Engine performance and emission optimization of waste cooking oil/diesel/n-octanol blends via response surface methodology

Original: https://doi.org/10.1080/14786451.2026.2614788

Waste cooking oil (WCO) can be used as a renewable fuel for diesel engines. However, it is thicker (more viscous) than regular diesel, which makes it difficult to use directly in engines.

To solve this problem, higher alcohols like n-octanol can be added. Adding n-octanol improves the fuel’s flow and combustion properties, and it does not require a chemical conversion process (such as transesterification).

In this study, researchers examined how two factors affect engine performance and emissions:

  1. Engine load (how hard the engine is working)
  2. Amount of n-octanol in the fuel blend

They tested different mixtures of diesel, WCO, and n-octanol in a 10-kW stationary diesel engine. They used a structured experimental method and statistical modeling to analyze the results. Their prediction models were accurate, with errors less than ±8%.

The best fuel mixture was:

  • 50% diesel (D50)
  • 30% waste cooking oil (W30)
  • 20% n-octanol (O20)

At 65% engine load, this blend gave the best overall results. Compared to regular diesel fuel, it:

  • Reduced CO (carbon monoxide) by 5.70%
  • Reduced NOX (nitrogen oxides) by 33.56%
  • Reduced HC (unburned hydrocarbons) by 12.24%
  • Reduced smoke by 22.85%
  • Maintained similar engine efficiency (BTE)

Overall, the study shows that adding alcohol to waste cooking oil is a practical way to make diesel engines run cleaner while keeping good performance.