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Electrogenic introduces plug-and-play EV conversion kit for the Classic Mini

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British EV technology company Electrogenic, known for its classic car EV conversions, has expanded its range of drop-in conversion kits with a cost-effective plug and play solution to electrify the classic Mini.Electrogenic’s kit converts the automotive icon to electric drive from just £15,000 (US$18,800) plus VAT.

Kits 434
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PNNL team develops least costly to date carbon capture system with conversion to methanol

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The new PNNL carbon capture and conversion system brings the cost to capture CO 2 down to about $39 per metric ton. PNNL chemist David Heldebrant, who leads the research team behind the new technology, compares the system to recycling. The catalysts commonly used for gas-phase CO 2 hydrogenation (e.g.,

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DOE awards $22.1M to 10 nuclear technology projects including clean hydrogen production

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million to 10 industry-led projects to advance nuclear technologies, including two aimed at expanding clean hydrogen production with nuclear energy. A well-established downstream syngas-to-synfuel conversion process, such as Fischer-Tropsch synthesis, converts the syngas to liquid synfuel for a total projected cost of less than $4/gallon.

Hydrogen 475
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DOE to award $12M to support extraction and conversion of lithium from geothermal brines

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0002823 ) to support the extraction and conversion of lithium from geothermal brines to use in batteries for stationary storage and electric vehicles. This funding opportunity will support technologies to extract battery-grade lithium from geothermal brines directly—providing a cost-effective, domestic source of this critical material.

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Study finds direct seawater splitting has substantial drawbacks to conventional water splitting, offers almost no advantage

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A study by a team of researchers from Technische Universität Berlin (TUB) and Fritz-Haber-Institut der Max-Planck-Gesellschaft has found that direct seawater splitting for hydrogen production has substantial drawbacks compared to conventional water splitting and offers almost no advantage. Additionally, H 2 O is needed for water splitting.

Water 497
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UNC team synthesizes silicon nanowires that split water

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Researchers from the University of North Carolina have synthesized high-photovoltage multijunction Si nanowires (SiNWs) that are co-functionalized to split water catalytically. When integrated with the co-catalysts and suspended in water, these light-activated nanoreactors produced hydrogen gas under visible and infrared light.

Water 221
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Exeter team develops low-cost photoelectrode for spontaneous water-splitting using sunlight

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The nanostructured photoelectrode results in spontaneous hydrogen evolution from water without any external bias applied with a faradaic efficiency of 30% and excellent stability. The greatest challenge is to develop a suitable technology for large scale and cost effective solar fuel production to compete with fossil fuel.

Water 342