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Topsoe enters agreement with Steeper Energy to introduce complete waste-to-biofuel solution

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Topsoe and Steeper Energy , a developer of biomass conversion technologies, signed a global licensing agreement for a complete waste-to-fuel solution. The end-products include Sustainable Aviation Fuel (SAF), marine biofuel, and renewable diesel from waste biomass. Steeper is headquartered in Denmark and has locations in Canada.

Waste 293
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EU project HyFlexFuel converted sewage sludge and other biomasses into kerosene by hydrothermal liquefaction (HTL); SAF

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The EU-funded research project HyFlexFuel recently successfully produced biocrudes via hydrothermal liquefaction (HTL) from a variety of biomasses, including sewage sludge, food waste, manure, wheat straw, corn stover, pine sawdust, miscanthus and microalgae in a pilot-scale continuous HTL plant at Aarhus University (Denmark).

Convert 418
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Maersk parterning with 6 companies to source at least 730,000 tpy of green methanol by end of 2025

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European Energy (Denmark). As a partner, European Energy will produce e-methanol for Maersk’s first green feeder vessel, which is expected to be on the water by 2023. Orsted (Denmark). The second phase of the project will have a capacity of 200,000 tonnes/year with start date to be determined. WasteFuel (US).

Green 199
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Vattenfall and Aalborg University Partner with SCF Technologies on Near Supercritical Bio-oil Process

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Vattenfall and Aalborg University are partnering with Danish startup SCF Technologies in a two-year project to design a demonstration plant based on SCF’s CatLiq process—an application of the firm’s supercritical fluid technology in the catalytic production of bio-oil from organic waste. The oxygen content of the CatLiq bio-oil is 2-12%.

Oil 218
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Mitsui Engineering and palm oil producer Sime Darby to partner on cellulosic ethanol from palm oil Empty Fruit Bunches; Inbicon technology

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In other words, each batch has a less water and more ethanol, further increasing yield and efficiency. Based on collected data from the demonstration plant, SD and MES are aiming to begin operating the commercial plant as soon as possible. Earlier post.).

Oil 186
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Energy Harvesting for Wearable Technology Steps Up

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Using built-in fuel cells, the device absorbed the lactate in the sweat and combined it with atmospheric oxygen to generate water and pyruvate. So the researchers bought a commercial microgenerator designed for wearable and IoT devices called the Kinetron MSG32. volts for about 60 hours. They said, ‘We don’t know.

Energy 125
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Wind-to-Hydrogen Tech Goes to Sea

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Denmark is planning a hydrogen island designed to generate about 1 million tonnes of offshore hydrogen starting in 2030. The technology to produce hydrogen by electrolyzing water has been around for more than 200 years. Conventional, or gray, hydrogen: $1.50 To meet such targets, it’ll be necessary to build, and build fast.

Wind 86