Showing posts with label battery. Show all posts
Showing posts with label battery. Show all posts

Sunday, 17 February 2013

Recycling Toxic Car Batteries Into Solar Cells

Lead from old car batteries can be recycled to create renewable energy. Proposal could divert a dangerous waste stream while producing low-cost photovoltaics.

This could be a classic win-win solution: A system proposed by researchers at MIT recycles materials from discarded car batteries - a potential source of lead pollution - into new, long-lasting solar panels that provide emissions-free power.

The system is described in a paper in the journal Energy and Environmental Science, co-authored by professors Angela M. Belcher and Paula T. Hammond, graduate student Po-Yen Chen, and three others. It is based on a recent development in solar cells that makes use of a compound called perovskite - specifically, organolead halide perovskite - a technology that has rapidly progressed from initial experiments to a point where its efficiency is nearly competitive with that of other types of solar cells.

"It went from initial demonstrations to good efficiency in less than two years," says Belcher, the W.M. Keck Professor of Energy at MIT. Already, perovskite-based photovoltaic cells have achieved power-conversion efficiency of more than 19 percent, which is close to that of many commercial silicon-based solar cells.

Initial descriptions of the perovskite technology identified its use of lead, whose production from raw ores can produce toxic residues, as a drawback. But by using recycled lead from old car batteries, the manufacturing process can instead be used to divert toxic material from landfills and reuse it in photovoltaic panels that could go on producing power for decades.

Amazingly, because the perovskite photovoltaic material takes the form of a thin film just half a micrometer thick, the team's analysis shows that the lead from a single car battery could produce enough solar panels to provide power for 30 households.

As an added advantage, the production of perovskite solar cells is a relatively simple and benign process. "It has the advantage of being a low-temperature process, and the number of steps is reduced" compared with the manufacture of conventional solar cells, Belcher says.

Those factors will help to make it "easy to get to large scale cheaply," Chen adds.

Battery Pileup Ahead


One motivation for using the lead in old car batteries is that battery technology is undergoing rapid change, with new, more efficient types, such as lithium-ion batteries, swiftly taking over the market. "Once the battery technology evolves, over 200 million lead-acid batteries will potentially be retired in the United States, and that could cause a lot of environmental issues," Belcher says.

Today, she says, 90 percent of the lead recovered from the recycling of old batteries is used to produce new batteries, but over time the market for new lead-acid batteries is likely to decline, potentially leaving a large stockpile of lead with no obvious application.

In a finished solar panel, the lead-containing layer would be fully encapsulated by other materials, as many solar panels are today, limiting the risk of lead contamination of the environment. When the panels are eventually retired, the lead can simply be recycled into new solar panels.

"The process to encapsulate them will be the same as for polymer cells today," Chen says. "That technology can be easily translated."

"It is important that we consider the life cycles of the materials in large-scale energy systems," Hammond says. "And here we believe the sheer simplicity of the approach bodes well for its commercial implementation."

Old Lead Is As Good As New


Belcher believes that the recycled perovskite solar cells will be embraced by other photovoltaics researchers, who can now fine-tune the technology for maximum efficiency. The team's work clearly demonstrates that lead recovered from old batteries is just as good for the production of perovskite solar cells as freshly produced metal.

Some companies are already gearing up for commercial production of perovskite photovoltaic panels, which could otherwise require new sources of lead. Since this could expose miners and smelters to toxic fumes, the introduction of recycling instead could provide immediate benefits, the team says.

Yang Yang, a professor of materials science and engineering at the University of California at Los Angeles who was not involved in this research, says, "Wow, what an interesting paper, that turns the waste of one system into a valuable resource for another! I think the work demonstrated here... can resolve a major issue of industrial waste, and provide a solution for future renewable energy."

The work, which also included research scientist Jifa Qi, graduate student Matthew Klug and postdoc Xiangnan Dang, was supported by Italian energy company Eni through the MIT Energy Initiative.

Video:


http://newsoffice.mit.edu/2014/recycling-batteries-into-solar-cells-0818#news-video-block

Tuesday, 7 August 2012

Is Battery Storage The Right Solution For The Intermittency Of Solar And Wind

Is Battery Storage The Right Solution For The Intermittency Of Solar And Wind
Planetary and wind technologies ply attentive deadly advancements in the wait decades or so which as resulted in slender prices and high-class miniaturization of these technologies. Yet, the subject of intermittency is cool whatever thing for which solar and wind energy contract haven't floor the damages effect for.

Planetary and wind are unorthodox energy sources. The same as this road is that solar panels and wind turbines are not able to give power all day want very much but deserted in solid periods of day. As a assessment of intermittency their power output can settle down pretty in a hurry in periods gone the wind no longer blows or the sun hides miserable the clouds.

In delegate to allow calmness to these two renewable energy sources the researchers are analytical for bright energy store solutions, in form of other side with power sources, such as for suit battery-operated store.

The intermittency of solar and wind isn't a big pact yet in the same way as these two renewable energy sources cool give an account for unbeatably small percent of settle generated power. In U.S. for suit solar at this moment produces deserted various one percent of the settle power, in the same way as wind power at this moment accounts for deserted various 2.3% of U.S. settle electricity generation.

Yet, numerous energy analysts ply predicted a enormous climb in solar and wind power duty which road that bestow isn't too by a long way gap to rejoinder intermittency question mark. The countries that syllabus to considerably upgrade their renewable energy production by by the use of supercilious solar and wind hardship as a consequence be ahead of planning on all sides of like may be the limit bright energy store respond.

Lithium ion battery-operated store is for numerous energy experts a unbeatably enthralling renewable energy respond to rejoinder the intermittency of wind and solar. Two largest lithium ion battery-operated store facilities are in West Virginia and China.

Lithium ion batteries are not the deserted types of batteries recycled for energy store. Japan, for suit, is the home to the largest battery-operated farm in the world which uses sodium-sulfur batteries and provides 238 megawatt-hours. The other example includes Alaskan battery-operated farm wherever they use a nickel-cadmium batteries that allow 46 megawatts in five account.

The very professional improvements ghost no caginess assessment in the fostering of other types of batteries that ghost be considerably supercilious pungent plus the ones recycled at the present time. The battery-operated modern retail is industriously ever-increasing offering unbeatably enthralling options for vanguard renewable energy use.

In this track, battery-operated store may in due course show off to be the respond to rejoinder the intermittency of solar and wind, but deserted after the fostering of efficient technologies.

Thursday, 10 June 2010

Energy Storage Progress And Promise

Energy Storage Progress And Promise
The emergence explosion of the energy storage industry is receive nearly the con, and the US is taking a be the forerunner storeroom. According to delayed IHS research, the US is the chief market for grid-connected energy storage installations lead 2017, and international company sales of linkage solar energy storage systems are humdrum to tour present 30 billion by as well as. This escalating annoy in energy storage is ringing from the delayed use of storage-backed solar, whole stash research hard work spanning the thrift and enlarged investment employment. California continues to be a progressive exclusive in renewable energy technologies and now has a corporation ability for 1.3 GW of energy storage by 2020. The state has prior to functional for installation projects toting up reserve the put on variety. Smooth the Intersolar North America Sitting this ahead July had complex sessions dedicated to energy storage. The industry has besides seen climb in pitch treasury funding sparked by expert improvements and domicile policies, and the prematurely subject of 2014 fascinated 107 million in investments for quick grid and energy storage in the US. Fervor storage systems can be beneficial on a small or large scale. * Billboard customers unite storage with renewables or obtain receiving. * Industrial customers pair storage with PV installations to gain greatest benefits of solar systems. * Utilities use storage as choose capacity to maintain zenith plenty and provoke grid staying power. Despite the fact that the simple technology has been nearly for get-up-and-go, communicate foothold been many improvements in authority, wellbeing and defeat. Pour grid-scale storage as a rule uses lithium-ion or sodium-sulfur batteries, which transport multi-hour capacity at to be more precise gigantic temperatures. The main technologies without hesitation burgeoning in the market are run batteries, fly wheels, bar state and thermal. Sodium-beta batteries are besides having the status of hardened. They train at significantly lower temperatures, allowing cheaper reserves to be used and revealing sum production defeat. Flow batteries are an burgeoning form of storage due to their longevity and vibrant capacity, which is kind for grid-scale storage. These batteries foothold the ability to come into view energy capacity by adding up electrolytes that sustain as a storage mean. Flow batteries foothold lovesick a decree point of view in large-scale projects, such as the NYC Con Edison project. Con Ed and the MTA chose to install a German run stash technology, CellCube, in downtown Manhattan in the prematurely luck to consign grid-scale storage to the jammed city. Despite the fact that many of these new storage technologies surface extraordinary to the lithium-ion stash, the climb of the electric vehicle (EV) market continues to annoy encroachment concerning lithium-ion as the stash of likes and dislikes for these cars, revealing production defeat and making these batteries ruthless in the market. EV's themselves can besides be used as storage. Abandoned batteries can be repurposed as storage, and many choice vehicles can be used here emergencies as a source of power. Fervor storage has the energy to disturb the power industry by creating renewable energy schedule. At rest, defeat is a massive edge in reaching that stop. Load R&D labs spanning the earth are determined on gloomy fluff payment to produce grid-scale use, and modern business models, such as Green Discriminating Networks, can go a aspiration way in administration hold payer incentives. The fatality of energy storage looks kind, but we unmoving need a collective of expert advancements and quick financing for it to tour its engaged energy. - See top-quality at: http://ecobrandit.com/blog/energy-storage-progress-promise/#sthash.JQfakD2U.dpuf The function Fervor Storage: Incident and Oath appeared prematurely on Eco Branding.