted in a notable increase in VOC emissions, from 140 mg (kg fuel)−1 for D100–217 mg (kg fuel)−1 for B5 (55% increase) and 254 mg (kg fuel)−1 for B20 (81% increase), mainly driven by elevated levels of oxygenated VOCs (OVOCs) and alkenes. This phenomenon was likely associated with alterations in combustion pathways induced by the high ester content and elevated viscosity characteristic of biodiesel. In addition, although biodiesel can serve as an effective alternative fuel for agricultural machinery in reducing CO2 and PM emissions, the substantial increase in VOC emissions led to a significant rise in ozone formation potentials (OFP), which was 1.6 times and 1.8 times higher for B5 and B20 compared to D100. Given the current context of elevated O3 concentrations in China and globally, the use of biodiesel derived from waste cooking oil should be carefully evaluated.

Original languageEnglish
Article number142450
JournalJournal of Hazardous Materials
Volume513
DOIs
StatePublished - 15 Jul 2026

Keywords

  • Agricultural machinery
  • I/SVOCs
  • VOCs
  • Waste cooking oil biodiesel

Fingerprint

Dive into the research topics of 'Waste cooking oil biodiesel alters combustion pathways to enhance volatile organic compound emissions and reduce intermediate/semi -volatile organic compounds in agricultural machinery'. Together they form a unique fingerprint.

Cite this