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HyperSolar reaches 1.25 V for water-splitting with its self-contained low-cost photoelectrochemical nanosystem

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volts (V) of water-splitting voltage with its novel low-cost electrolysis technology. Future development efforts will focus on increasing the currents and photovoltages beyond 1.5V. This hydrogen-oxygen gas mixture is potentially explosive and must be quickly separated. HyperSolar, Inc. announced that it had reached 1.25

Low Cost 246
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Maverick Synfuels introduces affordable small-scale methane gas-to-liquid modular methanol plants

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The Maverick Oasis system allows producers to monetize biogas and natural gas (including associated or flare gas, and stranded gas reserves), as an alternative to producing electricity or venting greenhouse gases into the atmosphere. —Jeff Harrison, Maverick’s Chief Engineering Officer.

Gas 210
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DOE to award $160M to improve fossil-based hydrogen production, transport, storage, and utilization

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When coupled with carbon capture and storage capabilities, low-cost hydrogen sourced from fossil energy feedstocks and processes will significantly reduce the carbon footprint of these processes and enable progress toward hydrogen production with net-zero carbon emissions, the DOE said. Natural Gas-Based Hydrogen Production.

Hydrogen 170
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UK to award £54M to 15 projects developing innovative carbon removal technology

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The money will help projects further develop their greenhouse gas removal technologies, which include a machine that can pull carbon dioxide out of the air, a plant to convert household waste into hydrogen for use in the transport industry, and a system to remove carbon dioxide from seawater.

Carbon 305
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NREL releases comprehensive vision for deep decarbonization of transportation

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According to the Intergovernmental Panel on Climate Change, greenhouse gas emissions must be reduced by 50%–85% by 2050 to limit global warming to two degrees Celsius (four degrees Fahrenheit). The transportation sector is the largest source of greenhouse gas emissions in the United States, accounting for about 28% of total carbon emissions.

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Hydrogen Production from Waste Tires Using a Catalytic Pyrolysis-Gasification Process

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A team at the University of Leeds (UK) is investigating hydrogen production from waste tires using a two-stage pyrolysis-gasification reactor and Ni-Mg-Al (1:1:1) catalyst. The generation rate of waste tires is increasing, especially with the continued increase in production of cars and trucks, the authors note. Elbaba et al.

Waste 220
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DOE seeking input on H2@scale: hydrogen as centerpiece of future energy system; 50% reduction in energy GHGs by 2050

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Preliminary analysis performed by the national laboratories on the H2@Scale concept indicated that nearly a 50% reduction in greenhouse gas emissions is possible by 2050 via such large-scale hydrogen production and use. commercial viability of fuel cell vehicle technology has been demonstrated (commercial vehicles being sold).

Hydrogen 150