Techno-economic assessment of hydrotreated vegetable oil as a renewable fuel from waste sludge palm oil

Environ Res. 2023 Mar 1:220:115169. doi: 10.1016/j.envres.2022.115169. Epub 2022 Dec 29.

Abstract

To date, the development of renewable fuels has become a normal phenomenon to solve the problem of diesel fuel emissions and the scarcity of fossil fuels. Biodiesel production has some limitations, such as two-step processes requiring high free fatty acids (FFAs), oil feedstocks and gum formation. Hydrotreated vegetable oil (HVO) is a newly developed international renewable diesel that uses renewable feedstocks via the hydrotreatment process. Unlike FAME, FFAs percentage doesn't affect the HVO production and sustains a higher yield. The improved characteristics of HVO, such as a higher cetane value, better cold flow properties, lower emissions and excellent oxidation stability for storage, stand out from FAME biodiesel. Moreover, HVO is a hydrocarbon without oxygen content, but FAME is an ester with 11% oxygen content which makes it differ in oxidation stability. Waste sludge palm oil (SPO), an abundant non-edible industrial waste, was reused and selected as the feedstock for HVO production. Techno-economical and energy analyses were conducted for HVO production using Aspen HYSYS with a plant capacity of 25,000 kg/h. Alternatively, hydrogen has been recycled to reduce the hydrogen feed. With a capital investment of RM 65.86 million and an annual production cost of RM 332.56 million, the base case of the SPO-HVO production process was more desirable after consideration of all economic indicators and HVO purity. The base case of SPO-HVO production could achieve a return on investment (ROI) of 89.03% with a payback period (PBP) of 1.68 years. The SPO-HVO production in this study has observed a reduction in the primary greenhouse gas, carbon dioxide (CO2) emission by up to 90% and the total annual production cost by nearly RM 450 million. Therefore, SPO-HVO production is a potential and alternative process to produce biobased diesel fuels with waste oil.

Keywords: Hydrotreated vegetable oil; Sludge palm oil; Techno-economic.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Biofuels / analysis
  • Gasoline / analysis
  • Hydrogen
  • Oxygen
  • Palm Oil
  • Plant Oils*
  • Sewage*
  • Vehicle Emissions

Substances

  • Plant Oils
  • Palm Oil
  • Sewage
  • Vehicle Emissions
  • Biofuels
  • Gasoline
  • Hydrogen
  • Oxygen