Remove Coal Remove Conversion Remove Industrial Remove Low Cost
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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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Transform Materials plasma process converts abundant natural gas into high-value hydrogen and acetylene

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The key to this transformation is a patented microwave plasma reactor system that generates these new products from methane efficiently at very high rates of conversion and selectivity. For acetylene users, Transform Materials enables on-site production of this important precursor, guaranteeing surety of supply, conveniently and at low cost.

Convert 395
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Researchers use chemical looping process to produce hydrogen from hydrogen sulfide gas

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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. Herein, we demonstrate a sulfur looping scheme in a one-reactor system using a low-cost and environmentally safe iron-based sulfur carrier. —Jangam et al.

Hydrogen 425
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Wood Mackenzie: China thermal coal demand to double to nearly 7btpa by 2030

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In a new report, energy, mining and minerals consultancy Wood Mackenzie projects that despite efforts to limit coal consumption and seek alternative fuel options, China’s strong appetite for thermal coal will lead to a doubling of demand by 2030. It is very unlikely that demand for thermal coal in China will peak before 2030.

Coal 218
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Synthesis Energy Systems and Ambre Energy enter into technical study agreement for coal to gasoline and LPG project; ExxonMobil MTG

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(SES), a global energy and gasification technology company that provides products and solutions to the energy and chemicals industries, has entered into a Technical Study Agreement with Ambre Energy of Australia to supply a proprietary gasification design to support Ambre’s development of a planned Coal to Liquids Project (ambreCTL).

Coal 186
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Stanford GCEP awards $6.6M to 7 projects; focus on combining energy conversion with carbon-neutral fuel production

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million to seven research teams—six from Stanford and one from Carnegie Mellon University—to advance research on technologies for renewable energy conversion to electricity or fuels and for capturing CO 2 emissions and converting CO 2 to fuels. Stanford’s Global Climate and Energy Project (GCEP) is awarding $6.6

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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. Lapwing Energy Limited, “Reverse Coal”.

Carbon 305