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The start-ups hoping to return battery making to the US

8 minutes ago Chris Baraniuk Technology Reporter AFP via Getty Images Europe's heatwave has boosted demand for battery storage systems As heatwaves scorched Europe this summer, workers at a US battery company noticed an uptick in demand.

The start-ups hoping to return battery making to the US

8 minutes ago Chris Baraniuk Technology Reporter AFP via Getty Images Europe's heatwave has boosted demand for battery storage systems As heatwaves scorched Europe this summer, workers at a US battery company noticed an uptick in demand. San Diego-based Unigrid sells a nine kilowatt hour battery for people's homes. Sweltering European homeowners were apparently looking for ways of storing power when it was available from the grid at lower rates.

They could then run air conditioners more cheaply, off the battery, during the worst heat of the day. "We have requests coming from Spain, France, Germany, The Netherlands," says Darren Tan, co-founder and chief executive. "We've shipped the first 100 units and [expect to ship] 1,000 before the end of the year." Unigrid's battery is an emerging technology – it's a sodium ion, rather than lithium ion device.

Sodium ion batteries have got energy storage experts excited because they could end up much cheaper to build and operate than lithium ion. Unigrid Darren Tan founded Unigrid - a maker of sodium ion batteries China leads the world in sodium ion battery manufacturing at present so US competitors are going to have to work hard to keep up. The prize that awaits is the possibility of batteries made in the US with 100% US-sourced materials.

This is unlike lithium ion batteries, where China dominates the materials supply chain as well as manufacturing. For Tan, China has helped his company get to market. The Unigrid battery currently uses sodium ion cells made there, rather than in the US.

"We can switch back and forth and choose what battery we want to work with," says Tan, explaining that, in future, his firm might source cells from the US – though these may come at a different cost. There's another consideration. Unigrid's battery contains chromium-3 in its cathode.

In a battery, electrons flow from cathode to anode when charging and in the opposite direction when discharging or providing power. Prof Dame Clare Grey at the University of Cambridge, who is co-founder of battery firm Nyobolt, points out that under certain conditions chromium-3 may form chromium-6, a toxic, cancer-causing material. "If you're going to go for sodium [...] and you're going to sell safety, then don't start putting elements in that are going to raise red flags," she tells the BBC.

Ivana Hasa at the University of Warwick, who has no connection to Unigrid, agrees that it is possible for chromium-3 to form chromium-6 at very high states of charge, though she says this can be mitigated by how voltage is controlled within the battery. "Safety tests reported on the cell chemistry are very promising," she says of Unigrid's tech. Tan says concerns around toxicity of the battery's materials are "overblown" and emphasises that Unigrid's battery has passed certification and safety tests for sale in Europe and is currently undergoing such evaluations for the US market.

Third-party tests have not been able to get the battery to form chromium-6, he says. "We've tried very hard to try and produce it, we've overcharged it as much as we can... We were unsuccessful in generating chromium-6." The choice of cathode material, or how the electrolyte – which separates cathode and anode – is formulated are key details influencing the performance and longevity of sodium ion batteries.

Some manufacturers are not using chromium for their cathode but hard carbon instead, or sodium iron phosphate pyrophosphate (NFPP). In general, confidence around sodium ion batteries' reliability has increased during the last few years, says Prof Dame Grey, meaning they are now finding their way into grid storage applications. Some companies that spoke to the BBC suggested sodium ion might reach as low as $30 per kWh but analysts say significantly lower costs could be many years away .

Sodium ion batteries are also not as energy dense as lithium ion batteries, meaning they must be slightly bigger and heavier in order to provide the same amount of power. The technology has been improving on this front in recent years but, even so, you're not likely to see sodium ion cells in small, energy hungry devices such as smartphones. Larger energy storage solutions are where most people expect sodium ion to dominate.

Emerald Battery Labs Emerald Battery Labs founders (left to right) Aric Stocks, Kjell Schroder, David Bell "We think sodium ion [...] is going to make up 80% of the market," says David Bell, co-founder and chief executive of Seattle-based Emerald Battery Labs. Bell declined to share details of the battery design his firm is working on, though he says Emerald too is currently relying on China-sourced sodium ion cells as they develop their initial product: 12 volt auxiliary batteries for vehicles, currently supplied to unnamed commercial fleets in the US. "We took a look at the market and said 'Hey, no-one's trying to attack this space, let's have Emerald Battery Labs attack it'," says Bell.

The firm's next goal is to develop new anodes for US-produced sodium ion cells. Another company, Peak Energy, based in California and Colorado, announced a partnership with General Motors (GM) in June. The pair aim to develop a US supply chain for sodium ion batteries, in order to enable large-scale energy storage for electricity grids.

Peak Energy is also, at present, relying on China-sourced cells for its first installations, but hopes to help GM launch a US-based production facility in Michigan "by the end of 2028", says Cameron Wiles, president and co-founder. "China does not have an insurmountable lead in sodium ion batteries," he says. Alsym Energy Alysm sodium ion batteries are made in the US One reason US companies feel they can compete is because of the electricity demand boom from data centres, which are contributing to rising greenhouse gas emissions in the US.

Data centre-driven demand is also rising in other places around the world, including the UK . This is an "opportunity" says Drew Buckley, chief executive at ESS Tech, headquartered in Oregon. He points out that sodium ion batteries could help distribute renewable energy to data centres.

And those batteries should be cheaper to run than lithium ion alternatives, since they are not expected to require as much cooling. ESS Tech is working with Alsym, another US firm that is planning to ship "hundreds" of megawatt hours' worth of sodium ion batteries – made in the US – by 2027. Hasa says that it will be "challenging" for companies to establish mass production of sodium ion batteries.

And she also notes that, while this type of battery is often touted as much safer than lithium ion, they do not come with zero fire risk. But if any firms can succeed in this space, they could enable new strategic choices, she adds – helping to avoid wastage of renewable electricity and potentially keeping energy costs low. "I'm a strong believer in the technology," says Hasa.

Source: BBC

Distributed to Today · Echonomia Post by RedPress.

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