Solar geoengineering: Risk of ‘termination shock’ overplayed, study says
Solar geoengineering, or “solar radiation management” (SRM), is perhaps the most controversial of the different ways of limiting human-caused climate change.A commonly voiced objection to the technique is the risk of “termination shock” – the rapid rebounding of global temperatures if SRM is deployed and then suddenly stopped.But a new research article, published in Earth’s Future, argues that this risk has been “significantly overestimated”. There are numerous ways to prevent termination shock occurring, the researchers say, and also to ensure that an SRM programme is resilient to physical, political or economic interruptions in the first place.However, despite their findings, the best way to protect against termination shock is “to cut CO2 emissions rapidly so that SRM is not needed for managing climate risk”, the lead author tells Carbon Brief.§ Preventing a shock
conference in BerlinstudyAndrew ParkerUniversity of Bristol“It’s common for commentators to say that once you start SRM you can’t stop it. Some then conclude that you should never start. But it’s just not accurate to say that once you start SRM you can’t stop it.”
between 1.5C and 2C of warmingDr Peter IrvineHarvard John A Paulson School of Engineering and Applied Sciences§ Potential causes of shocks
“Some things that people had been assuming could disable an SRM system – such as terrorist attacks or political demands – would probably not be able to do so unless the system was terribly designed. In fact, a well-designed system should be able to withstand most suggested events that might cause termination shock.”
§ Wider debate
Dr Ben KravitzPacific Northwest National Laboratory“One extreme [of termination shock] is a lot of geoengineering, abruptly ceased, permanently. But what does that middle ground look like? At what point does phasing out geoengineering look like a ‘shock’? I think this is an important thing to look at and quantify, and I’m glad the authors took the first steps toward doing that.”
Janos PasztorC2G2“Some say stratospheric aerosol injection systems are ungovernable. I don’t believe that is the case, but it will be challenging. So many different voices will need to be heard. Creating global consensus for deciding whether or not to use and then, if yes, how to make it happen – including how to minimise termination risks – will be a massive undertaking.”
Dr Anthony JonesUniversity of Exeterstudy“One issue the paper doesn’t cover is the consequences of a group of countries or a single country deciding to implement solar geoengineering without global consent and participation, which would increase the risk of early termination. Although international opposition would make unilateral deployment unlikely, it is still a scenario worth discussing.”
irrationalityProf Alan RobockRutgers University“Even if termination shock were less likely, there are still many reasons why SRM would not be a robust policy option.”
That said, Robock “completely agrees” with the last paragraph of the paper, “which says that the solution to global warming is mitigation and adaptation, so that SRM would never be employed in the first place”:“Our final conclusion is the most obvious and important. The best way to avoid termination would be to avoid a situation where a large amount of SRM would be needed to reduce committed climate risks. Strong action on mitigation would reduce the amount of SRM necessary to maintain a stable global temperature.
The development of safe and scalable CO2 removal techniques could reduce the cooling needed from SRM after deployment, and strong adaptation investment would reduce the suffering from the residual climate impacts to which Earth is already committed.”
Strictly speaking, this conclusion is saying that pursuing mitigation and adaptation means only relatively small amounts of SRM might be necessary, rather than none at all. However, both eventualities would mean SRM isn’t being relied upon to manage climate risks, notes Parker.Update 13/03/2018: This article has been edited to clarify the interpretation of the final paragraph of the paper.Article information
Parker, A. and Irvine, P. J. (2018) The risk of termination shock from solar geoengineering, Earth’s Future, doi:10.1002/2017EF000735