Oct 31, 2023 09:27:27 am
Manhajul Islam, S. Ak - BATS Consulting
Many automobile
manufacturers today are committed to developing Battery Electric Vehicles
(BEVs) considered to be environmentally friendly. While electric cars do not
produce tailpipe emissions, the processes involved in their manufacturing and
battery production still contribute to carbon emissions. The question is, how
environmentally friendly are BEVs compared to Internal Combustion Engine (ICE)
vehicles that run on gasoline or diesel?
What is the Environmental
Impact of Electric Car Production?
The emissions throughout a
products entire lifespan, from production to use to disposal, must be taken
into consideration. For electric cars, this includes raw materials, battery
energy resources, and recycling and reuse at the end of their life.
The extraction, refining,
transportation, and manufacturing of lithium-ion batteries are highly
energy-intensive processes, meaning higher emissions during the production
phase of electric cars compared to gasoline or diesel vehicles.
Although the production
process of ICE cars may have a lower carbon footprint, they still have
significant environmental impacts. Several car manufacturers, such as
Volkswagen, Toyota, Hyundai, Mercedes-Benz, and General Motors, have committed
to achieving carbon-neutral status in the coming years.
However, the Swedish
company Polestar has ambitious plans to produce carbon-neutral electric cars by
2030 by identifying and eliminating all carbon emissions, from raw material
extraction to production to end-of-life handling.
The difference in carbon
emissions between BEVs and ICE cars may be significant when the vehicles are
first sold, but over their road life, ICE cars continue to emit CO2, whereas
electric cars produce no emissions, except for particles from tires and brakes.
According to research by
Transport & Environment (T&E), an organization promoting sustainability
in Europe, electric cars in the European Union are nearly three times better in
terms of carbon emissions than equivalent gasoline or diesel cars, and this gap
continues to widen. Even electric cars used in Poland with batteries produced
in China still emit 37 percent less CO2 than gasoline cars.
An 83 percent reduction in
emissions can be achieved with electric cars using batteries produced and used
in Sweden. They also predict that electric cars purchased in 2030 will reduce
CO2 emissions fourfold, thanks to the European Unions increasingly renewable
energy-dependent electricity grid.
But what about the
batteries?
Raw materials used in
battery production are a key factor in the price of electric cars, which is why
they are still more expensive than equivalent ICE cars.
As battery technology
advances, new alternatives to standard lithium-ion battery chemistry will
emerge. Potential alternatives for these raw materials are also being explored,
such as the development of new sodium-ion batteries by CATL, a Chinese battery
company.
BYD, the worlds largest
electrification vehicle manufacturer, recognizes the importance of reducing the
use of rare minerals in battery technology, and its Blade Battery unit is
produced without cobalt.
The importance of reducing
the environmental impact of mining should not be overlooked. Reinvesting
profits into local communities to support education and training will provide
opportunities often hard to reach for people in developing countries.
One crucial step to reduce
emissions during the life of electric cars is recycling or reusing batteries.
The proposed EU Battery Regulation is the worlds first sustainable battery
regulation, aiming not only to ensure ethical mining practices but also to
reduce demand for mining by more effectively recycling raw materials.
In July, the EU Council
adopted new regulations that establish end-of-life requirements, including
collection targets, material recovery targets, and extended producer
responsibility. This will help drive a sustainable economy.
When electric car batteries
reach the end of their life, they may not be suitable for reuse in vehicles,
but this creates significant opportunities for a "second life,"
including grid energy storage, thus reducing the overall carbon footprint of
battery production.
Another solution is
recycling, but to what extent this will prove environmentally or economically
sustainable is still debated since the recycling process also has a high carbon
footprint.
There is strong evidence
that over their lifespan, electric cars emit fewer carbon emissions compared to
ICE cars, making them better for the environment. Advanced battery technology
and evolving manufacturing techniques will continue to increase battery
lifespan, leading to longer lifespans for electric vehicles.
While significant
challenges exist throughout the lifecycle of electric cars, its important to
remember that the environmental impact of oil extraction for fuel is much
greater.