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Extreme geothermal power

November 25, 2024 By EarthWise Leave a Comment

Extreme geothermal power in Iceland

Krafla is one of the most explosive volcanoes in Iceland, which is home to many active volcanoes, including one recently in the news near Reykjavik that hadn’t erupted for 800 years .  Krafla is the site of the Krafla Magma Testbed, which may end up being for geoscientists what the Large Hadron Collider has been for particle physicists. 

For over a decade, researchers have been drilling straight into the ground at Krafla to study what goes on deep beneath an active volcano.  Ten years ago, they encountered an unexpected magma chamber a little over a mile down.  Their equipment was destroyed but the researchers decided that they had uncovered a unique opportunity to study magma dynamics and potentially be able to tap into a significant new energy source.

The plan is to use the tremendous heat energy contained in magma to dramatically improve the production of geothermal energy.  Krafla is already the site of a geothermal energy plant that makes use of the heat beneath the surface to boil water that then drives turbines to generate electricity.

Forthcoming drilling projects will make use of new equipment that can handle the harsh conditions that will be encountered in the magma chamber.  The goal is to tap directly into the magma to produce superheated steam that could produce ten times more power than conventional geothermal systems.  Conventional systems access temperatures around 200 to 300 degrees; the magma is at 1,800 degrees.

It will take a few years to complete the project, but if it is successful, it could have implications well beyond Iceland.  There are many active volcanoes all over the world.

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Drilling into magma: Risky plan takes geothermal to supercritical extremes

Photo courtesy of Landsvirkjun.

Earth Wise is a production of WAMC Northeast Public Radio

An active hurricane season

May 13, 2024 By EarthWise Leave a Comment

The Atlantic hurricane season officially runs from June 1st until November 30th.  Forecasters at Colorado State University have issued forecasts of Atlantic basin hurricane activity since 1984 based on the pioneering work of Professor William Gray.  This year’s forecast, issued in April, predicts a higher-than-average number of Atlantic storms.  In fact, it may be one of the most active seasons on record.

On average, there are 14 named storms each season.  This year, the prediction is for 23 of them.  On average, there are 7 hurricanes each season.  This year, the prediction is for 11. The prediction is for 5 major hurricanes among them.  These predictions are among the highest on record, although in 2020 they predicted 12 hurricanes.  In fact, that year there were 14 that actually took place.

Among the factors at play are that the El Niño that was occurring last year has dissipated and there is a good chance of a La Niña forming, which suppresses upper-level winds thereby making conditions ideal for hurricane formation and intensification.  But the overarching factor is global warming which is driving ocean temperature rise.  The water in the Atlantic, especially in the eastern Atlantic where most hurricanes form, has seen record-breaking warmth.  More warm water means more chances for storms.

Other research groups echo the predictions from Colorado State and, in some cases, see ever greater chances for an extremely active hurricane season.  The University of Pennsylvania forecast calls for 33 named storms.

The overall forecast is for a well above-average probability for major hurricanes making landfall along the continental United States coastline and the Caribbean. 

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Weather tracker: US experts predict one of most active hurricane seasons on record

Photo, posted September 5, 2017, courtesy of NASA/NOAA GOES Project via Flickr.

Earth Wise is a production of WAMC Northeast Public Radio

Mauna Loa Eruption And Climate Tracking | Earth Wise

January 9, 2023 By EarthWise Leave a Comment

Mauna Loa eruption disrupts global climate tracking

Mauna Loa, the largest active volcano in the world, erupted for the first time in nearly 40 years in late November.  A 124-foot aluminum tower at the top of the volcano has been the site of carbon dioxide measurements for over 60 years but the eruption cut off power to the site, stopping the monitoring.

Carbon dioxide measurements on Mauna Loa began in 1958.  The project was started by geochemist Charles Keeling and eventually taken over by his son Ralph Keeling upon his father’s death in 2005.  It is the longest continuous record of the rising levels of carbon dioxide in the world.

Mauna Loa is an ideal location for carbon dioxide monitoring because it is a remote location away from both carbon dioxide sources like dense population centers and roads, and carbon sinks like areas of heavy vegetation.

There are hundreds of carbon dioxide monitoring stations around the world, including more than 70 operated by the National Oceanic and Atmospheric Administration, so the interruption will not stop global recordkeeping.  But Mauna Loa holds significant symbolism as the first and most frequently sited source of carbon dioxide data.

There have been other interruptions in the measurements.  Federal budget cuts in 1964 paused them for about 3 months.  A 1984 eruption also cut off power to the facility and shut it down for about a month.

When the facility first started operating, the average carbon dioxide concentration was measured at 313 parts per million.   Most recently, levels have peaked at around 421 parts per million, the greatest concentration in at least 4 million years. 

Power will be restored to the Mauna Loa facility and its measurements will resume.

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Mauna Loa Eruption Threatens a Famous Climate Record

Photo, posted November 29, 2022, courtesy of L. Gallant / USGS via Flickr.

Earth Wise is a production of WAMC Northeast Public Radio.

Oil Drilling In Los Angeles | Earth Wise      

February 24, 2022 By EarthWise Leave a Comment

Los Angeles may close its oil drilling chapter

Movies were not the first industry to boom in Los Angeles.  Oil was.  There was a lot of it, and it flowed close to the surface triggering rampant drilling all over the area.  By the 1920s, Los Angeles was one of the largest oil-exporting regions in the world.

A century later, there are over 20,000 active, idle, or abandoned wells spread across LA county, home to 10 million people.  Some are hidden behind facades; others are plainly visible, pumping away day and night.  About a third of Angelenos live less than a mile from an active well site.  In the last 20 years, improved oil extraction technology has actually led to a resurgence of oil drilling in Los Angeles.

Studies of the health impact of LA’s oil wells found that asthma is significantly more common among people living near oil wells than elsewhere in the county.  Surveys of residents’ lung functions revealed lower function on average when people live near wells.   Measurements of toxins in the air – such as benzene, toluene, and n-hexane – showed that levels of these substances were significantly reduced when oil production at a site stopped.

This issue has finally come to the forefront after a nearly a decade of community organizing and studies of adverse health effects.  In a unanimous vote on January 26, the Los Angeles City Council took the first step toward phasing out all oil and gas extraction in the city by declaring oil extraction a nonconforming land use.  The LA County Board of Supervisors voted unanimously to phase out oil extraction in unincorporated county areas.  Los Angeles’ long, troubled history with urban oil drilling appears to be nearing an end.

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Los Angeles’ long, troubled history with urban oil drilling is nearing an end after years of health concerns

Photo, posted March 26, 2016, courtesy of Giuseppe Milo via Flickr.

Earth Wise is a production of WAMC Northeast Public Radio.

Restoring Tropical Forests | Earth Wise

September 10, 2020 By EarthWise Leave a Comment

forest restoration

Tropical forests store more than half of the world’s above-ground carbon.  For this reason, deforestation is one of the greatest threats to global climate regulation.   Once forests are degraded through partial clearing and agricultural conversion, they are often perceived as no longer having much ecological value even though degraded forests still provide important ecosystem services despite no longer storing as much carbon.

As a result, once forests have been degraded, they tend to be seen as prime candidates for full conversion to agricultural plantations.   But this is not actually the case.

An international team of scientists, including researchers from Arizona State University’s Center for Global Discovery and Conservation Science, has provided the first long-term comparison of above-ground carbon recovery rates between naturally regenerating and actively restored forests in Southeast Asia.

First of all, the research shows that allowing forests to regenerate naturally results in significant amounts of restored above-ground carbon storage.  It is definitely worthwhile to allow forests to recover rather than giving up on them and putting the land to other uses.

But more importantly, the researchers found that forest areas that undergo active restoration recover their carbon-storing ability 50% faster than naturally recovering forests.

Restoration methods include planting native tree species and thinning vegetation around saplings to improve their chances of survival.   

These findings suggest that restoring tropical forests is a viable and highly scalable solution to regaining lost carbon stocks on land.  What is needed is sufficient incentive to engage in active forest restoration.  The current price of carbon is not sufficient to pay for restoration, but as the climate crisis intensifies, this is likely to change.

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Tempe to Hawaii: ASU professors teach Hawaiian youth about coral reef conservation

Photo, posted May 22, 2008, courtesy of Eric Chan via Flickr.

Earth Wise is a production of WAMC Northeast Public Radio.

Trees And The Future Of Cities

April 16, 2019 By EarthWise Leave a Comment

The shade of a single tree is a welcome source of relief on a hot summer day.  But even a relatively small patch of woods can have a profound cooling effect.  A new study at the University of Wisconsin-Madison looks at the role trees play in keeping towns and cities cool.

According to the study, the right amount of tree cover can lower daytime temperatures in the summer by as much as 10 degrees.  The effects are noticeable from neighborhood to neighborhood and even on a block-by-block basis.

Cities are well-known to be hot spots due to the urban heat islanding effect.  Using trees to keep temperatures more comfortable in cities can make a big difference for the people who live and work there.

The man-made structures of cities – roads, sidewalks, and buildings – absorb heat from the sun during the day and slowly release it at night.  Trees, on the other hand, not only shade those structures from the sun, but they also transpire -or release water in the air through their leaves – which helps to cool things down.

According to the study, to get maximum cooling benefits, tree canopies must exceed forty percent, meaning that city blocks need to be nearly halfway covered by tree branches and leaves.  To get the biggest bang for the buck, cities should start planting more trees in areas that are already near the forty percent threshold.  But

trees can’t just be in parks.  They need to be in places where people are active.

If we want the places where we live to be more comfortable and resilient in a warming world, we need to plant more trees.

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Study suggests trees are crucial to the future of our cities

Photo, posted May 26, 2012, courtesy of Mislav Marohnic via Flickr.

Earth Wise is a production of WAMC Northeast Public Radio.

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