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excess

Marine heatwaves are spreading

July 21, 2025 By EarthWise Leave a Comment

Marine heatwaves are spreading around the world

Sea surface temperatures broke records in 2024 and a quarter of the world’s oceans are experiencing temperatures that qualify as a marine heatwave.  A marine heatwave is a prolonged period during which ocean temperatures are significantly warmer than average for that specific location and time of year. 

Unusual heatwaves have occurred in all the major ocean basins around the planet in recent years and some have become so intense that they are being called super marine heatwaves.

The seas off the coasts of the UK and Ireland experienced an unusually intense and long-lasting marine heatwave starting in April.  Australia was recently struck by heatwaves on two coasts.

Hotter oceans are causing drastic changes to marine life, sea levels, and weather patterns.  Some of the most apparent casualties of ocean warming have been coral reefs.  About 84% of reefs worldwide experienced bleaching-level heat stress at some point between January 2023 and March 2025.

Excess heat in the oceans can affect weather patterns, making hurricanes more likely to rapidly intensify and become more destructive.

A recent study published in Proceedings of the National Academy of Sciences concluded that climate change has been responsible for the overwhelming majority of marine heatwaves in recent decades.

People are learning to forecast these events.  Eventually, parts of the ocean might enter a constant state of marine heatwave, at least by how it is defined today.  Studying what is going on in the oceans today may provide insights into the future of the world’s oceans and provide guidance on how to try to achieve different outcomes.

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See How Marine Heat Waves Are Spreading Across the Globe

Photo, posted December 5, 2015, courtesy of Susanne Nilsson via Flickr.

Earth Wise is a production of WAMC Northeast Public Radio

A solar peaker plant

January 1, 2025 By EarthWise Leave a Comment

Developing a solar power peaker plant

Peaker plants are power plants that the grid makes use of during times of particularly high electricity demand.  The power they supply is typically high in cost and usually high in greenhouse gas emissions.  When operating the electricity grid, power sources are generally called upon in order of marginal cost.  Only when demand is very high do grid operators make use of the highest-cost assets that tend to be fossil-fueled power plants that can start and ramp up quickly. 

For years, there has been the idea that solar-powered peaker plants could eventually replace the polluting fossil-fueled ones.  Recently, the renewable energy developer, owner, and operator Arevon Energy began commercial operations of the Vikings Solar-plus-Storage Project in Imperial County, California.  It is the first utility-scale solar peaker plant in the United States.

The plant utilizes a 157-megawatt solar array combined with 150 MW and 600 MWh of battery energy storage.  It can shift low-cost daytime solar energy to higher-cost peak demand periods.  The result is a lowered cost of electricity for nearly one million customers of San Diego Community Power.

The project contradicts the often-held notion that renewable energy is inherently unreliable.  It can provide carbon-free electricity at specific times of critical need.  Typical hybrid solar + storage plants provide electricity during daylight hours and store only excess generation in their battery systems.  The Vikings project is specifically designed to shift the entirety of its generation from solar hours to the peak demand period.

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Arevon fires up the first solar + storage peaker plant in the U.S.

Photo, posted October 15, 2024, courtesy of Jay Inslee via Flickr.

Earth Wise is a production of WAMC Northeast Public Radio

Reducing farm nutrient pollution

December 11, 2024 By EarthWise Leave a Comment

Researchers developing new method to reduce nutrient pollution from farms

When farmers add nutrients to their fields in excess of their crops’ ability to utilize them, these excess nutrients can enter the surrounding environments and create environmental problems.  The primary culprits are nitrogen and phosphorous.  These fertilizer components emerge from fields and enter local waterways in surface runoff.

Researchers at the University of Illinois Urbana-Champaign have developed a form of designer biochar that can provide phosphorous in a time-released fashion and reduce the amount that escapes into the environment.

The researchers used sawdust and lime sludge, which are byproducts from milling and water treatment plants, respectively.  They mixed the two ingredients and formed pellets which were then slow-burned in low-oxygen conditions to create phosphorous-laden designer biochar.  Once the pellets bind all the phosphorous they can hold, they can be spread onto fields where the nutrient is slowly released over time.

They tested the pellets in working field conditions.  The pellets are used to remove phosphorous from drainage water and then can be reused in the field to provide the nutrient to the plants.   

The results were very encouraging.  The biochar proved to be a very effective way to provide phosphorous to crops and then reduce how much phosphorous enters the environment.  The cost of producing the biochar pellets was less than half that of alternative substances for phosphorous removal. 

There is currently no regulation that requires farmers to remove phosphorous from drainage water but there are a growing number of conservation-minded farmers who want to reduce nitrogen and phosphorous losses from their fields.  The idea that the recyclable pellets can both provide and control phosphorous is an attractive one.

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Scientists tackle farm nutrient pollution with sustainable, affordable designer biochar pellets

Photo, posted July 16, 2016, courtesy of Rick Obst via Flickr.

Earth Wise is a production of WAMC Northeast Public Radio

How much energy storage is needed?

November 11, 2024 By EarthWise Leave a Comment

Exploring how much energy storage is needed

Energy storage is a critical aspect of modern energy systems as they move towards heavy dependence on renewable sources such as solar and wind that don’t produce energy at the same rate all the time.  Excess energy generated by solar power needs to be stored for when the sun isn’t shining; excess wind energy needs to be stored for when the wind isn’t blowing.  But how much storage capacity does the energy system need to have?

Researchers at North Carolina State University have developed a model that can be used to project what a system’s storage needs would be if it were to shift entirely to renewable sources.

The model accounts for how energy production from renewable sources would change during different times of day and different times of the year.  For example, there is much more solar energy generation in the summer when the days are longer, and it is sunny more often.

There is also the issue of short-term vs. long-term energy storage.  Short-term energy storage does not refer to how long a storage device can store the energy.  It refers to how long it can provide power at its rated level.

The study focused on Italy’s energy system, which has suffered in recent years because it had difficulties in obtaining natural gas from Russia due to the invasion of Ukraine.

As the world moves increasingly towards renewable power sources, energy systems need to be able to account for the variability of those sources.  The new model offers policymakers critical information for use in energy system planning.

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Model Projects Energy Storage Needs for Fossil Fuel-Free Energy System

Photo, posted October 28, 2016, courtesy of Daxis via Flickr.

Earth Wise is a production of WAMC Northeast Public Radio

Much more energy storage for New York

August 2, 2024 By EarthWise Leave a Comment

As solar and wind power play an ever-growing role in the electricity grid, the need for energy storage also grows.  Even if sun and wind can provide more energy than is needed at a particular time, they can’t provide it at all times.  The ability to store excess energy waiting in reserve for when the sun and wind are not providing it is essential to avoid the need for burning fossil fuels to take up the slack.

The New York State Public Service Commission has announced that it has approved a new framework for the state to have in place a nation-leading six gigawatts of energy storage by 2030.  This represents at least 20% of the peak electricity load of New York State.

An extensive set of recommendations to expand New York’s energy storage programs describe cost-effective ways to unlock the rapid growth of renewable energy across the state as well as to bolster the reliability of the grid.  The buildout of storage deployment is estimated to reduce projected future statewide electric system costs by nearly $2 billion.  New York has previously established goals to generate 70% of its electricity from renewable sources by 2030 and 100% zero-emission electricity by 2040.

The new roadmap includes programs to procure an additional 4.7 gigawatts of new energy storage projects across large-scale, retail, and residential energy storage sectors across the state.  These future procurements, when combined with the 1.3 gigawatts already being procured or under contract, will allow the State to achieve the 6-gigawatt goal by 2030.

Energy storage plays a critical role in decarbonizing the grid, reducing electricity system costs, and improving the reliability of the electricity system.

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New York approves plan to add six gigawatts of energy storage by 2030

Photo courtesy of NineDot Energy.

Earth Wise is a production of WAMC Northeast Public Radio

Top Fish Predators And Climate Change | Earth Wise

September 12, 2023 By EarthWise Leave a Comment

Climate change is taking its toll on forests, farms, freshwater sources, and the economy, but ocean ecosystems remain the epicenter of global warming.  In fact, oceans have absorbed more than 90% of the excess heat from greenhouse gas emissions since the 1970s.

As a result, many marine fish species are responding to ocean warming by relocating towards the poles.  According to new research recently published in the journal Science Advances, climate change is causing widespread habitat loss for some of the ocean’s top fish predators, driving these species northward.

The research team studied 12 species of highly migratory fish predators, including sharks, tuna, and billfish, such as marlin and swordfish, inhabiting the Northwest Atlantic Ocean and the Gulf of Mexico.  These two regions are undergoing rapid changes in sea surface temperatures, and are among the fastest warming ocean regions on earth.

The research, which was led by researchers from Woods Hole Oceanographic Institution in Massachusetts, with collaboration from San Diego State University, NOAA, and several other U.S. institutions, found that most species will encounter widespread habitat losses by 2100.  Some species could lose upwards of 70% of suitable habitat by that year.  Areas offshore of the Southeast United States and Mid-Atlantic coasts were identified as likely hotspots of multi-species habitat loss. 

According to the researchers, strategies for managing fish have historically been static. But marine systems need to be treated as dynamic and changing.  This study helps provide the scientific data needed for marine conservation and fisheries management efforts.

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Top fish predators could suffer wide loss of suitable habitat by 2100 due to climate change

Photo, posted March 18, 2015, courtesy of Kenneth Hagemeyer via Flickr.

Earth Wise is a production of WAMC Northeast Public Radio

Geothermal Energy Storage | Earth Wise

May 22, 2023 By EarthWise Leave a Comment

Aquifer thermal energy storage a solution to heat and cool buildings

About 12% of the energy consumed by humanity is used to heat and cool homes and businesses.  A study by researchers at Lawrence Berkeley National Laboratory and Princeton University looked at a novel approach to making use of underground water to maintain comfortable temperatures and reduce consumption of natural gas and electricity.

The idea is to use aquifer thermal energy storage (known as ATES) to provide both heat in the winter and cooling in the summer.  The concept leverages the heat-absorbing property of water and natural geological features.  The idea is to pump up water from existing underground reservoirs and heat it at the surface using environmental heat or even excess energy from solar or wind generation.  Then the warm water is pumped back down. It stays warm for a long time – even months – because the earth is a good insulator.  When the water is pumped back up in the winter, it is much hotter than the ambient air and can be used to supply heat to buildings.

Alternately, water can be pumped up and cooled in the winter and then put back down underground and stored until cooling is needed in the summer months.

This technology has not been used much in the US, but it is gaining recognition internationally, particularly in the Netherlands.  It can perform very well in areas with large seasonal fluctuations.

The research study used modeling and various simulations to estimate how much energy ATES could save on the US grid.  The results showed that adding ATES to the grid could reduce consumption of petroleum products for heating and  cooling by up to 40%.  The system could also help prevent blackouts by reducing high power demand during extreme weather events.

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Underground Water Could be the Solution to Green Heating and Cooling

Photo, posted February 19, 2012, courtesy of Sanjay via Flickr.

Earth Wise is a production of WAMC Northeast Public Radio

Antarctic Heatwave | Earth Wise

May 13, 2022 By EarthWise Leave a Comment

The Concordia Research station atop Dome C on the Antarctic Plateau is generally considered to be the coldest place on earth.  In mid-March, the normal high temperature for the day is around -56 degrees Fahrenheit.  But on March 18, the high for the day was 11.3 degrees, nearly 70 degrees warmer than normal.

The World Meteorological Organization doesn’t formally track the metric of largest temperature excess above normal, but if it did, this would probably have set a world record.  Consider a place like Washington, DC.  Its normal high temperature on March 18 is 61 degrees.   Imagine if it got up to 131 degrees! 

The 11-degree reading at the Concordia Research Station was not only the record for the month of March.  It was actually the record for any month.

The Russian Vostok research station, which is another candidate for being the coldest place on earth based on its average high temperature, also saw some record high temperatures.  Vostok reported a high temperature of zero degrees Fahrenheit, which is 63 degrees above its average for the date.  It broke the station’s previous record by almost 27 degrees.

This record warming was the result of a unique combination of meteorological events that included a moist inflow of an atmospheric river as well as a rare infusion of hot air into the Antarctic plateau.  The arrival of the moisture in the atmospheric river trapped the hot air, allowing temperatures to shoot up.

The extreme warmth in Antarctica raises concerns about the long-term effects on the ice there.  A single short heatwave is not going to have a major effect, but if such events become more common, it could be real problem.

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Extraordinary Antarctica heatwave, 70 degrees above normal, would likely set a world record

Photo, posted October 15, 2016, courtesy of NASA Goddard Space Flight Center via Flickr.

Earth Wise is a production of WAMC Northeast Public Radio.

Liquid Fuels From Carbon Dioxide | Earth Wise

January 5, 2022 By EarthWise Leave a Comment

Converting carbon dioxide into liquid fuels

Most of the world’s energy demands are still being met by burning fossil fuels, thereby releasing carbon dioxide into the atmosphere.  The energy system is in the midst of a transition to renewable sources such as solar and wind power, but it will be quite some time before fossil fuels are only a minor part of energy production.  To reduce global warming, it will be necessary to prevent the carbon dioxide from fossil fuels from entering the atmosphere by capturing it and either locking it away or making use of it.

Recent research at several Chinese universities has developed a novel electrocatalyst that efficiently converts CO2 to liquid fuels containing multiple carbon atoms.  The main products of the high-efficiency reaction are ethanol, acetone, and n-butanol.  Previous electrocatalystic methods have mostly produced simpler hydrocarbons – namely, ones with only a single carbon atom.  The fuels the new catalyst produces are much more useful.

The catalyst is made from thin ribbons of a copper/titanium alloy that are etched with hydrofluoric acid to remove the titanium from the surface.  The process results in a material with a porous copper surface on an amorphous CuTi alloy.  The substance exhibits remarkably high activity, selectivity, and stability for catalyzing the reactions leading to the production of the hydrocarbon fuels.

Converting carbon dioxide into liquid fuels would be advantageous because they have high energy density and are safe to store and transport.  Apart from preventing carbon dioxide from entering the atmosphere, the process could also be a way to make use of excess energy produced by solar and wind generation by essentially storing that energy in the form of liquid fuels.

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Liquid Fuels from Carbon Dioxide

Photo courtesy of Angewandte Chemie via Wiley-VCH.

Earth Wise is a production of WAMC Northeast Public Radio.

Grid-Scale Battery Storage is on the Rise | Earth Wise

February 4, 2021 By EarthWise Leave a Comment

Record growth in grid-scale battery storage

Driven by steeply falling prices and improving technology, grid-scale battery storage systems are seeing record growth in the U.S. and around the world. Battery storage is a way to overcome one of the biggest obstacles to renewable energy:  the cycling between oversupply when the sun shines or the wind blows, and shortage when the sun sets or the wind drops.  Storing excess energy in battery banks can smooth imbalances between supply and demand.

In California, a 300-megawatt lithium-ion battery plant is being readied for operation with another 100 megawatts to come online in 2021.  The system will be able to power roughly 300,000 California homes for four-hour periods when energy demand outstrips supply.  It will be the world’s largest battery system for a while until even larger systems in Florida and in Saudi Arabia come online.

Nationwide, a record 1.2 gigawatts of storage were installed last year and that number is projected to jump dramatically over the next five years to nearly 7.5 gigawatts in 2025.

The price tag for utility-scale battery storage in the U.S. has plummeted, dropping nearly 70% just between 2015 and 2018.  Prices are expected to drop by a further 45% over the next decade.  Battery performance has continued to improve dramatically with increased power capacity and the ability to store and discharge energy over ever-longer periods of time. 

Favorable energy policies including renewable energy mandates coupled with continued price drops will drive the widespread expansion of battery energy storage.

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In Boost for Renewables, Grid-Scale Battery Storage Is on the Rise

Photo, posted November 17, 2016, courtesy of Steve Ryan via Flickr.

Earth Wise is a production of WAMC Northeast Public Radio.

Unexpected Effects Of Climate Change

September 18, 2018 By EarthWise Leave a Comment

https://earthwiseradio.org/wp-content/uploads/2018/09/EW-09-18-18-Unexpected-Effects-of-Climate-Change.mp3

The effects of climate change are discussed all the time.  We hear a lot about rising seas, extreme weather events, and so on.  And mostly, the weather gets warmer.  Heatwaves are increasingly common and longer and stronger.

[Read more…] about Unexpected Effects Of Climate Change

Nitrogen In The Rocks

May 23, 2018 By EarthWise Leave a Comment

https://earthwiseradio.org/wp-content/uploads/2018/05/EW-05-23-18-Nitrogen-in-the-Rocks.mp3

The carbon cycle is the biogeochemical process by which carbon is exchanged between the atmosphere, the terrestrial biosphere, the ocean, sediments, and the earth’s interior.  Its balance is a key factor that influences the climate.

[Read more…] about Nitrogen In The Rocks

Global Warming And The Nitrogen Problem

September 13, 2017 By EarthWise

https://earthwiseradio.org/wp-content/uploads/2017/09/EW-09-13-17-Global-Warming-and-the-Nitrogen-Problem.mp3

Excess nitrogen in the environment is a big problem.  The most visible aspect of the problem is the spread of toxic algae blooms in oceans, lakes and other bodies of water.  But there are other effects as well such as unwanted alterations to ecosystems.

[Read more…] about Global Warming And The Nitrogen Problem

Too Much Of A Good Thing

June 10, 2016 By WAMC WEB

https://earthwiseradio.org/wp-content/uploads/2016/05/EW-06-10-16-Too-Much-of-a-Good-Thing.mp3

Germany has continued to be the most aggressive adopter of renewable energy among large industrial nations.  The country has the goal of shifting to 100% renewables by 2050.  Its continuing embracing of solar and wind generation resources over the past decade has resulted in renewables supplying a third of the country’s power on average.

[Read more…] about Too Much Of A Good Thing

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