Toyota Motor Company is the latest automaker delving into solid-state battery technology, vowing to mass produce the safer and more energy dense cells in four years.
The Japanese automaker has recently changed its tune about building BEVs and is now claiming solid state batteries will be in vehicles starting in 2027.
A newly discovered ore containing vast quantities of an element widely used in semiconductors has been found in China. The discovery could propel new advances in battery technology.
Geologists have found the rare earth metal niobium inside the new ore named niobobaotite from north China’s Inner Mongolia. The rare earth metal is widely used in alloys for jet engines and rockets and has also been shown to have exceptional current conducting properties in low temperatures.
Researchers have said batteries made from niobium have several advantages over traditional lithium-ion batteries. The Brazilian Metallurgy and Mining Company (CBMM) has been working on new projects towards the use of niobium to make advanced lithium-ion batteries.
Today’s electric vehicles are predominantly powered by nickel-manganese-cobalt (NMC) lithium-ion batteries. However, the inclusion of cobalt in this type of batteries has been considered problematic due to its anticipated scarcity as well as the associated supply chain risks related to its single source, human rights and mining practices.
Japanese scientists have developed a high energy density, cobalt-free lithium-ion battery that yields about 60% greater energy density than conventional lithium-ion batteries for an equivalent weight and volume and sustains unprecedented 1,000 cycles.
CATL, the worlds largest battery manufacturer, is not waiting for customers to come knocking on its door to buy batteries for their electric models. It has created what it calls its CATL Integrated Intelligent Chassis, a skateboard design that incorporates all the bits and pieces needed to make a fully functional electric car
General Motors and mining and construction equipment giant Komatsu plan to jointly design and validate the hydrogen fuel cell technology for the 930E electric drive mining truck. GM has been conducting hydrogen fuel cell research and product development for more than 50 years and has developed platforms for both lithium-ion batteries and hydrogen fuel cells.
As of Jan. 1, 2024, the French government has revised its “malus écologique”, a one-time penalty tax for registering bulky, CO2-emitting cars, to include many more ICE vehicles, even some of the most popular budget models.
Drivers of cars emitting 118 g/km of CO2 pay €50 (about $55), and this increases rapidly with higher CO2 emissions, with a maximum ceiling for vehicles reaching €60,000 ($65,590). Vehicles weighing 1,600 kg/1.6 tons or more will have to pay between €10 and €30 per additional kilo.
Engine maker Cummins is recalling 600,000 Ram trucks as part of a huge US$2 billion settlement with federal and California authorities for using illegal software to cheat results of diesel emissions tests.
Inside China a state subsidy is the norm, but outside of China the position is very different. The level of involvement by the central government feels a lot like a subsidy, one that undercuts local manufacturers. The problem is especially acute when it comes to electric car production.
Many of China’s car companies are looking more and more to export markets to absorb some of their production. But for some countries, the electric car onslaught coming from China is seen as a threat to local companies and their workers. The EV revolution was never intended to displace domestic industries and workers but that seems to be happening.
Sila’s Titan Silicon anode powder consists of tiny particles of nano-structured silicon that replaces graphite in traditional lithium ion batteries. Compared to graphite, silicon stores up to 10 times more energy, so using it instead of graphite for anodes — which release electrons when a battery discharges — can significantly improve a battery’s energy density.
However, the material swells during repeated charging, with the resulting cracks radically reducing battery life. The Sila technology allows for this expansion by using nano-scale carbon “scaffolding” to keep the silicon in check.
The silicon powder has several advantages. With it, EVs could soon be able to travel up to 500 miles without stopping to charge. When the need does arise to recharge, the Sila batteries could do so in about 10 minutes.
PSR Analysis: Using silicon powder does not require new manufacturing techniques so the technology is proven and should be relatively cheap (but this wasn’t mentioned in the article) and it bypasses the virtual Chinese monopoly on purified graphite (China currently supplies 96% of the purified graphite used by the world’s battery makers). PSR
Guy Youngs, is Forecast & Adoption Leadat Power Systems Research
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