Probe to look for water on moon by Staff Writers Beijing (XNA) Mar 08, 2022
China plans to send its Chang'e 7 robotic probe to search for water and other resources at the moon's south pole, according to a leading space scientist. "The Chang'e 7 mission is set to find traces of ice at the south pole, investigate the environment and weather there, and survey its landforms," said Wu Weiren, chief designer of China's lunar exploration program and an academician of the Chinese Academy of Engineering. It will also be tasked with detecting the natural resources beneath the south pole's surface. Moreover, mission planners are considering if we can use the probe to dig into the surface to check the underground structures and compositions." Wu was speaking on the sidelines of the fifth session of the 13th National Committee of the Chinese People's Political Consultative Conference, which opened in Beijing on Friday. He is also a member of the CPPCC National Committee, the top political advisory body in China. He said the selection of the south pole as Chang'e 7's destination was based on two major considerations. "The moon's south pole is likely to have a favorable solar illumination condition that means sustained power supply and stable temperatures, and those will allow for long-term robotic exploration and manned activities," Wu said. "By comparison, on other places on the moon, solar illumination is much shorter, and temperature changes between lunar day and lunar night usually stand at about 300 C." A lunar day equals 14 days on Earth, with a lunar night being the same length. During the lunar night, the temperature falls below-180 C and there is no sunlight to provide power to spacecraft. "Another reason lies in water," he said. "The permanently shadowed craters on the south pole may harbor reservoirs of ice and other volatile compounds, and they will be valuable resources for manned explorations." Wu said Chinese engineers are developing a special craft able to fly from the landing site to a nearby crater to explore for traces of water. Speaking about the Chang'e 6 mission, Wu said scientists have been discussing its landing site. "There are two options-somewhere on the far side of the moon or a place at the south pole," he said. The Chang'e 6 probe is a backup to its predecessor, Chang'e 5, so it is capable of collecting and bringing samples back to Earth. "If the probe is to conduct sampling tasks on the far side, then we will need to deploy one or two relay satellites in a lunar orbit to transmit signals between Chang'e 6 and ground control," Wu said. "Similarly, landing it on the south pole and retrieving samples from there will also be challenging. So scientists need time to decide which plan will be adopted." He said China has become the first nation to make specific plans to deploy probes to the moon's south pole, and those plans have intrigued scientists from many countries. China opened its lunar program in 2004 and has launched five robotic probes since 2007.The fourth, Chang'e 4, landed on the far side of the moon in January 2019, becoming the first spacecraft to closely observe the little known lunar region. Its rover, named Yutu 2, has been working there for more than 1,000 days as the longest-operating lunar rover. The most recent mission, Chang'e 5, landed on the moon in December 2020 and soon sent 1,731 grams of lunar rocks and soil back to Earth. They were the first samples returned from the moon in about 44 years. Source: Xinhua News Agency
WashU scientists help recover gases from Moon rock time capsule by Talia Ogliore for WUSTL News St. Louis MO (SPX) Mar 08, 2022 Scientists from Washington University in St. Louis are helping to recover gases from a container of lunar soil that astronauts collected and sealed under vacuum on the surface of the Moon in 1972. The effort is part of NASA's Apollo Next Generation Sample Analysis (ANGSA) initiative. Apollo 17 astronauts Harrison Schmitt and Eugene Cernan collected the sample from the site of an ancient landslide in the Moon's Taurus-Littrow Valley. The astronauts used a coring dev ... read more
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