Showing posts with label Outer Space Treaty. Show all posts
Showing posts with label Outer Space Treaty. Show all posts

Sunday, August 02, 2015

How would lunar mining affect the cultural significance of the Moon?

This is an excerpt from my (pre-revision) forthcoming publication Managing cultural heritage values in lunar mining? What are the issues?

Consultation with stakeholders is part of both assessing the social significance of cultural heritage and obtaining a Social Licence to Operate (SLO). Despite the best intentions, however, gaining free, prior and informed consent is frequently overlooked (Bice 2014). How could this be achieved for an entire celestial body, and with meaningful consultation with the ‘local’ community of Earth’s seven billion people? While the UN offers obvious mechanisms through the Committee on the Peaceful Uses of Outer Space (COPUOUS), UNESCO and the  advisory organisation the International Council on Monuments and Sites (ICOMOS), private commercial interests may prefer to undertake their own community engagement.
Lunar surface mining. Image courtesy of NASA
How will people feel if they look at the Moon in the night sky, and know that is being mined underneath their eyes? While diverse publics have been tolerant of scientific missions, commercial ventures may be received very differently. Mining and exploration will have impacts on the lunar environment much greater than the low level created by robotic and scientific missions to date.
While it is probably broadly true to say “humanity as a whole has embraced the historic events and objects associated with space research as part of our jointly held heritage” (Walsh 2012:234), this obscures deeply entrenched divisions between colonial/spacefaring nations and colonised/'developing' nations (Gorman 2005a, Gorman 2009b, Redfield 2005). These divisions have been very evident in the politics around the formation of the Outer Space Treaty (OST), the Moon Agreement even more so, and contribute to the impasse that resource utilisation on the Moon is currently facing (Hoffstadt 1994).
The reaction of, say, an Australian to a US-based profit-making mine in which they have no say or share could easily be negative. A First Nations Australian may have another layer of reaction, based on their experience of alienation from country and destruction of cultural heritage arising from terrestrial resource exploitation. Moreover, an assault on the integrity of a celestial body which belongs to what is commonly called the ‘Dreaming’ – a suite of cultural knowledge in which the past is simultaneously entwined with the creation of law, identity and land in the present – may be a matter of some concern. Aboriginal people are by no means the only First Nation to have such a relationship with the Moon.
Moon Dreaming, by Ronnie Tjampitjinpa, 2007
Ronnie Tjampitjinapa is a Pintupi man from the Western Desert  He was a founding member of the Papunya Tula Artists group. .
Image courtesy of Aboriginal Art Directory
http://gallery.aboriginalartdirectory.com/aboriginal-art/ronnie-tjampitjinpa/moon-dreaming.php
What is considered to be for ‘the benefit and in the interests of all countries’ (OST Article 1, see also Moon Agreement Article 4) depends very much on how regulation unfolds in this next critical period. Again a parallel with terrestrial mining industry may be instructive. Management strategies in SLO frameworks include the concept of ‘offsets’: compensating for impacts at one location through activities at another, either directly or indirectly. A direct offset might be setting aside a protected area of land to compensate for the loss of that impacted by mining. Increasing the value of a heritage place could be considered a direct offset – for example, committing resources to conserving Tranquility Base to compensate for ‘sacrificing’ a Lunar Orbiter impact site. Indirect offsets may include funding research or education around the environmental/heritage resource that will lead to benefits for it. Note though, that offsets are determined during the planning phase, not in retrospect ie they do not compensate for damage already caused.

Lunar mining will take place in an environment where social media are a major part of public engagement with space. Space agencies, private companies, astronauts, missions, and rovers have their own Twitter accounts and there is an expectation of public involvement. Crowd-funded space missions such as Lunar Mission One, a probe designed to drill a deep core in polar regions, is possibly the vanguard of more such projects. The investors in off-world mining companies are likely to be the same people who buy shares in terrestrial mining. The moon’s seeming remoteness will not protect industrial operations from the scrutiny of the public.


References
Bice, Sarah 2014 What Gives You a Social Licence? An Exploration of the Social Licence to Operate in the Australian Mining Industry. Resources 3:62-80
Gorman, A.C. 2009b Beyond the Space Race: the significance of space sites in a new global context. In Angela Piccini and Cornelius Holtorf (eds) Contemporary Archaeologies: Excavating Now, pp 161-180 Bern: Peter Lang
Gorman, A.C. 2005a The cultural landscape of interplanetary space. Journal of Social Archaeology 5(1):85-10
Hoffstadt, Brian 1994 Moving the heavens: lunar mining and the ‘common heritage of mankind’ in the Moon Treaty. UCLA Law Review 42:575-621
Redfield, P. 2005. Space in the Tropics. From Convicts to Rockets in French Guiana. Berkeley:
University of California Press.
Walsh, Justin 2012 Protection of humanitys cultural and historic heritage in space. Space Policy 28:234-243




Monday, January 16, 2012

Surviving space junk re-entry: a beginner's guide

Given how frequently space junk re-enters the atmosphere, it's surprising that there is not more information about what to do in this event. So I am putting together here a small guide just in case you happen to be in this situation.

1. Don't panic: it is highly unlikely to actually fall on YOU.
You'll have heard all the commentators saying this, but it really is true: the odds of it being YOU that is the site of impact really are extraordinarily low. In the entire history of human space exploration, there is only one recorded instance of someone being hit by space junk. According to the Centre for Orbital and Reentry Debris Studies (CORDS) this was Lottie Williams of Oklahoma, who was hit by a piece of a Delta II rocket as she was taking a walk one day in 1996. She was unharmed. When Skylab re-entered over Western Australia in 1979, there were no claims for property damage made and no-one was hurt. There's just so much ocean, desert and ice - and this is usually where stuff lands.  There has never been a recorded re-entry over a city or town.  

The problem is, of course, that it is very difficult to predict re-entry points as there are so many variables to take into account. So it's not easy to be prepared.

But let's just say you are likely to be in the debris footprint area. Here's what you can do.

2.  Secure your pets or animals
It's just like fireworks: animals don't like it very much. The fragments may be traveling at tens of thousands of kilometres per hour as they come screaming into the upper atmosphere (which then slows them down until they fall vertically). The pieces are compressing the air into pressure waves and the energy builds up until it creates an exploding sound or sonic boom. The sonic booms can be frightening for humans too. Take the same precautions for household pets that you might on New Year's Eve. Keep them inside if possible, and remain calm around them. Don't use a chain or slip collar to restrain them. Some recommend playing them classical music (or something else soothing) as a distraction. There are many websites where you can find out more about this.

3.  Do not touch fragments of re-entered spacecraft.
In its journey through the atmosphere, the spacecraft ,or the pieces of it, are subject to extreme heating caused the friction of the atmosphere, through which it may be travelling at hypervelocity. Depending on the materials, some may still be burning when they land. Even when cool, there may be jagged and sharp edges that easily cut you.

Moreover, there are many toxic or radioactive elements that may be part of the fuel, the structures, or the experiments flown on board the spacecraft. If you handle them without knowing what you are doing, they may poison you. These include the fuel hydrazine and the metal beryllium. Let the authorities deal with it.

You're probably pretty safe with a titanium or steel pressure spheres, the most common spacecraft part to survive re-entry. However, despite titanium's traditional reputation as an inert metal, there is some recent evidence that the corrosion products of titanium may be harmful.  Don't take unnecessary risks.

4.  Be ready for fire
If burning fragments are falling all around you, it's not impossible that one may land on your house or the building you're in and set it alight. And when you go outside, there may be more. Do what you would normally expect to do in such an emergency: call 000 (or the fire department in your country); make sure you know where everyone is; evacuate the building (it will be safer outside) and do not go back inside. If you have a fire plan, put it into effect. This may if course involve removing animals or releasing them.

5. Notify the relevant authorities
There's a few people who need to know. Your local, regional or state government may have to play a role in coordinating relief, or recovery of debris, so let them know. It's also a matter of international relations. The country it lands in will have to notify and communicate with the launching state about recovering fragments (these are used to analyse what happened) and perhaps to talk about compensation. If your country has a space agency, they also need to know.

Debris is often found months or years later; and when it's not a high profile re-entry like Skylab, UARS or Phobos Grunt, it may not be obvious which re-entry it came from or who owned it. It's up to the government to find out. (Dr Space Junk has provided this service on occasion).

6. Assist in the scientific analysis
Your experience can be very useful. The colour of fragments falling through the sky tells us something about their temperature and sometimes what they are made of; the number and timing of falls helps map the debris footprint; the size and nature of the fragments may indicate what part of the spacecraft they came from and how it broke apart. While you most certainly shouldn't touch recently fallen material, or move it, you can take photographs and GPS coordinates, and estimate the dimensions of the pieces. What you see and experience can have some value when put together with information gathered from other sources.

7.  Be aware of the legal situation
There are two international conventions that you should be aware of.  One is the Outer Space Treaty of 1967, which imposes liability for damage caused by space junk on the launching state, and the other is the Space Liability Treaty 1972, which requires that the launching state pay compensation for any damage caused.  I don't know, however, if that includes emotional damage - there is some latitude for interpretation. Keeping in mind safety considerations, if you or your property have been harmed by falling space debris, document it as you would for insurance purposes.

The other critical part of the Outer Space Treaty is that the re-entered material is still the property of the launching state, so you cannot sell it on eBay. In the ideal situation, the launching state will try to recover material for analysis. Be co-operative and don't try to pass fakes off as real space junk - they'll know the difference!

OK. This is very rough and ready, but it's a start. One of the sources for these recommendations is the experience of Western Australians when Skylab re-entered in 1979. It was inspired by my series of #Reentrytips on Twitter.



Saturday, September 25, 2010

Extra-terrestrial mining: issues in environmental and heritage management

Today I am trawling through data from the Australian Bureau of Statistics, to get a handle on the state of the mining industry in Australia.  This is for a couple of reasons:  firstly, many of our graduates from the Department of Archaeology at Flinders University will end up working in heritage management for the resource extraction industry; and I have been having some interesting conversations recently with Dr John Kinahan, an archaeologist and heritage consultant from Namibia, about common experiences working with mining companies in our respective countries. We are thinking of writing something about it.

I was thinking to myself, as I looked at the trends in OPBT (Operating Profit Before Tax, as I now know) that there is not much space relevance in my task for this morning.

But wait!  Not so, I have realised.  One of the big space industries on the horizon, predicted for many many decades, is mining.  The Moon, asteroids, probably other celestial bodies too.  One supposes that extra-terrestrial mining will work in much the same way as it does on Earth:  exploration, pre-feasibility studies, feasilibity studies, planning, construction, operation, decommissioning and rehabilitation.

There will of course be environmental issues, particularly with rehabilitation.  How exactly do you rehabilitate a lifeless site? There is no vegetation to grow back, or animal communities to reestablish.  Will extra-terrestrial mining companies pay for rehabilitation at all?  How will environmental groups and those concerned with the ethics of our exploitation of space approach this issue?  Do we even want to erase the evidence of our activities?  Perhaps it is better to make it obvious that a mining site is not natural.  All this depends on what we think the values of space environments are, and as I have often opined in various writings, space industry barely conceives of space as an environment to begin with, so it's a bit of a leap to get them to think about its values.

Heritage issues may come in if mining operations of whatever kind take place on or near historic landing sites.  There may also be things to think about in the heritage values of the mining infrastructure - heritage as it happens, in the now.  We have to consider the human values of the use of space too.

Now that I think of these things I am intrigued by the possibilities.  How would one write an Environmental Management Plan (EMP) or a Cultural Heritage Management Plan (CHMP) for an extraterrestrial mining site?  How would they be similar or different to terrestrial mining sites?  Will the Outer Space Treaty be of any relevance?  (Actually there is some interesting literature on how the OST might work in the context of national resource extraction industries).

Well, I'd better focus on terrestrial mining for the moment, it would be too easy to get distracted at this point when I have other things to do!  I'll make another coffee, I think, before I get back to the stats.