Showing posts with label helium-3. Show all posts
Showing posts with label helium-3. Show all posts

Wednesday, September 15, 2021

Forget rockets – a lunar elevator is the future of Moon travel

What do you see when you look at the Moon? Beauty? Craters? Some people see dollar signs. You’ll occasionally see our only natural satellite billed as ‘Earth’s eighth continent’ because it’s full of resources that are hard to ignore. A rare form of helium, helium-3, could be used in fusion power stations here on Earth. Rare elements, such as neodymium, could be extracted and returned home for use in smartphones and other electronics. But how do we get them here without blowing all the profits on rockets? According to a study published in 2019, a lunar elevator could be the answer. A cable anchored to the lunar surface would stretch most of the 400,000km (250,000 miles) home. It couldn’t be directly attached to the Earth, due to the relative motions of the two objects, but it could terminate high in Earth orbit. That would have the added benefit of placing it above the bulk of our space junk, a growing problem as we launch ever more satellites. Solar-powered robotic shuttles could move up and down the cable, acting as a conveyor belt to ferry precious resources our way. It may sound like an outlandish prospect, but Zephyr Penoyre and Emily Sandford – the two University of Columbia astronomy PhD candidates behind the study – believe we could pull it off for a few billion US dollars. To put that into context, Jeff Bezos liquidates $1bn (over £700m) of his Amazon stock every year to fund his Blue Origin space tourism company. NASA’s Artemis programme, which is sending the first female astronaut and first astronaut of colour to the Moon later this decade, is costing $86bn (£60bn). Such is the value of the Moon’s resources, a separate study estimated that a lunar elevator would pay for itself within just 53 trips.


The cable, which would be no thicker than a pencil, would weigh 40 tonnes – well within the remit of modern rockets, such as SpaceX’s Starship. Unlike a space elevator that would travel from Earth’s surface into space, a lunar elevator stopping slightly shy of our planet wouldn’t have to contend with huge gravitational forces.

The Moon has no atmosphere either, which simplifies matters. That means the cable could be made from existing materials, such as Kevlar, instead of the yet-to-be-invented super-strong materials needed for an Earth-to-space elevator.

We could also combine the two. In April 2021, Chinese state-run media presented the country’s idea for a ‘Sky Ladder’. This would see a spacecraft winched up an elevator from Earth’s surface to a waiting space station, before being flung towards the Moon where it would meet another elevator that would lower it down to the lunar surface.

The idea of space elevators has been around for over a century without much progress. But if enough people – or, more likely, corporations – become enamoured with the chance of making big bucks, we could see the lunar equivalent of a gold rush in the decades ahead. Elevators could well turn out to be a way to keep costs down and profits literally sky-high.

Friday, April 20, 2018

Moon Colonization: Why do we want it and what technologies do we have?

Scientists are convinced that humankind is capable of turning the Moon into a space outpost: people have cosmodromes, heavy carrier rockets, space modules and lunar rovers. Sputnik reveals what is behind the human desire to conquer space and what challenges colonizers may face on the way. The idea of the Moon's colonization was quite popular during the Cold War era. But in the mid-1970s such projects by the USSR and the US were suspended as travel to the satellite proved very expensive and didn't pursue any concrete goal. But half a century later, the dreams of settling on the Moon have taken over mankind once again. Perhaps, this is due to the high technological level of civilization that needs really ambitious goals as well as the prospects for the development of private space exploration, journalist and scientific observer Tatyana Pichugina wrote for Sputnik. According to her, the arsenal of the world's space industry has everything one needs to conquer the Moon. What is missing, are clearly formulated goals.


How Can We Use the Moon?

Many scientists believe that space expansion is a logical step towards mankind's further development.

Sooner or later, Earth will become too "crowded" and there will be a need for a transshipment base on the Moon, from where one could go to Mars and other planets of the solar system.

Moon colonization would also give people an opportunity to extract valuable minerals. Particular hopes are associated with helium-3, which is used in neutron counters.

There is very little helium-3 available on the Earth, but quite a lot - on the Moon. Therefore, a number of governments have already signaled their readiness to go to the satellite to mine helium-3 as a fuel supply.

The possibility of transferring energy-intensive production to the Moon in order to reduce industrial emissions on Earth in the distant future has also been voiced by a number of researchers.

What Challenges Are We About to Face?

There is no atmosphere and no magnetic field on the Moon. Its surface is continuously bombarded with micrometeorites, while the temperature differences during one day may reach two hundred degrees Celsius.

People can work there only in suits and within sealed lunar rovers, or in a stationary inhabited module with a complete life support system.

Generally, the whole construction process must be also based on completely different and advanced technologies: using inflatable modules, producing many building elements on a 3D printer, creating composite materials from the lunar regolith by means of laser sintering.

Thus, there are many things that scientists still have to think through before any actual colonization efforts will take place.

Concrete Projects

A moon-orbiting space station is considered a logical step on the way to the colonization of the moon.

The United States, Russia and China have already announced the implementation of a corresponding project by 2025-2030.

In particular, the US and Russia have agreed on the establishment of a joint orbital station called the Deep Space Gateway. The project may be joined by China, India and some BRICS countries.

Technical details are expected to be presented this year. Construction works in orbit are set to start in 2024.