Canada Can be Powered only by Geothermal Energy

Geothermal power is yet another proven sustainable source of energy, indeed Iceland’s geothermal production accounts for 99% of their energy production. Researchers in Canada have concluded that there is enough geothermal potential in Canada to power the country solely by geothermal power a million times over!

One of the main advantages of geothermal is that it is available 24 hours, unlike wind and solar, which face intermittency issues.

British Columbia, Alberta, the Yukon and Northwest Territories are the areas where the heat exists closer to the surface, but there are geothermal energy opportunities all over Canada. The researchers estimate that 100 projects would meet the country’s energy needs.

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From Landfill to Sustainable Power Plant

Madison, New York, has a landfill that has been sitting and rotting and essentially not doing anything productive. That’s all about to change. A new pilot test of a Spectro PowerCap Exposed Geomembrane Solar Cover system – a sheet of something close to magic that will convert the mound of trash into a mound of solar power.

The eight-acre demonstration site features a three-ply membrane that serves as both the closure system for the decommissioned landfill and the platform for an integrated 40-kilowatt Uni-Solar thin-film photovoltaic array. The technology was developed as both a long-term and final landfill closure solution. The PV system is expected to offset nearly all of the power requirements of the Madison County ARC Recycling Facility on the site for 20 to 30 years

Read more at Earth Techling.

Brazil: Wind Power Now Cheaper Than Natural Gas

In Brazil a recent energy auction has shown that wind power is cheaper than natural gas in the country, and also a better investment opportunity. The competitiveness of sustainable energy sources continues to impress everyone (even with the subsidized resource-extraction industries), it’s only a matter of time until other sustainable energy options get this cheap.

They even expect the cost of wind power to decrease in the coming years!

EPE president and chief executive Mauricio Tolmasquim said the auctions show that wind and natural gas are competitive, predicting wind prices will continue to fall in Brazil.

“That wind power plants have been contracted at two digit prices, below 100 reals per MWh, showcases the energy market competition through auctions,” he said. “That wind power could reach these lows versus natural gas was unimaginable until recently.”

The energy auctions for a total of 92 projects were the first in Brazil for 2011, and also featured biomass, hydro-electric and natural gas projects.

Investments amounted to 11.2bn reals in total, for 3,962MW of energy that is slated to start generating in 2014.

Read more at Business Green.

Nissan Cars May Power Your Home

Nissan has built a car that can charge on the road then use the excess charge it holds to power a home. This car can then be used to power a home in the case of a blackout or an emergency.

The system works by linking the car via a quick charging port to the house’s electricity distribution panel. Power can also be fed the other way if the house generates its own electricity with rooftop solar panels.

The Leaf batteries have a capacity of 24 kilowatt hours when fully charged, equivalent to the electricity used by the average Japanese household in two days, said the company.

The output from the vehicle comes to six kilowatts, enough to power electricity-guzzling appliances such as a refrigerator, air conditioner and washing machine at the same time, the company said.

Read the full article here

Heat Your Home By Hosting the Internet

As the internet continues its growth it consumes more and more electricity because larger server and data centres are required. Microsoft has come up with a brilliant idea to allow ‘the backbone’ of the internet to continue to grow while helping heat houses and providing a faster internet.

Microsoft has released a research paper that suggests that small data centers be put in people’s home and heat those homes using excess heat from the servers.

The research paper comes at a time where internet properties like Facebook, Google, and Microsoft are building huge data centers housing thousands of servers that simply pump their hot exhaust into the frigid air of Oregon, or other chilly states. There have been a few prototype data centers that use their waste heat to warm the houses in local towns, but Microsoft’s Data Furnaces take this idea to the next step: instead of building mega data centers that are efficient in terms of scale, Data Furnaces are micro data centers that are housed in the basements of regular homes and offices. These Data Furnaces, which would consist of 40 to 400 CPUs (between 1 and 10 racks), would be ducted directly into the building’s heating system, providing free heat and hot water.

The genius of this idea is that Data Furnaces would be provided by companies that already maintain big cloud presences. In exchange for providing power to the rack, home and office owners will get free heat and hot water — and as an added bonus, these cloud service providers would get a fleet of mini urban data centers that can provide ultra-low-latency services to nearby web surfers. Of course the electricity cost would be substantial — especially in residential areas — but even so, the research paper estimates that, all things considered, between $280 and $324 can be saved per year, out of the $400 it costs to keep a server powered and connected in a standard data center. From the inverse point of view, heating accounts for 6% of the total US energy consumption — and by piggybacking on just half of that energy, the IT industry could double in size without increasing its power footprint.

The main problem with Data Furnaces, of course, is physical security. Data centers are generally secure installations with very restricted access — which is fair enough, when you consider the volume and sensitivity of the data stored by companies like Facebook and Google. The Microsoft Research paper points out that sensor networks can warn administrators if physical security is breached, and whole-scale encryption of the data on the servers would ameliorate many other issues. The other issue is server management — home owners won’t want bearded techies knocking on their door every time a server needs a reboot — but for the most part, almost everything can now be managed remotely.

Read the rest of the article at Extreme Tech.

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