男女羞羞视频在线观看,国产精品黄色免费,麻豆91在线视频,美女被羞羞免费软件下载,国产的一级片,亚洲熟色妇,天天操夜夜摸,一区二区三区在线电影
Global EditionASIA 中文雙語Fran?ais
China
Home / China / Innovation

China Focus: Chinese scientists propose excess 40Ar in lunar soil possibly from Earth wind

Xinhua | Updated: 2025-09-27 18:21
Share
Share - WeChat
File photo: Photo provided by the China National Space Administration shows Chang'e 5 probe gathering samples on the moon on Dec 2, 2020. [Photo/Xinhua]

LANZHOU -- Chinese scientists have newly proposed that surplus 40Ar in lunar soil possibly originates from the Earth wind, according to the Northwest Institute of Eco-environment and Resources (NIEER) under the Chinese Academy of Sciences.

Conducted by researchers at the NIEER, this latest study offers a new perspective for understanding volatile exchanges within the Earth-Moon system. The study results have been published in the journal Icarus, said the NIEER.

Ar, the chemical element argon, is a pivotal noble gas present within lunar soil. It contains vital information crucial for deciphering the Moon's internal architecture and surface evolution processes, as well as the material exchange processes occurring between the Earth and the Moon, said Li Liwu, a researcher at the NIEER.

"Analysis of the isotopic composition of Ar in lunar soil can provide new clues for understanding multiple key issues regarding the Moon and the Earth-Moon system," Li said.

Li also noted that, alongside advancement of lunar exploration in recent years, excess 40Ar in lunar soil remains a significant topic in planetary science, drawing the attention of the scientific community. Lunar soil samples collected by China's Chang'e 5 mission provide an opportunity for scientists to tackle this issue.

Researchers with the Oil and Gas Research Center of the NIEER have conducted stepwise heating and degassing analyses of noble gas isotopes in Chang'e 5 lunar soil samples.

They further conducted fine analysis of the argon isotope composition within these lunar soil samples. The study results revealed the presence of two types of 40Ar — one unrelated to 36Ar, likely originating from in situ 40K which decays into 40Ar in the soils, and the other correlated with 36Ar — which may primarily derive from the Earth wind.

The study proposes that the excess 40Ar in lunar soil could primarily originate from continuous escape from Earth's atmosphere — with it injected onto the lunar surface via both the inner and outer regions of Earth's magnetosphere.

The findings of this new study provide an innovative framework for understanding the atmospheric escape process of terrestrial planets and their impact on neighboring celestial bodies, Li noted.

He added that the study also offers a new perspective for analysis of samples from the far side of the Moon as provided by the Chang'e 6 mission, and for the analysis of lunar soil retrieved by subsequent exploration projects. The outcomes of this study are expected to help further verify the spatial influence range of the Earth wind.

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.

Top
BACK TO THE TOP
English
Copyright 1995 - . All rights reserved. The content (including but not limited to text, photo, multimedia information, etc) published in this site belongs to China Daily Information Co (CDIC). Without written authorization from CDIC, such content shall not be republished or used in any form. Note: Browsers with 1024*768 or higher resolution are suggested for this site.
License for publishing multimedia online 0108263

Registration Number: 130349
FOLLOW US
 
主站蜘蛛池模板: 沁源县| 河源市| 油尖旺区| 涟水县| 梓潼县| 永胜县| 荃湾区| 九龙城区| 桃园县| 台东县| 郸城县| 福州市| 金沙县| 佳木斯市| 咸丰县| 玉溪市| 辛集市| 赤城县| 阿克苏市| 临汾市| 游戏| 康马县| 孟村| 武汉市| 安义县| 潼南县| 育儿| 论坛| 安达市| 京山县| 芒康县| 平遥县| 如东县| 德兴市| 红安县| 伊川县| 道孚县| 潼南县| 建瓯市| 威宁| 舞钢市| 乌拉特后旗| 雅安市| 乌海市| 蕉岭县| 天水市| 巨野县| 宁明县| 姚安县| 旺苍县| 九寨沟县| 太原市| 阜新| 万州区| 金华市| 都昌县| 山丹县| 濮阳县| 康平县| 商水县| 鹤岗市| 信宜市| 萨迦县| 尚义县| 丰城市| 瑞安市| 稻城县| 永州市| 唐河县| 无为县| 金湖县| 大同县| 育儿| 蒲江县| 锡林浩特市| 黑山县| 仁寿县| 康乐县| 满洲里市| 台中县| 古交市| 页游|