Hindustan Times (Jalandhar)

India looks to mine trilliondo­llar nuclear fuel on the moon

- Bloomberg letters@hindustant­imes.com n

ISRO WILL LAUNCH A ROVER IN OCTOBER TO EXPLORE MOON, ANALYSE CRUST SAMPLES FOR SIGNS OF WATER, HELIUM3

NEW DELHI: India’s space programme wants to go where no nation has gone before — to the south side of the moon. And once it gets there, it will study the potential for mining a source of waste-free nuclear energy that could be worth trillions of dollars.

The nation’s equivalent of NASA will launch a rover in October to explore virgin territory on the lunar surface and analyse crust samples for signs of water and helium-3.

That isotope is limited on Earth yet so abundant on the moon that it theoretica­lly could meet global energy demand for 250 years if harnessed.

“The countries which have the capacity to bring that source from the moon to Earth will dictate the process,’’ said K. Sivan, chairman of the Indian Space Research Organisati­on (ISRO).

“I don’t want to be just a part of them, I want to lead them.’’ The mission would solidify India’s place among the fleet of explorers racing to the moon, Mars and beyond for scientific, commercial or military gains.

The government­s of the US, China, India, Japan and Russia are competing with startups and billionair­es Elon Musk, Jeff Bezos and Richard Branson to launch satellites, robotic landers, astronauts and tourists into the cosmos.

The rover landing is one step in an envisioned series for ISRO that includes putting a space station in orbit and, potentiall­y, an Indian crew on the moon. The government has yet to set a timeframe.

“We are ready and waiting,’’ said Sivan, an aeronautic­s engineer who joined ISRO in 1982. “We’ve equipped ourselves to take on this particular programme.’’

China is the only country to put a lander and rover on the moon this century with its Chang’e 3 mission in 2013. The nation plans to return later this year by sending a probe to the unexplored far side.

In the US, President Donald Trump signed a directive calling for astronauts to return to the moon, and NASA’s proposed $19 billion budget this fiscal year calls for launching a lunar orbiter by the early 2020s.

ISRO’s estimated budget is less than a 10th of that – about $1.7 billion – but accomplish­ing feats on the cheap has been a hallmark of the agency since the 1960s. The upcoming mission will cost about $125 million – or less than a quarter of Snap Inc. co-founder Evan Spiegel’s compensati­on last year, the highest for an executive of a publicly traded company, according to the Bloomberg Pay Index.

This won’t be India’s first moon mission. The Chandrayaa­n-1 craft, launched in October 2008, completed more than 3,400 orbits and ejected a probe that discovered molecules of water in the surface for the first time.

The upcoming launch of Chandrayaa­n-2 includes an orbiter, lander and a rectangula­r rover. The six-wheeled vehicle, powered by solar energy, will collect informatio­n for at least 14 days and cover an area with a 400-meter radius.

The rover will send images to the lander, and the lander will transmit those back to ISRO for analysis.

A primary objective, though, is to search for deposits of helium-3. Solar winds have bombarded the moon with immense quantities of helium-3 because it’s not protected by a magnetic field like Earth is.

The presence of helium-3 was confirmed in moon samples returned by the Apollo missions, and Apollo 17 astronaut Harrison Schmitt, a geologist who walked on the moon in December 1972, is an avid proponent of mining helium-3.

“It is thought that this isotope could provide safer nuclear energy in a fusion reactor, since it is not radioactiv­e and would not produce dangerous waste products,’’ the European Space Agency said.

There are an estimated 1 million metric tons of helium-3 embedded in the moon, though only about a quarter of that realistica­lly could be brought to Earth, said Gerald Kulcinski, director of the Fusion Technology Institute at the University of Wisconsin-Madison and a former member of the NASA Advisory Council.

That’s still enough to meet the world’s current energy demands for at least two, and possibly as many as five, centuries, Kulcinski said. He estimated helium-3’s value at about $5 billion a ton, meaning 250,000 tons would be worth in the trillions of dollars.

To be sure, there are numerous obstacles to overcome before the material can be used – including the logistics of collection and delivery back to Earth and building fusion power plants to convert the material into energy.

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