Showing posts with label off-grid. Show all posts
Showing posts with label off-grid. Show all posts

How To Build a 400 Square Foot Solar Powered Off Grid Cabin for $2,000

Image: offgridworld.com

How to build a nice small cabin powered by solar panels. Lamar Alexander built this cute little 400 square foot cabin for approximately $2000, and powers it with a 570 watt solar and wind power system. The whole system is very inexpensive, and the best part is he is mortgage free. Very cool little cabin. I’d be proud to build something like this myself, and call it home.



“…This cabin is 14×14 with a full loft and approximately 400 square feet of living space. Downstairs is Kitchen, Bathroom, Dining and Living area. Upstairs is a large Bedroom and Office. There is enough room for 6 people to sleep comfortably. Power system is 580 watts Solar electric and 400 Watts wind power which powers a 12 volt fridge, lights, water pump, TV’s, laptop and many gadgets. Heat source can be propane or wood stove. Toilet is composting or a septic tank system…” ~http://www.simplesolarhomesteading.com/

Source: offgridworld.com

10 Reasons Why EarthShips Are F!#%ing Awesome

Earthships are 100% sustainable homes that are both cheap to build and awesome to live in. They offer amenities like no other sustainable building style you have come across. For the reasons that follow, I believe Earthships can actually change the world. See for yourself!

1) Sustainable does not mean primitive

When people hear about sustainable, off-the-grid living, they usually picture primitive homes divorced from the comforts of the 21st century. And rightfully so, as most sustainable solutions proposed until now have fit that description. Earthships, however, offer all of the comforts of modern homes and more. I’ll let these pictures do the talking…












2) Free Food

Each Earthship is outfitted with one or two greenhouses that grow crops year-round, no matter the climate. This means you can feed yourself with only the plants growing inside of your house. You can also choose to build a fish pond and/or chicken coop into your Earthship for a constant source of meat and eggs.





3) Brilliant Water Recycling

Even the most arid of climates can provide enough water for daily use through only a rain-harvesting system. The entire roof of the Earthship funnels rain water to a cistern, which then pumps it to sinks and showers when required. That used ‘grey water’ is then pumped into the greenhouse to water the plants. After being cleaned by the plants, the water is pumped up into the bathrooms for use in the toilets. After being flushed, the now ‘black water’ is pumped to the exterior garden to give nutrients to non-edible plants.



4) Warmth & Shelter

The most brilliant piece of engineering in the Earthship is their ability to sustain comfortable temperatures year round. Even in freezing cold or blistering hot climates, Earthships constantly hover around 70° Fahrenheight (22° Celsius).

This phenomenon results from the solar heat being absorbed and stored by ‘thermal mass’ — or tires filled with dirt, which make up the structure of the Earthship. The thermal mass acts as a heat sink, releasing or absorbing heat it when the interior cools and heats up, respectively.

The large greenhouse windows at the front of the house always face south to allow the sun to heat up the thermal mass throughout the daytime.



5) Energy

Solar panels on the roof and optional wind turbines provide the Earthship with all of the power it needs. As long as you’re not greedily chewing through electricity like a typical first-world human, you’ll never be short of power.



6) Freedom

With all of your basic needs provided for and NO bills each month, you’re free! You don’t have to work a job you hate just to survive. So you can focus your time on doing what you love, and bettering the world around you.

Imagine if the entire world was able to focus on doing extraordinary things instead of just making enough to get by. Imagine if even 10% of the world could do this. What would change?

7) Easy to build

At a recent Earthship conference in Toronto, Canada, a married couple in their forties shared about how they built a 3-story Earthship by themselves in 3 months. They had never built anything before in their lives and were able to build an Earthship with only the printed plans. They did not hire any help, nor did they use expensive equipment to make the job easier.

If one man and one woman can do this in 3 months, anyone can do it.

8) Cheap

Earthships are exorbitantly cheaper than conventional houses. The most basic Earthships cost as little as $7000 (The Simple Survival model) with the most glamorous models costing $70,000 and up, depending on how flashy you want to be with your decorating.

With these cost options, Earthships can fit the needs of everyone — from the least privileged to the most worldly.

9) Made of recycled materials

Much of the materials used to build Earthships are recycled. For starters, the structure is built with used tires filled with dirt:



If there’s one thing we’re not short of on Earth, it’s used tires! There are tire dumps like the one pictured here in every country in the world. There are even places that will pay you by the tire to take them away.

The walls (above the tires) are created by placing plastic and glass bottles in concrete. When the Earthship team was in Haiti after the earthquake, they employed local kids to both clean up the streets and provide all of the bottles required for building their Earthship. Plus, they look pretty sexy.



10) Think Different

The most powerful thing Earthships do is force people to think differently about how we live. If housing can be this awesome, and be beneficial to the environment, then what else can we change? What else can become more simple, cheaper and better at the same time?

It’s time for us to re-think much of what we consider normal.

Article and image source: highexistence.com & earthship.com

5 Best Reasons To Live Off The Grid

Image: technologygreenenergy.blogspot.com
1. Self Sufficiency: Living off the grid in a self sufficient manner brings with it a certain independence which cannot be found in modern living. Modern living (i.e. city living) is a dependent system. Each block or “grid” square of a city depends on the next for support.

If there were a collapse of the financial system -which is the most likely “doomsday” scenario- then the grocery stores, hardware stores, and the big box home improvement stores would be the first to be wiped out of supplies.

In the biggest cities in the world, this leaves millions of people without the supplies needed to survive. Self-sufficiency, at a fundamental level, is all about survival. But it also goes far beyond survival, into the realm of independence.

People like the feeling they get when they don’t have to depend on others, and they can support their families and enjoy their lives with their friends on their own land, in their own home.

2. Sense of Accomplishment: There’s a certain satisfaction on a job well done. Whether you build your own log cabin, tiny house, or cottage in the hills, the sense of accomplishment you feel must be astounding.


3. Survival: Surviving the world off grid may not be the easiest way to live, but it arguably gives you a better chance of survival in a disaster/collapse scenario. It’s all about being prepared.

4. Freedom:  Becoming “Debt Free”. The freedom to provide for your family without the burden of crushing debt. The freedom to spend quality time with your family instead of making money for your boss. The freedom to live life the way you see fit. With true freedom, comes happiness.

5. Happiness: Ultimately it comes down to happiness. We all strive for happiness in our own way. Some folks are materialistic, some seek power or money. Some seek the simpler life. A life without stress, or as stress-free as possible. Removing the burden of mortgages, utility bills, car payments, and living the simpler, easier life appeals to millions of people around the world. Happiness is at the core.

They call it “The American Dream“, but I think that’s a rather narrow-minded and selfish way of phrasing it, since most people in the world want the same things. They want to be happy. Living off the grid seems like the perfect way to achieve it.

It’s all about being happy.

Source: offgridworld.com

$1000 Foldable Solar Powered House Designed by IKEA To Provide Shelter For Refugees

IKEA has teamed up with UNHCR to create and provide a solution for refugee housing. A $1000 fold-out house.


Folding House from IKEA
Folding House from IKEA


"Hacked" Potatoes Can Create Electricity

by Jonathan Kalan

Mashed, boiled, baked or fried? You probably have a preference for your potatoes. Haim Rabinowitch, however, likes his spuds “hacked”.

Image: Thinkstock
For the past few years, researcher Rabinowitch and colleagues have been pushing the idea of “potato power” to deliver energy to people cutoff from electricity grids. Hook up a spud to a couple of cheap metal plates, wires and LED bulbs, they argue, and it could provide lighting to remote towns and villages around the world.

They’ve also discovered a simple but ingenious trick to make potatoes particularly good at producing energy. “A single potato can power enough LED lamps for a room for 40 days,” claims Rabinowitch, who is based at the Hebrew University of Jerusalem.

The idea may seem absurd, yet it is rooted in sound science. Still, Rabinowitch and his team have discovered that actually launching potato power in the real world is much more complex than it first appears.

While Rabinowitch and team have found a way to make potatoes produce more power than usual, the basic principles are taught in high school science classes, to demonstrate how batteries work.

To make a battery from organic material, all you need is two metals – an anode, which is the negative electrode, such as zinc, and a cathode, the positively charged electrode, such as copper. The acid inside the potato forms a chemical reaction with the zinc and copper, and when the electrons flow from one material to another, energy is released.


This was discovered by Luigi Galvani in 1780 when he connected two metals to the legs of a frog, causing its muscles to twitch. But you can put many materials between these two electrodes to get the same effect. Alexander Volta, around the time of Galvani, used saltwater-soaked paper. Others have made “earth batteries” using two metal plates and a pile of dirt, or a bucket of water.

Super spuds

Potatoes are often the preferred vegetable of choice for teaching high school science students these principles. Yet to the surprise of Rabinowitch, no one had scientifically studied spuds as an energy source. So in 2010, he decided to give it a try, along with PhD student Alex Goldberg, and Boris Rubinsky of the University of California, Berkeley.

“We looked at 20 different types of potatoes,” explains Goldberg, “and we looked at their internal resistance, which allows us to understand how much energy was lost by heat.”

They found that by simply boiling the potatoes for eight minutes, it broke down the organic tissues inside the potatoes, reducing resistance and allowing for freer movement of electrons– thus producing more energy. They also increased the energy output by slicing the potato into four or five pieces, each sandwiched by a copper and zinc plate, to make a series. “We found we could improve the output 10 times, which made it interesting economically, because the cost of energy drops down,” says Goldberg.

“It’s low voltage energy,” says Rabinowitch, “but enough to construct a battery that could charge mobile phones or laptops in places where there is no grid, no power connection.”

Their cost analyses suggested that a single boiled potato battery with zinc and copper electrodes generates portable energy at an estimated $9 per kilowatt hour, which is 50-fold cheaper than a typical 1.5 volt AA alkaline cell or D cell battery, which can cost $49–84 per kilowatt hour. It’s also an estimated six times cheaper than standard kerosene lamps used in the developing world.

Which raises an important question – why isn’t the potato battery already a roaring success?

In 2010, the world produced a staggering 324,181,889 tonnes of potatoes. They are the world’s number one non-grain crop, in 130 countries, and a hefty source of starch for billions around the world. They are cheap, store easily, and last for a long time.

With 1.2 billion people in the world lacking access to electricity, a simple potato could be the answer– or so the researchers thought. “We thought organisations would be interested,” says Rabinowitch. “We thought politicians in India would give them out with their names inscribed on them. They cost less than a dollar.”

Yet three years on since their experiment, why haven’t governments, companies or organisations embraced potato batteries? “The simple answer is they don’t even know about it,” reasons Rabinowitch. But it may be more complicated than that.

First, there’s the issue of using a food for energy. Olivier Dubois, senior natural resources officer at the United Nations Food and Agriculture Organisation (FAO), says that using food for energy – like sugar cane for biofuels – must avoid depleting food stocks and competing with farmers.

“You first need to look at: are there enough potatoes to eat? Then, are we not competing with farmers making income from selling potatoes?” he explains. “So if eating potatoes is covered, selling potatoes is covered, and there’s some potatoes left, then yes, it can work”

In a country like Kenya, the potato is the second most important food for families after maize. Smallholder farmers produced around 10 million tonnes of potatoes this year, yet around 10-20% were lost in post-harvest waste due to lack of access to markets, poor storage conditions, and other issues, according to Elmar Schulte–Geldermann, potato science leader for sub–Saharan Africa at the International Potato Center in Nairobi, Kenya. The potatoes that don’t make it to the market could easily be turned into batteries.

Pithy answer

Yet in Sri Lanka, for instance, the locally available potatoes are rare and expensive. So a team of scientists at the University of Kelaniya recently decided to try the experiment with something more widely available, and free – plantain piths (stems).

Physicist KD Jayasuriya and his team found that the boiling technique produced a similar efficiency increase for plantains – and the best battery performance was obtained by chopping the plantain pith after boiling.
With the boiled piths, they found they could power a single LED for more than 500 hours, provided it is prevented from drying out. “I think the potato has slightly better current, but the plantain pith is free, it’s something we throw away,” says Jayasuriya.

Despite all this, some are sceptical of the feasibility of potato power. “In reality, the potato battery is essentially like a regular battery you’d buy at the store,” says Derek Lovley at the University of Massachusetts, Amherst. “It’s just using a different matrix.” While the potato helps to prevent energy being lost to heat, it is not the source of the energy – that’s actually extracted via the corrosion of the zinc. “It’s sacrificial – the metal is degrading over time,” says Lovley. This means you’d have to replace the zinc – and of course the potato or plantain pith – over time.

Still, zinc is quite cheap in most developing countries. And Jayasuriya argues that it could still be more cost effective than a kerosene lamp. A zinc electrode that lasts about five months would cost about the same as a litre of kerosene, which fuels the average family home in Sri Lanka for two days. You could also use other electrodes, like magnesium or iron.

But potato advocates must surmount another problem before their idea catches on: consumer perception of potatoes. Compared with modern technologies like solar power, potatoes are perhaps less desirable as an energy source.

Gaurav Manchanda, founder of One Degree Solar, which sells micro-solar home systems in Kenya, says people buy their products for more reasons than efficiency and price. “These are all consumers at the end of the day. They need to see the value in it, not only in terms of performance, but status,” he explains. Basically, some people might not want to show off their potato battery to impress a neighbor.

Still, it cannot be denied that the potato battery idea works, and it appears cheap. Advocates of potato power will no doubt continue to keep chipping away.

Article sources: bbc.com

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