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NASA Expects Chinese Crewed Mission Around the Moon In 2027

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NASA Administrator Jared Isaacman says he expects China to fly taikonauts around the moon in 2027, “ratcheting up perceptions of a space race between China and the United States,” reports SpaceNews. He is using that prospect to argue for a revamped Artemis strategy and an accelerated path toward a U.S. lunar return. From the report: “The next time the world tunes in to watch astronauts fly around the moon, which will likely be sometime in 2027, they will be taikonauts, and America will no longer be the exclusive power to send humans into the lunar environment,” he said. While Isaacman has frequently discussed a race with China to be the next to land humans on the moon, this was one of the first times he predicted a 2027 Chinese crewed circumlunar mission. He repeated the comments later in the day at an industry reception.

China has not publicly announced plans for such a mission, which, as Isaacman described it, would likely be similar to NASA’s Artemis 2 mission in April. There have been rumors of a mission along those lines, though, and an expectation of a roadmap of missions leading to a Chinese crewed landing by the end of the decade. So far, all the crewed missions to fly around, orbit or land on the moon have been flown by NASA: nine Apollo missions from 1968 to 1972 and Artemis 2. All the astronauts on those missions have been Americans except for Canadian Space Agency astronaut Jeremy Hansen on Artemis 2.

Isaacman has used the threat that China could land astronauts on the moon before NASA returns there as a rationale for revamping the Artemis lunar exploration program. In February, he announced that Artemis 3, which was to be a lunar landing attempt in 2028, will instead be a test flight in low Earth orbit in 2027, followed by a landing on Artemis 4 in 2028. In March, he changed other elements of Artemis at the agency’s Ignition event, including effectively canceling the lunar Gateway to focus resources instead on a lunar base, while calling for a much higher cadence of robotic lander missions.

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