玄武岩
月母马
地质学
风化土
地球化学
月球土壤
辉石
土壤水分
分步结晶(地质学)
月球地质
碎屑岩
矿物学
橄榄石
天体生物学
沉积岩
土壤科学
物理
作者
Xiaohui Fu,Chengxiang Yin,Bradley L. Jolliff,Jiang Zhang,Jian Chen,Zongcheng Ling,Feng Zhang,Yang Liu,Yongliao Zou
出处
期刊:Icarus
[Elsevier BV]
日期:2022-09-05
卷期号:388: 115254-115254
被引量:13
标识
DOI:10.1016/j.icarus.2022.115254
摘要
Chang'E-5 (CE-5) mission returned 1731 g of lunar soil from northeastern Oceanus Procellarum. This study begins by comparing the mineralogy and geochemistry of CE-5 soil with Apollo and Luna soils. CE-5 soil shares similar mineral components with Apollo mare soils. Geochemically, CE-5 soil is characterized by high-FeO, intermediate-TiO2, and elevated incompatible elements. The new returned CE-5 soil represents a unique type of mare soil that expands the diversity of returned lunar samples. Its bulk chemical compositions suggest that CE-5 soil consists of pulverized local mare basalt. Nonmare materials are thought to be negligible while meteoroid contamination is <1%. CE-5 soil provides an additional iron-rich basaltic end-member composition and extends the chemical ranges of the existing calibration soils for lunar remote sensing. CE-5 soil, together with the landing site, can serve as new ground truth both in mineralogy and geochemistry. Based on bulk chemical data of CE-5 soils and pyroxene compositions of CE-5 mare basalt clasts, we infer that CE-5 mare basalt has a fractional crystallization history similar to the Apollo high-Ti basalts. These CE-5 mare basalt clasts analyzed in recent studies, possibly derive from a single lava flow that experienced strong fractional crystallization.
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