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DOE to award $35M for bioenergy feedstock and algae R&D

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DE-FOA-0002423 ) Topic Areas ins the FOA support DOE’s Bioenergy Technologies Office’s (BETO’s) objectives to reduce the minimum selling price of drop-in biofuels, lower the cost of biopower, and enable high-value products from biomass or waste resources. The application process will include two phases: a concept paper and a full application.

Waste 334
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Researchers use chemical looping process to produce hydrogen from hydrogen sulfide gas

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Herein, we demonstrate a sulfur looping scheme in a one-reactor system using a low-cost and environmentally safe iron-based sulfur carrier. Compared with the undoped sulfur carrier, Mo dopant facilitates the surface hydrogen diffusion, thus promoting the overall H 2 S conversion. —Jangam et al.

Hydrogen 425
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Convert Oil Wells to Solve the Solar Storage Problem

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The California-based Hyperlight Energy will be piloting an installation where they plan to use existing oil wells as solar thermal wellsprings, with the stored energy being converted back to clean electricity when required. Thermal energy storage is a known low-cost, low-risk approach for storing solar energy in the form of heat,” adds Codd.

Oil 121
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DOE to award $89M for advanced manufacturing R&D, battery manufacturing a key focus

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Awards will be made at one of two funding levels: Tier 1 - up to $500,000 for up to 2 years - concept definition and proof of concept projects are limited to Technology Readiness Level (TRL) 2 and TRL 3 activities. —US Secretary of Energy Rick Perry. Tier 2 - up to $4,000,000 for up to 3 years (up to $12,000,000 for Subtopic 1.2

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NCSU team develops catalyst for thermal hybrid water-splitting and syngas generation with exceptional conversion; H2 gas and liquid fuels

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or LSF) supported Fe 3 O 4 —is capable of converting more than 67% steam with high redox stability. In contrast, previously reported ferrite materials typically exhibit 20% or lower steam to hydrogen conversion. To further enhance this effect, they proposed a layered reverse-flow reactor concept. Image credit: Feng He.

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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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The IDEALFUEL project aims to create sustainable alternatives by developing new efficient and low-cost methods to produce low-sulfur heavy fuel oils from wood-based non-food biomass. Although cleaner fuels are available, many companies opt for HFOs due to their low cost.

Mariner 273
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DOE to award up to $6.7M to projects to convert captured CO2 to useful products, including fuels

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Research has shown that CO 2 can be converted to a variety of commodities, but because of the low energy state of CO 2 , the production costs would be prohibitive in many cases. The funding opportunity announcement has three areas of interest: Biological based concepts for beneficial use of CO 2. —DE-FOA-0001622.

Convert 150