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Graforce plasma electrolysis for efficient generation of hydrogen from industrial waste water; partnering with Audi

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Berlin-based Graforce Hydro GmbH, the developer of a plasma electrolyzer—the Plasmalyzer —is applying its technology for the highly efficient generation of hydrogen from industrial waste water. The current Plasmalyzer offers highly efficient water splitting. Only purified water and oxygen remain as waste products.

Water 271
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DOE awards $27.5M to 16 water infrastructure projects

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million to 16 water infrastructure projects. Modern technology has the potential to reduce energy use in aging water infrastructure, particularly in wastewater treatment, which demands up to 2% of domestic electricity use each year. The US Department of Energy (DOE) is awarding $27.5

Water 186
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DOE awarding nearly $65M for biofuels research to reduce airplane and ship emissions

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Affordable, Clean Cellulosic Sugars for High Yield Conversion. Alder Energy will convert miscanthus, a highly promising biomass crop, to SAF through their advanced pyrolysis oil technology, a process that utilizes heat, pressure, and solvents to deconstruct the miscanthus into oils for conversion to SAF. Residential Wood Heaters.

Emissions 272
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Waste Management and Renmatix to explore conversion of urban waste to low-cost cellulosic sugar via supercritical hydrolysis

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Waste Management, Inc. The strategic investment and alliance aims to expand the feedstock flexibility of Renmatix’s proprietary Plantrose process beyond rural biomass to include materials derived from cost-effective and readily available urban waste material such as that managed by Waste Management. Earlier post.).

Waste 274
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Maverick Synfuels introduces affordable small-scale methane gas-to-liquid modular methanol plants

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The Maverick Oasis factory-built Gas-to-Liquids (GTL) methanol plants are modular, and can be rapidly deployed onsite to produce thousands of gallons per day of methanol from natural gas or methane-rich waste gas. The plants are designed to be low-cost, highly efficient facilities optimized to generate an attractive project rate of return.

Gas 210
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MIT researchers advancing development of supercritical water upgrading of heavy crude; lower cost, energy use and CO2

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Findings by MIT researchers could help advance the commercialization of supercritical water technology for the desulfurization and upgrading of high-sulfur crude oil into high-value, cleaner fuels such as gasoline without using hydrogen—a major change in refining technology that would reduce costs, energy use, and CO 2 emissions.

MIT 150
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Bosch on importance of renewable synthetic fuels to reach climate goals; e-fuels

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First, apply electricity generated from renewable sources to obtain hydrogen from water. Renewable synthetic fuels will become considerably more affordable when production capacities are expanded and the cost of electricity generated from renewable sources comes down. Then add carbon. Finally, combine CO? a liter (US$5.00 to US$5.84

Renewable 300