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Chris Rivet's avatar

#4 makes me wonder about how progress in the battery charge rate will have an exponentially greater demand on an already weak grid - the amount of current needed to fill a battery in 10-15 minutes would be double what we see today - the grid would have to be scaled even more so to handle highly fluctuating surges. Is the drive to make a better battery going to kill the EV because the grid won't handle it or be too expensive to build for such short/high demand charges that it becomes economically unreasonable?

Engineer Guy's avatar

The article is well written. One aspect of "Full EVs" (ie BEVs) that is often overlooked is the increased CO2 debt that is generated when a BEV is produced. That CO2 payback period can be anywhere from 2 years to 4-6 years depending on the battery size (ie car range), method to produce the EV specific materials (ex. Lithium that is sourced in Austrlias a rock with 1% lithium and sent to China for further processing has 5-7 x the CO2 footprint as lithium from Chile or Argentina (Ref-page 65 "Volt Rush" by Henry Sanderson)) and ultimate car/battery life. When you add in the national security issues with the the raw materials (esp graphite and RE materials), it seems that if you want to improve GLOBAL CO2, it would be better to incentivize Hybrids and PHEV/EREV since they save NET CO2 per unit of special material. Here is a link that you might find useful https://illuminem.com/illuminemvoices/why-plugin-hybrids-are-better-for-climate-than-full-evs-today and https://www.asme.org/topics-resources/content/infographic-electric-vehicles-need-imported-minerals.

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