Followers

Wednesday, May 28, 2008

Sweden turning sewage into a gasoline substitute

A FordonsGas filling station. The company operates the largest chain of biogas stations in Scandinavia.
(Nils-Olof Sjoden/FordonsGas )
[Enlarge this image]

GOTEBORG, Sweden: Taking a road trip? Remember to visit the toilet first. This city is among dozens of municipalities in Sweden with facilities that transform sewage waste into enough biogas to run thousands of cars and buses.

Cars using biogas created a stir when they began to be rolled out on a large scale at the start of the decade. The tailpipe emissions are virtually odorless, the fuel is cheaper than gasoline and diesel, and the idea of recovering energy from toilet waste appealed to green-minded Swedes.

"When you're in the bathroom in the morning and you can see something good come of that, it's easy to be taken in by the idea - it's like a utopia," said Andreas Kask, a business consultant who drives a taxi in Goteborg. "But it hasn't worked out that well in reality."

Drivers complained that there were too few filling stations and that cars only held enough biogas for two or three hours of driving. Some also said early models of biogas cars performed poorly on steep climbs, were sluggish on damp mornings and had reduced trunk room because of bulky tanks.

Critics also question the sustainability of the technology because some of the systems use pipelines that carry natural gas to reach consumers, thereby mixing the two fuels together.

Two years ago, Volvo, which is owned by Ford Motor, announced that it would stop production of biogas cars and instead focus on making environmentally friendly vehicles powered by ethanol blended with gasoline.

"We didn't sell enough cars," said Maria Bohlin, a spokeswoman for Volvo, referring to biogas models. "We might consider making biogas cars again, although we're not there at the moment."

Since Volvo's decision to stop using the biogas technology, ethanol has made deeper inroads into the Swedish market, despite criticism that it contributes to deforestation and raises food prices. Made from cereal and sugar crops, ethanol also sells for slightly less than biogas in Goteborg, although proponents of biogas say that their fuel is far more efficient per kilometer.

Goran Varmby, an official at Business Region Goteborg, a nonprofit company that promotes trade and industry in the region, said he hoped that Volvo would resume production of biogas cars.

"But there are a lot of big economic interests behind ethanol," Varmby said. He was alluding to the generous subsidies farmers and biofuels producers in Europe and the United States earn for growing and processing crop fuels.

Chemically, biogas is the same as natural gas from fossil fuels, but its manufacture relies on a process where bacteria feed on fecal waste for about three weeks in an oxygen-free chamber. The result is two-thirds methane and one-third carbon dioxide, as well as a nutrient-rich residue that can be used as soil or construction material.

Once the methane is purified, it is pumped through Goteborg's network of gas pipelines to specialized filling stations, where it is pressurized for delivery. Any car with an engine and tank configured for compressed natural gas can use biogas.

After each fill-up, the corresponding amount of biogas is injected into the natural gas grid as an offset, said Bo Ramberg, chief executive of FordonsGas, which is based in Goteborg and operates the largest chain of biogas filling stations in Scandinavia.

The idea is that the amount of gas used by vehicles is offset by the gas produced by organic waste.

Ramberg, formerly an executive at Volvo, said he left the company about a decade ago to start FordonsGas when he spotted an opportunity to promote the infrastructure needed to deliver biogas to drivers.

"We're looking to certify the emissions from the entire life cycle of biogas production and use," Ramberg said.

"But we already strongly believe that biogas is the best fuel for lower emissions - no discussion about it," he said.

FordonsGas, which is half-owned by Dong Energy, a Danish company, makes a small profit and is continuing to invest in new biogas filling stations, Ramberg said.

Biogas promoters acknowledge that the decision by Volvo to halt production of biogas cars had dealt the technology a serious blow.

But they said decisions by Mercedes and Volkswagen to introduce a new models of biogas cars in Sweden this year, and rebates and tax breaks for drivers, could still invigorate sales of the cars and fuel.

Biogas as a vehicle fuel is also available in Switzerland, France, Germany and Austria, but Sweden is the leading user in Europe, said Irmgard Herold, an analyst at New Energy Finance in London.

Many people in Goteborg remain optimistic about the virtuous link they have created between waste and secure energy supplies.

Ola Fredriksson, an engineer at Gryaab, the sewage facility in Goteborg, said that what an average person flushed down the toilet each year created enough biogas to drive 120 kilometers, or 75 miles.

"If the oil price keeps on going up, and people are prepared to pay more for renewable energy, then it will make our company interested in producing more biogas," he said. "We have the capacity.'

Original here



The Conspicuous Colors Of Chameleons


For years scientist have known that chameleons’ ability to change color served three purposes: camouflage, body heat regulation, and social communication. However, the most widely accepted hypothesis as to what drove this adaptation, up until now, was camouflage, but some recent research has brought new light as to why chameleons have become know as the color changers that they are, and scientist now believe that social communication is the main driver behind this adaptation.

There are more than 160 species of Chameleons known, and their body size and shape varies widely from 1 inch up to 31 inches. Most of them can be found in Africa, Madagascar and other tropical areas. While chameleons have many unique physical features, such as there independently moving eyes and extremely long tongues, their ability to change color has always been the most fascinating.

Photo by sukanto debnath

All chameleons are able to change color, with different species exhibiting different color ranges that include pink, blue, red, orange, green, black, brown and yellow.

Color Change


Chameleons have specialized cells, collectively called chromatophores, that lie in layers under their transparent outer skin. The cells in the upper layer, called xanthophores and erythrophores, contain yellow and red pigments respectively. Below these is another layer of cells called iridophores or guanophores, and they contain the colourless crystalline substance guanine. These reflect, among others, the blue part of incident light. If the upper layer of chromatophores appears mainly yellow, the reflected light becomes green (blue plus yellow). A layer of dark melanin containing melanophores is situated even deeper under the reflective iridophores. The melanophores influence the ‘lightness’ of the reflected light. All these pigment cells can rapidly relocate their pigments, thereby influencing the colour of the chameleon.
- Wiki:Chameleon

Photo by Pashka

The study

Scientists ran experiments on 21 species of southern African dwarf chameleons to figure out why these color-changing abilities formed.

If camouflage drove the evolution of color change, the species of chameleon that display the greatest diversity of skin coloration would have the greatest variety of backgrounds to match their habitats.

Photo by buckoven

One hypothesis is social communication primarily drove the evolution of color change. In that scenario species that possessed the widest range of color change would have the flashiest displays.

So the scientists pitted male chameleons against each other and measured the range of their color change.

The findings

“We could use that difference in male dominant and submissive color as a measure of their ability to change color,” Stuart-Fox said.

“We found that the species that change [the] most are the ones with the most conspicuous displays, whereas there was no relationship between how much they change color and the variety of backgrounds they had to match,” she said.

Photo by Charlotte Hay

“The study is particularly interesting insofar as it helps clarify a common misconception that is in textbooks and [is] widely perceived by the public and scientists alike: that chameleons are masters of camouflage,” said Roger Hanlon, a senior scientist at the Marine Biological Laboratory in Woods Hole, Massachusetts.
- NationalGeogrpahic.com

Original here

UPDATE 2-Wind power could make Norway "Europe's battery"

Norway could become "Europe's battery" by developing huge sea-based wind parks costing up to $44 billion by 2025, Norway's Oil and Energy Minister said on Monday.

Norway's Energy Council, comprising business leaders and officials, said green exports could help the European Union reach a goal of getting 20 percent of its electricity by 2020 from renewable sources such as wind, solar, hydro or wave power.

"Norway could be Europe's battery," Oil and Energy Minister Aaslaug Haga told Reuters after she was handed the report, which will be considered by the centre-left government in coming months.

"The thinking is that Norway is blessed, is lucky, to have big energy resources. There is undoubtedly a large potential for wind power," she said. Norway says it has the longest coastline in Europe, from the North Sea to the Arctic Barents Sea.

The 30-page report, mapping out a big shift for the world's number 5 oil exporter, said: "Norway ought to have access to up to 40 terrawatt hours of renewable energy in 2020-2025, of which about half would come from offshore wind power."

Sufficient wind parks -- totalling 5,000 to 8,000 megawatts installed capacity -- would cost between 100 billion Norwegian and 220 billion Norwegian crowns ($43.89 billion) assuming prices of 20-28 million crowns per installed megawatt.

The energy would be equivalent to up to about eight nuclear power plants. Norway pumps about 2.2 million barrels of oil per day -- $44 billion represents the value of about half a year's output.

WIND, HYDRO

Haga said offshore wind parks -- which would stop on calm days -- could be supplemented by hydro-power reservoirs which can be turned on and off to turn them into a battery storing power. Norway has about half Europe's reservoir capacity.

"We can deliver a product whether the wind is blowing or not," she said. Haga will meet EU Energy Commissioner Andris Piebalgs in Brussels on Thursday, partly to discuss the report.

It said Norway still needed new laws, competitive subsidies and more infrastructure. Norway sometimes has problems supplying even its own electricity needs with its existing hydro-power.

And it said that Denmark, Germany and Britain had done much more to develop wind power, both on land and in shallow waters. Norway's advantage was wide experience from deeper offhore oil and gas installations.

StatoilHydro (STL.OL: Quote, Profile, Research) said last week that it will invest $80 million to build the world's first full-scale floating wind turbine to start up in 2009. Power from such installations is likely to be more costly than on land.

The report said that Norway would have to agree long-term wind supply contracts with EU countries, including access to EU subsidies. But Haga also said: "I don't expect Europe to subsidise Norwegian wind power producion."

"It's not a first choice to import power," said Steinar Bysveen, who led the report. He said EU nations such as Germany might need imports because of a lack of space to build wind parks at home and plans to phase out nuclear power.

The Energy Council report said that 40 terrawatt hours of electricity from wind could cut 20 million tonnes of heat-trapping carbon dioxide emissions, blamed for stoking global warming. Norway's 2007 emissions were 55 million tonnes.

-- For Reuters latest environment blogs click on: blogs.reuters.com/environment/ (Editing by William Hardy,

Original here