North Korea May Be Restarting Nuclear Plant With Bomb Making Capabilities

North Korea May Be Restarting Plant That Can Make Nukes
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FILE - In this April 9, 2014 file image made from video, North Korean leader Kim Jong Un applauds during the Supreme People's Assembly in Pyongyang, North Korea, when it was held for the first time under the new leader. For the first time in three years, Kim didn't appear at a celebration of the anniversary of the founding of the ruling Workers' Party on Friday, Oct. 10, 2014, further increasing speculation that something is amiss with the authoritarian leader who hasn't been seen publicly in more than a month. (AP Photo/KRT via AP Video, File) TV OUT, NORTH KOREA OUT

WASHINGTON (AP) — For the first time in nearly six years North Korea may be restarting a plant that can reprocess nuclear fuel into weapons-grade plutonium, a U.S. research institute said Wednesday.

The finding is based on analysis of recent commercial satellite imagery at the North's main Nyongbyon nuclear facility.

The plant is used to reprocess spent fuel from a 5 megawatt reactor that has produced plutonium used for past nuclear test explosions. Last year, to international alarm, North Korea restarted the reactor that had been shuttered under a 2007 disarmament agreement.

The U.S.-Korea Institute at Johns Hopkins School of Advanced International Studies says the reactor appears to have been shut down for about 10 weeks, longer than normal maintenance would require. It is unclear why but the institute's best guess is that the North is replacing a small number of spent fuel rods, which may have been defective, and is about to start reprocessing them. That involves separating plutonium from waste products.

Steam coming from buildings associated with the reprocessing plant suggests it is preparing to commence operations, according to the analysis by Nick Hansen, a satellite imagery specialist who closely monitors developments in the North's weapons programs.

There are also signs of chemical waste outside a fuel fabrication facility, suggesting new fuel rods are being produced to replace the spent ones, he writes.

Joel Wit, a former State Department official who edits the institute's website, 38 North, which published the findings, said the reprocessing plant last operated in 2009. He said the amount of plutonium that would be harvested from a few spent rods would be small but this could be a harbinger of a bigger reprocessing effort when more fuel rods inside the reactor are spent.

"This may be a sign of things to come, perhaps a year from now, when the North Koreans unload all of the fuel from their reactor and produce a few additional bombs worth of plutonium," he said.

A Congressional Research Service paper in April 2013 said North Korea is estimated to have enough separated plutonium for at least a half-dozen nuclear weapons. The reactor can produce about one bomb's worth of plutonium per year, it said.

North Korea also has a uranium enrichment facility at Nyongbyon, likely giving it a second method to produce fissile material for bombs.

The North has conducted three underground nuclear tests, the latest in February 2013.

A North Korean envoy on Tuesday threatened further nuclear tests in response to moves at the U.N. for the country's harsh human rights situation to be referred to the International Criminal Court.

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Before You Go

Yongbyon Nuclear Complex
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This is an clos eup satellite image of the Yongbyon, North Korea Fuelfab from May 3rd, 2012. (Photo DigitalGlobe/ISIS via Getty Images) (credit:Getty Images)
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This is an overview satellite image of the Yongbyon, North Korea Fuelfab from May 3rd, 2012. (Photo DigitalGlobe/ISIS via Getty Images) (credit:Getty Images)
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Construction around the 5 MWe reactor on May 16, 2013 (Photo DigitalGlobe/38 North via Getty Images) (credit:Getty Images)
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Piping being installed in the drainage ditch near the 5 MWe reactor on May 22, 2013 (Photo DigitalGlobe/38 North via Getty Images) (credit:Getty Images)
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Water tanks have been placed by the spent fuel storage building on January 2, 2013 (Photo DigitalGlobe/38 North via Getty Images) (credit:Getty Images)
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Water tanks have been buried next to the spent fuel storage building on April 19, 2013 (Photo DigitalGlobe/38 North via Getty Images) (credit:Getty Images)
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Construction is underway on an an extension to a building across from the 5 MWe reactor consisting of 9-12 rooms, each approximately 5.5m x 4m in size on March 27, 2013 (Photo DigitalGlobe/38 North via Getty Images) (credit:Getty Images)
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External construction of the extension seems complete, with roof in place and a conduit is visible originating from the new section on April 19, 2013 (Photo DigitalGlobe/38 North via Getty Images) (credit:Getty Images)
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The conduit has been buried on May 22, 2013 (Photo DigitalGlobe/38 North via Getty Images) (credit:Getty Images)
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A new ditch for electrical cables has been excavated near the Experimental Light Water Reactor on May 3, 2013 (Photo DigitalGlobe/38 North via Getty Images) (credit:Getty Images)
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Many of the materials have been cleared from the pad at the trans shipment yard on May 16, 2013 (Photo DigitalGlobe/38 North via Getty Images) (credit:Getty Images)
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A large amount of materials are seen on the pad at the trans shipment yard, likely awaiting installation on April 19, 2013 (Photo DigitalGlobe/38 North via Getty Images) (credit:Getty Images)
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Materials for installation have been assembled on the hardstand on May 16, 2013 (Photo DigitalGlobe/38 North via Getty Images) (credit:Getty Images)
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Materials have been cleared from the hardstand and pipe has been partially laid on May 22, 2013 (Photo DigitalGlobe/38 North via Getty Images) (credit:Getty Images)