Electric vs. Gasoline Cars: Uncovering the Real Climate Savior

TTAC Staff
by TTAC Staff
Photo credit: Nick Starichenko / Shutterstock.com

Contrary to common misconceptions, electric vehicles (EVs) generally have a smaller carbon footprint compared to traditional gasoline cars. This advantage remains true even when considering the electricity utilized for charging EVs. One key distinction is that EVs produce no direct tailpipe emissions. However, the production of electricity for EV charging can result in carbon emissions, depending on the energy source.


The carbon pollution from electricity varies based on local energy production methods. For instance, electricity generated from coal or natural gas is associated with higher carbon emissions, while renewable sources like wind or solar energy contribute negligible carbon pollution. Despite the variance in electricity production methods, studies indicate that EVs are typically linked to lower greenhouse gas emissions than the average new gasoline vehicle.


The shift towards renewable energy sources further enhances the environmental benefits of EVs. As more renewable energy sources are integrated into the power grid, the overall greenhouse gas emissions associated with EVs can be further reduced. Notably, in 2020, renewable energy sources rose to become the second-most dominant source of electricity in the United States.


Tools to Measure Your EV's Environmental Impact

The Environmental Protection Agency (EPA) and the Department of Energy (DOE) offer valuable resources for assessing the environmental impact of EVs. The EPA's Power Profiler is an interactive tool that provides information about the electricity production mix in different regions. By entering a zip code, users can understand the specific energy sources powering their local area.


Additionally, the Beyond Tailpipe Emissions Calculator, developed by the EPA and DOE, is a user-friendly tool designed to estimate the greenhouse gas emissions from charging and driving an EV or a plug-in hybrid electric vehicle (PHEV). This tool allows users to select specific EV or PHEV models and input their zip code to compare the CO2 emissions from these vehicles with those from gasoline cars. These tools empower individuals to make informed decisions about the environmental impact of their transportation choices.


This article was co-written using AI and was then heavily edited and optimized by our editorial team.

TTAC Staff
TTAC Staff

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  • SCE to AUX Here's a crazy thought - what if China decides to fully underwrite the 102.5% tariff?
  • 3-On-The-Tree They are hard to get in and out of. I also like the fact that they are still easy to work on with the old school push rod V8. My son’s 2016 Mustang GT exhaust came loose up in Tuscon so I put a harbor freight floor jack, two jack stands, tool box and two 2x4 in the back of the vette. So agreed it has decent room in the back for a sports car.
  • Kjhkjlhkjhkljh kljhjkhjklhkjh so what?? .. 7.5 billion is not even in the same hemisphere as the utterly stupid waste of money on semiconductor fabs to the tune of more than 100 billion for FABS that CANNOT COMPETE in a global economy and CANNOT MAKE THE US Independent from China or RUSSIA. we REQUIRE China for cpu grade silicon and RUSSIA/Ukraine for manufacturing NEON gas for cpus and gpus and other silicon based processors for cars, tvs, phones, cable boxes ETC... so even if we spend trillion $ .. we STILL have to ask china permission to buy the cpu grade silicon needed and then buy neon gas to process the wafers.. but we keep tossing intel/Taiwan tens of billions at a time like a bunch of idiots.Google > "mining-and-refining-pure-silicon-and-the-incredible-effort-it-takes-to-get-there" Google > "silicon production by country statista" Google > "low-on-gas-ukraine-invasion-chokes-supply-of-neon-needed-for-chipmaking"
  • ToolGuy Clearly many of you have not been listening to the podcast.
  • 1995 SC This seems a bit tonedeaf.
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