I totally disagree. The ten or more major eruptions that have occurred in the 
last 250 years provide masses of information on the worldwide effects of 
stratospheric aerosols. They can tell us what happens when we put far too much 
up there -Tamboro 1815, or put it too low in the atmosphere Laki 1783 and when 
we put just about the right amount well up into the stratosphere Pinatubo 1991. 
The fact that we didn't set up these experiments doesn't stop them from 
providing useful, detailed scientific data. Alan Robock, Kevin Trenbreth and 
those studying the ozone layer have spent years analysing the effects.

Among other things, this data can then be used to test and improve the computer 
models that we need to plan large scale experiments and ultimately, 
implementation. They also lead to David Keiths work on aerosols other than SO2 
(and to my SiO2 suggestion) and to Kens work on latitudinal variation to reduce 
regional effects. Hopefully the models can be improved to incorporate the 
necessarily local input of cloud brightening. This seems likely to be a vital 
tuning input to control regional effects. 

All good solid science -even if we didn't trigger the volcano.

john gorman
  ----- Original Message ----- 
  From: David Schnare 
  To: [email protected] 
  Cc: [email protected] ; geoengineering 
  Sent: Monday, September 27, 2010 7:06 PM
  Subject: Re: [geo] Can solar radiation management be tested?


  Although I generally agree with Ken in this discussion, I can't agree that 
Mt. Pinatubo provided even an imperfect empircal test.  It wasn't a test at 
all.  It was merely an imperfectly observed event.  A test, imperfect or 
otherwise, presumes a panoply of scientific steps no one took, an perhaps could 
not take in that case.  In contrast, the Icelandic eruptions are frequent 
enough that a competent scientist could develop a test protocol for the "next 
big eruption" that actually pushes sulfates high enough into the atmosphere, 
and that, while imperfect (failure to control test conditions) might rise to an 
imperfect empirical test.



   
  On Mon, Sep 27, 2010 at 1:40 PM, Ken Caldeira <[email protected]> wrote:

    1. Even if you want to say "geoengineering cannot be [empirically] tested 
without full-scale implementation" , it is false because there are many aspects 
that can be empirically tested short of full-scale implementation. Didn't Mt 
Pinatubo provide an imperfect empirical test? Wouldn't a test of a nozzle be an 
empirical test?

    2. I chose the interstate highway system because it is not encapsulated. 
The interstate highway system had all kinds of difficult to predict 
consequences for the development of suburbia, location of businesses, types of 
automobiles sold, spread of McDonalds, etc. Nevertheless, there are many 
relevant tests which could be performed (both modeling and observational) prior 
to full scale implementation that might have given some insight into these 
issues.

    It seems to me your claim still comes down to:  "The only test of a thing 
is the thing itself", which just seems wrong. This concept of "testing" is not 
consistent with how science and technology develops.

    We could not fully predict the consequences of building a system of 
electricity generation and distribution, yet there were certainly many tests 
prior to and during deployment of our electricity system. Certainly, the 
deployment of this system had far-reaching and unpredicted consequences (who 
would have predicted that that system would one day enable me to send this 
email to you). But to say, "An electricity generation and distribution system 
cannot be [empirically] tested without full-scale implementation" is just 
nonsense.

    If you want to say "X cannot be fully empirically tested without full-scale 
implementation," then I might agree to that regardless of whatever X might be, 
but then this is a statement about what it means to be "fully empirically 
tested" and not a statement about geoengineering.



    On Mon, Sep 27, 2010 at 10:19 AM, Martin Bunzl <[email protected]> wrote:

      1.      A model is not an empirical test. The claim in Science is about 
the latter not the former.

      2.      The analogy is the interstate system is not apt – these are 
examples of modular or encapsulated phenomena that can be tested in relative 
isolation, just in the way a medication can be  tested on a human subject in 
isolation from other humans. For more on this distinction and its implications 
see my article in the edition of ERL (which you co-edited): 
http://dx.doi.org/10.1088/1748-9326/4/4/045104 .

      MB



      From: [email protected] [mailto:[email protected]] On Behalf Of Ken 
Caldeira
      Sent: Monday, September 27, 2010 10:11 AM 


      To: [email protected]
      Cc: geoengineering
      Subject: Re: [geo] Can solar radiation management be tested?



      Robock et al (Science, 2010) made a categorical statement which is false: 
"geoengineering cannot be tested without full-scale implementation." 

      This statement has no more validity than "the interstate highway system 
cannot be tested without full-scale implementation".

      Full-scale implementation provides the most complete test, but it is not 
the only test. Your comments below seem to recognize not only the ability to 
test in models, but the potential of improving the reliability of these tests.



      On Mon, Sep 27, 2010 at 10:00 AM, Martin Bunzl <[email protected]> wrote:

      As you well know, the reliability of our current climate models at the 
local level needs improvement. As such any such claims should be approached 
with healthy skepticism. Point 2 below is consistent with adopting such a 
skeptical attitude. The only way to short cut the timetable on low density 
insertion would be to massively invest in improvements in the power and 
accuracy of our climate models at the local level.



      From: Ken Caldeira [mailto:[email protected]] 
      Sent: Monday, September 27, 2010 9:52 AM
      To: [email protected]
      Cc: geoengineering
      Subject: Re: [geo] Can solar radiation management be tested?



      But didn't Robock et al claim to gain knowledge about untoward local 
precip effects from tests using climate models?

      Robock, Alan, Luke Oman, and Georgiy Stenchikov, 2008:  Regional climate 
responses to geoengineering with tropical and Arctic SO2 injections.  J. 
Geophys. Res., 113, D16101, doi:10.1029/2008JD010050. 

      In the light of this, what is the meaning of phrases such as: "We argue 
that geoengineering cannot be tested without full-scale implementation." Robock 
is busy testing geoengineering in his day-to-day work.

      Obviously, testing the thing itself yields more information than testing 
something other than the thing itself, but the statement (of which you are 
co-author) is false as it stands, because there are tests that can be (and have 
been) performed without full-scale implementation.



      On Mon, Sep 27, 2010 at 9:15 AM, Martin Bunzl <[email protected]> wrote:

      1.      Almost nobody disputes the value of technical experiments to see 
for example, how to deliver SO2 and the like.

      2.      Almost everyone agrees that short of planetary wide insertion, it 
would be very hard to gain knowledge about untoward local effect (especially in 
re precip.)

      3.      Some people suggest that we could get reliable planetary-wide 
data re point 2. if we did a low intensity insertion for long enough – say 30 
years.



      Martin Bunzl



      From: [email protected] 
[mailto:[email protected]] On Behalf Of Ken Caldeira
      Sent: Monday, September 27, 2010 9:00 AM
      To: geoengineering
      Subject: [geo] Can solar radiation management be tested?



      Folks,

      Robock et al and Fleming have both asserted that "geoengineering cannot 
be tested".

      Robock et al (Science, 2010):  "We argue that geoengineering cannot be 
tested without full-scale implementation."
      Fleming (Slate): "Global climate engineering is untested and 
untestable..."

      These statements seem either trivially true or patently false, depending 
on interpretation.

      Trivially true: If the only thing that you are willing to consider a test 
is the thing itself, then trivially there is no test other than the thing 
itself.

      Patently false: There are many tests that can be done that can help us 
understand possible consequences of a geoengineering deployment.

      One could imagine someone saying in the United States in the 1950's, 
"There is no way you can test the proposed interstate highway system, because 
you will not understand all its effects until it has been deployed." This is 
true, in the sense that you could not predict in advance detailed effects that 
the interstate highway system would have on the spread of suburbia, traffic 
jams, the rise of the SUV, and so on. 

      But, in the 1950's they could have tested the concrete, built a small 
stretch of road and learned about its construction and use etc. Would we say 
"The interstate highway system cannot be tested without full-scale 
implementation?" Would we say "The interstate highway system is untested and 
untestable?" I think we would say, "There are plenty of tests we can do, but of 
course we will not understand the full consequences of our implementation until 
the implementation is complete."

      We perform tests to improve our understanding. We never have full 
understanding of consequences of our actions before we act. We hopefully act in 
ways that will have the greatest rational expectation of positive outcomes. We 
do research to avoid having rational expectations that do not accord with facts 
on the ground.

      Many people have regarded Mt Pinatubo as performing a natural experiment 
of geoengineering -- a test of the idea of solar radiation management. Like all 
tests, Mt Pinatubo was not a perfect test (e.g., the aersols were not 
maintained in the stratosphere, etc). Nevertheless, Mt Pinatubo has functioned 
as a natural test of some of the concepts underlying solar radiation management.

      In 2003, Alan Robock wrote a paper called "Introduction: Mt. Pinatubo as 
a test of climate feedback mechanisms". 
(http://climate.envsci.rutgers.edu/pdf/VEAChapter1_Robocknew.pdf).  How is it 
logically possible that Mt Pinatubo could function as a test of climate 
feedback mechanisms, but not of geoengineering (ie SRM), when those climate 
feedback mechanisms are central to the climate system response to any 
geoengineering effort? 

      Furthermore, hasn't Alan claimed to have tested geoengineering concepts 
in his climate models and found them wanting? How can you have it both ways:  
testing geoengineering concepts and claiming the concepts are untestable?

      The list of possible useful geoengineering tests could be a long one, and 
includes tests of small scale physics, climate model simulations, observations 
of climate variability, ecosystem experiments, observations of behavior of 
natural or introduced particles on stratospheric transport and chemistry, small 
scale or short-term deployments, etc. (I am not advocating all of these, just 
listing them.)

      It seems odd, when there are a number of people eager to perform a wide 
range of tests on geoengineering concepts, to have a small minority claiming 
that these concepts simply can't be tested (especially when members of that 
minority have themselves been involved in testing geoengineering concepts).

      So, do the people who say that "geoengineering can't be tested" mean 
something that is both true and substantive (i.e., couldn't also have been said 
of, for example, the development of the US interstate highway system)? If so, 
it would be interesting to hear what this non-trivial interpretation might be.
      Best,

      Ken


      ___________________________________________________
      Ken Caldeira

      Carnegie Institution Dept of Global Ecology
      260 Panama Street, Stanford, CA 94305 USA
      +1 650 704 7212 [email protected] 
      http://dge.stanford.edu/labs/caldeiralab  @kencaldeira

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  -- 
  David W. Schnare
  Center for Environmental Stewardship


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