Nov 6, 2008

Preventing forest fires with tree power


Sensor system runs on electricity generated by trees

Elizabeth A. Thomson, News Office
September 23, 2008

MIT researchers and colleagues are working to find out whether energy from trees can power a network of sensors to prevent spreading forest fires.

What they learn also could raise the possibility of using trees as silent sentinels along the nation's borders to detect potential threats such as smuggled radioactive materials.

The U.S. Forest Service currently predicts and tracks fires with a variety of tools, including remote automated weather stations. But these stations are expensive and sparsely distributed. Additional sensors could save trees by providing better local climate data to be used in fire prediction models and earlier alerts. However, manually recharging or replacing batteries at often very hard-to-reach locations makes this impractical and costly.

The new sensor system seeks to avoid this problem by tapping into trees as a self-sustaining power supply. Each sensor is equipped with an off-the-shelf battery that can be slowly recharged using electricity generated by the tree. A single tree doesn't generate a lot of power, but over time the "trickle charge" adds up, "just like a dripping faucet can fill a bucket over time," said Shuguang Zhang, one of the researchers on the project and the associate director of MIT's Center for Biomedical Engineering (CBE).

The system produces enough electricity to allow the temperature and humidity sensors to wirelessly transmit signals four times a day, or immediately if there's a fire. Each signal hops from one sensor to another, until it reaches an existing weather station that beams the data by satellite to a forestry command center in Boise, Idaho.

Scientists have long known that trees can produce extremely small amounts of electricity. But no one knew exactly how the energy was produced or how to take advantage of the power.

In a recent issue of the Public Library of Science ONE, Zhang and MIT colleagues report the answer. "It's really a fairly simple phenomenon: An imbalance in pH between a tree and the soil it grows in," said Andreas Mershin, a postdoctoral associate at the CBE. The first author of the paper is Christopher J. Love, an MIT senior in chemistry who has been working on the project since his freshman year.

To solve the puzzle of where the voltage comes from, the team had to test a number of theories -- many of them exotic. That meant a slew of experiments that showed, among other things, that the electricity was not due to a simple electrochemical redox reaction (the type that powers the 'potato batteries' common in high school science labs, http://en.wikipedia.org/wiki/Lemon_battery). The team also ruled out the source as due to coupling to underground power lines, radio waves or other electromagnetic interference.

Testing of the wireless sensor network, which is being developed by Voltree Power (http://voltreepower.com), is slated to begin in the spring on a 10-acre plot of land provided by the Forest Service.

According to Love, who with Mershin has a financial interest in Voltree, the bioenergy harvester battery charger module and sensors are ready. "We expect that we'll need to instrument four trees per acre," he said, noting that the system is designed for easy installation by unskilled workers.

"Right now we're finalizing exactly how the wireless sensor network will be configured to use the minimum amount of power," he concluded.

The original experiments were funded by MagCap Engineering, LLC, through MIT's Undergraduate Research Opportunities Program.

Nov 5, 2008



Scientists offer new insight into what to protect of the world's rapidly vanishing languages, cultures, and species.

from SEED magazine
by Maywa Montenegro & Terry Glavin

This past January, at the St. Innocent Russian Orthodox Cathedral in Anchorage, Alaska, friends and relatives gathered to bid their last farewell to Marie Smith Jones, a beloved matriarch of her community. At 89 years old, she was the last fluent speaker of the Eyak language. In May 2007 a cavalry of the Janjaweed — the notorious Sudanese militia responsible for the ongoing genocide of the indigenous people of Darfur — made its way across the border into neighboring Chad. They were hunting for 1.5 tons of confiscated ivory, worth nearly $1.5 million, locked in a storeroom in Zakouma National Park. Around the same time, a wave of mysterious frog disappearances that had been confounding herpetologists worldwide spread to the US Pacific Northwest. It was soon discovered that Batrachochytrium dendrobatidis, a deadly fungus native to southern Africa, had found its way via such routes as the overseas trade in frog's legs to Central America, South America, Australia, and now the United States. One year later, food riots broke out across the island nation of Haiti, leaving at least five people dead; as food prices soared, similar violence erupted in Mexico, Bangladesh, Egypt, Cameroon, Ivory Coast, Senegal and Ethiopia.

All these seemingly disconnected events are the symptoms, you could say, of a global epidemic of sameness.

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A Fast, Programmable Molecular Clock


"UC San Diego bioengineers have created the first stable, fast, and programmable genetic clock that reliably keeps time by the blinking of fluorescent proteins inside E. coli cells. The clock's blink rate changes when the temperature, energy source, or other environmental conditions change."

Technology Review 10/29/08
Link

BudBurst




Citizen science to study climate change


from Boing Boing:
POSTED BY DAVID PESCOVITZ, MARCH 11, 2008


Project BudBurst looks like an interesting citizen science project to engage the public as researchers on climate change. Participants volunteer to look out for first bud bursts, first leafing, first flower, and seed or fruit dispersal in their area. Those are all phenological events, meaning biological phenomena that are sensitive to climate variations. From Project BudBurst:
Phenology is the study of the timing of life cycle events in plants and animals. In other words, studying the environment to figure out how animals know when it is time to hibernate, and what ‘calendar’ or ‘clock’ plants use to begin flowering, leafing or reproducing.

Phenology is literally “the science of appearance.” Scientists who study phenology – phenologists -- are interested in the timing of specific biological events (such as flowering, migration, and reproduction) in relation to changes in season and climate. Seasonal and climatic changes are some of the non-living or abiotic components of the environment that impact the living or biotic components. Seasonal changes can include variations in day length, temperature, and rain or snowfall. In short, phenologists attempt to learn more about the abiotic factors that plants and animals respond to...

Phenological observations have been used for centuries by farmers to maximize crop production, nature-lovers to anticipate optimal wildflower viewing conditions, and by almost all of us to prepare for seasonal allergies. Today, this well established science is also used by scientists to track the effect of global warming and climate change on organisms and to make predictions about the future health of the environment. By tracking changes in the timing of these phenological events, scientists are able to better understand how our environment is changing.
Link (Thanks, Michael-Anne Rauback!)

link:

Augmented Ecologies , A Kinesthetic User Experience

Guido Maciocci
feature on Archinect



The integration of biological and technological systems in the design of an interactive human interface is explored through an installation where plants rigged up with sensors provide a kinesthetic user experience based on movement, touch, sound and light. Human interaction with the system affects an algorithmic projection and soundscape.

//Augmented Ecologies
BIOLOGICAL + TECHNOLOGICAL

The project explores the integration of biological and technological systems in the development of an interactive human interface. This notion is investigated through the design and construction of an interactive installation where user interactions with hybrid systems affect the light and sound-scape of the installation space. The design is suggestive of an information rich, technologically augmented landscape. Kinesthetic user/landscape relationships are forged within a mediated spatiality of light and sound.

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