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GWU team demonstrates highly scalable, low-cost process for making carbon nanotube wools directly from CO2

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The process is constrained by the (low) cost of electricity. Initial scaling is efficiently applied to available concentrated, hot sources of CO 2 , such as eliminating the CO 2 emission from industrial smoke stacks and simultaneously forming valuable CNT wool. —Johnson et al. Johnson et al. Click to enlarge.

Low Cost 300
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8 Rivers announces 8RH2 CO2 Convective Reformer for ultra-low carbon hydrogen production from natural gas

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The Allam-Fetvedt Cycle is a new type of power cycle that takes a novel approach to emissions reduction. It uses the oxy-combustion of carbon fuels and a high-pressure supercritical CO 2 working fluid in a highly recuperated cycle that captures all emissions by design. Clean Power: transformative zero-emissions power cycles.

Hydrogen 170
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GWU team suggests C2CNT carbon nanotube composites could amplify reduction of GHG emissions

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The latter (B) includes a cascade effect due to virgin Al’s large carbon footprint, triggering larger CNT-composite induced CO 2 emission elimination. Furthermore, the removed CO 2 is permanently stored, unlike, other methods like the production of fuels or seltzer water that re-release CO2 when the product is used. Licht et al.

Carbon 249
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Thai researchers find waste chicken fat a good low-cost feedstock for renewable diesel

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In a study investigating the effect of the water and free fatty acid (FFA) content in waste chicken fat from poultry processing plants on the production of renewable diesel (not biodiesel), researchers in Thailand have found that both higher FFA and water content improved the biohydrogenated diesel (BHD) yield. —Kaewmeesri et al.

Low Cost 150
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GWU research team C2CNT advances to the final round of the Carbon XPRIZE; CO2 to carbon nanotubes

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The C2CNT team uses low-energy, low-cost technology developed in the Licht lab located at GW’s Virginia Science and Technology Campus to transform carbon dioxide into widely useful and highly valued products—carbon nanotubes. Illustration credit: Stuart Licht. Click to enlarge. Click to enlarge.

Carbon 150
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DOE announces $11.5M in Phase 1 funding for carbon capture and storage program; ARPA-E FLECCS

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GE Global Research will optimize an oxy-combustion natural gas-fired turbine—the Allam-Fetvedt cycle—for flexible generation on a grid with high-variable renewable energy (VRE) penetration at near-zero carbon emissions. The team’s approach uses a novel and low-cost heat-pump thermal storage system. 8 Rivers Capital.

Carbon 333
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GWU team demonstrates one-pot process for optimized synthesis of controlled CNTs from CO2; coupling cement and C2CNT

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Stuart Licht ( earlier post ) have developed a new process that transforms CO 2 into a controlled selection of nanotubes (CNTs) via molten electrolysis; they call the process C2CNT (CO2 into carbon nanotubes). This synthesis consumes only CO 2 and electricity, and is constrained only by the cost of electricity. C2CNT and cement.

CO2 150