Liquid Wind estimates e-methanol lifecycle emissions

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The FlagshipONE e-methanol project will generate e-methanol using energy produced by the Hörneborgsverket CHP plant in Örnsköldsvik, Sweden.

To meet the growing demand for carbon neutral fuel and the need to reduce CO2 emissions, Liquid Wind is developing FlagshipONE, a commercial-scale renewable e-methanol facility which will capture CO2 emissions from a biomass combined heat and power plant.

To quantify the environmental benefit, Liquid Wind performed an internal lifecycle analysis (LCA) to determine the emissions of the e-methanol to be produced at FlagshipONE in Sweden, considering all stages of the e-methanol lifecycle and identifying the GHG reduction potential compared to conventional fuels.

FlagshipONE will have an electrolyser capacity of around 70MW and is expected to produce 50,000 tonnes of e-methanol per year based on renewable hydrogen and biogenic CO2. The electrolysis producing the hydrogen will be powered by onshore wind.

The well-to-gate emissions of FlagshipONE e-methanol (life-cycle emission when leaving the production facility) are relatively small, at around -1.3 kg CO2eq per kg of e-methanol produced. About -1.4 kg of CO2 is from capturing the carbon and is credited as negative emissions.

When the scope is expanded to include the use phase, well-to-wake, the emissions of transport and combustion are considered. The captured CO2 is re-emitted, which results in a net positive climate change potential of about 5 gCO2eq/MJ.

Considering life cycle emissions, fossil-based fuels emit around 85-90 gCO2eq/MJ, which results in a reduction of about 94% when replaced with wind-based e-methanol.

Liquid Wind has used Material Energy Flow Analysis (MEFA) to determine the carbon inventory of its production process. The MEFA has a modular approach, which handles the complexity of the system by carrying out an input-output analysis for each production step, which are investigated individually. All direct and indirect material or energy flows for each module are captured and include the scope 1 and 2 emissions.

Other e-methanol production projects include one in Denmark and one in Southeast Asia.

The results are contained in a white paper produced by Liquid Wind ahead of a webinar to be held on 28 April.