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EU research project IDEALFUEL seeks to develop marine low-sulfur heavy fuel oils from biomass; Bio-HFO

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In an EU-funded research project, an international consortium is aiming to develop new production methods for sustainable marine fuels to replace heavy fuel oils in shipping. IDEALFUEL seeks to develop methods to convert woody residual and waste materials such as sawdust and wood chips into renewable marine fuels.

Mariner 273
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New study finds GHG emissions from palm oil production significantly underestimated; palm oil biofuels could be more climate-damaging than oil sands fuels

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The majority (62%) of the plantations were located on the island of Sumatra, and more than two-thirds (69%) of all industrial plantations were developed for oil palm cultivation, with the remainder mostly being Acacia plantations for paper pulp production. Earlier post.).

Oil-Sands 314
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TNO and TIPS creating company to commercialize new Russian gas-to-liquids technology in Europe; direct DME pathway

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The Netherlands-based TNO research organization and the Russian A.V. TIPS has developed a novel method of conversion for gas, biomass and coal to liquid hydrocarbons (XTL) that is more efficient and easier to apply on small scale than the commonly used Fischer-Tropsch process. Earlier post.). Kolesnikova, E.; Biryukova, E.;

Gas 210
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Ørsted proposes to develop one of the world’s largest renewable hydrogen plants: SeaH2Land

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ArcelorMittal, Yara, Dow Benelux and Zeeland Refinery support the development of the required regional infrastructure to enable sustainably produced steel, ammonia, ethylene and fuels in the future, helping the Netherlands and Belgium to accelerate carbon reductions towards 2030 and beyond.

Hydrogen 284
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Petrobras Partners with BIOeCON on BiCHEM Process for Cellulosic Biofuels and Chemicals

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Brazil’s Petrobras will partner with BIOeCON, a Dutch company, on the development of a new process for enhanced conversion of lignocellulosic biomass such as sugarcane bagasse into chemicals that can be used to produce green plastics, or further transformed into next-generation advanced biofuels. Earlier post.)

Brazil 186
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Study suggests that decarbonizing US transport sector by converting waste CO2 to fuels would require economical air-capture of CO2

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Kreutz used two examples of CCTF systems in his analysis: biodiesel from microalgae and Sandia National Laboratory’s S2P process (an effort to utilize concentrated solar energy to convert waste CO 2 into synthetic fuels, earlier post ). Tags: Algae Algal Fuels Carbon Capture and Conversion (CCC) Emissions Lifecycle analysis.

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Researchers Suggest Microalgal Biofuels Could Be Sustainable and Economical in 10-15 Years

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Algae store chemical energy in the form of oils such as neutral lipids or triglycerides; the algal oil can be extracted and converted into biodiesel by transesterification with short-chain alcohols or by hydrogenation of fatty acids into linear hydrocarbons for drop-in fuel components. The perspective by René H. billion m 3.

Portugal 199