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EPRI assesses status of 8 key power generation technologies for US; estimates of capital cost and levelized cost of electricity

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Comparative levelized cost of electricity in 2025 ($/MWh) at different CO 2 prices. Source: EPRI. The levelized cost of electricity (LCOE) represents an annualized cost of generating electricity over the lifetime of the unit, including initial capital, return on investment, and costs of operation, fuel and maintenance.

EPRI 239
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EPRI-NRDC report finds widespread vehicle electrification and a cleaner grid could lead to substantial cuts in GHG by 2050

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Widespread adoption of electric transportation, including electrification in the off-road sector, could lead to substantial reductions in greenhouse gas (GHG) emissions and could modestly improve air quality, according to a new analysis released by the Electric Power Research Institute (EPRI) and the Natural Resources Defense Council (NRDC).

EPRI 150
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Gov’t, industry, national labs collaborate on comprehensive cradle-to-grave LCA study and economic assessment of LDV GHG reductions

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The ranges of the levelized cost of driving (LCD) and cost of avoided carbon are narrower for the future technology pathways, reflecting the expected economic competitiveness of these alternative vehicles and fuels. Fuels or energy carriers in the study included gasoline, ethanol, diesel, CNG, LPG, hydrogen, and electricity.

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Study: even with high LDV electrification, low-carbon biofuels will be necessary to meet 80% GHG reduction target; “daunting” policy implications

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The same highly electrified scenarios, however, could not satisfy 80% GHG-reduction targets, even assuming 80% decarbonized electricity and no growth in travel demand. Within the transportation sector, the two basic options for reducing petroleum use and greenhouse gas (GHG) emissions are fuel-use reduction and fuel substitution.

Carbon 150
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Chilled Ammonia Pilot Project Captures 90% of CO2

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Illustration of the carbon capture plant. megawatt (electric) slipstream from the plant, captures approximately 40 tons of carbon dioxide each day. The project confirmed the predicted performance of the chilled ammonia carbon capture system at an operating power plant. Click to enlarge. Click to enlarge.

EPRI 223