Showing posts with label recycling. Show all posts
Showing posts with label recycling. Show all posts

2.14.2011

Got Iron? Even the Ocean Recycles!


ScienceDaily — In the vast ocean where an essential nutrient -- iron -- is scarce, a marine bacterium that launches the ocean food web survives by using a remarkable biochemical trick: It recycles iron.

By day, it uses iron in enzymes for photosynthesis to make carbohydrates; then by night, it appears to reuse the same iron in different enzymes to produce organic nitrogen for proteins.

The bacterium, Crocosphaera watsonii, is one of the few marine microbes that can convert nitrogen gas into organic nitrogen, which (just as it does on land) acts as fertilizer to stimulate plant growth in the ocean. So the ocean's productivity is limited by nitrogen, which in turn is limited by scanty supplies of iron for the enzymes needed to make organic nitrogen.

This newfound capacity to conserve precious iron and use it in day-night shifts to satisfy two different metabolic demands reveals a surprising key to life on our planet, say scientists at Woods Hole Oceanographic Institution (WHOI) and Massachusetts Institute of Technology (MIT). They reported their findings Jan. 10 in the Proceedings of the National Academy of Sciences.

The scientists call the strategy "hot bunking," referring to ships that sail with fewer bunks than sailors on board. The bunks are kept continuously hot, as sailors finishing night shifts hop into bunks newly emptied by sailors arising for day shifts.

Crocosphaera uses iron-containing nitrogenase enzymes to convert dissolved nitrogen gas into organic nitrogen (a process called nitrogen "fixing"). As the sun comes up, the bacterium breaks down these enzymes, releasing iron that can be used to make photosynthetic enzymes needed to convert dissolved carbon dioxide into carbohydrates. When the sun goes down, many of the photosynthetic enzymes are broken down, releasing the iron again to be recycled into nitrogenase.

Crocosphaera belongs to a subgroup of bacteria called cyanobacteria. "They have a bit of a Dr. Jekyll and Mr. Hyde lifestyle: photosynthetic by day and nitrogen-fixing by night," said Mak Saito, a WHOI biogeochemist and lead author of the PNAS paper. Scientists previously knew cyanobacteria had this unusual dual-metabolic capacity, but they did not know how they could accomplish it with meager iron supplies.

The bacterium pays a price in energy needed to destroy and rebuild enzymes each day, but it's worth it to maximize the use of scarce iron. The scientists estimate that by using the hot bunking strategy, the organism can survive with about 40 percent less iron than it would otherwise need. It allows Crocosphaera to thrive and produce life-sustaining organic nitrogen in iron-poor waters that would otherwise be less productive.

The surprising abundance of cyanobacteria in the ocean was discovered in the 1970s by WHOI microbiologist Stanley Watson and his colleagues Frederica Valois and John Waterbury and, who later continued their pioneering research to elucidate cyanobacteria's critical ecological roles for the ocean and the planet. Crocosphaera watsonii is named after the late Dr. Watson.

Cyanobacteria have been notoriously difficult to culture in the laboratory. At WHOI, Waterbury, Valois and colleagues established methods to culture cyanobacteria routinely and reliably, and they maintain a collection of cyanobacteria cells in a new building called the Stanley W. Watson Laboratory. The collection is a sort of lending library of cells that provide cultures for scientists all over the world to study, including new generations of WHOI scientists working in the Watson Lab: Saito, graduate student Erin Bertrand, and lab associates Vladimir Bulygin and Dawn Moran.

They applied new biomedical research techniques to the study of the ocean: proteomics. As genomics studies the genes in an organism (its genome), proteomics studies the proteins made from instructions encoded in genes (its proteome).

"We wanted to know not only what could potentially be made from Crocosphaera's genome, but also what proteins Crocosphaera actually did make," Saito said.

A key part of the technique involves using mass spectrometers that distinguish and measure the various proteins in an organism by the infinitesimal differences in their masses. The researchers measured the inventory of iron-containing proteins during periods of dark and light. Nitrogen-fixing enzymes were largely absent during the day and present at night; iron-containing photosynthetic enzymes decreased during dark periods and reappeared during light periods. Thus, at any time of day, Crocsophaera required only about half the iron it would need if it maintained both sets of enzymes throughout the day.

To explore the implications of Crocosphaera's hot bunking ability, scientists at MIT -- Stephanie Dutkiewicz, Fanny Monteiro and Mick Follows -- used a numerical model that simulates global ocean circulation, biochemistry, and ecosystem dynamics. The model showed that Crocosphaera's ability to reduce its iron requirements allowed it to inhabit ocean regions with low levels of iron. It also allowed the same iron supply to support more growth of the cyanobacteria and more nitrogen fixation that supports other marine life higher up on the food chain.

Funding for the research came from the National Science Foundation, an Environmental Protection Agency Star Fellowship, the WHOI Ocean Life Institute, the NSF-funded Center for Microbial Research and Education, and the Center for Environmental Bioinorganic Chemistry at Princeton University. The paper was dedicated to co-author Vladimir Bulygin, who passed away in June 2010.

Source: http://www.sciencedaily.com/releases/2011/01/110110154649.htm


About Oceanic Defense
We are an international non-profit organization with members in over 60 countries, spanning 6 continents with 1 mission; healthy aquatic ecosystems free from human abuse and neglect. Oceanic Defense teaches people to protect our oceans by acting responsibly as consumers and by making smart decisions in our daily lives. Whether we are buying groceries, commuting to work, planning a vacation or advocating within our own communities; each action we take or decision we make either helps or hurts our oceans. We empower people to be part of the solution rather than part of the problem and work together to protect our blue planet.

Join us on Facebook:www.facebook.com/OceanicDefense
Visit our official website:www.oceanicdefense.org
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11.03.2010

Vacuum Cleaners Made Of Recycled Sea Garbage Unveiled

STOCKHOLM, Sweden -- Electrolux has unveiled five vacuum cleaners made from plastic waste collected from the world's oceans. The launch of the unique vacuums marks the next chapter and continuation of the "Vac from the Sea" initiative that aims to raise awareness around ocean plastic waste and inspire consumers and industry to more recycling.

"I would like to thank everyone that has brought attention to the issue and express my deepest gratitude to our partners, for providing us with knowledge and working with us in gathering plastic from the world's oceans," said Hans Stråberg, CEO and president, Electrolux.

"Our intention is to bring awareness to the situation and the need for better plastic karma. So far, over 60 million people have been reached and we are continuing the initiative following the great response," added Cecilia Nord, vice-president of floor care sustainability and environmental Affairs, Electrolux.

Each of the vacuum cleaner demos represents the ocean from which the plastic originates. The vacuums embody the plastic paradox: oceans are full of plastic waste, yet on land there is a shortage of recycled plastic for producing sustainable vacs. Today, Electrolux offers Green Range vacuum cleaners with up to 70% post consumer recycled plastic. The ambition is to reach 100%.
Electrolux is looking into auctioning off one vacuum, with the revenues going back into research. At the moment, the quality and the logistics needed for cleaning and sorting ocean plastic makes it difficult to use in mass production.

" Right now, only post consumer plastic on land meets our commercial safety and quality standards. However, as part of our commitment to researching new materials, we should explore how the ocean plastic might be used in the future, and one such step is to make a single concept vac that we can auction out," says Cecilia Nord.

More information on the 'Vacuum of the Sea" can be found at www.electrolux.com/vacfromthesea

The Vacs from the Sea
All the models have been built using the same core structure (chassis, engine, and bag compartment) as the UltraOne Green-model. All are fully functional.

Vac from the Sea – Pacific Edition

Collection site: Hawaii, USA Method: Beach cleanup Partner: B.E.A.C.H.
The Pacific Edition concept vacuum cleaner is made up of the drifting plastic grain that fills our oceans. The plastic has been bleached by the sun and corroded by salt water. This plastic grain is dangerous because it can easily be swallowed by fish and continues through the whole food chain to both animals and humans.

Red/dark objects often attract birds, fish and other sea animals since they believe the plastic is food. The plastic that is left in the sea and that washes up on beaches is usually blue, green or white. Some of the found objects were covered with barnacles and annelid worms. Other objects had traces of bite marks from sharks.

The plastic gravel has been poured onto fiberglass moulds and covers the entire hood and the hub caps. By studying how small these plastic particles are one understands how hard it is to remove the plastic once it is in the oceans. It is a wake-up call and a reminder of one of the most important environmental issues today.

Vac from the Sea – North Sea Edition

Collection site: Skagerrak, Sweden Method: Coastal cleanup Partner: Sotenäs Municipality
The plastic that was collected on the Bohuslän beaches in western Sweden consists largely of various rinse aid and detergent bottles, cans, plastic buckets, and all kinds of plastic packaging. The plastic has not been bleached in the same way as in the great oceans. It is still loud and strong in color. A lot of the found plastic was also drenched in spill oil.

The plastic was washed clean and cut in pieces. The bright colored pieces were then punched into circular tokens. The tokens were then applied onto a fiberglass weave, molded after the shape of the vacuum cleaner.

Vac from the Sea – Mediterranean Edition

Collection site: St Cyr-sur-Mer, France Method: Beach cleanup Partner: Surfrider Foundation
Most of the plastic collection from St Cyr-sur-Mer is composed of plastic objects thrown or washed out to sea from the great beaches. PET-bottles, food containers, beverage cans and beach toys are some such objects. Tourism litters the Mediterranean Sea with tons of plastic on a daily basis. Most of it remains in the sea forever because of slow plastic degradation.

The plastics were cut into heart shaped pieces and then attached to a thin shell of industrially recycled plastic. In order to form the plastic close to the vacuum cleaner the designers used hot air.

Vac from the Sea – Indian Ocean Edition

Collection site: Phi Phi Islands, Thailand Method: Coral reef diving Partner: Blue View Divers
The plastic from Thailand is collected from beaches, corals and the underwater seabed. It consists largely of fishing gear such as nets and plastic ropes. The divers had to cut the nets and plastic bags loose from the staghorn coral reef. There were also large chunks of styrofoam drifting in the waters and large amounts of household garbage, plastic bags, buckets, drink bottles and detergent containers.

The collected plastics were split in a shredder into thin strips. The white and colored plastic strips were then mounted in a pattern that covers the entire top and the hub caps on the vacuum cleaner.

Vac from the Sea – Baltic Edition

Collection site: Sandhamn, Sweden. Gdansk, Poland. Ragaciems, Klapkalnciems, Latvia Method: Coastal cleanups with locals. Partners: Islanders, Sandhamn, Sweden. The Hel Marine Station, Poland. Pedas, Latvia.

For the Baltic Sea Edition concept vacuum cleaner, plastic was collected from three different sites in Poland, Sweden and Latvia. In Sweden, special Vac from the Sea-envelopes were distributed to people in the small harbor of Sandhamn in the Stockholm archipelago. The envelopes were filled with litter and sent to Electrolux.

In Poland, the collection was organized in cooperation with the Hel Marine Station, a field station part of the Institute of Oceanography at the University of Gdańsk. Beach cleaning is part of its educational program and a group of school children from a Słupsk elementary school helped to collect plastic on the Hel peninsula beaches.

In Latvia, there was an organized beach cleanup at Ragaciems, Klapkalnciems, about 40 kilometers west of Riga, with NGO Pedas.

The plastic litter from the three countries covers the vacuum cleaner. Different objects range from ice cream packaging to plastic bottles to flipflops to numerous bottle caps and beach toys. The found objects were mounted on a hood made of industrially recycled plastic and then heated up with hot air – to follow the sleek contour of the Ultra One machine.

Source: http://www.underwatertimes.com/news.php?article_id=02108713465


About Oceanic Defense
We are an international non-profit organization with members in over 60 countries, spanning 6 continents with 1 mission; healthy aquatic ecosystems free from human abuse and neglect. Oceanic Defense teaches people to protect our oceans by acting responsibly as consumers and by making smart decisions in our daily lives. Whether we are buying groceries, commuting to work, planning a vacation or advocating within our own communities; each action we take or decision we make either helps or hurts our oceans. We empower people to be part of the solution rather than part of the problem and work together to protect our blue planet.

Join us on Facebook:www.facebook.com/OceanicDefense
Visit our official website:www.oceanicdefense.org
Follow us on Twitter:www.twitter.com/OceanicDefense

4.21.2010

Your Trash Found in Dead Gray Whale


OLYMPIA, Wash. —

A gray whale that died after stranding on a West Seattle beach had a large amount of trash in its stomach, ranging from a pair of sweat pants to a golf ball, said biologists who examined the animal.

Scientists with the Cascadia Research Collective said Monday that the examination did not immediately determine why the 37-foot near-adult male died, but it was found to be in better nutritional condition than some other gray whales that have died recently. Starvation was not considered a major contributor to its death.

In a news release, the research organization said the animal found on the beach Thursday had more than 50 gallons of material in its stomach. Most was algae - typical of the bottom-feeding whales - but "a surprising amount of human debris" also was found.

Besides the pants and golf ball, the trash included more than 20 plastic bags, small towels, surgical gloves, plastic pieces and duct tape.

The debris made up only 1 percent to 2 percent of the stomach contents and there was no clear indication it caused the whale's death. But Cascadia said the junk showed the whale had tried to feed in industrial waters.

Gray whales feed by sucking in sediment in shallow waters and filtering out small organisms that live there.

Cascadia said the whale had cuts on the head, possibly from a boat propeller, but they did not appear fresh or deep enough to have contributed to its death. A large number of samples were taken and will be analyzed, but results will not be known for weeks or months, the organization said.

So far this year, five gray whales have died in Washington waters, four of them in Puget Sound in the last two weeks. That number is far below the 50 that died in Washington waters in 1999 and 2000, The Olympian newspaper reported.

"I'd say we are concerned but not alarmed yet," Cascade Research biologist John Calambokidis told the newspaper.

Three of the four whales to die in April appeared emaciated and all four apparently were stragglers from the nearly 20,000 gray whales that typically migrate north each spring from breeding grounds in Mexico to feeding grounds in Alaska. Whales that didn't get enough to eat in Alaska last year may now be running low on reserves, researchers told The Olympian.

State Department of Fish and Wildlife biologists also participated in the examination. Moving the animal to the remote examination site was coordinated by NOAA Fisheries with the help of Highline Community College, which hopes to preserve the whale's skeleton.

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Information from: The Olympian, http://www.theolympian.com

Source: http://seattletimes.nwsource.com/html/localnews/2011649627_apwastrandedwhale1stldwritethru.html



About Oceanic Defense
We are an international non-profit organization with members in over 60 countries, spanning 6 continents with 1 mission; healthy aquatic ecosystems free from human abuse and neglect. Oceanic Defense teaches people to protect our oceans by acting responsibly as consumers and by making smart decisions in our daily lives. Whether we are buying groceries, commuting to work, planning a vacation or advocating within our own communities; each action we take or decision we make either helps or hurts our oceans. We empower people to be part of the solution rather than part of the problem and work together to protect our blue planet.

Join us on Facebook:
www.facebook.com/OceanicDefense
Visit our official website:
www.oceanicdefense.org
Follow us on Twitter:
www.twitter.com/OceanicDefense

8.06.2009

3 Simple and Easy Things You Can Do to Save the Ocean


People are often shocked when they find out about the health of our ocean. Whether it's The Great Pacific Garbage Patch, dead zones in the Gulf of Mexico or the depletion of fish stocks, there is one common thread throughout; you and I, the consumer.

We are a convenience based society but it is these very conveniences that is making our ocean sick. And with every takeout container, water bottle, shopping bag we use, we strip yet another layer of health away from a very fragile system in danger of collapse. Like a patient on life support who needs constant care our ocean need a major transfusion of common sense to come out of this plastic coma.

So today, we vow to change our ways, to think before we buy and to consciously make decisions for the betterment of not only our ocean but the environment as a whole and ultimately ourselves.

Three simple & easy things YOU can do starting today:

  1. STOP using one use plastic grocery bags - buy reusable canvas bags, keep them in your car and use them. Did you know that each year we use 500 billion plastic bags world wide and that each bag takes upwards of 1000 years to biodegrade in landfills?

  2. STOP buying bottled water - buy a reusable water container* (you'll save money!), there are many on the market. Plastic water bottles take over 700 years to biodegrade. 8/10 bottles in the USA end up in landfills - Yes ONLY 20% of people recycle their bottles!

  3. START Recycling - If you do not currently recycle start today! Plastic, cans, bottles and cardboard do not belong in landfills. Try it with your family, make a game of it; put aside these items and at the end of the week see how much your trash is decreased. Besides, you are throwing money away! You can get refunds for most of what you are currently throwing out*.
Over the coming weeks Oceanic Defense will put together a step-by-step guide for consumers. It will feature different ways you can protect the ocean based on your own conservation levels.

* Did you know that if you stopped buying bottled water and started recycling you could have enough money saved at the end of the year to go away on a vacation?

7.13.2009

Millions Of Pounds Of Trash Found On Ocean Beaches



Trash on a beach. Trash in the ocean kills more than one million seabirds and 100,000 marine mammals and turtles each year through ingestion and entanglement. (Credit: NOAA)

ScienceDaily — Ocean Conservancy released its annual report on trash in the ocean with new data from the 2007 International Coastal Cleanup the most comprehensive snapshot of the harmful impacts of marine debris. The mission of Ocean Conservancy’s International Coastal Cleanup is to engage people to remove trash from the world’s beaches and waterways, to identify the sources of debris and to change the behaviors that cause pollution.

This year, more than 378,000 volunteers participated in cleanups around every major body of water around the globe. Volunteers record the trash found on land and underwater allowing Ocean Conservancy a global snapshot of the problem.

"Our ocean is sick," says Laura Capps, Senior Vice President at Ocean Conservancy. "And the plain truth is that our ocean ecosystem cannot protect us unless it is healthy and resilient. Harmful impacts like trash in the ocean, pollution, climate change, and habitat destruction are taking its toll. But the good news is that hundreds of thousands of people from around the world are starting a sea change by joining together to clean up the ocean. Trash doesn’t’ fall from the sky it falls from people’s hands. With the International Coastal Cleanup, everyone has an opportunity to make a difference, not just on one day but all year long."

Trash in the ocean kills more than one million seabirds and 100,000 marine mammals and turtles each year through ingestion and entanglement. This year, 81 birds, 63 fish, 49 invertebrates, 30 mammals 11 reptiles and one amphibian were found entangled in debris by volunteers. Some of the debris they were entangled or had ingested include plastic bags, fishing line, fishing nets, six-pack holders, string from a balloon or kite, glass bottles and cans.

Entanglement in Ocean Trash

  • Wraps around flippers causing circulation loss and amputations
  • Creates wounds and cuts leading to bacterial infections
  • Slows animals ability to swim making them more vulnerable to predators
  • Smothers or traps animals, causing them to drown
  • Causes starvation as animals can no-longer eat or feed its young

Ingestion of Ocean Trash

  • Leads to starvation by blocking digestive tracks
  • Provides false sense of being full once swallowed, which leads to starvation
  • Ingests sharp objects like metal or glass that perforate the stomach, causing internal bleeding
  • Becomes lodged in animals windpipes, cutting off airflow and causing suffocation

How Long Does It Take for Trash in the Ocean to Decompose?

  • A tin can that entered the ocean in 1986 is still decomposing in 2036
  • A plastic bottle that entered the ocean in 1986 is decomposing in 2436
  • A glass bottle that entered the ocean in 1986 is decomposing in year 1,001,986

Prevention is the real solution to trash in the ocean. The International Coastal Cleanup volunteers make ocean conservation an everyday priority. Since 1986, more than six million volunteers have removed 116,000,000 pounds of debris across 211,460 miles of shoreline in 127 nations. The 23rd annual Flagship International Coastal Cleanup will be held Sept. 20, 2008.