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Is It Economical to Convert ICE Car to Electric Car Using Conversion Kit

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converting existing internal combustion engine (ICE) cars into electric vehicles using conversion kits. The Appeal of Conversion Kits Conversion kits offer a promising solution for individuals who wish to contribute to environmental conservation without breaking the bank (Now you don’t have to break the bank to buy an EV).

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Study finds GHG emissions from corn ethanol now 46% lower than gasoline

Green Car Congress

In light of the United States’ renewed effort to achieve a net zero carbon economy, our research team believes this critical review is a timely contribution to establishing an accurate, common understanding of the greenhouse gas profile for corn ethanol in comparison to gasoline refined from crude oil. gCO 2 e/MJ (range of 37.6 Scully et al.

Gasoline 493
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DOE to award up to $24M to advance direct air carbon capture technology

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Most contemporary DAC approaches utilize energy poorly, as evident by second-law efficiencies for CO 2 separation of 1 to 9% (for comparison, post-combustion capture from coal exhaust attains second-law efficiencies greater than 20%). Science-Driven Synthesis and Assembly of Innovative Materials for Direct Air Capture.

Carbon 360
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Study finds all-electric rideshare fleet could reduce carbon emissions, but increase traffic issues

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But the cars and SUVs used in these situations drive more miles each year than a typical personal vehicle, contributing a higher proportion of greenhouse gases to the environment. Major ridesourcing companies Uber and Lyft have promised all-electric fleets by 2030 in an effort to reduce their carbon footprint.

Fleet 195
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ARPA-E adds five new funding topics to FOA to advance critical energy innovation

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In comparison to removal of CO 2 from the ambient air, or direct air capture (DAC), dissolved inorganic carbon (DIC) exists at a higher volumetric concentration, meaning smaller volumes of fluid can move through the system per unit carbon removed.

Energy 332
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Stanford researchers develop copper-based catalyst that produces ethanol from CO at room temperature; potential for closed-loop CO2-to-fuel process

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The material’s selectivity for oxygenates, with ethanol as the major product, demonstrates the feasibility of a two-step conversion of CO 2 to liquid fuel that could be powered by renewable electricity, the team suggests in their paper published in the journal Nature. Carbon Capture and Conversion (CCC) Catalysts Ethanol'

Fuel 300
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USC team develops highly efficient catalyst system for converting CO2 to methanol; 79% yield from CO2 captured from air

Green Car Congress

Despite its outsized impact on the environment, the actual concentration of CO 2 in the atmosphere is relatively small—400 parts per million is 0.04% of the total volume. For a comparison, there’s more than 23 times as much the noble gas Argon in the atmosphere—which still makes up less than 1% of the total volume.).

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