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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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LanzaTech Produces 2,3-Butanediol from Waste Gases; Building Block for Polymers, Plastics and Hydrocarbon Fuels

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New Zealand-based LanzaTech has successfully produced 2,3-Butanediol (2,3-BD), a key building block used to make polymers, plastics and hydrocarbon fuels, using the company’s gas fermentation technology. LanzaTech has shown 2,3-BD production from waste gas resources in an industrial setting. Jennifer Holmgren.

Polymer 199
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Goodyear unveils 90% sustainable-material demonstration tire, approved for road use

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Goodyear’s 90% sustainable-material demonstration tire features four different types of carbon black that are produced from methane, carbon dioxide, plant-based oil and end-of-life tire pyrolysis oil feedstocks. The use of soybean oil in this demonstration tire helps keep the tire’s rubber compound pliable in changing temperatures.

Oil 293
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Neste to acquire Mahoney Environmental to strengthen its growth strategy and position in renewable raw material sourcing

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Neste, the world’s leading producer of renewable diesel and sustainable aviation fuel produced from waste and residue raw materials, has agreed to acquire 100% of Mahoney Environmental (Mahoney), a collector and recycler of used cooking oil in the United States, and its affiliated entities.

Renewable 243
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LanzaTech and India’s Centre for Advanced Bio-Energy Research developing novel waste CO2 to fuels process

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LanzaTech, a producer of low-carbon fuels and chemicals from waste gases, has partnered with the Centre for Advanced Bio-Energy, a joint venture between Indian Oil Corporation, Ltd. LanzaTech has developed gas fermentation technology that can directly convert waste CO 2 gases into acetates. Source: LanzaTech.

Waste 199
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PNNL biocrude-to-diesel demo passes 2,000-hour catalyst stability milestone

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The biocrude oil came from many different sources, including wastewater sludge from Detroit, and food waste collected from prison and an army base. The research showed that essentially any biocrude, regardless of wet-waste sources, could be used in the process and the catalyst remained robust during the entire run.

Diesel 332
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Researchers develop relatively low-temp process to convert low-density polyethylene waste to liquid fuel

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Researchers in India have developed a relatively low-temperature process to convert low-density polyethylene (LDPE)—a common polymer used to make many types of container, medical and laboratory equipment, computer components and plastic bags—into liquid fuel over a kaolin catalyst. of Environment and Waste Management Vol.

Waste 218