share
 

Researchers propose massive water production method on Moon

0 Comment(s)Print E-mail Xinhua, August 22, 2024
Adjust font size:

Chinese researchers have developed a new method of massive water production through the reaction between lunar regolith and endogenous hydrogen. Their study was published in the journal The Innovation on Thursday.

The study of the Moon's water content plays a vital role in the construction of future scientific research bases and human survival.

Research results from previous lunar explorations have revealed that ice may exist in a natural state at the moon's north and south poles and in its permanently shadowed regions.

However, the natural water content in lunar minerals is extremely low, ranging from 0.0001 percent to 0.02 percent, according to the Ningbo Institute of Materials Technology and Engineering (NIMTE) of the Chinese Academy of Sciences (CAS). It remains challenging to extract and utilize water in situ on the moon.

Recently, researchers from the NIMTE, Institute of Physics of the CAS, China Academy of Space Technology, Songshan Lake Materials Laboratory, Nanjing University and Harbin Institute of Technology used lunar regolith samples brought back by the Chang'e-5 mission to conduct related studies on various lunar minerals.

They found that the solar wind has irradiated the minerals in lunar soil for billions of years and stored abundant hydrogen. When heated to high temperatures, the hydrogen reacts with the iron oxides in the minerals to form elemental iron and large amounts of water.

When the temperature rises above 1,000 degrees Celsius, the lunar soil melts, and the water generated by this reaction is released as vapor.

The researchers confirmed that 1 g of molten lunar regolith can generate 51-76 mg of water. "In other words, 1 tonne of lunar regolith can produce more than 50 kg of water, which can meet the daily drinking water needs of 50 people per day," said Wang Junqiang, a professor at the NIMTE.

Besides, the researchers further investigated the differences in hydrogen content in different lunar minerals. The lunar ilmenite FeTiO3 was found to contain the highest amount of solar wind-implanted hydrogen among the five primary minerals, including ilmenite, plagioclase, olivine, pyroxene and lunar glass, in the lunar regolith.

The in situ heating experiments indicated that the hydrogen retained in lunar minerals is a substantial resource for producing water on the moon.

The researchers studied the atomic structure of lunar ilmenite in detail. They discovered that compared with ilmenite on Earth, the atomic spacing in lunar soil increased significantly due to the presence of hydrogen.

The simulation results showed that there are sub-nano tunnels in ilmenite in lunar soil, which can absorb and store many hydrogen atoms from the solar wind.

The experiment also found that the formation temperature of water can be reduced from 800 degrees Celsius to 200 degrees Celsius.

This result can explain the variation in the distribution of hydrogen on the moon with latitude differences. The equatorial position of the moon is the most irradiated by the solar wind, which contains a lot of electrons. Thus, more hydrogen is restored to water vapor and volatilized, while high latitudes are less affected by solar wind electron irradiation and can retain more hydrogen.

These discoveries provide pioneering insights into the water exploration on the moon, according to the NIMTE.

The Chang'e-5 probe, which returned to Earth on Dec. 17, 2020, retrieved 1,731 grams of lunar samples, consisting primarily of rocks and soil from the lunar surface.

Follow China.org.cn on Twitter and Facebook to join the conversation.
ChinaNews App Download
Print E-mail Bookmark and Share

Go to Forum >>0 Comment(s)

No comments.

Add your comments...

  • User Name Required
  • Your Comment
  • Enter the words you see:   
    Racist, abusive and off-topic comments may be removed by the moderator.
Send your storiesGet more from China.org.cnMobileRSSNewsletter
主站蜘蛛池模板: 免费无码成人av在线播放不卡| 国产精品R级最新在线观看| 久久久久亚洲av无码尤物| 欧美一级片免费在线观看| 亚洲综合第二页| 精品一区二区三区四区| 国产V片在线播放免费无码| 黄色免费一级片| 日韩精品无码久久一区二区三 | 午夜精品一区二区三区在线观看| 999国产高清在线精品| 巨肉黄暴辣文高h文奶汁| 中文字幕日韩哦哦哦| 日本尹人综合香蕉在线观看 | 波多野结衣456| 人妻少妇精品视频专区| 精品久久久久久国产| 四虎影视无码永久免费| 草莓视频在线观| 国产午夜亚洲精品不卡| 97久久天天综合色天天综合色hd| 好男人好资源在线观看免费 | www.午夜精品| 差差漫画页面登录在线看| 中文字幕日韩精品麻豆系列| 日本夜爽爽一区二区三区| 久久精品人人爽人人爽| 最近中文字幕资源8| 亚洲人成免费电影| 欧美国产亚洲日韩在线二区| 亚洲成在线观看| 欧美激情综合色综合啪啪五月| 四虎最新免费观看网址| 被公连续侵犯中文字幕| 国产在线精品网址你懂的| 黄色网站在线观看视频| 国产成人精品亚洲2020| 午夜精品久久久久久久久| 九九视频在线观看6| 国产欧美另类久久久精品免费| 色在线免费视频|