Very insightful and this is all very interesting; but there are a few minor 
issues;  who is WE, who decides and approves, and where does the funding to do 
these necessary things come from? -gene

 

From: Mike MacCracken [mailto:[email protected]] 
Sent: Saturday, November 14, 2009 1:01 PM
To: Andrew Lockley; [email protected]
Cc: Geoengineering
Subject: Re: [geo] Re: [clim] On the difficulty of cutting emissions (ERL 
thread plus Ken's bet)

 

On methane limitation, remember that human sources have elevated the methane 
concentration to near 1800 ppb from its preindustrial value of about 1000 ppb 
less, so there is potentially a lot that can be done to bring the elevated 
methane concentration back down, and it would have a very large climatic 
influence. As far as human sources, in the US the EPA inventory gives, as I 
recall, roughly the following source categories:

1.      About 25-30% from fossil fuels—and if we are going to phase these out, 
we should be able to get this down a good deal; 
2.      Another 25-30% from landfills and sewage treatment, etc.--and we know 
how  to reduce these emissions 
3.      Something like 30-35% from agriculture—and these can be partly 
controlled. In fact there are already efforts underway to suck in and separate 
the methane out in cattle feeding lots in California (and this can be done in 
barns as well) and use the methane for power (right now through combustion 
engines that emit NOx which troubles air pollution district officials) but 
perhaps soon into fuel cells. 


Other nations have different mixes, but also a lot of opportunities to reduce 
methane and we should do all that we can—and whatever we can do will help keep 
temperatures down so help to slow the increase in emissions from thawing 
permafrost.

Related to this, we also need to aggressively reduce emissions of black carbon 
and precursors to tropospheric ozone because those as well will bring down 
atmospheric concentrations forcing noticeably and quickly. In fact, the 21st 
century emissions of CO2 provide only about half of the 21st century warming 
influence of the emissions of all GHGs (i.e., methane and tropospheric ozone 
are the other most critical ones—then halocarbons and N2O), so we simply must 
go after all GHGs aggressively.

Limiting Arctic warming would help keep natural emissions from going up, but 
with humans causing an increase of about 1000 ppb, there is plenty of potential 
to do better.

Mike


On 11/14/09 9:33 AM, "Andrew Lockley" <[email protected]> wrote:

David,

I have to take issue with your comments. The most worrying sources of methane 
are distributed, natural sources, such as permafrost and clathrates. These 
cannot be effectively controlled at present, and their role in AGW is likely to 
increase as feedback effects kick in.

Whilst recovering and remediating methane from sources such as landfill, etc, 
is perfectly sensible, it can't hope to solve the problem of methane in the 
long run. We need to address the presence of methane in the atmosphere, the 
sources which create it and the potential failure of hydroxyl 'cleaning' 
mechanisms - all at the same time. Complacency on methane could be our undoing. 
I compare the situation to fighting off a dog whilst ignoring a charging lion 
running straight for us.

A

2009/11/2 David Schnare <[email protected]>

Actually, it looks to me like it would be far more cost-effective to reduce 
methane first. It not only is a more potent greenhouse gas, but it has 
significant energy potential that can help pay for emissions reductions. Why 
not start there, even world wide, to include developing countries. About the 
only sources that cannot be captured and reused are from cows and the like and 
rice crops.

David Schnare

On Mon, Nov 2, 2009 at 10:27 AM, David Keith <[email protected]> wrote:

It's not so blindingly obvious to me. Pretending that we can't cut emissions is 
a way to hide from the moral implications of the choice we have made to ignore 
the welfare of our grandchildren and keep pumping CO2 into the air.



I agree with Alan Robock (among others) that we could begin making substantial 
reductions in CO2 emissions with existing technology today.



Electricity is the easiest place to start, it's 40% of global emissions and you 
can mix and match solutions in a way you cannot with transportation where we 
probably have to make a single choice about fuel substitution. Large-scale wind 
power + gas backup, nuclear power, coal with CO2 capture, and (in the right 
locations) central-station solar thermal could all be built today at costs that 
we in the rich world could easily afford. (see enclosed).



Here's a blunt way to say it: there are at credible estimates (New England 
Journal of Medicine) that more than 300 $bn/yr are wasted in transaction costs 
in the US healthcare system. If you gave me that much money, and if I was free 
to avoid political correctness (no solar PV on roofs), I think it's reasonable 
that one could completely decarbonized the US electric power system in a few 
decades.



I am still optimistic that we will see real commitment to emissions cuts in the 
rich world, and soon. I may be wrong, but in any case I don't claim any special 
ability to judge political outcomes.



It is very destructive when people from the technical community confuse 
technical facts with judgments about values and politics. 



When someone like Peter Read (see below) says “there is no way increasing CO2 
emissions can be significantly slowed any time soon” I think he really means is 
that his political judgment is that the commitment to doing so will not be made.



However when people and the political community hear technical people say can't 
be done they assume we mean that technically can't be done and that is untrue 
and destructive.



It's destructive because it hides the central moral choice: we could cut 
emissions if we want to, we could have started decades ago when the scientific 
warnings about climate change were first raised, but we decided not to. It was 
a choice, implicit or not. A choice that, in effect, we cared more about 
current consumption than we did about preserving our grandchildren's chances to 
enjoy a climate like the one in which our civilization developed.



I think we need to develop the capability to geoengineer to manage the risk of 
dangerous climate change posed by CO2 already in the air. That risk grows with 
every added kilogram of carbon, and it cannot be eliminated by emissions cuts 
even if we cut emissions to zero today.



-David





  _____  

From: Peter Read [mailto:[email protected]] On Behalf Of Peter Read
Sent: November 1, 2009 3:23 PM
To: [email protected]; John Nissen; David Keith
Cc: Climate Intervention; Geoengineering; Ken Caldeira; Julian Norman
Subject: Re: [geo] Re: ERL papers on line


There's no way that increasing CO2 emissions can be significantly slowed any 
time soon. There's 5 billion people out there that want the lifestyle they see2 
billion Westerners enjoying on TV

So the answer has to be to get 10 GtC / yr out of the atmosphere, and a bit 
more so as to bring the level down. 

Do that and you can progressively replace the current flow of fossil fuel with 
a flow of biofuel.

A welcome prospect to those who worry about 'peak oil'.

It doesn't need rocket science, just sensible policy and a bit of organization.

It's all so blindingly obvious

Peter


----- Original Message ----- 

From: Mike MacCracken <mailto:[email protected]>  

To: John Nissen <mailto:[email protected]>  ; David Keith 
<mailto:[email protected]>  

Cc: Climate Intervention <mailto:[email protected]>  ; 
Geoengineering <mailto:[email protected]>  ; Ken Caldeira 
<mailto:[email protected]>  ; Julian Norman <mailto:[email protected]> 
 

Sent: Monday, November 02, 2009 9:50 AM

Subject: [geo] Re: ERL papers on line


Dear John—A couple of comments:

1.      Indeed, keeping the Arctic cold and keeping summer sea ice go hand in 
hand. So, yes, I certainly want to keep summer sea ice around (what would 
actually be helpful is to have thin sea ice in the winter so the heat held by 
the ocean could be conducted through the sea ice and radiated to space, making 
the ice thicker). 
2.      On the issue of the paper just dealing with solar radiation management, 
my talk in Copenhagen in March 2009 and the World Bank report that I prepared 
on geoengineering for the World Sustainability Report I had a fourth category 
devoted to reducing CO2, which I agree is also essential. This was not covered 
in the paper as the paper was long enough as it was and I am not as 
knowledgeable on that area, but I certainly agree we want to keep CO2 down. As 
long as global fossil fuel emissions are heading upward toward 10 GtC/yr and 
then higher, however, it is hard to see how pulling CO2 from the atmosphere is 
going to have enough of an effect to make a significant difference-we have to 
get emissions down to deal with CO2 related issues such as acidification, and 
keeping sea ice from melting is going to take geoengineering, at the pace we 
are going (the only other alternative is really cutting the non-CO2 GHG 
emissions and soot to zero quickly as their radiative forcing can go down 
faster than the rise in forcing due to rising CO2, at least for a short time. 
You can see my thoughts on dealing with short-lived GHGs at 
http://www.climate.org/PDF/MacCracken_Erice.pdf 


Mike


On 11/1/09 1:53 PM, "John Nissen" <[email protected] 
<http://[email protected]> > wrote:

Thanks for the reference to the Environmental Research Letters, David.

Only Mike MacCracken's paper considers the context for geoengineering. If we 
are going to have to use geoengineering to tackle certain problems, how should 
we approach it. He considers three problem areas:
1) the warming of low-latitude oceans which contribute to more intense tropical 
cyclones and coral bleaching;
2) the amplified warming of high latitudes and the associated melting of ice 
that has been accelerating sea level rise and altering mid-latitude weather;
3) the projected reduction in the loading and cooling influence of sulphate 
aerosols, which has the potential to augment warming sufficient to trigger 
methane and carbon feedbacks. 

I would suggest that the amplified warming of (2) has the potential to trigger 
massive methane discharge (and associated positive feedback on global warming) 
of (3) as well as the potential to trigger rapid sea level rise. The retreat of 
Arctic sea ice is part of the warming amplification process, so it is crucial 
to prevent its summer disappearance. Do you agree, Mike?

If you agree, then the importance of this (i.e. preventing Arctic sea ice 
summer disappearance) makes the arguments against geoengineering in the other 
papers seem rather irrelevant!

Note that Mike has only considered the problems that could be addressed with 
SRM geoengineering. If we consider problems such as ocean acidification, and 
addressing them with techniques such biochar, then the arguments in the other 
papers against geoengineering seem irrelevant to the point of absurdity - but 
then perhaps the arguments were directed at SRM geoengineering alone.

Cheers from Chiswick,

John

---

David Keith wrote: 



Folks,



There is a set of papers on geoengineering on line at Environmental Research 
Letters. Ken Caldeira and I served as editors of this special issue. More 
papers and a editorial will be added later.



Cheers,

David





http://www.iop.org/EJ/abstract/1748-9326/4/4/045101



Focus on Climate Engineering: Intentional Intervention in the Climate System

2009 Environ. Res. Lett. 4 045101 doi: 10.1088/1748-9326/4/4/045101 
<http://dx.doi.org/10.1088/1748-9326/4/4/045101> 
<http://www.iop.org/EJ/help/-topic=abstract/abstract/1748-9326/4/4/045101> 


Geoengineering techniques for countering climate change have been receiving 
much press recently as a `Plan B' if a global deal to tackle climate change is 
not agreed at the COP15 negotiations in Copenhagen this December. However, the 
field is controversial as the methods may have unforeseen consequences, 
potentially making temperatures rise in some regions or reducing rainfall, and 
many aspects remain under-researched.


This focus issue of Environmental Research Letters is a collection of research 
articles, invited by David Keith, University of Calgary, and Ken Caldeira, 
Carnegie Institution, that present and evaluate different methods for 
engineering the Earth's climate. Not only do the letters in this issue 
highlight various methods of climate engineering but they also detail the 
arguments for and against climate engineering as a concept.


Further reading
Focus on Geoengineering at 
http://environmentalresearchweb.org/cws/subject/tag=geoengineering
IOP Conference Series: Earth and Environmental Science is an open-access 
proceedings service available at www.iop.org/EJ/journal/ees 
<http://www.iop.org/EJ/journal/ees>  <http://www.iop.org/EJ/journal/ees> 


Focus on Climate Engineering: Intentional Intervention in the Climate System 
Contents


Modification of cirrus clouds to reduce global warming 
<http://www.iop.org/EJ/abstract/1748-9326/4/4/045102> 
David L Mitchell and William Finnegan


Climate engineering and the risk of rapid climate change 
<http://www.iop.org/EJ/abstract/1748-9326/4/4/045103> 
Andrew Ross and H Damon Matthews


Researching geoengineering: should not or could not? 
<http://www.iop.org/EJ/abstract/1748-9326/4/4/045104> 
Martin Bunzl


Of mongooses and mitigation: ecological analogues to geoengineering 
<http://www.iop.org/EJ/abstract/1748-9326/4/4/045105> 
H Damon Matthews and Sarah E Turner


Toward ethical norms and institutions for climate engineering research 
<http://www.iop.org/EJ/abstract/1748-9326/4/4/045106> 
David R Morrow, Robert E Kopp and Michael Oppenheimer


On the possible use of geoengineering to moderate specific climate change 
impacts <http://www.iop.org/EJ/abstract/1748-9326/4/4/045107> 
Michael C MacCracken








  _____  


No virus found in this incoming message.
Checked by AVG - www.avg.com <http://www.avg.com/>  
Version: 8.5.423 / Virus Database: 270.14.43/2474 - Release Date: 11/01/09 
07:38:00

--~--~---------~--~----~------------~-------~--~----~
You received this message because you are subscribed to the Google Groups 
"geoengineering" group. 
 To post to this group, send email to [email protected] 
 To unsubscribe from this group, send email to 
[email protected] 
<mailto:geoengineering%[email protected]>  
 For more options, visit this group at 
http://groups.google.com/group/geoengineering?hl=en
-~----------~----~----~----~------~----~------~--~---



--
You received this message because you are subscribed to the Google Groups 
"geoengineering" group.
To post to this group, send email to [email protected].
To unsubscribe from this group, send email to 
[email protected].
For more options, visit this group at 
http://groups.google.com/group/geoengineering?hl=.

--

You received this message because you are subscribed to the Google Groups 
"geoengineering" group.
To post to this group, send email to [email protected].
To unsubscribe from this group, send email to 
[email protected].
For more options, visit this group at 
http://groups.google.com/group/geoengineering?hl=.

--

You received this message because you are subscribed to the Google Groups 
"geoengineering" group.
To post to this group, send email to [email protected].
To unsubscribe from this group, send email to 
[email protected].
For more options, visit this group at 
http://groups.google.com/group/geoengineering?hl=.


<<image001.gif>>

Reply via email to