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April 14, 2026Biofuels Bioproducts and Biorefining0 citations

Techno‐economic evaluation of palm stearin biodiesel production using a continuous deglycerolization reactor

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KSKittiphoom SuppalakpanyaSNSuwattana NikhomNCNares Chimres

Key Points

  • Evaluate the techno-economic feasibility of producing biodiesel from palm stearin using a continuous deglycerolization reactor.
  • Produced biodiesel using a continuous deglycerolization reactor (CDR).
  • Utilized an optimal methanol-oil molar ratio of 5:1 and potassium methoxide catalyst at 1.2 wt%.
  • Assessed economic viability through net present value and internal rate of return calculations.
  • Achieved high-quality biodiesel with an ester content of 97.23 wt% and a yield of 98 wt%.
  • Economic assessment showed a positive net present value and an internal rate of return above 8% per year.
  • Identified a break-even selling price of US$0.99 L −1 for biodiesel.

Abstract

Abstract The growing reliance on edible oils for biodiesel production raises concerns regarding feedstock availability and cost volatility. Palm stearin (PS), a by‐product of palm oil fractionation with reduced demand in food applications, offers an attractive alternative feedstock for biodiesel production. In this study, biodiesel was produced from PS using a continuous deglycerolization reactor (CDR), which removes glycerol during transesterification. The optimal process condition was a methanol–oil molar ratio of 5: 1, a potassium methoxide (KOCH 3) catalyst loading of 1. 2 wt%, a mixing speed of 250 rpm and a glycerol removal rate of 0. 25 L h −1. Under these conditions, the CDR produced high‐quality biodiesel with an ester content of 97. 23 wt% and a yield of 98 wt%. An economic assessment indicated a positive net present value, an internal rate of return above 8% per year, and a payback period of 1. 12 years. Sensitivity analysis showed that economic performance is influenced by production cost and biodiesel selling price, with a break‐even selling price of US0. 99 L −1. The combination of reduced methanol consumption and the use of lower‐cost PS support the economic viability of the proposed process.

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Cite This Study

Suppalakpanya et al. (2026) studied this question.

synapsesocial.com/papers/69ddda4de195c95cdefd7c0fhttps://doi.org/10.1002/bbb.70176
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