Mostrando entradas con la etiqueta Massachusetts. Mostrar todas las entradas
Mostrando entradas con la etiqueta Massachusetts. Mostrar todas las entradas

domingo, 17 de mayo de 2015

nsf.gov - National Science Foundation - As Massachusetts ecosystems shrink, hard-working "hotspots" emerge.- Como los ecosistemas en Massachusetts encogen, "puntos calientes" ha costado trabajo emergen

Hola amigos: A VUELO DE UN QUINDE EL BLOG., hemos recibido información de la Fundación Nacional de Ciencia de Los Estados Unidos, sobre la investigación de los ecosistemas en el estado de Massachusetts, se comprueba que todas las tierras que no son iguales. Algunos ecosistemas hacen triple deber de los beneficios que aportan la sociedad. Bosques de Massachusetts, por ejemplo, filtrar el agua potable pública, son el hábitat de especies amenazadas y almacenar carbono para combatir el cambio climático..........
 
More information....
Researchers call hotspots valuable, but say their growing numbers might be cause for concern
forest
Ecosystem "hotspots" provide many benefits to society, including recreation and drinking water.
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May 14, 2015
The following is part 18 in a series on the National Science Foundation's Long-Term Ecological Research (LTER) Network. Visit parts one,two, three, four, five, six, seven, eight, nine, 10, 11, 12,13, 14, 15, 16 and 17.
All land is not created equal. Some ecosystems do triple-duty in the benefits they provide society.
Massachusetts forests, for example, filter public drinking water, provide habitat for threatened species and store carbon to combat climate change.
 
Hotspots: hardest-working ecosystems
 
Ecologists single out the hardest-working ecosystems--called "hotspots"--for their exceptional value.
Results of a study published this week in the Journal of Applied Ecology show that the number of hotspots has increased in Massachusetts over the past decade, with more and more popping up in metro Boston.
But, the authors of the paper say, more hotspots may not be a good thing.
Jonathan Thompson, an ecologist at the National Science Foundation's (NSF) Harvard Forest Long-Term Ecological Research (LTER) site and co-author of the paper, says that the increasing number of hotspots signals a degradation of other ecosystems across the state.
"Over the past 10 years, urban development has increased by more than 6 percent, at the expense of forests and agricultural lands," Thompson says.
"When we lose intact forests, we lose stable flows of clean water, climate regulation, recreational opportunities and wildlife habitat. The remaining forest is left to pick up the slack."
The result is more hotspots that do the work of larger forests.
 
Emerging ecosystems
 
Meghan Blumstein of Harvard University, lead author of the paper, notes that hotspots are valuable and worth saving.
But, she adds, "an increase in their number reflects an ongoing division of the natural landscape into smaller units, which are expected to produce the same number of services with less."
Saran Twombly, lead program director for the NSF LTER program--which funded the research through NSF's Division of Environmental Biology--says that the study takes a broad view to show that exploitation of land affects a wide range of services we expect the natural environment to provide.
"Humans have used the land for millennia to satisfy particular needs," Twombly says.
 
Satellite mapping
 
Using satellite maps, the team tracked changes in land cover, such as forest clearing for agriculture or development, across Massachusetts from 2001 to 2011.
In each 30-meter square on the map grid (about the size of two basketball courts), the scientists used computer models to assess which benefits each ecosystem could provide and how those benefits changed over time.
The researchers found that some benefits, such as providing habitats for wildlife, declined state-wide over the study period.
But other benefits, including carbon sequestration and outdoor recreation, increased. Intact forests are growing rapidly and more land is being conserved.
 
Study scale important
 
For some benefits, the scale of the analysis made a big difference, Blumstein says.
When analyzed at a local scale, an area of forest in the state's Quabbin Reservoir may look less like a hotspot than it does a local park.
But when examined at a regional scale, the continuous forest area around the Quabbin Reservoir provides clean drinking water for millions of Massachusetts residents.
"The sustained delivery of benefits from nature requires an approach that considers conservation at multiple scales," Blumstein says.
In other words, the researchers say, we need to be able to see the forest, not just the trees.
-- Cheryl Dybas, NSF (703) 292-7734 cdybas@nsf.gov
-- Clarisse Hart, NSF Harvard Forest LTER Site (986) 756-6157 hart3@fas.harvard.edu
Investigators David Foster
Related Institutions/Organizations Harvard University
Total Grants $2,940,003
Related WebsitesNSF Long-Term Ecological Research Network:
 http://www.lternet.edu/
NSF Harvard Forest LTER Site:
 http://harvardforest.fas.harvard.edu/research/LTER
Discoveries in Long-Term Ecological Research:
Forests around Quabbin Reservoir in Massachusetts
Forests around Quabbin Reservoir in Massachusetts provide drinking water for metro Boston.
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a moose behind trees
Large, intact blocks of forest offer good habitat for moose and other species.
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leaves on a tree
Ecosystem services recently increased in some areas due to the rapid growth of intact forests.
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Development in Massachusetts surrounded by forest
Development in Massachusetts increased by more than 6 percent from 2001 to 2011.
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houses and roads surrounded by forest
Landscapes perforated by development are less able to provide benefits to society.
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The National Science Foundation (NSF)
Guillermo Gonzalo Sánchez Achutegui
ayabaca@gmail.com
ayabaca@Hotmail.com
ayabaca@yahoo.com
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viernes, 6 de diciembre de 2013

nsf.gov - National Science Foundation - Wetlands' ability to overcome sea level rise threatened

When do wetlands reach their limit, and how are we lowering that point?
a tidal marsh in Chesapeake Bay
On this tidal marsh in Chesapeake Bay, wetlands and people have co-existed for millennia.
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December 4, 2013
Left to themselves, coastal wetlands can resist rapid sea level rise.
But humans could be sabotaging some of wetlands' best defenses, according to results published in this week's issue of the journal Nature.
Thanks to an intricate system of feedbacks, wetlands are remarkably good at building up soils to outpace sea level rise. The questions are: When do they reach their limit, and how have we lowered that point?
Without human-caused climate change, "we wouldn't be worried about wetlands surviving the rates of sea level rise we're seeing today," says lead paper author Matthew Kirwan of the Virginia Institute of Marine Science and the National Science Foundation (NSF) Virginia Coast Reserve Long-Term Ecological Research (LTER) site.
Virginia Coast Reserve is one of 26 such NSF LTER sites around the globe in ecosystems from deserts to mountains and marshes to grasslands.
In an unchanged world, "wetlands would build vertically at faster rates," says Kirwan, "or move inland to higher elevations."
The paper's co-author is Patrick Megonigal of the Smithsonian Environmental Research Center.
A wetland is land that's saturated with water, whether permanently or seasonally. The water found in wetlands can be saltwater, freshwater or brackish water. Main wetland types include swamps, marshes, bogs and fens.
Wetlands have developed several ways to build elevation to keep from drowning.
Aboveground, tidal flooding provides one of the biggest assists. When marshes flood during high tides, sediment settles out of the water, adding new soil. As sea level rises and flooding occurs more often, marshes react by building soil faster.
Belowground, the growth and decay of plant roots add organic matter.
Even erosion can work in wetlands' favor, as sediment lost at one marsh may be deposited in another. While a particular wetland may lose ground, the total wetland area may remain unchanged.
But, if a wetland becomes so submerged that its vegetation dies off, these "positive feedback loops" are lost. Similarly, if sediment delivery to a wetland is cut off, that wetland can no longer build soil to outpace rising seas.
"This study reveals the complex, long-term interplay among processes that maintain coastal wetlands in the face of sea level rise," says Saran Twombly, program director in NSF's Division of Environmental Biology, which funds the NSF Virginia Coast Reserve LTER site.
"Humans are newcomers to this delicate balance. The future of a habitat so essential to human well-being depends on how severely we alter it."
For example, groundwater withdrawal and artificial drainage can cause the land to sink, as is happening in Chesapeake Bay.
Because of this subsidence, eight of the world's 20 largest coastal cities have relative sea level rise greater than climate change projections.
Dams and reservoirs also prevent 20 percent of the global sediment load from reaching the coast.
Marshes on the Yangtze River Delta, for example, have survived a relative sea level rise of more than 50 millimeters per year since the 7th century--until the recent building of more than 50,000 dams cut off the supply of sediment and accelerated erosion.
"Tidal marshes are amazing ecosystem engineers that can raise themselves upward if they remain healthy, especially if there is sediment in the water," says Megonigal.
"We know there are limits, however. Those limits are changing as people alter the environment."
-NSF-
Media Contacts Cheryl Dybas, NSF (703) 292-7734 cdybas@nsf.gov
Dave Malmquist, Virginia Institute of Marine Science (804) 684-7011 davem@vims.edu
Kristen Minogue, Smithsonian Environmental Research Center (443) 482-2325 minoguek@si.edu
Related WebsitesNSF Long-Term Ecological Research Network:
 http://www.lternet.edu
NSF Virginia Coast Reserve LTER Site:
http://www.lternet.edu/sites/vcr
NSF Publication: Discoveries in Long-Term Ecological Research:
The National Science Foundation (NSF) is an independent federal agency that supports fundamental research and education across all fields of science and engineering. In fiscal year (FY) 2012, its budget was $7.0 billion. NSF funds reach all 50 states through grants to nearly 2,000 colleges, universities and other institutions. Each year, NSF receives about 50,000 competitive requests for funding, and makes about 11,500 new funding awards. NSF also awards about $593 million in professional and service contracts yearly.
Useful NSF Web Sites:
NSF Home Page:
 http://www.nsf.gov/news/
For the News Media:
 http://www.nsf.gov/news/newsroom.jsp
Science and Engineering Statistics:
Scientist Matthew Kirwan doing research in Chesapeake Bay wetlands.
Scientist Matthew Kirwan conducts field research in Chesapeake Bay wetlands.
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Salt marsh  with a tidal creek at NSF's Plum Island Ecosystems LTER site in Massachusetts.
Salt marsh "dissected" by a tidal creek at NSF's Plum Island Ecosystems LTER site in Massachusetts.
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High-elevation marsh at the Plum Island Ecosystems LTER site.
High-elevation marsh at the Plum Island Ecosystems LTER site; flood-tolerant vegetation rules.
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A fishing camp along Falgout Canal Bayou, Louisiana, where marsh has been flooded by seawater.
A fishing camp along Falgout Canal Bayou, La., where marsh has been flooded by seawater.
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a Massachusetts marsh
Some Massachusetts marshes formed after European settlement; deforestation increased sedimentation.
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The National Science Foundation (NSF)
Guillermo Gonzalo Sánchez Achutegui

domingo, 9 de junio de 2013

NASA - Massachusetts Students Speak With Space Station Astronauts


Experiments, Spacewalk Preps and Maintenance for Crew
06.07.13
 
Luca Parmitano
Expedition 36 Flight Engineer Luca Parmitano speaks with Italian reporters during an in-flight news conference. Credit: NASA TV
The six-person Expedition 36 crew of the International Space Station worked with science experiments, prepared for an upcoming spacewalk and performed a variety of maintenance duties Friday as they wrapped up a busy work week aboard the orbiting laboratory.

Flight Engineers Karen Nyberg and Luca Parmitano participated in the Pro K experiment as nutritionists evaluate the effectiveness of dietary changes to lessen the bone loss experienced by astronauts in space.

› Read more about Pro K

Nyberg also collected samples from various physical surfaces on her body for the Microbiome experiment, stowing the samples in one of the station’s freezers for future expert analysis. The Microbiome experiment investigates the impact of space travel on both the human immune system and an individual’s microbiome (the collection of microbes that live in and on the human body at any given time).

› Read more about Microbiome

Flight Engineer Chris Cassidy conducted leak checks on the Kibo module’s Multi-Purpose Small Payload Rack Combustion Chamber. He also performed some routine maintenance on the station’s Water Recovery System, removing and replacing the recycle tank.

Later, Parmitano had some time set aside to answer questions from Italian reporters during a European Space Agency in-flight news conference.

Commander Pavel Vinogradov performed a variety of maintenance duties in the Russian segment of the station and worked with an experiment studying plasma crystal formation in microgravity.


Flight Engineer Chris Cassidy conducts leak checks on the Kibo module’s Multi-Purpose Small Payload Rack Combustion Chamber.


Flight Engineers Alexander Misurkin and Fyodor Yurchikhin gathered tools and hardware to prepare for an upcoming Russian spacewalk on June 24. During the excursion, the spacewalkers will venture out of the Pirs docking compartment to replace a fluid flow control valve panel on the Zarya module, install clamps on the Zarya module for the future installation of power cables, remove and install several sets of experiments on the hull of the Zvezda service module and collect samples and acquire imagery of the condition of the thermal insulation on the outside of the Russian segment modules.

Nyberg, Parmitano, and Yurchikhin, who arrived aboard the station on May 28, also had some time set aside for orientation and training as they continue to familiarize themselves with their new orbiting home

› Read more about the Expedition 36 launch and docking

Following its successful launch on Wednesday, the European Space Agency’s “Albert Einstein” Automated Transfer Vehicle (ATV-4) cargo ship continues its 10-day journey to the station, with the first of its engine firings to fine-tune its path scheduled on Monday. Docking to the aft port of the Zvezda service module is scheduled for June 15 at 9:46 a.m. EDT.

› Read more about the ATV-4 launch

› Read more about Expedition 36
  
 WASHINGTON -- Expedition 36 crew members Chris Cassidy, Luca Parmitano, and Karen Nyberg will speak from the International Space Station to students at Douglas Public Schools in Massachusetts at 11:35 a.m. EDT, Monday, June 10.

Students will be able to ask the astronauts questions about life, work and research aboard the orbiting laboratory. Media representatives are invited to attend and cover the 20-minute space-to-ground event, which will be broadcast on NASA Television and streamed on the agency's website.

To attend the event, journalists must contact Beverly Bachelder at 508-476-3332 or bbachelder@douglas.k12.ma.us. The Douglas Public School District is located at 21 Davis Street in Douglas, Mass.

NASA activities have been incorporated into classes at local schools in preparation for the conversation with the space station astronauts. Linking directly to the astronauts aboard the station provides students with an authentic experience of space exploration, space study, the scientific components of space travel, and possibilities of life in space.

This in-flight downlink is one in a series with educational organizations in the United States to improve science, technology, engineering and mathematics (STEM) teaching and learning. It is an integral component of NASA's Teaching From Space program, which promotes learning opportunities and builds partnerships with the education community using the unique environment of space and NASA's human spaceflight program.

For NASA TV streaming video, schedule and downlink information, visit:


For information about NASA's education programs, visit:

For information about the International Space Station, visit:

To follow Twitter updates from Expedition 36 astronauts, visit:

and


NASA
Guillermo Gonzalo Sánchez Achutegui
ayabaca@gmail.com
ayabaca@hotmail.com
ayabaca@yahoo.com
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