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  3. Tilted Raceway System for SAF-Production Tilted Raceway System for SAF-Production

Tilted Raceway System for SAF-Production

Scalable and cost-efficient feedstocks for Sustainable Aviation Fuel

Brief information

School:

Engineering and Architecture

Status:

Ongoing

Period:

01.01.2026 - 31.12.2026

Overview

The decarbonisation of aviation requires new, scalable and cost-efficient feedstocks for Sustainable Aviation Fuel (SAF). This project evaluates the feasibility of producing low-cost microalgal lipids as a SAF feedstock using a newly developed Tilted Raceway System (TRS). Developed at Lucerne University of Applied Sciences and Arts, the TRS enables significantly higher biomass concentrations and areal productivities than conventional open raceway ponds, while requiring only slightly higher capital expenditure.

The project comprises a feasibility study on large-scale microalgae cultivation using TRS technology, including the evaluation of biological, technical and economic parameters. Key activities include the selection of suitable microalgae strains, modelling of biomass and lipid productivity, assessment of energy demand, and a detailed techno-economic analysis (TEA) of biomass and lipid production costs. The resulting data provide robust estimates of CAPEX, OPEX and specific feedstock costs and are benchmarked against the economic requirements of the HEFA process.

The project delivers a scientifically sound decision basis for Helvoil SA to assess TRS-based microalgae as a new, resource-independent and economically viable feedstock for SAF production, thereby contributing to the development of sustainable and competitive aviation fuels.

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Facts

Type of project

Forschung

Internal organisations involved
  • Engineering and Architecture
  • Institute of Mechanical Engineering and Energy Technology IME
  • CC Thermal Energy Systems and Process Engineering
Funding
  • Innosuisse - HSLU als Hauptforschungspartnerin
UN Sustainable Development Goals
Among other things, this project contributes to the attainment of the following UN Sustainable Development Goals (SDGs):
  • SDG 13: Climate Action
    Take urgent action to combat climate change and its impacts
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Persons involved: internal

Project manager
  • Reto Tamburini
Member of project team
  • Mirko Kleingries
  • Martin Vogel

Brief information

School:

Engineering and Architecture

Status:

Ongoing

Period:

01/01/2026 - 12/31/2026

Project Head

Reto Tamburini

Research Associate

+41 41 349 37 13

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Lucerne University of Applied Sciences and Arts


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6002 Luzern

+41 41 228 42 42

info@hslu.ch

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