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Posts Tagged ‘battery’

Photo: Tony Jolliffe/BBC.
Finnish researchers Markku Ylönen and Tommi Eronen, who came up with the sand-battery idea. Don’t these guys look just like the kind of young people you’d expect to tackle something impossible?

The big challenge for renewable energy sources like solar and wind has always been storage. Where is there a battery big enough and powerful enough to store the energy until it’s needed?

Bring on a couple wiz kids who think about daunting problems like global warming and overdependence on Russian gas.

Matt McGrath writes at the BBC, “Finnish researchers have installed the world’s first fully working ‘sand battery,’ which can store green power for months at a time. …

“Using low-grade sand, the device is charged up with heat made from cheap electricity from solar or wind. The sand stores the heat at around 500C (~932 degrees Fahrenheit), which can then warm homes in winter when energy is more expensive.

“Finland gets most of its gas from Russia, so the war in Ukraine has drawn the issue of green power into sharp focus. It has the longest Russian border in the EU and Moscow has now halted gas and electricity supplies in the wake of Finland’s decision to join NATO.

“Concerns over sources of heat and light, especially with the long, cold Finnish winter on the horizon are preoccupying politicians and citizens alike. But in a corner of a small power plant in western Finland stands a new piece of technology that has the potential to ease some of these worries.

“The key element in this device? Around 100 tonnes of builder’s sand, piled high inside a dull grey silo.

“These rough and ready grains may well represent a simple, cost-effective way of storing power for when it’s needed most.

“Because of climate change and now thanks to the rapidly rising price of fossil fuels, there’s a surge of investment in new renewable energy production. But while new solar panels and wind turbines can be quickly added to national grids, these extra sources also present huge challenges.

“The toughest question is about intermittency — how do you keep the lights on when the sun doesn’t shine and the wind doesn’t blow? …

“The most obvious answer to these problems is large-scale batteries which can store and balance energy demands as the grid becomes greener.

“Right now, most batteries are made with lithium and are expensive with a large, physical footprint, and can only cope with a limited amount of excess power.

“But in the town of Kankaanpää, a team of young Finnish engineers have completed the first commercial installation of a battery made from sand that they believe can solve the storage problem in a low-cost, low impact way.

” ‘Whenever there’s like this high surge of available green electricity, we want to be able to get it into the storage really quickly,’ said Markku Ylönen, one of the two founders of Polar Night Energy who have developed the product.

“The device has been installed in the Vatajankoski power plant, which runs the district heating system for the area.

“Low-cost electricity warms the sand up to 500C by resistive heating (the same process that makes electric fires work). This generates hot air which is circulated in the sand by means of a heat exchanger.

“Sand is a very effective medium for storing heat and loses little over time. The developers say that their device could keep sand at 500C for several months.

“So when energy prices are higher, the battery discharges the hot air which warms water for the district heating system which is then pumped around homes, offices and even the local swimming pool.

The idea for the sand battery was first developed at a former pulp mill in the city of Tampere, with the council donating the work space and providing funding to get it off the ground.

” ‘If we have some power stations that are just working for a few hours in the wintertime, when it’s the coldest, it’s going to be extremely expensive,’ said Elina Seppänen, an energy and climate specialist for the city. ‘But if we have this sort of solution that provides flexibility for the use, and storage of heat, that would help a lot.’ …

“One of the big challenges now is whether the technology can be scaled up to really make a difference — and will the developers be able to use it to get electricity out as well as heat? The efficiency falls dramatically when the sand is used to just return power to the electricity grid. …

“Other research groups, such as the US National Renewable Energy Laboratory are actively looking at sand as a viable form of battery for green power. But the Finns are the first with a working, commercial system, that so far is performing well, according to the man who’s invested in the system.

” ‘It’s really simple, but we liked the idea of trying something new, to be the first in the world to do something like this,’ said Pekka Passi, the managing director of the Vatajankoski power plant.”

One of the aspects of this approach that I like best is that it doesn’t use lithium, a “blood mineral,” the mining of which often hurts local communities.

Check out the graphic at the BBC, here, to see how the sand-battery works.

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Remember this post on rhubarb batteries? Well, according to radio show Studio 360, there’s no need to draw the line at rhubarb. Especially if you are creative, like photographer and artist Caleb Charland.

Julia Lowrie Henderson writes. “His series Back to Light is inspired by that old science class experiment: if you stick a galvanized nail in one end of a potato and a copper wire in the other, it will become a battery. Charland generates enough electricity from the fruit to power the lights that illuminate his shots. He uses long exposures to take these photographs, but nothing is added digitally to the images.

” ‘My practice as an artist combines a scientific curiosity with a constructive approach to making pictures,’ Charland says. ‘I utilize everyday objects and fundamental forces to illustrate experiences of wonder.’ ”

From the Artist’s Statement on his website: “The way we understand the world relies so much on our ability to measure it. Given that many measurements are based on the proportions of the human body it’s clear we measure stuff to find our place amongst it all and to connect with it in some way.

“By exploring the world at hand, from the basement to the backyard, I have found a resonance in things. An energy vibrates in that space between our perceptions of the world and the potential the mind senses for our interventions within the world. …

“For me, wonder is a state of mind somewhere between knowledge and uncertainty. It is the basis of my practice and results in images that are simultaneously familiar yet strange. Each piece begins as a question of visual possibilities and develops in tandem with the natural laws of the world.”

More here. Click through the pictures. To my mind, citrus makes especially appealing batteries.

Photo:  Caleb Charland
Orange Battery, 2012

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@OFH_John tweeted this cool article about making batteries from something like rhubarb.

CBS News has the story: “A cheap rechargeable battery that harnesses energy by using the electrochemistry of organic molecules rather than metals is being touted by Harvard researchers as a breakthrough for renewable energy.

“The Harvard team reports that the battery, which they say can be applied on a power-grid scale, uses naturally abundant and small organic compounds called quinones rather than electrocatalysts from costly precious metals such as platinum.

“Quinones would be inexpensive to obtain and can be found in green plants or synthesized from crude oil. The battery designed by Harvard scientists and engineers used a quinone molecule that’s almost identical to one that’s found in rhubarb.

“The technology is outlined in the Jan. 9 edition of the journal Nature.”

More here.

Photo: Eliza Grinnell, Harvard School of Engineering & Applied Sciences
Michael J. Aziz with metal-free flow battery made from naturally abundant, small organic molecules.

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A couple weeks ago, I wrote that I was reading Jason Elliot’s book on Iran. That was my post about the rediscovery of the “extinct” Caspian horse.

Elliot slams through millenia of history in that part of the world kind of like the comedy troupe that purports to perform “The Complete Works of Shakespeare” in 90 minutes. He is very good at it, I think. But maybe that’s because I know so little about the endlessly shifting borders of Central Asia and the Middle East.

Among other interesting tidbits in the book is this one on the Baghdad Battery. In Mirrors of the Unseen, Elliot writes that this ancient form of battery was “constructed of an earthenware shell containing an iron rod insulated by an asphalt plug from an outer copper sleeve. A modest electric current is produced when the housing is filled with an electrolytic solution such as lemon juice.”

Wikipedia has more. “The Baghdad Battery, sometimes referred to as the Parthian Battery, is the common name for a number of artifacts created in Mesopotamia, during the dynasties of Parthian or Sassanid period (the early centuries AD), and probably discovered in 1936 in the village of Khuyut Rabbou’a, near Baghdad, Iraq. These artifacts came to wider attention in 1938 when Wilhelm  König, the German director of the National Museum of Iraq, found the
objects in the museum’s collections. In 1940, König published a paper speculating that they may have been galvanic cells, perhaps used for electroplating gold and silver objects … This interpretation continues to be considered as at least a hypothetical possibility. If correct, the artifacts would predate Alessandro Volta’s 1800 invention of the electrochemical cell by more than a millennium.”

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