Tuesday, April 7, 2009

Renewable energy, I believe we're in Kansas now


The wind-swept plains of Kansas are ideal for wind and solar energy production, and the state will now get a chance to play on a level field against other states that are adding incentives for renewable energy investments.

Kansas Governor Kathleen Sebelius recently put her signature on the Kansas Economic Revitalization and Reinvestment Act, according to Kansascity.com.

"To recover from this economic recession, we must look to new industries and new opportunities. Renewable energy companies are a perfect fit for Kansas as we’re the third best state in the nation for wind energy and we have a trained and able workforce,” Sebelius was quoted at the Web site. “Kansas wind can provide the energy we need and create sustainable jobs right here at home.”

To receive funding under the plan, a project must:

  • relate to the research, development, engineering or manufacturing of a business component or product for either the wind or solar energy industries.
  • require at least a $30 million proposed investment in Kansas.
  • within five years, employ a minimum of 200 full-time employees at an average salary of at least $32,500.
Those are pretty heady requirements for public aid, but it's good that Kansas is thinking big-picture.

Saturday, March 14, 2009

Small-scale wind farm

A Minnesota couple is building a small wind farm. We need more private wind farms, especially where I live on the windy plains of Kansas.

An electric airplane



Supposedly this airplane can fly up to an hour. It uses lithium battery packs, which weigh 78 pounds. The motor weighs 28 pounds and the whole thing weighs only 380 pounds. Learn more here.

This looks kind of like a Prius with wings.

Here's a video of the Electraflyer in flight.

Holy Cow! A solar/plug-in Fiero!



It's tough to admit, but I owned a red Fiero when I was in college. It was a lot of fun to take around corners but it was a total nightmare mechanically.

This is a cool electric plug-in version with solar capability too.

Turning CO2 into "environmentally friendly acid"

A company called Mantra is recycling CO2 into formic acid, which can be used as a substitute for hydrochloric acid. Among other uses, the steel industry uses hydrochloric acid to remove rust, and this would be a more environmentally friendly substitute.

Supposedly one ton of CO2 can be converted to one ton of formic acid.

Evidently there is already a pretty big world market for formic acid. Research firm Global Industry Analysts projects it to reach 573,000 tons by 2012. Chemical companies like BASF, Celanese Chemicals, Kemira, Perstorp and SAMSUNG Fine Chemicals are already making conventional formalic acid. See the full story here.

Wouldn't it be great to find other cool ways to recycle CO2, since we're already pumping it into the atmosphere by the boatload?

Friday, March 6, 2009

Sustainability and the Army


What with shrapnel, abandoned equipment and the general detritus of war, the U.S. Army is probably the last place you'd expect to see a sustainability focus. However, perhaps because of its profound effect on the environment and the economy, the Army indeed has embraced sustainability.

The Army has adopted a strategy called “Triple Bottom Line—Plus.” The three bottom lines are: mission, environment and community. The "plus" stands for economic benefits that sustainability proffers, including reduced costs and impacts and accelerated innovation.

On March 6, I was invited to participate in a conference call with Tad Davis, the Army's Deputy Assistant Secretary of Environment, Safety and Occupational Health.


Davis helped start Army sustainability in 2001 at Fort Bragg. Since then, he's progressively been working to develop an Army-wide sustainability concept.

"Our Army, your Army, is building green, buying green and going green," Davis said.

"A challenge for us has been to define sustainability in a context that resonates for folks in the Pentagon. We need to look 30 years down the road so we have programs in place," Davis said.

A lot of emphasis goes into how to dispose of hazardous wastes, as well as maintaining water quality and quantity, he said.

The Army is embracing new technology and processes at base installations. For constructing permanent structures, in 2008 the Army established a rule that buildings must adhere to the Silver LEED standard.

Going forward, 50% of every building that is deconstructed will be reused or recycled instead of being sent to a landfill, he said.

"We are a global corporation, for all intents and purposes," Davis said. "We're looking at our size and scale, and how we can be more sustainable by what we purchase."

About 40,000 of 68,000 non-tactical vehicles, which include sedans or other vehicles for general transport, are alternative-fuel capable, he said.

Currently, Davis is trying to put a number on the total savings by Army sustainability efforts. "It's part of our strategy to get military and civilian leaders to embrace sustainability. If we can say that we'll reduce waste by three percent, then we can show a big-picture view," he said.

As a localized example, a project two years ago at West Point reduced energy consumption by nearly $1 million a year, he said. "When we started sustainability, the way we sold it up the chain was economics and savings. We were able to reduce consumption of water and electricity significantly, then use the savings for other projects."

To comply with recent EPA standards on carbon emissions, Davis said the Army is conducting a study to learn how to reduce Army's greenhouse gas emissions. "We want to be part of the solution," he said.

Davis gave a battlefield example of how the Army has been more sustainable.

The Army was losing 80% efficiency in air conditioning of temporary structures, such as those that house computer servers and command posts. Now it is using spray foaming on these temporary structures to cut efficiency loss by half, he said.

The Army is using some hydro and wind power in Afghanistan and it is considering solar applications in Iraq and Djibouti.

"If we can reduce the power requirement by using smart grids, we'll reduce the amount of power needed," Davis said.

In some permanent structures at Fort Knox, the Army is using thermal-exchange programs to pipe water well below the surface, to be cooled or warmed depending on the season, then return the water to the facilities to aid in climate control, Davis said.

To make soldiers more sustainable on an individual basis, the Army goes back to the method of training. At every base they're given instructions specific to the area they're in or the task they're doing, whether that involves consideration of endangered species or general recycling and reduction of resources, Davis said.

Here are some interesting facts about the Army and sustainability, as taken from its 2007 Sustainability Report.
  • About 78% of FY07 Army Military Construction projects were designed to at least U.S. Green Building Council’s LEED certification standards for new construction.
  • Since FY03, the Army achieved an 8.4% reduction in facility energy use intensity (KBtu/gross square foot/per year).
  • While there was an 11% increase in absolute Toxic Release Inventory (TRI) releases from CY03 to CY06, the Army achieved a 13% decrease in pounds TRI released per $1000 net Army cost of operations.
Whatever you believe about war and peace, it's comforting to know that the Army is looking at its environmental impact. In the big picture, wars will happen and people will die. If we can reduce the ancillary suffering and harm, we'll be better for it.

Wednesday, March 4, 2009

The face of technology in 2019

<a href="http://video.msn.com/?mkt=en-GB&playlist=videoByUuids:uuids:a517b260-bb6b-48b9-87ac-8e2743a28ec5&showPlaylist=true&from=shared" target="_new" title="Future Vision Montage">Video: Future Vision Montage</a>

What might technology look like - and do for us - in ten years?

Microsoft put together this cool video. I like the scene where a conversation is automatically translated and seen in a bubble. What if people could wear special glasses to enable this? Or if the hearing-impaired could wear glasses that displayed the words of conversations that they were missing?

Microsoft created a whole series of these videos, which are available here.

Reusable toilet wipes? See the top-10 list of environmental oddities

This article on Time.com is worth a read. It's a top-10 list of some of the odd ideas to come out of the environmental movement.

No. 1 is the reusable toilet wipe. There was a great headline about this on Drudgereport last week. It read: "Bottom reached: 'Natural living' advocates unveil reusable toilet wipes."

Other items on the list include eco-condoms, the staple-less stapler and biodegradeable plates made from pig urine. I kid you not.

Wind power from artificial trees

The notion of biomimicry, or innovation inspired by nature, is gaining prominence. The basic idea is: how would nature do it?

Now comes the idea that an artificial tree could generate electricity. Using a synthetic leaf, London-based Solar Botanic is causing a stir with its idea to use the simple back-and-forth movement caused by wind to generate electricty.

According to a Web page on Nanoleaves, “A Nanoleaf is thin like a natural leaf, when outside forces, like the wind pushes the Nanoleaf back and forth, mechanical stresses appear in the petiole, twig and branches. When thousands of Nanoleaves flap back and forth due to wind, millions and millions of Pico watts are generated, the stronger the wind, the more energy is generated.”

Wind movement is not the only way Nanoleaves would generate energy.

Nanoleaves would reflect back only a tiny percentage of sunlight directed at them. The remaining light would be absorbed by photovoltaic and thermovoltaic cells in the Nanoleaf. Then, the light would be converted thermal radiation and finally into electricity. Nanoleaves would even be able to harness infrared radiations to create energy.

Expect to hear more about biomimicry in the coming years. Here's a video on the subject.

Monday, March 2, 2009

Victory City


Get your freedom fries at Victory City.

The brainchild of Orville Simpson II, of Cincinnati, a Victory City is a self-contained, privately run city of the future.

Simpson envisions hundreds of these being built worldwide, giving like-minded people the opportunity to congregate amongst themselves, in relative self-sufficiency.

Accommodating up to 332,000 people, a Victory City would rely on surrounding farmland for most of its food needs, supplemented by greenhouses, fish tanks and "poultry centers" close to the cafeteria areas. The city itself, under one roof, would take up about 3 square miles.

Some buildings would be up to 102-stories tall.

Simpson has put some thought into this: The Main Elevator Building would be divided into 9 sections. The upper 8 sections would be served by elevators, which would travel "express" to their particular sky-lobbies, carrying up to 50 people each. When people get off at their sky lobby, they would get on standard-sized elevators, which would take them express to their particular floor. The platforms ... would hold 50 people. When the elevator door opens, one platform carrying 50 people who want to go up would roll into the elevator, while at the same time, another platform carrying 50 people who just came down would roll out the door on the opposite side.

On the surface, it sounds utopian enough. It also sounds like a perfect setting for a sci-fi movie with a storyline gone wrong.

Still, the domain of the future belongs to dreamers. If it can be dreamed up, eventually it can be built. And as any movie watcher knows ... if you build it, they will come.

Sunday, March 1, 2009

Solar farming - an avenue to renew the Homestead Act?

A French farmer is taking a huge gamble, adding $26 million in solar-power generating infrastructure to his farm, which prior to this counted eggs and grains as the main income generators.

The farmer is building five giant sheds covered by 36,000 square meters of solar panels. These should generate up to 4.5 megawatts of electricity, or about enough to power 4,000 homes, according to this Reuters article. The farmer expects to generate about $2.5 million in electricity sales per year.

This is made possible by legislation creating 20-year contracts with favorable incentives to sell electricity to the grid. France aims to have a third of its electricity come from renewables by 2020.

On the farmer's part, he is taking a huge risk, as that's quite an investment.

As the United States moves toward more renewable energy, I'm reminded of the legacy of the Homestead Act, which gave able-bodied Americans 160 acres of government-owned land and a mule as long as they developed the property.

Now, the U.S. government long ago gave away all the decent farmland, and the Homestead Act was finally put to rest with the Federal Land Policy and Management Act of 1976.

But I think of the huge swaths of land in the West that are basically desert, good for nothing - except solar. If the government were to organize one section of this land, and offer the land for free, along with federal loans to develop solar power, there might be a good reason to renew the Homestead Act.

These plots could be situated so they all conveniently fed into a single electrical grid.

If the project worked, this same model could be applied in other sunny areas, and in areas where wind power could be generated.