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NASA carbon dioxide-hunting telescope reaches orbit

An unmanned Delta 2 rocket blasted off from California on Wednesday, carrying a NASA science satellite to survey where carbon dioxide, a greenhouse gas tied to climate change, is moving into and out of Earth’s atmosphere, a NASA Television broadcast showed.
The 127-foot-tall rocket lifted off at 2:56 am PDT from Vandenberg Air Force Base, located about 150 miles northwest of Los Angeles, and headed south over the Pacific Ocean.
The launch was timed so that NASA’s Orbiting Carbon Observatory, or OCO, would end up at the front of a train of polar-orbiting environmental satellites that cross Earth’s equator every afternoon.
A launch attempt earlier was called off because of a problem with the launch pad’s water system, which is needed to mitigate high temperatures and suppress acoustic vibrations of the launch. Technicians replaced a failed valve, clearing rocket manufacturer United Launch Alliance, a partnership of Lockheed Martin and Boeing, for a second launch attempt.
Scientists have been waiting since 2009 for OCO to reach orbit. The original satellite was lost in a launch accident. “We felt awful about this situation,” Michael Miller, vice president of Orbital Sciences Corp, which built the satellite and the now-retired Taurus booster, said of the previous delays. “We’re very happy to see this new day,” Miller said at a post-launch news conference.
OCO 2 is NASA’s first mission dedicated to studying carbon dioxide, said Betsy Edwards, program executive at NASA Headquarters in Washington. “This makes it of critical importance to the scientists who are trying to understand the impact of humans on global change,” Edwards said at a prelaunch news conference.
Every year about 40 billion tons of carbon ends up in Earth’s atmosphere, an amount that is increasing as the developing world modernizes, said atmospheric scientist Michael Gunson of NASA’s Jet Propulsion Laboratory in Pasadena, California. Roughly half of the carbon is re-absorbed by forests and the ocean, a process that is not well understood.
“Understanding the details of those processes will give us some insight into the future and what’s likely to happen over the next decades, even if we continue to consume more and more fossil fuels and emit more and more carbon dioxide into the atmosphere,” Gunson said.
From its orbital perch 438 miles above Earth, the spacecraft will collect hundreds of thousands of measurements daily. Its path around the planet will take it over the same spot at the same time every 16 days, allowing scientists to detect patterns in carbon dioxide levels over weeks, months and years. 

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