'Static kill' solution to Gulf oil spill could stop leak for good

'Static kill,' similar to the previously attempted 'top kill' solution, involves pumping mud and cement into the leaking well, hopefully sealing it permanently.

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NASA/AP
In this July 28, 2010 satellite image provided by NASA, oil from the Deepwater Horizon oil spill is visible on the surface of the Gulf of Mexico. 'Static kill,' similar to the previously attempted 'top kill' solution, involves pumping mud and cement into the leaking well, hopefully sealing it permanently.

Engineers on the Gulf of Mexico hoped to begin work Monday on a plan to to shove mud and perhaps cement into the blown-out oil well at the seafloor, making it easier to end the gusher for good.

The only thing keeping millions more gallons of oil out of the Gulf right now is an experimental cap that has held for more than two weeks but was never meant to be permanent.

The so-called "static kill" attempt carries no certainty, and BP PLC engineers still plan to follow it up days later by sending a stream of mud and cement into the bottom of the mile-deep underground reservoir through a relief well they've been digging for months.

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But the oil giant's engineers and petroleum experts say it's the clearest path yet to choke the blown-out well and make it even easier for the crews drilling the relief well to ensure oil can never again erupt from the deep-sea well, which has spewed as much as 184 million gallons (697 million liters) since the rig connected to it blew up in April and killed 11 workers.

The developments have the makings for an interesting week.

"It could be the beginning of the end," said Darryl Bourgoyne, director of Petroleum Engineering Research Lab at Louisiana State University.

When it begins, crews will slowly pump heavy mud through lines installed last month straight down the throat of the leaky well. If the mud forces the oil back into the massive underground reservoir and scientists are confident the pressure remains stable, then engineers can pump in fresh cement to seal it.

"The only thing that separates the oil from the sea now is the valve. This puts thousands of feet of mud and cement in between," said Eric Smith, associate director of the Tulane Energy Institute. "The idea is to have as many barriers as possible between the ocean and the reservoir. We're adding an extra level of safety."

Officials may then begin the process of choking the underground reservoir feeding the well by pumping mud and then cement down an 18,000-foot (a 5,500-meter) relief well. BP officials have long said the process is the only sure way to choke the well for good — plugging up the source of the oil, not just its route to the sea.

No oil has leaked from the well since engineers were able to fix a tightly fitting cap over its outlet two weeks ago, and boats skimming the oil and spraying subsea dispersant have been able to contain some of the spill.

But critics have raised questions about the long-term effects of the dispersant on sea life, and congressional investigators said Saturday that the Coast Guard routinely approved BP requests to use thousands of gallons of chemicals a day despite a federal directive to cut its use.

Retired Coast Guard Adm. Thad Allen said Sunday that federal regulators did not ignore environmental guidelines, but that some field commanders were given the authority to allow more dispersants to be used on a case-by-case basis.

BP's engineers, meanwhile, focus their time on their latest bid to stymie the oil for good. If the static kill attempt sounds familiar, that's because it is. The company tried a similar process, called a top kill, to choke the well with mud in May. It failed partly because the mud couldn't overcome the flow of the oil.

There's reason to hope this time will be different. For one, the oil is no longer freely flowing from the well, thanks to the temporary cap that has contained it for two weeks. That means that engineers won't have to pump in mud with as much force, said Kent Wells, a BP senior vice president.

There's always the risk that the pressure exerted by the mud will rupture the casing holding in the oil and potentially cause an even greater mess, but experts say it's very unlikely.

"I can't imagine it failing. It's holding pressure and there's no indication of any loss of fluid from the well," Smith said. "It's a vanishingly small risk of failure."

The whole procedure is still set to be completed by late August despite a brief evacuation for Tropical Storm Bonnie last week. And federal officials are downplaying its importance in case of a failure. Allen, the government's point man on the recovery effort, said Sunday that "static kill is not the end all, be all."

BP has had more than its share of failures experimenting with other ambitious efforts. So if the oil is already contained and the completion of the relief well appears to be just around the corner, why is the oil giant even bothering to attempt the complicated static kill?

One answer is that it should make it easier to finish the relief well, which BP and government officials have long said is the only permanent solution to the blown-out well. Crews are also drilling a second, backup relief well a few thousand feet behind the primary one, which is about 100 feet (30 meters) from its target.

If the static kill is successful, though, Smith said they likely wouldn't have to use as much mud to choke the oil. It's also a good way for BP to hedge its bets in case the relief well takes longer than expected to work, he said.

There's a third reason the company has embraced the static kill. Each day the temperature of Gulf of Mexico waters increases, so does the threat of another violent storm disrupting the cleanup process. Federal officials are hoping to end the oil threat once and for all before peak hurricane season, which typically lasts from mid-August to late October.

"If we can get this thing shut in permanently before the August hurricane season, we will have dodged a huge bullet," said Rear Adm. Paul Zukunft, the government's on-scene coordinator.

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