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Heliogen and Bloom Energy demonstrate production of low-cost green hydrogen; concentrated solar and high-temp electrolysis

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When combined with Bloom’s proprietary solid oxide, high-temperature electrolyzer, hydrogen can be produced 45% more efficiently than low-temperature PEM and alkaline electrolyzers. Electricity accounts for nearly 80% of the cost of hydrogen from electrolysis. Source: Heliogen.

Low Cost 397
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PNNL team develops new low-cost method to convert captured CO2 to methane

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Earlier this year, PNNL researchers revealed that using EEMPA in power plants could slash the price of carbon capture to 19% lower than standard industry costs—the lowest documented price of carbon capture. The new process gives off excess heat, too, providing steam for power generation. —Heldebrant et al.

Low Cost 315
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Researchers use melamine to create effective, low-cost carbon capture; potential tailpipe application

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millimoles per gram at 1 bar), fast adsorption time (less than 1 minute), low price, and extraordinary stability to cycling by flue gas. This work creates a general industrialization method toward carbon dioxide capture via DCC atomic-level design strategies. —Mao et al.

Low Cost 243
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GlobalData: hydrogen to become game changer as large-scale source of cleaner power

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The technology has the capability to serve as a long-term, large-scale clean energy storage medium that aids power generation from renewable sources, however, formulating a cost-effective and well-regulated transition is a complex issue and the cost of producing hydrogen from renewable energy sources is currently expensive.

Hydrogen 199
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BNEF: steel industry set to pivot to hydrogen in green push; additional $278B for clean capacity and retrofits

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Steel is responsible for around 7% of man-made greenhouse gas emissions every year and is one of the world’s most polluting industries. Government and corporate net-zero commitments are pushing the steel industry to cancel out its emissions by 2050. The steel industry cannot afford to wait for the 2040s to start its transition.

Hydrogen 221
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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 technology we’ve developed is capable of cleaning wastewater and producing a low-cost, low-emission fuel from it.

Water 271
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DOE awards $56M to 21 concentrating solar power projects; $8M for reducing soft costs of rooftop PV systems

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The US Department of Energy (DOE) will award $56 million over three years—subject to congressional appropriations—for 21 total projects to further advance advanced concentrating solar power technologies (CSP). These systems can be combined with existing fossil-fuel plants to allow for flexible power generation. CSP awards.

Solar 252