Apologies if this has already been discussed, but thought some quotes 
in here were pretty precious. Article written in a curious mixture of 
tenses.  Anyone go to this?

"The bigger the scale of the approach, the riskier it is for the 
environment," [=small scale solutions to a big scale problem are less 
risky?]

"Any large-scale fertilization could cause risks to ocean ecosystems 
as great as those of global warming itself," [On the other hand 
ignoring 70% of the earth's surface and the largest CO2 controller on 
the planet doesn't make a lot of sense either in solving a global CO2 
problem.  Where's the proof  that land based ideas are going to solve 
the problem?]

"Playing with the Earth's climate is a dangerous game with unclear 
rules.....We need more direct ways to tackle global warming, 
including energy efficiency, reduced consumption, and investment in 
renewable energy sources."  [And what happens if those aren't enough 
and/or don't happen fast enough -  isn't that also "a dangerous 
game"?   How does carefully considering other options like 
geoengineering increase global risk?  If at the end of the day 
research proves that no geoengineering options are worth it, then 
fine, please don't use them. Until then, since nothing else seems to 
be working, how about soliciting and actively investigating other 
ideas like geo? ]

-Greg



http://www.firstscience.com/home/news/breaking-news-all-topics/symposium-to-discuss-geoengineering-to-fight-climate-change-at-the-esa-annual-meeting_68460.html

Symposium to discuss geoengineering to fight climate change at the 
ESA Annual Meeting
- 6 Aug 2009
By Ecological Society of America   
Symposium to discuss geoengineering to fight climate change at the 
ESA Annual Meeting
Ecologists call techniques a risky strategy at large scales
Geoengineering techniques aim to slow global warming through the use 
of human-made changes to the Earth's land, seas or atmosphere. But 
new research shows that the use of geoengineering to do environmental 
good may cause other environmental harm. In a symposium at the 
Ecological Society of America's Annual Meeting, ecologists discuss 
the viability of geoengineering, concluding that it is potentially 
dangerous at the global scale, where the risks outweigh the benefits.
"The bigger the scale of the approach, the riskier it is for the 
environment," says session organizer Robert Jackson , director of 
Duke University's Center on Global Change. Global alterations of 
Earth's natural cycles have too many uncertainties to be viable with 
our current level of understanding, he says.
One global-scale geoengineering method, termed atmospheric seeding, 
would cool the climate by releasing light-colored sulfur particles or 
other aerosols into the atmosphere to reflect the sun's rays back 
into space. This approach mimics what happens naturally when 
volcanoes erupt; in 1991, for instance, an eruption of Mount Pinatubo 
in the Philippines cooled the Earth by 0.9 degrees Fahrenheit.
But Simone Tilmes of the National Center for Atmospheric Research 
argues that despite its potential to create overall cooling, 
atmospheric seeding could cause significant changes in localized 
temperature and precipitation. Her simulations also predict that 
sulfur seeding could destroy atmospheric ozone, leading to increased 
ultraviolet radiation reaching the Earth's surface.
"An increase in ozone depletion over the Arctic could lead to 
dangerous levels of ultraviolet light hitting the Earth's surface," 
she says. "In this case, the recovery of the ozone hole over the 
Antarctic could be delayed by decades."
Another large-scale geoengineering scheme is fertilizing the oceans 
with iron to increase carbon uptake from the atmosphere. Charles 
Miller of Oregon State University says that ocean fertilization could 
create a rise in iron-limited phytoplankton populations, which by 
dying and sinking would use enough oxygen to create extensive dead 
zones in the oceans. In addition, he says, the maximum possible rate 
of ocean iron fertilization could only offset a small fraction of the 
current rate of carbon burning by humans.
Ocean fertilization also does not alleviate the increasing problem of 
ocean acidification, caused by carbon dioxide from the increasingly 
carbon-rich atmosphere dissolving into seawater. In fact, Miller 
says, ocean fertilization schemes will likely exacerbate this problem.
"Any large-scale fertilization could cause risks to ocean ecosystems 
as great as those of global warming itself," he says.
Despite its apparent hazards at the global scale, Jackson thinks that 
research should continue on safer ways to use geoengineering at a 
smaller scale. Geologic sequestration, sometimes known as CO2 capture 
and storage, takes CO2 out of the atmosphere and stores it in 
underground reservoirs. Jackson says that this solution has the 
potential to store more than a century's worth of electric power 
emissions at a relatively low cost. He notes, however, that some 
potential risks of geologic sequestration include carbon leakage and 
the potential for interactions with groundwater.
But on the planetary scale, most ecologists are skeptical of climate 
engineering.
"Playing with the Earth's climate is a dangerous game with unclear 
rules," says Jackson. "We need more direct ways to tackle global 
warming, including energy efficiency, reduced consumption, and 
investment in renewable energy sources."
###
Clifford Duke, Director of Science Programs at the Ecological Society 
of America, is co-organizer of the symposium. Additional speakers 
include David Keith from the University of Calgary and Phillip Duffy 
from Climate Central, Inc.
The researchers will present their results in:
Symposium 21 - The Environmental Effects of Geoengineering
Thursday, August 6, 2009, 1:30 PM-5:00 PM
Pecos room, Albuquerque Convention Center
For more information about this session and other ESA Annual Meeting 
activities, visit http://www.esa.org/albuquerque. The theme of the 
meeting is "Ecological Knowledge and a Global Sustainable Society." 
More than 3,500 scientists are expected to attend.
The Ecological Society of America is the world's largest professional 
organization of ecologists, representing 10,000 scientists in the 
United States and around the globe. Since its founding in 1915, ESA 
has promoted the responsible application of ecological principles to 
the solution of environmental problems through ESA reports, journals, 
research, and expert testimony to Congress. ESA publishes four 
journals and convenes an annual scientific conference. Visit the ESA 
website at http://www.esa.org.
Subscribe to ESA press releases by contacting Christine Buckley.
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