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

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Researchers at The Ohio State University have used a chemical looping process to produce hydrogen from hydrogen sulfide gas—commonly called “sewer gas”. Hydrogen sulfide is emitted from manure piles and sewer pipes and is a key byproduct of industrial activities including refining oil and gas, producing paper and mining.

Hydrogen 425
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DOE to award $33M to advance hydrogen and fuel cell R&D and the H2@Scale vision

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The US Department of Energy (DOE) announced $33 million in funding to support innovative hydrogen and fuel cell research & development (R&D), infrastructure supply chain development and validation, and cost analysis activities. ( Efficient and innovative hydrogen production. This would be coordinated with the H2NEW consortium.

Hydrogen 321
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Swiss team develops effective and low-cost solar water-splitting device; 14.2% solar-to-hydrogen efficiency

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Recently, c-Si modules have been implemented in solar-hydrogen devices, demonstrating SHE [solar-to-hydrogen efficiency] of 9.7%. Schematic overview of the solar-driven hydrogen generator. In terms of performance, this is a world record for silicon solar cells and for hydrogen production without using rare metals.

Solar 150
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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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In contrast, previously reported ferrite materials typically exhibit 20% or lower steam to hydrogen conversion. Their work indicates that a synergistic effect of reduced LSF and metallic iron phases is attributable to the exceptional steam conversion. Schematic of the hybrid process for liquid fuel and hydrogen generation.

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DOE to issue a funding opportunity announcement on H2@Scale new markets

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H2@Scale supports innovations to produce, store, transport, and utilize hydrogen across multiple sectors, covering collaborations between various industry stakeholders and national laboratories. Advanced Carbon Fiber for Compressed Hydrogen and Natural Gas Storage Tanks. Fuel Cell R&D for Heavy-Duty Applications.

Market 195
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DOE to award up to $4.6M for innovations in fuel cell and hydrogen fuel technologies

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million for 12–24 month projects with industry and academia ( DE-FOA-0000966 ) in support of innovations in fuel cell and hydrogen fuel technologies. Fuel cell–based electrochemical conversion devices for stationary energy storage (TRL 2- 5). Hydrogen infrastructure (TRL 9-10). including soft costs) are of interest.

Hydrogen 231
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HIF Global, Porsche and Volkswagen Group unveil new direct air capture unit to be installed at eFuels plant in Chile in 2024

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Now we are accelerating Direct Air Capture technology that enables efficient and low-cost CO 2 capture—the future of CO 2 recycling. The Haru Oni facility is currently operating with biogenic CO 2 and hydrogen produced with the strong winds of the Magallanes region. This is then made into synthetic fuel.

Chile 195